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Troubleshooting CodeSystemSolution
ECU 000051.14Motor systemFailure of the EGR system. Engine power is limited.
ECU 000094.17Motor systemThe fuel pressure is low. Check the fuel supply and filters.
ECU 000094.18Motor systemThe fuel pressure is low. Engine power is limited. Check the fuel supply and filters.
ECU 000097.16Motor systemSeparator is full. Engine power is limited. Merge separator.
ECU 000100.01Motor systemOil pressure is low. Engine power is limited. Check the oil level in the engine.
ECU 000100.18Motor systemOil pressure is low. Engine power is limited. Check the oil level in the engine.
ECU 000101.00Motor systemThe pressure in the crankcase is high. Engine power is limited. Check the gas breakout filter.
ECU 000101.16Motor systemThe pressure in the crankcase is high. Check the gas breakout filter.
ECU 000103.00Motor systemTurbocharger speed is high. Engine power is limited. Reduce the load and speed of the engine.
ECU 000105.00Motor systemThe air temperature in the inlet manifold is high. Engine power is limited. Reduce the load and speed of the engine. Check the cooling system for no contamination.
ECU 000105.15Motor systemThe air temperature in the inlet manifold is high. Reduce the load and speed of the engine. Check the cooling system for no contamination.
ECU 000105.16Motor systemThe air temperature in the inlet manifold is high. Engine power is limited. Reduce the load and speed of the engine. Check the cooling system for no contamination.
ECU 000107.00Motor systemClogged engine air filter. Engine power is limited. Clean or replace the air filter.
ECU 000107.15Motor systemClogged engine air filter. Clean or replace the air filter.
ECU 000107.16Motor systemClogged engine air filter. Engine power is limited. Clean or replace the air filter.
ECU 000109.01Motor systemThe coolant pressure is low. Engine power is limited.
ECU 000109.17Motor systemThe coolant pressure is low. Check the sealed lid and the sealing in the cooling system.
ECU 000109.18Motor systemThe coolant pressure is low. Engine power is limited. Check the sealed lid and the sealing in the cooling system.
ECU 000109.31Motor systemThe coolant pressure is low. Check the sealed lid and the sealing in the cooling system.
ECU 000110.00Motor systemThe engine coolant temperature is high. Engine power is limited. Reduce the load and speed of the engine. Check the cooling system for no contamination.
ECU 000110.15Motor systemThe engine coolant temperature is high. Reduce the load and speed of the engine. Check the cooling system for no contamination.
ECU 000110.16Motor systemThe engine coolant temperature is high. Engine power is limited. Reduce the load and speed of the engine. Check the cooling system for no contamination.
ECU 000110.17Motor systemThe engine coolant temperature is low. Check the cooling system.
ECU 000111.01Motor systemThe coolant level is low. Engine power is limited. Fill the coolant and inspect for leakage.
ECU 000111.07Motor systemMalfunction of the cooling fluid level circuit. The coolant level monitor does not work. Check the coolant level.
ECU 000111.17Motor systemThe coolant level is below the service switch. Pour the coolant.
ECU 000111.18Motor systemThe coolant level is low. Fill the coolant and inspect for leakage.
ECU 000157.17Motor systemThe pressure in the fuel line is low at startup. Check the filters and fuel level.
ECU 000168.01Electrical systemThe battery voltage is low.
ECU 000174.00Motor systemThe fuel temperature is high. Engine power is limited. Check the cooling system for no contamination.
ECU 000174.16Motor systemThe fuel temperature is high. Check the cooling system for no contamination.
ECU 000190.00Motor systemThe engine speed is high. Reduce engine speed.
ECU 000412.00Motor systemThe EGR temperature is high. Engine power is limited. Reduce the load and speed of the engine. Check the cooling system for no contamination.
ECU 000412.15Motor systemThe EGR temperature is high. Engine power is limited. Reduce the load and speed of the engine. Check the cooling system for no contamination.
ECU 000412.16Motor systemThe EGR temperature is high. Engine power is limited. Reduce the load and speed of the engine. Check the cooling system for no contamination.
ECU 000641.16Motor systemThe drive temperature is turbocharger high. Reduce the load and speed of the engine.
ECU 000651.02Motor systemFuel Nozzle Error No. 1. Engine speed is limited.
ECU 000651.13Motor systemFuel Nozzle Calibration Error No. 1. Engine speed is limited.
ECU 000652.02Motor systemFuel Nozzle Error No. 2. Engine speed is limited.
ECU 000652.13Motor systemFuel Nozzle Calibration Error No. 2. Engine speed is limited.
ECU 000653.02Motor systemFuel Nozzle Error No. 3. Engine speed is limited.
ECU 000653.13Motor systemFuel Nozzle Calibration Error No. 3. Engine speed is limited.
ECU 000654.02Motor systemFuel Nozzle Error No. 4. Engine speed is limited.
ECU 000654.13Motor systemFuel Nozzle Calibration Error No. 4. Engine speed is limited.
ECU 000655.02Motor systemFuel Nozzle Error No. 5. Engine speed is limited.
ECU 000655.13Motor systemFuel Nozzle Calibration Error No. 5. Engine speed is limited.
ECU 000656.02Motor systemFuel Nozzle Error No. 6. Engine speed is limited.
ECU 000656.13Motor systemFuel Nozzle Calibration Error No. 6. Engine speed is limited.
ECU 000970.31Immobilizer SystemKey or control block authentication failed. Engine control Unit has issued a command to switch off the engine. Check if the machine has the correct key. Restart the engine to try to repair the machine.
ECU 001075.02Motor systemFailure of the electric fuel pump. The fuel system does not work.
ECU 001075.04Motor systemMalfunction of the circuit of the electric fuel pump. The fuel system does not work.
ECU 001075.06Motor systemMalfunction of the circuit of the electric fuel pump. The fuel system does not work.
ECU 001075.09Motor systemFailure of the electric fuel pump. The fuel system does not work.
ECU 001110.31Motor systemStop to protect the engine.
ECU 001136.00Motor systemThe internal temperature of the engine control unit is high. The speed of the engine is limited.
ECU 001180.00Motor systemThe exhaust gas temperature is high. Engine power is limited. Reduce the load and speed of the engine. Check the cooling system for no contamination.
ECU 001180.16Motor systemThe exhaust gas temperature is high. Engine power is limited. Reduce the load and speed of the engine. Check the cooling system for no contamination.
ECU 001639.01Motor systemEngine fan speed is low. Check the fan drive system.
ECU 002630.00Motor systemThe temperature of the forced air cooler is high. Engine power is limited. Reduce the load and speed of the engine. Check the cooling system for no contamination.
ECU 002630.15Motor systemThe forced air cooler outlet temperature is high. Check the cooling system for no contamination.
ECU 002630.16Motor systemThe forced air cooler outlet temperature is high. Engine power is limited. Reduce the load and speed of the engine. Check the cooling system for no contamination.
ECU 002790.16Motor systemThe turbocharger outlet temperature is high. Engine power is limited. Reduce the load and speed of the engine.
ECU 003246.00Exhaust Gas Filtration SystemThe temperature on the exhaust filter release is high. Engine power is limited.
ECU 003480.01Exhaust Gas Filtration SystemError fuel metering inlet pressure. Active cleaning of the exhaust filter is not available.
ECU 003480.03Exhaust Gas Filtration SystemMalfunction of the circuit of the fuel metering pressure sensor. Active cleaning of the exhaust filter is not available.
ECU 003480.04Exhaust Gas Filtration SystemMalfunction of the circuit of the fuel metering pressure sensor. Active cleaning of the exhaust filter is not available.
ECU 003482.16Exhaust Gas Filtration SystemMalfunction of the fuel metering shut valve. Active cleaning of the exhaust filter is not available.
ECU 003711.14Exhaust Gas Filtration SystemThe temperature at the inlet of the exhaust gas filter is not reached. Active cleaning of the exhaust filter is not available.
ECU 003711.31Exhaust Gas Filtration SystemThe temperature at the inlet of the exhaust gas filter is not reached. Active cleaning of the exhaust filter is not available.
ECU 003719.00Exhaust Gas Filtration SystemExhaust gas filter clogged. Engine power is limited.
ECU 003719.13Exhaust Gas Filtration SystemThe exhaust gas filtration system requires maintenance.
ECU 003719.14Exhaust Gas Filtration SystemExhaust gas filter clogged. Engine power is limited. Initiate service cleanup.
ECU 003719.16Exhaust Gas Filtration SystemExhaust gas filter clogged. Engine power is limited. Start cleaning the filter in the parked state on the engine settings page according to the driver manual.
ECU 003720.15Exhaust Gas Filtration SystemThe ash content in the exhaust gas filter is high. Filter maintenance.
ECU 003720.16Exhaust Gas Filtration SystemThe ash content in the exhaust gas filter is high. Filter maintenance.
ECU 003936.00Exhaust Gas Filtration SystemUnexpected temperature in the exhaust gas filter. Engine power is limited.
ECU 004766.16Exhaust Gas Filtration SystemThe temperature of the exhaust gas filter is higher than expected. Active cleaning of the exhaust filter is not available.
ECU 004766.17Exhaust Gas Filtration SystemSystem cleanup error. Cannot continue cleanup.
ECU 004766.18Exhaust Gas Filtration SystemSystem cleanup error. Cannot continue cleanup.
ECU 004795.31Exhaust Gas Filtration SystemThe exhaust filter is missing or severely damaged. Engine power is limited.
ECU 005018.00Exhaust Gas Filtration SystemUnexpected temperature in the exhaust gas filter. Engine power is limited.
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EDC7 MAN fault codes list https://beznez.net/edc7-man-fault-codes-list/ https://beznez.net/edc7-man-fault-codes-list/#respond Thu, 21 Sep 2023 06:31:51 +0000 https://beznez.net/?p=951 32
the position of Division
Priority: 3
Readout in vehicle, only an indication of malfunction; specify actions for errors is not required.
Fault indication:
Central signal light STOP (H111) led is amber when a stationary car.
The reason for the failure:
Status divider (ratio of rotational speed of at the entrance to the transmission/engine speed) cannot be
determined for a set time dimension, so the condition is passed to the “DIVISOR CANNOT BE
DETERMINED”.
Troubleshooting:
Test Executive elements, using current control MAN-cats ® II check the accuracy of the signal, check
the wires, connectors, induction speed sensor at the inlet of the gearbox (B368).
Milestones:
Testing actuators:
Using MAN-cats ® II test actuators “small group” and “a large group”.
Conduct ongoing monitoring:
Using MAN-cats ® II check the reliability of signals at the entrance to the rotational speed gearbox
“and” Query “divider.
Nominal rotation speed values at the inlet of the gearbox (measured approx. at 550 rpm at idle):
Split Low approx. 550 RPM; Split High approx. 660 RPM.
If the signal “at the entrance to the rotational speed gearbox” wrong, measure the resistance.
Resistance measurement:
at the entrance to the rotational speed gearbox; car computer-between Pin X 3/12 (+) and Pin X 1/3 (-)
on the side of the FFR: Aprox. 1.78 com, on the side of the vehicle: appr. 1.05 c.
Voltage measurement:
at the entrance to the rotational speed gearbox; car computer-between Pin X 3/12 (+) and Pin X 1/3 (-
): voltage aprox. 1 in (idle engine).
Note: see. SPN also 770 and 771.
161
rotational speed of gearbox input
Priority: 3
Readout in vehicle, only an indication of malfunction; specify actions for errors is not required.
Fault indication:
Central signal light STOP (H111) led is amber when a stationary car.
The reason for the failure:
Induction speed sensor at the inlet of the gearbox (B368) sends the wrong signal. Set the value of the
rotation frequency of the signal is not available. To determine the status of the divider is no longer
possible. It also blocks the function of Comfort-Shift.
Troubleshooting:
Using current control MAN-cats ® II check the accuracy of the signal, check the wires, connectors,
induction speed sensor at the inlet of the gearbox (B368).
Milestones:
Conduct ongoing monitoring:
Using MAN-cats ® II check the reliability of the signal at the entrance to the rotational speed gearbox “.
Nominal rotation speed values at the inlet of the gearbox (measured approx. at 550 rpm at idle):
Split Low approx. 550 RPM; Split High approx. 660 RPM.
If the signal “at the entrance to the rotational speed gearbox” wrong, measure the resistance.
Resistance measurement:
at the entrance to the rotational speed gearbox; car computer-between Pin X 3/12 (+) and Pin X 1/3 (-)
on the side of the FFR: Aprox. 1.78 com, on the side of the vehicle: appr. 1.05 c.
Voltage measurement:
at the entrance to the rotational speed gearbox; car computer-between Pin X 3/12 (+) and Pin X 1/3 (-
): voltage aprox. 1 in (idle engine).
168
Battery voltage

Condition: FMI 1
Priority: 3
Readout in vehicle, only an indication of malfunction; specify actions for errors is not required.
Fault indication:
Central signal light STOP (H111) led is amber when a stationary car.
The reason for the failure:
Too high operating voltage (> 32).
Troubleshooting:
Using current control MAN-cats ® II check the accuracy of the signal, check alternator, wires,
connectors, batteries.
Milestones:
Conduct ongoing monitoring:
Using MAN-cats ® II validate signals Terminal 30 “and” Terminal 15 “(engine running, nominal value in
24-28).
If these values are correct, measure the voltage.
Voltage measurement:
The voltage directly on the Pin of the control unit X 1/2, X 1/1 (+) and X 1/3 (-). Nominal 20-28 volt.
If the measured (on the control unit) values are nominal and, despite this, active fault, replace the car
computer (A403).
168
Battery voltage
Condition: FMI 2
Priority: 3
Readout in vehicle, only an indication of malfunction; specify actions for errors is not required.
Fault indication:
Central signal light STOP (H111) led is amber when a stationary car.
The reason for the failure:
The operating voltage is too low (< 16 in).
Troubleshooting:
Using current control MAN-cats ® II check the accuracy of the signal, check fuses Terminal 15 FFR
(F372) and Terminal 30 (F371), check the wires, connectors, lock function steering wheel (Q101),
batteries, generator.
Milestones:
Conduct ongoing monitoring:
Using MAN-cats ® II validate signals Terminal 30 “and” Terminal 15 “(specification 20-28).
If these values are correct, measure the voltage.
Voltage measurement:
The voltage directly on the Pin of the control unit X 1/2, X 1/1 (+) and X 1/3 (-). Nominal 20-28 volt.
If the measured (on the control unit) values are nominal and, despite this, active fault, replace the car
computer (A403).
572
Auxiliary device incorporating retarder
Priority: 5
Indication while driving and stop the car; the only indication of a malfunction.
Fault indication:
Central signal light STOP (H111) led is amber while driving and parking.
The reason for the failure:
Malfunction data line touch switch retarder. As a result, the switch no longer works. Active retarder is
deactivated by pressing the accelerator pedal (A410).
Troubleshooting:
Using current control MAN-cats ® II check the accuracy of the signal, check the wires, connectors,
touch switch brakes zamedl. (A437).
Milestones:
Conduct ongoing monitoring:
Using MAN-cats ® II check the reliability of the signal “Touch retarder switch” (above, below, off).
If the wrong signals, measure the resistance.
Resistance measurement:
Retarder, data link retarder switch touch; car computer-between Pin X 2/10 (+) and Pin X 1/3 (-) on
the side of the FFR: Aprox. 1.5 Mω, on the side of the vehicle: appr. 1.6 Mohm
Retarder, retarder switch touch synchronization wire; car computer-between Pin X 2/6 (+) and Pin X


1/3 (-) on the side of the FFR: Aprox. 1.7 the IOM, on the side of the car: Aprox. 1.2 Mω
Voltage measurement:
Retarder, data link retarder switch touch; car computer-between Pin X 2/10 (+) and Pin X 1/3 (-):
jumper (test block) closed: Aprox. 14.2 v, jumper (test block) open: FFR side: Aprox. 23.5 in, on the
side of the vehicle: appr. 14 in
Retarder, retarder switch touch synchronization wire; car computer-between Pin X 2/6 (+) and Pin X
1/3 (-): jumper (test block) closed: Aprox. 12.3 in, jumper (test block) open: FFR side: Aprox. 13.5 v,
on the side of the car: Aprox. 22.5 in
601
Switch speed control system resume
Priority: 5
Indication while driving and stop the car; the only indication of a malfunction.
Fault indication:
Central signal light STOP (H111) led is amber while driving and parking.
The reason for the failure:
Malfunction switch FGR/FGB. AS-Tronic transmission goes into automatic mode. Speed regulation
system (FGR) is deactivated.
Troubleshooting:
Using current control MAN-cats ® II check the accuracy of the signal, check the wires, connectors,
switch FGR/FGB (S284).
Milestones:
Conduct ongoing monitoring:
Using MAN-cats ® II check the accuracy of the signal “switch FGR gearbox (Tempomat).”
Resistance measurement:
The switch is open, the FGR; car computer-between Pin X 2/16 (+) and Pin X 1/3 (-): FFR unplugged:
Aprox. 4.6 com
Voltage measurement:
The switch is open, the FGR; car computer-between Pin X 2/16 (+) and Pin X 1/3 (-): 0 in
697
Accelerator pedal signal PWM1
Priority: 2
Perhaps the problem, requiring removal of the Service Center! Indication of a fault.
Fault indication:
Central signal light STOP (H111) lights continuously red.
The reason for the failure:
Malfunction signal PWM1 Accelerator (A410) or is being passed the wrong signal. As a consequence, the
accelerator position signal used PWM2. In case of malfunction of the engine speed and torque. (1800
rpm; the restriction on 80%).
Troubleshooting:
Using MAN-cats ® II validate signal, check the wires, connectors, run the oscillograficheskoe
measurement using Skopemeter Fluke 123 (frequency = 200 Hz) accelerator pedal (A410)-check signal
PWM1.
Milestones:
Conduct ongoing monitoring:
Using MAN-cats ® II check the accuracy of the signal module PWM1 pedals “.
Voltage measurement:
car computer-between Pin X 2/11 (+) and Pin X 1/3 (-): jumper (test block) closed: Signal Low:
Aprox. 8 in (the accelerator pedal to failure), signal High: Aprox. 20 in, jumper (test block) open: FFR
side: Aprox. 25.4 in, on the side of the vehicle: appr. 0.5 in
If the cause of the malfunction is not set, calibrate the accelerator pedal.
Note: If the voltage drop when the power is turned off (Terminal 15) at PWM1 (A410/Pin 5) and
nutrition for PWM2 (A410/Pin 6) shared the Bole 100 MS, then the fault is saved in the registry.
698
Accelerator pedal signal PWM2
Priority: 2
Perhaps the problem, requiring removal of the Service Center! Indication of a fault.
Fault indication:
Central signal light STOP (H111) lights continuously red.
The reason for the failure:


Malfunction signal PWM2 Accelerator (A410) or is being passed the wrong signal. As a consequence, the
accelerator position signal PWM1 is used. In case of malfunction of the engine speed and torque. (1800
rpm; the restriction on 80%).
Troubleshooting:
Using MAN-cats ® II validate signal, check the wires, connectors, run the oscillograficheskoe
measurement using Skopemeter Fluke 123 (frequency = 200 Hz) accelerator pedal (A410)-check signal
PWM2.
Milestones:
Conduct ongoing monitoring:
Using MAN-cats ® II check the accuracy of the signal module PWM2 pedals “.
Voltage measurement:
car computer-between Pin X 2/18 (+) and Pin X 1/3 (-): jumper (test block) closed: Signal Low:
Aprox. 8 in High signal: Aprox. 20 in (accelerator pedal until failure); jumper (test block) open: FFR
side: Aprox. 25.5 in, on the side of the vehicle: appr. 0 in.
If the cause of the malfunction is not set, calibrate the accelerator pedal.
Note: If the voltage drop when you turn off power 15 terminals PWM1 (A410/Pin 5) and nutrition PWM2
(A410/Pin 6) shared the Bole 100 MS, then the fault is saved in the registry.
770
Separate H
Priority: 5
Indication while driving and stop the car; the only indication of a malfunction.
Fault indication:
Central signal light STOP (H111) led is amber while driving and parking.
The reason for the failure:
Wiring solenoid valve malfunction Split-High (Y307). Write fault in fault recorder running when she
registered for 3 cycles (500 ms). Due to a fault valve divider no longer subject to management.
Troubleshooting:
Test Executive elements, using current control MAN-cats ® II check the accuracy of the signal, check
the wires, connectors, ZF 16S151 gearboxes/ZF 16S181 check solenoid valve Split-High ( Y307).
Milestones:
Testing actuators:
Using MAN-cats ® II test actuators “Split Low” and “Split High”.
If the block solenoid valves (Y307) is not subject to management, measure the resistance.
Conduct ongoing monitoring:
Using MAN-cats ® II validate signal “replace Query”.
Resistance measurement:
car computer-between Pin X 3/13 (+) and Pin x 4/6 (-) on the side of the FFR: Aprox. 6, on the side of
the car: Aprox. 83.3.
car computer-between Pin X 3/13 (+) and Pin X 1/3 (-) on the side of the FFR: Aprox. 4.3 com, on the
side of the car:-
Voltage measurement:
car computer-between Pin X 3/13 (+) and Pin x 4/6 (-) solenoid valve activated: Aprox. 27.6
in; solenoid valve deactivated: 0 in.
771
Separate L
Priority: 5
Indication while driving and stop the car; the only indication of a malfunction.
Fault indication:
Central signal light STOP (H111) led is amber while driving and parking.
The reason for the failure:
Wiring solenoid valve malfunction Split-Low (Y307). Write fault in fault recorder running when she
registered for 3 cycles (500 ms). Due to a fault valve divider no longer subject to management.
If there is a failure of management/break wires may display fault code SPN 32.
Troubleshooting:
Test Executive elements, using current control MAN-cats ® II check the accuracy of the signal, check
the wires, connectors, ZF 16S151 gearboxes/ZF 16S181 check solenoid valve Low (Split- Y307).
Milestones:
Testing actuators:
Using MAN-cats ® II test actuators “Split Low” and “Split High”.
If the block solenoid valves (Y307) is not subject to management, measure the resistance.


Conduct ongoing monitoring:
Using MAN-cats ® II validate signal “replace Query”.
Resistance measurement:
car computer-between Pin x 4/7 (+) and Pin x 4/6 (-) on the side of the FFR: Aprox. 6, on the side of
the car: Aprox. 84.6 Ohm
car computer-between Pin x 4/7 (+) and Pin X 1/3 (-) on the side of the FFR: Aprox. 4.3 com, on the
side of the car:-
Voltage measurement:
car computer-between Pin x 4/7 (+) and Pin x 4/6 (-) solenoid valve activated: Aprox. 27.6 in; solenoid
valve deactivated: 0 in.
898
Group of resistors limit the maximum speed
Priority: 5
Indication while driving and stop the car; the only indication of a malfunction.
Fault indication:
Central signal light STOP (H111) led is amber while driving and parking.
The reason for the failure:
From the Group of resistors (R134) enters the wrong signal. As a consequence, remains activated stage
HGB. After following the inclusion of the selected step HGB 0 (activates the “maximum speed limit 1”).
Troubleshooting:
Using MAN-cats ® II validate signal, check the wires: check the interface body X1996, connectors,
resistors Group (R134).
Milestones:
Conduct ongoing monitoring:
Using MAN-cats ® II check the reliability of the signal “Multistage input maximum speed limiter”.
Resistance measurement:
car computer-between Pin X 2/6 (+) and Pin X 1/3 (-) on the side of the FFR: Aprox. 6.5 com, on the
side of the vehicle: appr. 0.511 com.
Group of resistors (R134)-between:
PIN 5 and Pin 7/6:3.09 PL
PIN 5 and Pin 3/4: com 1.37
PIN 5 and Pin 2/8:0.51 com
PIN 5 and Pin 1/9:8.20 com
Voltage measurement:
car computer-between Pin X 2/6 (+) and Pin X 1/3 (-): appr. 460 MW.
1045
The final stage of the transmission setting lock
Priority: 5
Indication while driving and stop the car; the only indication of a malfunction.
Fault indication:
Central signal light STOP (H111) led is amber while driving and parking.
The reason for the failure:
Found a short circuit at the output of the transmission setting lock (final step) solenoid valve block
(Y307). Due to a failure of the lock enable the transfer is no longer subject to management.
Troubleshooting:
Using MAN-cats ® II control element test, check the wires, connectors, ZF 16S151 gearboxes/ZF 16S181
check solenoid valve block (Y307).
Milestones:
Testing actuators:
Using MAN-cats ® II test actuators “override gear”.
If the block solenoid valves (Y307) is not subject to management, measure the resistance.
Resistance measurement:
car computer-between Pin x 4/13 (+) and Pin X 3/5 (-) on the side of the FFR: Aprox. 8.9 com, on the
side of the vehicle: appr. 135 ohms.
car computer-between Pin x 4/13 (+) and Pin X 1/3 (-) on the side of the FFR: Aprox. 8.3 com, on the
side of the car:-
Voltage measurement:
car computer-between Pin x 4/13 (+) and Pin X 3/5 (-) solenoid valve activated: Aprox. 27.5 in, with a
simple signal High every 6 seconds; solenoid valve deactivated: 0 in.


3010
Limiting torque and rotational speed
Condition: FMI 5, 6
Priority: 5
Indication while driving and stop the car; the only indication of a malfunction.
Fault indication:
Central signal light STOP (H111) led is amber while driving and parking.
The reason for the failure:
From the Group of resistors (R134) enters the wrong signal. As a consequence, remains activated stage
for engine speed range. When you first enable is activated step 0 engine speed range.
Troubleshooting:
Using current control MAN-cats ® II check the accuracy of the signal, check the wires: check the FFR
interface X1996, connectors, resistors Group (R134).
Milestones:
Conduct ongoing monitoring:
Using MAN-cats ® II check the reliability of the signal “Multistage input torque and rotational speed
limits”.
Resistance measurement:
car computer-between Pin X 2/1 (+) and Pin X 1/3 (-) on the side of the FFR: Aprox. 6.5 com, on the
side of the vehicle: appr. 0.511 ohms.
Group of resistors (R134)-between:
PIN 5 and Pin 7/6:3.09 PL
PIN 5 and Pin 3/4: com 1.37
PIN 5 and Pin 2/8:0.51 com
PIN 5 and Pin 1/9:8.20 com
Voltage measurement:
car computer-between Pin X 2/1 (+) and Pin X 1/3 (-): appr. 460 MW.
3020
Calibration error the accelerator pedal signal PWM1
Priority: 3
Readout in vehicle, only an indication of malfunction; specify actions for errors is not required.
Fault indication:
Central signal light STOP (H111) led is amber when a stationary car.
The reason for the failure:
Is not configured or is not specified signal PWM1 Accelerator (A410). This malfunction occurs when the
value of the idling is > 10% or 30% < and > full-load point value 90% or < 40%. This enables limiting torque and rotational speed. The value is calculated using the accelerator pedal signal PWM2. The incoming signal is denoted as incorrect. Troubleshooting: Using current control MAN-cats ® II signal validate, calibrate the accelerator pedal. Conduct ongoing monitoring: Using MAN-cats ® II check the accuracy of the signal module PWM1 pedals “. Accelerator pedal calibration: Accelerator pedal calibration is performed using MAN-cats ® II. Squeeze the accelerator pedal to failure (including “kick-down”). Hold it down approximately 3 with this situation and again release. Repeat 2-3 times. New accelerator pedal always requires calibration. 3021 Calibration error the accelerator pedal signal PWM2 Priority: 3 Readout in vehicle, only an indication of malfunction; specify actions for errors is not required. Fault indication: Central signal light STOP (H111) led is amber when a stationary car. The reason for the failure: Is not configured or is not specified signal PWM2 Accelerator (A410). This malfunction occurs when the value of the idling is < 10% or > 30% and full load point value > 90% or < 40%. This enables limiting
torque and rotational speed. The value is calculated using the accelerator pedal signal PWM1. The
incoming signal is denoted as incorrect.
Troubleshooting:
Using current control MAN-cats ® II signal validate, calibrate the accelerator pedal.


Conduct ongoing monitoring:
Using MAN-cats ® II check the accuracy of the signal module PWM2 pedals “.
Accelerator pedal calibration:
Accelerator pedal calibration is performed using MAN-cats ® II. Squeeze the accelerator pedal to
failure (including “kick-down”). Hold it down approximately 3 with this situation and again
release. Repeat 2-3 times.
New accelerator pedal always requires calibration.
3197
Data bus CAN: ETC1 Astronic Message, byte 1
Priority: 3
Readout in vehicle, only an indication of malfunction; specify actions for errors is not required.
Fault indication:
Central signal light STOP (H111) led is amber when a stationary car.
The reason for the failure:
The signal “shift_in_process” or “driveline_engaged” AS-Tronic control unit (A330) contains invalid
data. Write failure occurs when 3 times in a row received incorrect/invalid data. The incoming signal is
indicated as invalid.
Troubleshooting:
Check the fault logger AS-Tronic (A330), check the wires, check the connectors, measure the
resistance.
Milestones:
Reading fault Registrar:
Consider fault recorder AS-Tronic control unit (A330) and correct the malfunction, data stored in the
memory diagnostics.
Resistance measurement:
CAN data bus transmission (T-CAN); AS-Tronic control unit-Pin A12 (-) and Pin A8 (+): appr. 60 Ohms
CAN data bus transmission (T-CAN); car computer-Pin X 1/15 (-) and X 1/14 (+): appr. 120 ohm at
aprox. 0 Ohms short circuit from CAN-High and CAN-Low on.
3250
Comfort entrances Shift (CS1 and CS2)
Priority: 5
Indication while driving and stop the car; the only indication of a malfunction.
Fault indication:
Central signal light STOP (H111) led is amber while driving and parking.
The reason for the failure:
The input value is false when both input signal Comfort-Shift gearbox control lever switch (S477) have
the same level of 100 milliseconds or longer after you enable the request remains unfulfilled longer 2
c. troubleshooting Comfort functions-Shift are blocked. If the function is activated, the Comfort-Shift,
clutch is closed, when the difference frequency of rotation on the clutch is in the valid range or
switched transmission in the neutral position.
Troubleshooting:
Using current control MAN-cats ® II check the accuracy of the signal, check the wires, connectors,
switch control lever gearbox (S477).
Milestones:
Conduct ongoing monitoring:
Using MAN-cats ® II validate signals Comfort Switch Shift “and” Comfort Shift Switch in the reverse
position.
Resistance measurement:
Request Comfort Shift 1; car computer-between Pin X 2/12 (+) and Pin X 1/3 (-) on the side of the FFR:
Aprox. 4.6.
Request Comfort Shift 2; car computer-between Pin X 2/3 (+) and Pin X 1/3 (-) on the side of the FFR:
Aprox. 4.6.
Voltage measurement:
Request Comfort Shift 1; car computer-between Pin X 2/12 (+) and Pin X 1/3 (-): switch open: 0 switch
closed: UKL15
Request Comfort Shift 2; car computer-between Pin X 2/3 (+) and Pin X 1/3 (-): switch open: 0 switch
closed: UKL15.
3251
Switch FGR/FGB


Priority: 5
Indication while driving and stop the car; the only indication of a malfunction.
Fault indication:
Central signal light STOP (H111) led is amber while driving and parking.
The reason for the failure:
Malfunction switch FGR/FGB. Speed regulation system (FGR) is deactivated.
Troubleshooting:
Using current control MAN-cats ® II check the accuracy of the signal, check the wires, connectors,
switch FGR/FGB (S284).
Milestones:
Conduct ongoing monitoring:
Using MAN-cats ® II check the accuracy of the signal “switch FGR gearbox (Tempomat).”
Resistance measurement:
The switch is open, the FGR; car computer-between Pin X 2/16 (+) and Pin X 1/3 (-): FFR unplugged:
Aprox. 4.6.
Voltage measurement:
The switch is open, the FGR; car computer-between Pin X 2/16 (+) and Pin X 1/3 (-): 0 in.
3269
Reliability of signal Terminal 50 “engine start”-entry query engine start
Priority: 3
Readout in vehicle, only an indication of malfunction; specify actions for errors is not required.
Fault indication:
Central signal light STOP (H111) led is amber when a stationary car.
The reason for the failure:
Signal engine start (lock steering wheel Q101) considered to be misleading when there are 15 terminals
after turn off a start signal. After the next procedure enable start is possible only if the start
procedure detected the positive momentum. The incoming signal is referred to as implausible.
Troubleshooting:
Using current control MAN-cats ® II check the accuracy of the signal, check the wires, connectors, lock
the steering wheel (Q101), external start/stop device.
Milestones:
Conduct ongoing monitoring:
Using MAN-cats ® II validate signals “Terminal” and 50 “outer query engine shutdown” and “outer query
engine”.
Resistance measurement:
car computer-between Pin X 3/7 (+) and Pin X 1/3 (-) on the side of the FFR: Aprox. 4.6.
Voltage measurement:
car computer-between Pin X 3/7 (+) and Pin X 1/3 (-): switch open: 0 switch closed: 16-32 in (Ubat)
3311
Control unit (EEPROM checksum)
Priority: 1
In combination with a symbol STOP. You want to stop the engine!
Fault indication:
Central signal light STOP (H111) flashes red together with a symbol STOP.
The reason for the failure:
During initialization, data is read from the EEPROM and calculates a checksum for each block of
parameters. This checksum is compared to the value of the EEPROM.
Troubleshooting:
If the driver detects a fault, the car computer (A403) replaced. If the problem occurs after the
parameterization (key, accelerator pedal, clutch) or after replacing the car computer,
parameterization is done again.
Note: If the car is replaced by computer because of this problem, follow these steps.
Before connecting the diagnostic system MAN-cats ® II vehicle, remove the faulty FFR.
Then using MAN-cats ® and the menu item “with the service computer: via network connection at the
enterprise” prepare the vehicle data necessary to replace the control unit, but not read them from
faulty FFR. It is possible to transfer the fault code 3311 on new control unit!
3449
Exhaust backpressure
Priority: 2
Perhaps the problem, requiring removal of the Service Center! Indication of a fault.


Fault indication:
Central signal light STOP (H111) lights continuously red.
The reason for the failure:
If engine brake is not activated and the exhaust gas back-pressure within the given time exceeds a
specified threshold is faulty. Module EVB (Y355) is deactivated until the next power on.
Troubleshooting:
Using current control MAN-cats ® II check the accuracy of the signal, check the wires, connectors, the
module EVB (Y355).
Milestones:
Conduct ongoing monitoring:
Using MAN-cats ® II check the reliability of the signal “exhaust Backpressure.
Resistance measurement:
power supply 5 v; car computer-between Pin X 2/5 (+) and Pin X 1/3 (-) on the side of the FFR:
Aprox. 100 kΩ, on the side of the vehicle: appr. 3.7 com
exhaust back pressure signal; car computer-between Pin X 3/4 (+) and Pin X 1/3 (-) on the side of the
FFR: Aprox. 100 kΩ, on the side of the vehicle: appr. 12.2.
mass; car computer-between Pin X 3/5 (+) and Pin X 1/3 (-) on the side of the FFR: Aprox. 1.9 com, on
the side of the vehicle: appr. 54.
motor brake car computer-between Pin x 4/14 (+) and Pin X 1/3 (-) on the side of the FFR: Aprox. 8.82
com, on the side of the vehicle: appr. 22 ohms.
Voltage measurement:
power supply 5 v; car computer-between Pin X 2/5 (+) and Pin X 1/3 (-): appr. 5 in
exhaust back pressure signal; car computer-between Pin X 3/4 (+) and Pin X 1/3 (-): appr. 560 MW.
mass; car computer-between Pin X 3/5 (+) and Pin X 1/3 (-): 0 in
motor brake car computer-between Pin x 4/14 (+) and Pin X 1/3 (-): plugin activated: EVB-module, EVB
is not activated: 0 in.
car computer-between Pin x 4/1 (+) and Pin X 3/5 (-) solenoid valve activated: Aprox. 27.6 when a
simple signal High every 6 c solenoid valve deactivated: 0 in.
3450
Exhaust backpressure
Priority: 2
Perhaps the problem, requiring removal of the Service Center! Indication of a fault.
Fault indication:
Central signal light STOP (H111) lights continuously red.
The reason for the failure:
If engine brake is activated and exhaust backpressure within a specified time remains below the
specified threshold is faulty. Module EVB (Y355) is deactivated until the next power on.
Troubleshooting:
Using current control MAN-cats ® II check the accuracy of the signal, check the wires, connectors, the
module EVB (Y355).
Milestones:
Conduct ongoing monitoring:
Using MAN-cats ® II check the reliability of the signal “exhaust Backpressure.
Resistance measurement:
power supply 5 v; car computer-between Pin X 2/5 (+) and Pin X 1/3 (-) on the side of the FFR:
Aprox. 100 kΩ, on the side of the vehicle: appr. 3.7 com
exhaust back pressure signal; car computer-between Pin X 3/4 (+) and Pin X 1/3 (-) on the side of the
FFR: Aprox. 100 kΩ, on the side of the vehicle: appr. 12.2.
mass; car computer-between Pin X 3/5 (+) and Pin X 1/3 (-) on the side of the FFR: Aprox. 1.9 com, on
the side of the vehicle: appr. 54.
motor brake car computer-between Pin x 4/14 (+) and Pin X 1/3 (-) on the side of the FFR: Aprox. 8.82
com, on the side of the vehicle: appr. 22 ohms.
Voltage measurement:
power supply 5 v; car computer-between Pin X 2/5 (+) and Pin X 1/3 (-): appr. 5 in.
exhaust back pressure signal; car computer-between Pin X 3/4 (+) and Pin X 1/3 (-): appr. 560 MW.
mass; car computer-between Pin X 3/5 (+) and Pin X 1/3 (-): 0 in.
motor brake car computer-between Pin x 4/14 (+) and Pin X 1/3 (-): plugin activated: EVB-module, EVB
is not activated: 0 in.
car computer-between Pin x 4/1 (+) and Pin X 3/5 (-) solenoid valve activated: Aprox. 27.6 when a
simple signal High every 6 c solenoid valve deactivated: 0 in.


3451
Comfort function does not work-Shift
Priority: 5
Indication while driving and stop the car; the only indication of a malfunction.
Fault indication:
Central signal light STOP (H111) led is amber while driving and parking.
The reason for the failure:
Due to the associated fault feature Comfort-Shift is locked.
Troubleshooting:
Using current control MAN-cats ® II check the accuracy of the signal, check the wires, connectors,
switch control lever gearbox (S477).
Milestones:
Conduct ongoing monitoring:
Using MAN-cats ® II validate signals Comfort Switch Shift “and” Comfort Shift Switch in the reverse
position.
Resistance measurement:
Request Comfort Shift 1; car computer-between Pin X 2/12 (+) and Pin X 1/3 (-) on the side of the FFR:
Aprox. 4.6.
Request Comfort Shift 2; car computer-between Pin X 2/3 (+) and Pin X 1/3 (-) on the side of the FFR:
Aprox. 4.6.
Voltage measurement:
Request Comfort Shift 1; car computer-between Pin X 2/12 (+) and Pin X 1/3 (-): switch open: 0 switch
closed: UKL15.
Request Comfort Shift 2; car computer-between Pin X 2/3 (+) and Pin X 1/3 (-): switch open: 0 switch
closed: UKL15.
3452
Squeeze the grip
Priority: 5
Indication while driving and stop the car; the only indication of a malfunction.
Fault indication:
Central signal light STOP (H111) led is amber while driving and parking.
The reason for the failure:
During switching or switch grip Comfort-Shift pressed insufficient (included incorrectly).
Troubleshooting:
Hold the clutch depressed throughout the procedure.
3510
Overload clutch, lowering the moment
Priority: 5
Indication while driving and stop the car; the only indication of a malfunction.
Fault indication:
Central signal light STOP (H111) led is amber while driving and parking.
The reason for the failure:
Car computer has detected stalling clutch, so the maximum torque is limited to 80%.
Troubleshooting:
After a predetermined time, which serves to cool the clutch, maximum torque is unlocked again and
the indication appears on the display (see service information 187002).
3520
LSS1 Timeout
Priority: 5
Indication while driving and stop the car; the only indication of a malfunction.
Fault indication:
Central signal light STOP (H111) led is amber while driving and parking.
The reason for the failure:
Timeout switch (A942) on the steering column/transmission retarder.
Troubleshooting:
Using current control MAN-cats ® II check the accuracy of the signal, check the wires, connectors,
switch (A942) on the steering column, F583 fuse.
Milestones:
Conduct ongoing monitoring:

https://truckmanualshub.com/
Using current control MAN-cats ® II validate signals switch (A942) on the steering column/retarder
gearbox (above, below, off).
Resistance measurement:
Signal wire LIN Road between computer X 2/8 and 2 Pin switch on the steering column/transmission
retarder: Aprox. 0.2 Ohm
Voltage measurement:
Switch on the steering column/retarder gearbox, power LIN between Pin 3 (+) and Pin 1 (-): Ubat.
3521
MFL1 Timeout
Priority: 5
Indication while driving and stop the car; the only indication of a malfunction.
Fault indication:
Central signal light STOP (H111) led is amber while driving and parking.
The reason for the failure:
The timeout of a multifunctional steering wheel MFL (A943).
Troubleshooting:
Using current control MAN-cats ® II check the accuracy of the signal, check the wires, connectors,
multifunctional steering wheel (A943) fuse F583.
Milestones:
Conduct ongoing monitoring:
Using current control MAN-cats ® II check the reliability of signals of a multifunctional steering wheel
MFL (A943) (Set-Set + Off, memo, FGR/FGB).
Resistance measurement:
Signal wire LIN Road between computer X 2/8 and Pin 3 multifunctional steering wheel: Aprox. 0.2
Ohm
Voltage measurement:
Multifunctional steering wheel, power LIN between Pin 1 (+) and Pin 2 (-): Ubat
Note: using MAN-cats ® II checks only the right side of the multifunctional steering wheel.
3522
Timeout INST1
Priority: 5
Indication while driving and stop the car; the only indication of a malfunction.
Fault indication:
Central signal light STOP (H111) led is amber while driving and parking.
The reason for the failure:
Dashboard timeout (A407).
Troubleshooting:
Check the wires, connectors, dashboard (A407).
Milestones:
Resistance measurement:
Signal wire LIN Road between computer X 2/8 and dashboard X 1/15: Aprox. 0.2 ohms.
3524
Faulty right side of MFL
Priority: 5
Indication while driving and stop the car; the only indication of a malfunction.
Fault indication:
Central signal light STOP (H111) led is amber while driving and parking.
The reason for the failure:
Faulty right side multifunctional steering wheel MFL. This fault is detected by the MFL and the car
computer is passed to the MFL1 message.
Troubleshooting:
Using current control MAN-cats ® II check the accuracy of the signal, check the wires, connectors,
multifunctional steering wheel (A943) fuse F583.
Milestones:
Conduct ongoing monitoring:
Using current control MAN-cats ® II check the reliability of signals of a multifunctional steering wheel
MFL (A943) (Set-Set + Off, memo, FGR/FGB).
Resistance measurement:
Signal wire LIN Road between computer X 2/8 and Pin 3 multifunctional steering wheel: Aprox. 0.2


ohms.
Voltage measurement:
Multifunctional steering wheel, power LIN between Pin 1 (+) and Pin 2 (-): Ubat.
Note: using MAN-cats ® II checks only the right side of the multifunctional steering wheel.
3525
Faulty left/right side of MFL
Priority: 5
Indication while driving and stop the car; the only indication of a malfunction.
Fault indication:
Central signal light STOP (H111) led is amber while driving and parking.
The reason for the failure:
Faulty left/right side of the multifunctional steering wheel MFL. This fault is detected by the MFL and
the car computer is passed to the MFL1 message.
Troubleshooting:
Using current control MAN-cats ® II check the accuracy of the signal, check the wires, connectors,
multifunctional steering wheel (A943) fuse F583.
Milestones:
Conduct ongoing monitoring:
Using current control MAN-cats ® II check the reliability of signals of a multifunctional steering wheel
MFL (A943) (Set-Set + Off, memo, FGR/FGB).
Resistance measurement:
Signal wire LIN Road between computer X 2/8 and Pin 3 multifunctional steering wheel: Aprox. 0.2
ohms.
Voltage measurement:
Multifunctional steering wheel, power LIN between Pin 1 (+) and Pin 2 (-): Ubat.
Note: using MAN-cats ® II checks only the right side of the multifunctional steering wheel.
3526
Faulty LSS
Priority: 5
Indication while driving and stop the car; the only indication of a malfunction.
Fault indication:
Central signal light STOP (H111) led is amber while driving and parking.
The reason for the failure:
Defective switch (A942) on the steering column/transmission retarder. This fault is detected by the
MFL and the car computer is passed to the MFL1 message.
Troubleshooting:
Using current control MAN-cats ® II check the accuracy of the signal, check the wires, connectors,
switch (A942) on the steering column, F583 fuse.
Milestones:
Conduct ongoing monitoring:
Using current control MAN-cats ® II validate signals switch (A942) on the steering column/retarder
gearbox (above, below, off).
Resistance measurement:
Signal wire LIN Road between computer X 2/8 and 2 Pin switch on the steering column/transmission
retarder: Aprox. 0.2 ohms.
Voltage measurement:
Switch on the steering column/retarder gearbox, power LIN between Pin 3 (+) and Pin 1 (-): Ubat.
3527
Mass closure/U bat.
Priority: 5
Indication while driving and stop the car; the only indication of a malfunction.
Fault indication:
Central signal light STOP (H111) led is amber while driving and parking.
The reason for the failure:
This fault is recorded when there is a closure or mass LIN UBat. The fault is written after its
registration within 10 s.
Troubleshooting:
Check the signal wire LIN for short-circuit and UBat, connectors.
Milestones:


Resistance measurement:
Signal wire LIN Road between computer X 2/8 and 2 Pin switch on the steering column/transmission
retarder: Aprox. 0.2 ohms.
Signal wire LIN Road between computer X 2/8 and Pin 3 multifunctional steering wheel MFL: Aprox. 0.2
ohms.
Signal wire LIN Road between computer X 2/8 and dashboard X 1/15: Aprox. 0.2 ohms.

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Caterpillar Fault Codes https://beznez.net/caterpillar-fault-codes/ https://beznez.net/caterpillar-fault-codes/#respond Wed, 20 Sep 2023 10:46:48 +0000 https://beznez.net/?p=942
PID/SIDFMIFaultDescriptionTroubleshooting
111injector solenoid cyl#1current below normal or openView Full Solution
211injector solenoid cyl#2current below normal or openView Full Solution
311injector solenoid cyl#3current below normal or openView Full Solution
411injector solenoid cyl#4current below normal or openView Full Solution
511injector solenoid cyl#5current below normal or openView Full Solution
611injector solenoid cyl#6current below normal or openView Full Solution
2213ECUspeed signal calibration not performedView Full Solution
308PTOPTO throttle signal invalidView Full Solution
3013PTOPTO throttle signal out of calibration flash codesView Full Solution
325turbo wastegate solenoidcurrent below normal View Full Solution
326turbo wastegate solenoidcurrent above normal or shorted to groundView Full Solution
3211turbo wastegate solenoidcurrent mismatchView Full Solution
4138 volt supplyvoltage above normal or shorted highView Full Solution
4148 volt supplyvoltage below normal or shorted lowView Full Solution
4211Injection Actuation Pumpoutput failure    View Full Solution
432ECUkey switch View Full Solution
642speed sensorloss of signalView Full Solution
6411speed sensorerratic data signalView Full Solution
705intake heatercurrent beow normalView Full Solution
706intake heatercurrent above normal or shorted to groundView Full Solution
711idleidle shutdownView Full Solution
7114PTOPTO shutdownView Full Solution
840vehicle speed sensorover speed warningView Full Solution
841vehicle speed sensorloss of signalView Full Solution
842vehicle speed sensorerratic/incorrect data signalView Full Solution
848vehicle speed sensorsignal out of normal rangeView Full Solution
8410vehicle speed sensorabnornal rate of changeView Full Solution
8414vehicle speed sensorquick stop occuranceView Full Solution
918throttle positioninvalid signalView Full Solution
9113throttle positionout of calibrationView Full Solution
941fuel pressurelow fuel pressureView Full Solution
943fuel pressurevoltage above normal View Full Solution
944fuel pressurevoltage below normalView Full Solution
9411fuel pressurelow cranking fuel pressureView Full Solution
963fuel levelvoltage above normalView Full Solution
964fuel levelvoltage below normalView Full Solution
1001oil pressure sensorlow pressure warningView Full Solution
1003oil pressure sensorvoltage above normalView Full Solution
1004oil pressure sensorvoltage below normalView Full Solution
10011oil pressure sensorvery low oil pressureView Full Solution
1021intake mfld pres sensorlow boost pressureView Full Solution
1023intake mfld pres sensorvoltage above normal or shorted highView Full Solution
1024intake mfld pres sensorvoltage below normal or open circuitView Full Solution
1022intake mfld pres sensordata does not match current conditionsView Full Solution
1027intake mfld pres sensornot respondingView Full Solution
1053intake mfld tem sensorvoltage above normal or shorted highView Full Solution
1054intake mfld tem sensorvoltage below normal or open circuitView Full Solution
1050intake mfld tem sensortemperature above protection limitView Full Solution
10511intake mfld tem sensorvery high intake air temperatureView Full Solution
1083barometric pres sensorvoltage above normal or shorted highView Full Solution
1084barometric pres sensorvoltage below normal or shorted lowView Full Solution
1082barometric pres sensorerratic/incorrect data signalView Full Solution
1103coolant temp sensorvoltage above normal or shorted highView Full Solution
1104coolant temp sensorvoltage below normal or open circuitView Full Solution
1100coolant temp sensortemperature above normal rangeView Full Solution
11011coolant temp sensorvery high coolant temperatureView Full Solution
1112coolant level sensorinvalid signalView Full Solution
1113coolant level sensorvoltage above normal or shorted highView Full Solution
1114coolant level sensorvoltage below normal or open circuitView Full Solution
1111coolant level sensorlevel below normal rangeView Full Solution
11111coolant level sensorvery low coolant levelView Full Solution
1283sec fuel levelvoltage below normal or shorted lowView Full Solution
1284sec fuel levelvoltage above normal or shorted highView Full Solution
1642injection actuation pressureerratic signalView Full Solution
1643injection actuation pressurevoltage above normalView Full Solution
1644injection actuation pressurevoltage below normalView Full Solution
1640injection actuation pressureexcessive pressureView Full Solution
16411injection actuation pressuresystem failureView Full Solution
1682ECM failuresupply voltage intermittentView Full Solution
1681ECM failuresupply voltage lowView Full Solution
1680ECM failuresupply voltage highView Full Solution
1730exhaust temperaturederate for high exhaust temperatureView Full Solution
17311exhaust temperaturederate for very high exhaust temperatureView Full Solution
1864PTOPTO shutdown switch v oltage lowView Full Solution
18614PTOPTO shutdown switch occuranceView Full Solution
1900engine speedoverspeed warningView Full Solution
1902engine speedloss of data signalView Full Solution
19011engine speederratic signalView Full Solution
22411theft deterentactive signalView Full Solution
22414theft deterentactive signal when crankingView Full Solution
2312J1939 dataincorrect data fron J1939View Full Solution
23111J1939 dataJ1939 configurationView Full Solution
23112J1939 dataloss of data signalView Full Solution
23114J1939 datatransmission data link derateView Full Solution
23235 volt supplyvoltage above normalView Full Solution
23245 volt supplyvoltage below normalView Full Solution
2323sensor supplyvoltage above normal or shorted highView Full Solution
2324sensor supplyvoltage below normal or shorted lowView Full Solution
24611brake pedal switch1switch not respondingView Full Solution
24711brake pedal switch2switch not respondingView Full Solution
25112injector power supplylow voltage for injector power supplyView Full Solution
2512ECM failureigniton power lost to ecmView Full Solution
25211ECUincorrect engine softwareView Full Solution
2532ECUcustomer or system parametersView Full Solution
25314ECUOEM parameter not programmedView Full Solution
31114ATDactive regeneration inhibited due to low exhaust temperatureView Full Solution
3143clean gas inductionCGI pressure sensor voltage above normalView Full Solution
3144clean gas inductionCGI pressure sensor voltage below normalView Full Solution
3152clean gas inductionCGI temp highView Full Solution
3153clean gas inductionCGI temp sensor voltage above normalView Full Solution
3154clean gas inductionCGI temp sensor voltage below normalView Full Solution
3160clean gas inductionCGI flow rate highView Full Solution
3163clean gas inductionCGI temp sensor voltage above normalView Full Solution
3164clean gas inductionCGI temp sensor voltage below normalView Full Solution
31611clean gas inductionCGI flow rate highView Full Solution
31614clean gas inductionCGI flow rate lowView Full Solution
3175clean gas inductionCGI actuator shaft current below normalView Full Solution
3176clean gas inductionCGI actuator shaft current above normalView Full Solution
3240ATDATD differential pressure above limitsView Full Solution
3200ATDATD filter temperature highView Full Solution
3201ATDATD filter temperature highView Full Solution
32011ATDATD filter temperature very highView Full Solution
3203ATDATD filter temperature sensor voltage above normalView Full Solution
3204ATDATD filter temperature sensor voltage below normalView Full Solution
32411ATDATD differntial pressure, high filter restrictionView Full Solution
3243ATDATD differential pressure voltage above normalView Full Solution
3244ATDATD differential pressure voltage below normalView Full Solution
3242ATDATD differential pressure signal erratic View Full Solution
3241ATDATD differential pressure , filter restricted View Full Solution
3240ATDATD differential pressure above limitsView Full Solution
3272ATDATD exhaust gas temperature 2 data drifted highView Full Solution
3273ATDATD exhaust gas temperature 2 voltage above normalView Full Solution
3274ATDATD exhaust gas temperature 2 voltage below normalView Full Solution
3323aftertreatment fuel pressure controlaftertreatment fuel pressure sensor voltage above normalView Full Solution
3324aftertreatment fuel pressure controlaftertreatment fuel pressure sensor voltage below normalView Full Solution
33211aftertreatment fuel pressure controlaftertreatment fuel presuure highView Full Solution
3335aftertreatment fuel pressure controlARD solenoid current abovenormalView Full Solution
3336aftertreatment fuel pressure controlARD solenoid current above normalView Full Solution
3345aftertreatment fuel actuatorARD solenoid current below normalView Full Solution
3346aftertreatment fuel actuatorARD solenoid current above normalView Full Solution
3355aftertreatment ignitionARD ignition current below normalView Full Solution
3356aftertreatment ignitionARD ignition current above normalView Full Solution
3363aftertreatment 2 fuel pressuresensor voltage above normalView Full Solution
3364aftertreatment 2 fuel pressuresensor voltage below normalView Full Solution
33611aftertreatment 2 fuel pressurefuel pressure highView Full Solution
3415aftertreatment purge air actuatorARD purge air current below normalView Full Solution
3416aftertreatment purge air actuatorARD purge air current above normalView Full Solution
3491aftertreatment purge air actuatorARD purge air pressure lowView Full Solution
3497aftertreatment purge air actuatorARD purge pressure not respondingView Full Solution
3505aftertreatment air pressure controlARD solenoid  current below normalView Full Solution
3506aftertreatment air pressure controlARD solenoid current above normalView Full Solution
3507aftertreatment air pressure controlARD solenoid not respondingView Full Solution
35611ATDARD failed to igniteView Full Solution
35711ATDARD loss of ignitionView Full Solution
36011aftertreatment parked regen manually disabledView Full Solution
3733ATD secondary differntial pressuresensor voltage above normalView Full Solution
3734ATD secondary differntial pressuresensor voltage below normalView Full Solution
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Cummins Engine Fault Codes list https://beznez.net/cummins-engine-fault-codes-list/ https://beznez.net/cummins-engine-fault-codes-list/#respond Wed, 20 Sep 2023 09:27:26 +0000 https://beznez.net/?p=940 Cummins Fault Codes list for QSB, QSC, QSL9, QSM11, QSX15, QSK19, QSK23, QST30, QSK45, QSK60, QSK78 engines

See also: Cummins Engine non-EGR Fault Codes

To determine the malfunction, you just need to write out the fault code from the device in the cab and find the codes in the table by selecting your own engine type.Show 102550100 entriesSearch:

FAULT CODE (LAMP)SID, PID FMISPN
IMF
DESCRIPTION
111
Red
S254
12
629
12
Engine control Unit-critical internal error
112
Red
S020
7
635
7
The injection syncer does not respond to the commands of the control unit
113
Yellow
S020
3
635
3
Injection timing chain-short circuit
114
Yellow
S020
4
635
4
Injection synchronisation chain-chain break
115
Red
P190
2
190
2
Circuit of the speed sensor and the position of the crankshaft-no two signals from the sensor
116
Red
P156
3
156
3
Circuit of the pressure sensor in the highway control the angle of fuel injection-short circuit
117
Red
P156
4
156
4
Circuit of the pressure sensor in the line of control of the fuel injection lead angle-chain breakage
118
Yellow
P135
3
135
3
Circuit of the fuel pressure sensor in the fuel pump-short circuit
119
Yellow
P135
4
135
4
Circuit of the fuel pressure sensor in the fuel pump-breakage of a chain
121
Yellow
P190
10
190
10
Circuit of the speed sensor and the position of the crankshaft-the absence of one of the two sensor signals
122
Yellow
P102
3
102
3
Pressure sensor in Inlet manifold № 1-Short circuit
123
Yellow
P102
4
102
4
Pressure sensor in the inlet manifold № 1-chain breakage
124*
Yellow
102
16
High pressure in inlet manifold (left row of cylinders)
125*
None
102
18
Low pressure in inlet manifold (left row of cylinders)
126*
Yellow
1129
16
High pressure in inlet manifold (right row of cylinders)
127*
None
1129
18
Low pressure in inlet manifold (right row of cylinders)
128*
None
1129
3
Pressure sensor in Inlet manifold (right row of cylinders)-Short circuit
129*
None
1129
4
Pressure sensor in Inlet manifold (right row of cylinders)-chain breakage
131
Red
P091
3
91
3
Accelerator pedal position sensor circuit-short circuit
132
Red
P091
4
91
4
Accelerator pedal position sensor chain-chain breakage
133
Red
P029
3
974
3
Sensor Circuit of the remote accelerator pedal-short circuit
133
Red
P029
3
29
3
Sensor Circuit of the remote accelerator pedal-short circuit
134
Red
P029
4
974
4
Circuit of the position sensor of the remote accelerator pedal-chain breakage
134
Red
P029
4
29
4
Circuit of the position sensor of the remote accelerator pedal-chain breakage
135
Yellow
P100
3
100
3
Engine oil pressure sensor circuit-short circuit
136*
None
1028
3
System Oil pressure sensor chain Prelube -Short Circuit
137*
None
1028
4
System Oil pressure sensor chain Prelube -Chain breakage
141
Yellow
P100
4
100
4
Chain of the oil pressure sensor in the engine-chain breakage
143
Yellow
P100
1
100
18
Low oil pressure in the engine
143
White
P100
1
100
1
Low oil pressure in the engine
144
Yellow
P110
3
110
3
Coolant temperature sensor circuit-short circuit
145
Yellow
P110
4
110
4
Coolant temperature sensor chain-chain break
146
Yellow
P110
0
110
16
High coolant temperature
147
Red
P091
8
91
8
Accelerator pedal position sensor circuit-low frequency
148
Red
P091
8
91
8
Accelerator pedal position sensor chain-high frequency
151
Red
P110
0
110
0
Dangerously high coolant temperature
151
White
P110
0
110
0
Dangerously high coolant temperature
153
Yellow
P105
3
105
3
№ 1 temperature sensor circuit in inlet manifold-short circuit
154
Yellow
P105
4
105
4
№ 1 temperature sensor chain in inlet manifold-chain breakage
155
Red
P105
0
105
0
Dangerously high air temperature in the inlet manifold
155
White
P105
0
105
0
Dangerously high air temperature in the inlet manifold
156*
Yellow
1131
3
Rear temperature sensor in inlet manifold (left row)-Short circuit
157*
Yellow
1131
4
Rear temperature sensor in inlet manifold (left row)-chain breakage
158*
White
1131
0
High air temperature in inlet manifold (rear sensor, left row of cylinders)
159*
Yellow
1132
3
Rear temperature sensor in inlet manifold (right row)-short circuit
161*
Yellow
1132
4
The front temperature sensor in the inlet Collector (right row)-chain breakage
162*
White
1132
0
High air temperature in inlet manifold (front sensor, right row of cylinders)
163*
Yellow
1133
3
Rear temperature sensor in inlet manifold (right row)-short circuit
164*
Yellow
1133
4
Rear temperature sensor in inlet manifold (right row)-chain breakage
165*
White
1133
0
High air temperature in inlet manifold (rear sensor, right row of cylinders)
166
Yellow
S024
3
733
3
№ sensor chain 1 position of the fuel pump -Short Circuit
172
Red
S023
6
638
6
№ sensor chain 1 position of the fuel pump
173
Yellow
S023
7
638
7
Mechanical jamming of the fuel pump
184
Yellow
S233
2
609
2
Misuse of electronic engine control unit
185
Yellow
S231
2
639
2
Failed to communicate with engine control unit
187
Yellow
S232
4
620Low voltage on the № Line 1 power supply sensors of the engine control unit
211
None
S216
11
1484
31
Fault codes detected in other control units were found. Verification is required.
211*
None
613
14
Fault codes detected in other control units were found. Verification is required.
212
Yellow
P175
3
175
3
Engine oil temperature sensor circuit-short circuit
212*
Yellow
P175
3
175
3
Engine oil temperature sensor circuit-short circuit
213
Yellow
P175
4
175
4
Circuit of the oil temperature sensor in the engine-chain breakage
213*
Yellow
175
4
Circuit of the oil temperature sensor in the engine-chain breakage
214
Red
P175
0
175
0
Dangerous High Temperature of engine oils
214*
White
175
0
Dangerous High Temperature engine oils
219
Maint.
P17
1
1380
17
Low oil level in oil tank system Centinel
219
White
P17
1
1380
1
Low oil level in oil tank system Centinel
221
Yellow
P108
3
108
3
Atmospheric pressure sensor circuit-short circuit
222
Yellow
P108
4
108
4
Atmospheric pressure sensor circuit-chain breakage
223
Yellow
S085
4
1265
4
Oil supply valve chain for combustion system Centinel -Chain breakage
225
Yellow
S086
4
1266
4
Valve CHAIN Oil Addition system Centinel -Chain breakage
227
Yellow
S232
3
620
3
High voltage on the № Line 2 power supply sensors of the engine control unit
231
Yellow
P109
3
109
3
Cooling liquid pressure sensor circuit-short circuit
232
Yellow
P109
4
109
4
Cooling liquid pressure sensor chain-chain breakage
233
Yellow
P109
1
109
18
Low coolant pressure
233
White
P109
1
109
1
Low coolant pressure
234
Red
P190
0
190
0
Dangerous high engine speed
235
Red
P111
1
111
1
Dangerous low coolant level
235
White
P111
1
111
1
Dangerous low coolant level
237
Yellow
S030
2
644
2
Multiengine synchronization-Incorrect external speed data
241
Yellow
P084
2
84
2
Speed sensor circuit-incorrect data
242
Yellow
P084
10
84
10
Speed sensor-evidence tampering detected
243
Yellow
P121
4
513
4
Motor Brake № 1 Drive-Chain break
245
Yellow
S033
4
647
4
Fan drive coupling chain-chain breakage
252
Yellow
P098
2
98
2
№ sensor chain 1 oil level in the engine-incorrect data
253
White
P098
1
98
1
№ Sensor 1 Oil level in the engine-dangerous low oil level
254
Red
S017
4
632
4
Fuel cut-off valve chain-chain breakage
254
None
S017
4
632
4
Fuel cut-off valve chain-chain breakage
255
Yellow
S017
3
632
3
Fuel cut-off valve circuit-short circuit
259
Red
S017
7
632
7
Fuel cut-off valve-jamming in open position
261
Yellow
P174
0
174
16
High fuel temperature
263
Yellow
P174
3
174
3
Fuel temperature sensor circuit-short circuit
264
Yellow
P174
11
174
11
Fuel temperature sensor circuit-incorrect data
265
Yellow
P174
4
174
4
Fuel temperature sensor circuit-chain breakage
268
Yellow
P094
2
94
2
Fuel pressure sensor circuit-incorrect data
271
Yellow
S126
4
1347Control valve Circuit № 1 high Fuel pressure-chain breakage
272
Yellow
S126
3
1347
3
№ 1 high-pressure monitoring valve chain-short circuit
273
Yellow
S127
4
1348
4
№ 2 high-pressure control valve chain-chain breakage
274
Yellow
S127
3
1348
3
№ 2 high-pressure monitoring valve chain-short circuit
275
Yellow
S126
7
1347
7
Injection VALVE № 1 fuel pump-mechanical seizing
276
Yellow
S018
3
633
3
Fuel dosage valve Chain/Uov regulation-Short circuit
FAULT CODE (LAMP)SID, PID FMISPN
IMF
DESCRIPTION
277
Yellow
S018
7
633
7
Fuel dosing valve/UOV regulation-Mechanical seizing
278
Yellow
P073
11
1075
11
Booster pump control circuit-short circuit/chain breakage
279
Yellow
S018
4
633
4
Fuel dosage valve Chain/uov regulation-chain breakage
281
Yellow
S126
7
1347
7
Control Valve № 1 High-pressure fuel-mechanical seizing
282
Yellow
S127
7
1348
7
Control Valve № 2 High-pressure fuel-mechanical seizing
283
Yellow
S221
3
1043
3
Power supply circuit of the speed/position sensor Pistons Engine-Short circuit
284
Yellow
S221
4
1043
4
Power supply circuit of the engine pistons/position-chain break
285
Yellow
S231
9
639
9
No response from the device transmitted on the bus J1939
286
Yellow
S231
13
639
13
Incorrect transmission of J1939 data from the device to the bus
287
Red
P091
2
91
19
Incorrect data transmission on the J1939 bus from the pedal position sensor
288
Red
P029
2
974
19
Incorrect data transmission on the J1939 bus from the position sensor of the remote pedal
292
White
P223
14
1083
14
Additional temperature sensor № 1-Dangerous high readings
293
Yellow
S441
3
441
3
Additional temperature sensor № 1-Short circuit
293
Yellow
S223
3
1083
3
Additional temperature sensor № 1-Short circuit
293
Yellow
S154
3
1083
3
Additional temperature sensor № 1-Short circuit
294
Yellow
S441
4
441
4
Additional temperature sensor № 1-chain break
294
Yellow
P223
4
1083
4
Additional temperature sensor № 1-chain break
294
Yellow
S154
4
1083
4
Additional temperature sensor № 1-chain break
295
Yellow
P108
2
108
2
Atmospheric pressure sensor circuit-incorrect data
296
Red
P223
14
1837
14
Additional pressure sensor № 2-Dangerous high readings
296
White
P223
14
1084
14
Additional pressure sensor № 2-Dangerous high readings
297
Yellow
P223
3
1387
3
Additional pressure sensor № 2-Short circuit
297
Yellow
P223
3
1084
3
Additional pressure sensor № 2-Short circuit
298
Yellow
P223
4
1387
4
Additional pressure sensor № 2-chain break
298
Yellow
P223
4
1084
4
Additional pressure sensor № 2-chain break
299
None
S117
14
1384
31
Force Stop Engine
299
Yellow
S117
11
1384
31
Force Stop Engine
311
Yellow
S001
6
651
6
Circuit of the control valve of the nozzle № 1-a circuit on a weight
312
Yellow
S005
6
655
6
Circuit of the control valve of the nozzle № 5-circuit on mass
313
Yellow
S003
6
653
6
Circuit of the control valve of the nozzle № 3-a circuit on a weight
314
Yellow
S006
6
656
6
№ Nozzle Control Valve Chain 6-circuit to Mass
315
Yellow
S002
6
652
6
№ Nozzle Control Valve CHAIN 2-circuit to Mass
316
Yellow
S078
3
931
3
Chain Actuator Toplivopodajushhego Pump-Short circuit
318
Yellow
S078
7
931
7
Actuator Toplivopodajushhego Pump-Mechanical seizing
319
Maint.
P251
2
251
2
Clock electronic engine control unit-power loss
321
Yellow
S004
6
654
6
Circuit of the control valve of the nozzle № 4-circuit to the mass
322
Yellow
S001
5
651
5
Circuit of the control valve of the nozzle № 1-breakage of a chain
323
Yellow
S005
5
655
5
Circuit of the control valve of the nozzle № 5-breakage of a chain
324
Yellow
S003
5
653
5
Circuit of the control valve of the nozzle № 3-breakage of a chain
325
Yellow
S006
5
656
5
№ Nozzle Control Valve chain 6-chain breakage
328
Yellow
S152
7
1348
7
Injection VALVE № 2 pump-mechanical seizing
329
Yellow
S233
14
1077
14
Disruption of fuel system-fuel flow
331
Yellow
S002
5
652
5
№ Nozzle Control Valve CHAIN 2-chain breakage
332
Yellow
S004
5
654
5
Circuit of the control valve of the nozzle № 4-breakage of a chain
341
Yellow
S253
2
630
2
Electronic engine control unit-data loss
342
Red
S253
13
630
13
Electronic engine control Unit-Calibration error
343
Yellow
S254
12
629
12
Electronic engine control Unit-Internal device error
346
Yellow
S253
12
630
12
Electronic engine Control Unit-Internal program error
349
Yellow
P191
0
191
16
Transmission output shaft (rowing shaft)-High speed
349
Yellow
P191
0
191
0
Transmission output shaft (rowing shaft)-High speed
352
Yellow
S232
4
1079
4
Breakage of the line № 1 power supply of sensors of the engine control unit
361
Red
S251
3
1076
3
Fuel Control Valve circuit-short
362
Yellow
S251
4
1076
4
Fuel Control valve chain-chain breakage
363
Yellow
S251
7
1076
7
Control valve Fuel-mechanical seizing
364
Yellow
S233
9
1077
9
Pump control Unit-CAN connection error
365
Yellow
S233
4
1077
4
Fuel pump control unit, power supply chain-break chain
366
Yellow
S233
2
1077
2
Pump control unit, power supply circuit-incorrect data
367
Yellow
P190
11
1078
11
Pump control Unit-Injection angle correction sensor error
368
Yellow
S254
8
1078
8
Pump control Unit-Injection Angle selection Error
369
Yellow
P190
2
1078
2
Pump Control Unit-Sync error
372
Yellow
S233
11
1077
11
Pump control Unit-failure to identify idle stroke
373
Red
S233
3
1077
3
Pump control Unit-error of control valve termination fuel
374
Yellow
S233
12
1077
12
Pump control unit-Self-diagnosis error
375
Yellow
S254
2
629
2
Pump Control Unit-Calibration error
376
Yellow
S233
13
1077
13
Pump control unit-mismatch fuel or engine speed
377
Yellow
S233
7
1077
7
Pump control Unit-Freeze relay
378
Yellow
S018
5
633
5
Chain Actuator Fuel № 1-chain breakage
379         
Yellow
S018
6
633
6
Chain Actuator Fuel № 1-circuit to Mass
381
Yellow
S237
11
626
11
Relay № 1 Air heater in inlet manifold-incorrect data
382
Yellow
S237
11
626
11
Relay № 2 Air heaters in the inlet Collector-Incorrect data
384
Yellow
S237
11
626
11
Installation of air injection-a failure in the control circuit
385
Yellow
S232
11
620
3
Consumer sensor power supply circuit-short circuit
386
Yellow
S232
3
1079
3
Circuit № 1 Power sensor engine-short circuit
387
Yellow
S221
3
1043
3
Accelerator pedal position Sensor power supply circuit-short circuit
389
Yellow
S033
11
647
11
Fan Clutch chain failure
391
Yellow
S017
11
632
11
Failure in the power supply circuit of the shutdown valve fuel
391
Yellow
S017
11
632
11
Failure in the power supply circuit of the shutdown valve fuel
394
Yellow
S020
5
635
5
Chain Actuator № Injection Angle 1-chain break
395
Yellow
S020
6
635
6
Chain Actuator Angle of injection № 1-circuit to Mass
396
Yellow
S083
5
1244
5
Chain Actuator Fuel № 2-chain breakage
397
Yellow
S083
6
1244
6
Chain Actuator Fuel № 2-circuit to the mass
398
Yellow
S084
5
1245
5
Chain Actuator № Injection Angle 2-chain break
399
Yellow
S084
6
1245
6
Chain Actuator Angle of Injection № 2-circuit to Mass
414*
Yellow
S250
9
608
9
Communication Error j1587
415
Red
P100
1
100
1
Dangerous low oil pressure in the engine
415
Level1
P100
1
100
1
Dangerous low oil pressure in the engine
418
WIF/Maint.
P097
0
97
15
High water level in fuel filter-maintenance required
419
Yellow
1319
2
Inlet pressure-imbalance
422
Yellow
P111
2
111
2
Coolant level sensor chain-incorrect data
423
Yellow
P156
2
156
2
Control pressure or solenoid stick in the Aktuatore Uov
426
None
S231
2
639
2
J1939 data Bus-inability to transfer data
426*
None
639
2
J1939 data Bus-inability to transfer data
427
None
S231639
9
J1939 data Bus-not fast enough
428
None
P097
3
97
3
Water sensor circuit in fuel-short circuit
429
Yellow
P097
4
97
4
Circuit of the presence of water in the fuel-breakage of a chain
431
Yellow
S230
2
558
2
Accelerator pedal sensor circuit-incorrect data
431
Yellow
P091
2
91
2
Accelerator pedal sensor circuit-incorrect data
432
Red
S230
13
558
13
Accelerator pedal sensor Circuit-calibration error
432
Red
P091
13
91
13
Accelerator pedal sensor Circuit-calibration error
433
Yellow
P102
2
102
2
Chain of air pressure sensor in inlet manifold-incorrect data
FAULT CODE (LAMP)SID, PID FMISPN
IMF
DESCRIPTION
434
Yellow
S251
2
627
2
Power loss on the ECU when the ignition key position is on
435
Yellow
P100
2
100
2
Engine oil pressure sensor chain-incorrect data
441
Yellow
P168
1
168
18
Low battery voltage
441
None
P168
1
168
1
Low battery voltage
442
Yellow
P168
0
168
16
High battery voltage
442
Yellow
P168
0
168
0
High battery voltage
443
Yellow
S221
4
1043
4
Power supply chain of accelerator pedal position-chain break
444
Yellow
S232
1
620
18
Low voltage on the voltage supply line of consumer sensors
446*
None
N/AGSP Connection Error
447*
None
N/ARPC Number not supported
448*
None
N/ARPC argument mismatch
449
Yellow
P094
0
94
16
High Fuel pressure
451
Yellow
P157
3
157
3
Circuit Sensor № 1 dosing fuel in the fuel line-short circuit
451
Red
P157
3
157
3
Circuit Sensor № 1 dosing fuel in the fuel line-short circuit
452
Yellow
P157
4
157
4
№ sensor chain 1 dosing of fuel in the fuel line-breakage of the chain
452
Red
P157
4
157
4
№ sensor chain 1 dosing of fuel in the fuel line-breakage of the chain
455
Red
S018
3
633
3
Fuel dosage valve chain-short circuit
466
Yellow
S032
4
1188
4
Boost pressure regulator circuit-chain breakage
467
Yellow
S020
2
635
2
Chain Actuator Injection angle-incorrect data
468
Yellow
S018
2
633
2
Chain Actuator Fuel-incorrect data
471
Maint.
P098
1
98
1
Low oil level in the engine-maintenance required
472
Maint.
P017
2
1380
2
Low oil level in the engine (Sensor № 2)- Maintenance required
473
Yellow
P017
2
1380
2
Low oil level in the engine (Sensor № 2)-Attention!
479*
None
1318
9
Exhaust temperature imbalance by engine series
482
Yellow
P094
1
94
18
Low fuel pressure-attention!
483
Yellow
P129
3
1349
3
Sensor Circuit № 2 dosing of fuel in the fuel line-short circuit
484
Yellow
P129
4
1349
4
Sensor Circuit № 2 dosing of fuel in the fuel line-breakage of the chain
485
Yellow
P129
0
1349
16
Sensor № 2 dosing of fuel in the fuel line-high pressure
486
Yellow
P129
1
1349
18
Sensor № 2 dosing of fuel in the fuel line-low pressure
487
Yellow
S237
1
626
1
Air injection installation-empty capacity
488
Yellow
P105
0
105
16
High air temperature in inlet manifold
489
Yellow
P191
1
191
18
Transmission output shaft (rowing shaft)-Low speed
489
Yellow
P191
1
191
1
Transmission output shaft (rowing shaft)-Low speed
493S018
13
1076
13
Fuel correction chain-Failed
496
Yellow
S221
11
1043
11
Power supply circuit of the speed sensor/piston engine position-failure
497
Yellow
S114
2
1377
2
The circuit of the switch of activation of Multimotor synchronization-incorrect data
514
Red
S018
7
633
7
Fuel injection control valve-mechanical seizing
515
Yellow
P091
3
91
3
Circuit of the accelerator pedal position frequency sensor-short circuit
516
Yellow
P091
4
91
4
Circuit of the accelerator pedal position frequency sensor-chain break
517
Yellow
S251
12
1076
12
Fuel metering solenoid-faulty device
524
Yellow
P113
2
113
2
Adjusting slope selector Switch-incorrect data
527
Yellow
P154
3
702
3
Programmable output Circuit № 2-short circuit
527
Yellow
S040
3
702
3
Programmable output Circuit № 2-short circuit
528
Yellow
P093
2
93
2
Alternate torque curve Selector-incorrect data
529
Yellow
S051
3
703
3
Programmable output Circuit № 3-short circuit
539
Yellow
S018
11
633
11
Fuel injection Control Valve-failure
546
Yellow
P094
3
94
3
Fuel supply valve chain-short circuit
547
Yellow
P094
4
94
4
Fuel supply valve chain-chain breakage
551
Yellow
S230
4
558
4
Accelerator pedal sensor circuit-chain break
551
Red
P091
4
91
4
Accelerator pedal sensor circuit-chain break
553
Yellow
P157
0
157
16
High pressure in the fuel line (pressure sensor № 1)
553
Red
P157
0
157
16
High pressure in the fuel line (pressure sensor № 1)
554
Yellow
P157
2
157
2
Fuel Pressure sensor failure
555
Yellow
P022
0
1264
16
Breakthrough gases in the crankcase engine
555
White
P022
0
1264
0
Breakthrough gases in the crankcase engine
581
Yellow
P015
3
1381
3
Fuel supply pressure sensor circuit-short circuit
582
Yellow
P015
4
1381
4
Fuel supply pressure sensor chain-chain breakage
583
Yellow
P015
1
1381
18
Low pressure in the fuel supply line
595
Yellow
P103
0
103
16
High Speed turbocharger shaft
596
Yellow
P167
0
167
16
High level of charge from the generator
597
Yellow
P167
1
167
18
Low charge level with generator
598
Red
P167
1
167
1
Dangerous low charge level with generator
599
Red
S025
14
640
14
Engine shutdown via programmable output
611
None
S151
11
1383
31
Engine stop-overheating
611
None
S151
14
1383
31
Engine stop-overheating
612*
Red
99
1
High resistance in the oil filter
616*
None
1173
16
High temperature at the inlet of the turbocharger (right row of cylinders)
617*
None
1172
0
High temperature at the inlet of the turbocharger (left row of cylinders)
621*
Yellow
1137
18
Low Power cylinder № 1 (left row of cylinders)
622*
Yellow
1138
18
Low Power cylinder № 2 (left row of cylinders)
623*
Yellow
1139
18
Low power of the cylinder № 3 (left row of cylinders)
624*
Yellow
1140
18
Low power of the cylinder № 4 (left row of cylinders)
625*
Yellow
1141
18
Low Power cylinder № 5 (left row of cylinders)
626*
Yellow
1142
18
Low Power cylinder № 6 (left row of cylinders)
627*
Yellow
1143
18
Low power of the cylinder № 7 (left row of cylinders)
628*
Yellow
1144
18
Low Power cylinder № 8 (left row of cylinders)
631*
Yellow
1143
45
Low Power cylinder № 1 (right row of cylinders)
631*
Yellow
1329
1
Low Power cylinder № 1 (right row of cylinders)
632*
Yellow
1144
45
Low power of the cylinder № 2 (right row of cylinders)
632*
Yellow
1329
1
Low power of the cylinder № 2 (right row of cylinders)
633*
Yellow
1145
45
Low power of the cylinder № 3 (right row of cylinders)
633*
Yellow
1329
1
Low power of the cylinder № 3 (right row of cylinders)
634*
Yellow
1146
45
Low power of the cylinder № 4 (right row of cylinders)
634*
Yellow
1329
1
Low power of the cylinder № 4 (right row of cylinders)
635*
Yellow
1147
45
Low Power cylinder № 5 (right row of cylinders)
635*
Yellow
1329
1
Low Power cylinder № 5 (right row of cylinders)
636*
Yellow
1148
45
Low power of the cylinder № 6 (right row of cylinders)
636*
Yellow
1329
1
Low power of the cylinder № 6 (right row of cylinders)
637*
Yellow
1151
18
Low power of the cylinder № 7 (right row of cylinders)
638*
Yellow
1152
18
Low Power cylinder № 8 (right row of cylinders)
641*
Red
1137
0
High temperature of exhaust gas cylinder № 1 (left row of cylinders)
642*
Red
1138
0
High temperature of exhaust gas cylinder № 2 (left row of cylinders)
643*
Red
1139
0
High temperature of exhaust gas cylinder № 3 (left row of cylinders)
644*
Red
1140
0
High temperature of exhaust gas cylinder № 4 (left row of cylinders)
645*
Red
1141
0
High temperature of exhaust gas cylinder № 5 (left row of cylinders)
646*
Red
1142
0
High temperature exhaust Gas cylinder № 6 (left row of cylinders)
647*
Red
1143
0
High temperature of exhaust gas cylinder № 7 (left row of cylinders)
648*
Red
1144
0
High temperature of exhaust gas cylinder № 8 (left row of cylinders)
649
None
S115
0
1378
0
Oil and oil filter need to be replaced
651*
Red
1143
30, 45
High temperature of exhaust gas cylinder № 1 (right row of cylinders)
FAULT CODE (LAMP)SID, PID FMISPN
IMF
DESCRIPTION
652*
Red
1144
30, 45
High temperature of exhaust gas cylinder № 2 (right row of cylinders)
653*
Red
1145
30, 45
High temperature of exhaust gas cylinder № 3 (right row of cylinders)
654*
Red
1146
30, 45
High temperature of exhaust gas cylinder № 4 (right row of cylinders)
655*
Red
1147
30, 45
High temperature of exhaust gas cylinder № 5 (right row of cylinders)
656*
Red
1148
30, 45
High temperature exhaust Gas cylinder № 6 (right row of cylinders)
657*
Red
1150
0
High temperature of exhaust gas cylinder № 7 (right row of cylinders)
658*
Red
1151
0
High temperature of exhaust gas cylinder № 8 (right row of cylinders)
659*
None
Fuel Filter Replacement Required
661*
Yellow
1137
16
Inflated cylinder power № 1 (left row of cylinders)
661*
Yellow
1323
0
Inflated cylinder power № 1 (left row of cylinders)
662*
Yellow
1138
16
Overpowered cylinder № 2 (left row of cylinders)
662*
Yellow
1324
0
Overpowered cylinder № 2 (left row of cylinders)
663*
Yellow
1139
16
Overpowered cylinder № 3 (left row of cylinders)
663*
Yellow
1325
0
Overpowered cylinder № 3 (left row of cylinders)
664*
Yellow
1140
16
Inflated cylinder capacity of № 4 (left row of cylinders)
664*
Yellow
1326
0
Inflated cylinder capacity of № 4 (left row of cylinders)
665*
Yellow
1141
16
Inflated cylinder capacity of № 5 (left row of cylinders)
665*
Yellow
1327
0
Inflated cylinder capacity of № 5 (left row of cylinders)
666*
Yellow
1142
16
Inflated cylinder capacity of № 6 (left row of cylinders)
666*
Yellow
1328
0
Inflated cylinder capacity of № 6 (left row of cylinders)
667*
Yellow
1143
16
Overpowered cylinder № 7 (left row of cylinders)
668*
Yellow
1144
16
Overpowered cylinder № 8 (left row of cylinders)
669*
None
Need to replace the coolant filter
671*
None
1137
4
Loss of signal from the temperature sensor of the exhaust gas cylinder № 1 (left row of cylinders)
672*
None
1138
4
Loss of signal from the temperature sensor of the exhaust gas cylinder № 2 (left row of cylinders)
673*
None
1139
4
Loss of signal from the temperature sensor of the exhaust gas cylinder № 3 (left row of cylinders)
674*
None
1140
4
Loss of signal from the temperature sensor of the exhaust gas cylinder № 4 (left row of cylinders)
675*
None
1141
4
Loss of signal from the temperature sensor of the exhaust gas cylinder № 5 (left row of cylinders)
676*
None
1142
4
Loss of signal from the temperature sensor of the exhaust gas cylinder № 6 (left row of cylinders)
677*
None
1143
4
Loss of signal from the temperature sensor of the exhaust gas cylinder № 7 (left row of cylinders)
678*
None
1144
4
Loss of signal from the temperature sensor of the exhaust gas cylinder № 8 (left row of cylinders)
679*
None
Coolant replacement Required
691*
None
1172
3
Circuit of the air temperature sensor at the entrance to the turbocharger-short circuit (left row of cylinders, first stage)
692*
None
1172
4
Circuit of the air temperature sensor at the entrance to the turbocharger-breakage of the chain (left row of cylinders, second stage)
694*
None
1173
3
Circuit of the air temperature sensor at the entrance to the turbocharger-short circuit (right row of cylinders, first stage)
695*
None
1174
4
Circuit of the air temperature sensor at the entrance to the turbocharger-breakage of the chain (right row of cylinders, second stage)
711*
None
1143
-45
1145
(60)       16
High power in 1m cylinder (right row of cylinders)
711*
None
1329
0
High power in 1m cylinder (right row of cylinders)
712*
None
1144
(45)
1146
(60)
16
High power in 2m cylinder (right row of cylinders)
712*
None
1330
0
High power in 2m cylinder (right row of cylinders)
713*
None
1331
0
High power in 3m cylinder (right row of cylinders)
714*
None
1146
(45)
1148
60)
16
High power in the 4m cylinder (right row of cylinders)
714*
Yellow
1332
0
High power in the 4m cylinder (right row of cylinders)
715*
Yellow
1147
(45)
1148
(60)
16
High power in 5m cylinder (right row of cylinders)
715*
Yellow
1333
0
High power in 5m cylinder (right row of cylinders)
716*
None
1148
(45)
1149
(60)
16
High power in 6m cylinder (right row of cylinders)
716*
Yellow
1334
0
High power in 6m cylinder (right row of cylinders)
717*
Yellow
1150
0
High power in 7m cylinder (right row of cylinders)
718*
Yellow
1151
0
High power in the 8m cylinder (right row of cylinders)
719
Yellow
P022
3
1264
3
Crankcase pressure sensor chain-short circuit
721*
None
1143
(30,45)
1145
(60)
4
Loss of signal from the temperature sensor of the exhaust gas cylinder № 1 (right row of cylinders)
722*
None
1144
(30,45)
1146
(60)
4
Loss of signal from the temperature sensor of the exhaust gas cylinder № 2 (right row of cylinders)
723*
None
1145 (30,45)
1147 (60)
4
Loss of signal from the temperature sensor of the exhaust gas cylinder № 3 (right row of cylinders)
724*
None
1146(30,45)
1148(60)
4
Loss of signal from the temperature sensor of the exhaust gas cylinder № 4 (right row of cylinders)
725*
None
1147(30,45)
1149(60)
4
Loss of signal from the temperature sensor of the exhaust gas cylinder № 5 (right row of cylinders)
726*
None
1148(30,45)
1150(60)
4
Loss of signal from the temperature sensor of the exhaust gas cylinder № 6 (right row of cylinders)
727*
None
1151
4
Loss of signal from the temperature sensor of the exhaust gas cylinder № 7 (right row of cylinders)
728*
None
1152
4
Loss of signal from the temperature sensor of the exhaust gas cylinder № 8 (right row of cylinders)
729
Yellow
P022
4
1264
4
Chain of pressure sensor of crankcase gases-chain breakage
747*
None
Engine parameters fixation system-free memory running out
748*
None
System of fixation of engine parameters-memory is over
749*
None
Engine parameters Recording system at the moment of error occurrence-free memory at the same time
753
None
S064
2
723
2
754*
None
Engine parameters Recording system at the moment of error occurrence-free memory is over
755
Yellow
P157
7
157
7
Incorrect amount of fuel in the nozzle in the One of the first three cylinders.
756*
None
Oil filters need to be replaced.
757*
None
Critical power loss. Loss of data in the engine control unit.
758
Yellow
P129
7
1349
7
Incorrect amount of fuel in the nozzle in one of the cylinders from the 4th to the 6th.
768
Yellow
S009
11
923
11
Signal error from external device (turbocharger Variable geometry or transmission)
777
Yellow
P173
0
1180
0
Increased temperature at the inlet of turbocharger turbine № 1-Warning
779
Yellow
S051
11
703
11
Exceeding the limit value of the parameter of the customer’s equipment at the outlet № 3
783
Red
Frisky increase in temperature in inlet manifold (front manifold left row of cylinders)
951
None
P166
2
166
2
Power imbalance in cylinders
1000
None
The hardware controller has initiated the recording of fault codes
2144*01153
0
High temperature of exhaust gas cylinder № 9 (left row of cylinders)
2145*1154
0
High temperature of the exhaust gas cylinder № 9 (right row of cylinders)
2146*41153
4
Loss of signal from temperature sensor Graduates Gas cylinder № 9 (right row of cylinders)
2147*41154
4
Loss of signal from temperature sensor Graduates Gas cylinder № 9 (left row of cylinders)
2148*01340
16
High power in 9m cylinder (left row of cylinders)
2149*1341
16
High power in 9m cylinder (right row of cylinders)
2151*1340
18
Low power in 9m cylinder (left row of cylinders)
2152*1341
18
Low power in 9m cylinder (right row of cylinders)
2154*
None
611
3
Oil pressure sensor chain after oil filter-short circuit.
2155*
None
611
4
The chain of the oil pressure sensor after the oil filter is a breakage of the chain.
2157*
Red
Sharp rise in temperature in the inlet manifold (rear manifold of the left row of cylinders)
2158*
Red
Sharp rise in temperature in the inlet manifold (front manifold right row of cylinders)
2159*
Red
A sharp rise in the temperature in the inlet manifold (rear Collector Right Series Cylinders)
2194*
Yellow
P223
11
1387
11
Output of the pressure value of the equipment of the customer at the output № 2 beyond the permissible limits, protection operation-warning
2195*
Red
S051
14
703
14
Exceeding the limit value of the parameter of the customer’s equipment at the output № 3, protection operation, critical value
2241*The air temperature in the inlet manifold is too high (the middle collector is the left row of cylinders)
2242*Circuit of the air temperature sensor in the inlet manifold-short circuit (middle collector left row of cylinders)
2243*Circuit of the air temperature sensor in the inlet manifold-breakage of the chain (middle collector left row of cylinders)
2244*Sharp rise in temperature in the inlet manifold (middle collector left row of cylinders)
2245*The air temperature in the inlet manifold is too high (the middle manifold is the right row of cylinders)
2246*Air temperature sensor circuit in inlet manifold-short circuit (medium Collector Right Series Cylinders)
2247*Circuit of the air temperature sensor in the inlet manifold-breakage of the chain (middle manifold right row of cylinders)
2248*Sharp rise in temperature in the inlet manifold (middle manifold right row of cylinders)
2251*High pressurization pressure in the front intermediate cooler
2252*Low boost pressure in the front intermediate cooler
2253*pressurization pressure sensor circuit in the front intermediate cooler-short circuit
]]>
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Cummins ISX engine fault codes https://beznez.net/cummins-isx-engine-fault-codes/ https://beznez.net/cummins-isx-engine-fault-codes/#respond Wed, 20 Sep 2023 09:21:08 +0000 https://beznez.net/?p=937 Cummins engines fault codes list

Error code 111

Engine:

ISF 2.8, ISF 3.8, ISB, QSB, QSC, ISL, QSL, ISM, QSM, ISX, QSX

Error:

ECM internal failure.

Description:

This DTC can only occur if there is a problem inside the ECM. The ECM is not repairable.

Error code 115

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISDe , QSB 3.3

Error:

Loss of signals from the main and backup crankshaft speed / position sensors.

Description:

The ECM detects that the signal inputs of the crankshaft position and camshaft position sensors are connected in reverse order.

Error code 115

Engine:

QSX

Error:

The engine speed signal from the camshaft position sensor is not detected.

Description:

Possible causes for this DTC are damage to the camshaft position sensor, an open or short circuit in the circuit, or a fault in the power circuit.

Error code 121

Engine:

QSX

Error:

The engine speed signal from the crankshaft position sensor is not detected.

Description:

Possible causes for this DTC are damage to the crankshaft position sensor, an open circuit or short circuit in the circuit or a malfunction in the power circuit.

Error Code 122

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

The intake manifold pressure sensor circuit is above normal or short circuit.

Description:

The ECM determines that the voltage signal of the pressure sensor in the intake manifold exceeds the value specified in the calibration for more than 1 second.

Error code 123

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

The intake manifold pressure sensor circuit is undervoltage or short circuit.

Description:

The ECM determines that the voltage signal of the pressure sensor in the intake manifold is less than the value specified in the calibration for more than 1 second.

Error code 124

Engine:

ISB

Error:

Intake manifold pressure sensor circuit – the data is accurate, but exceeds the norm.

Description:

This DTC becomes active when the pressure in the intake manifold exceeds the maximum allowable value for a given engine power rating.

Error code 124

Engine:

QSB 3.3

Error:

The pressure in the intake manifold exceeded the maximum allowable value for a given engine rated power.

Description:

This DTC becomes active when the pressure in the intake manifold exceeds the maximum allowable value for a given engine power rating.

Error code 131

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

A high voltage is detected in the pedal or accelerator lever position sensor circuit.

Description:

The ECM determines that the accelerator pedal position sensor signal voltage exceeds the value specified in the calibration for more than 1 second.

Error code 132

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

A low voltage is detected on the pedal or accelerator lever position sensor circuit.

Description:

The ECM detects that the accelerator pedal signal voltage is out of range (below normal).

Error code 133

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

A high voltage is detected in the signal circuit of the pedal position sensor or the remote control accelerator lever.

Description:

The ECM detects that the signal voltage of the remote control accelerator pedal is out of range (above normal).

Error code 134

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

A low voltage is detected on the pedal or accelerator lever position sensor circuit.

Description:

The ECM detects that the signal voltage of the remote control accelerator pedal is out of range (below normal).

Error code 135

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

A high signal voltage is detected in the oil pressure sensor circuit.

Description:

The ECM determines that the oil pressure sensor signal voltage is greater than 4.75 V DC for more than 16 seconds.

Error Code 141

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

A low signal voltage or an open circuit is detected in the oil pressure sensor circuit.

Description:

The ECM determines that the oil pressure sensor signal voltage is less than 0.25 VDC for more than 16 seconds.

Error Code 144

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

A high signal voltage or an open circuit is detected in the coolant temperature sensor circuit.

Description:

The ECM detects that the coolant temperature sensor signal voltage is greater than 5.13 VDC for more than 1 second.

Error Code 145

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

A low signal voltage is detected in the coolant temperature sensor circuit.

Description:

The ECM detects that the engine coolant temperature signal voltage is out of range (below normal).

Error Code 146

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

Coolant temperature is above the warning limit of the engine protection system.

Description:

The ECM determines that the coolant temperature exceeds the limit specified in the calibration.

Error code 151

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

A coolant temperature sensor signal indicates that it is above the critical limit of the engine protection system.

Description:

The ECM determines that the coolant temperature exceeds the engine protection limit.

Error code 153

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

A high signal voltage is detected in the intake manifold temperature sensor circuit.

Description:

The ECM determines that the voltage signal of the temperature sensor in the intake manifold exceeds the value specified in the calibration for more than 1 second.

Error code 154

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

A low signal voltage is detected in the intake manifold temperature sensor circuit.

Description:

The ECM detects that the voltage signal of the temperature in the intake manifold is out of range (below normal).

Error code 155

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

An intake manifold temperature sensor signal indicates that it is above the critical limit of the engine protection system.

Description:

The ECM detects that the air temperature in the intake manifold exceeds 132 ° C for 5 seconds.

Error Code 175

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM

Error:

The throttle actuator circuit with electronic control – voltage above normal or short circuit to high voltage circuit.

Description:

The ECM detects a short circuit to the power circuit or an open circuit in the power supply circuit of the throttle motor at the inlet.

Error code 176

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM

Error:

The throttle actuator circuit with electronic control – voltage below normal or short circuit to low voltage circuit.

Description:

The ECM detects a short to ground in the throttle actuator motor inlet power circuit.

Error code 177

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM

Error:

Electronically controlled throttle actuator – the reaction of the mechanical system is not correct or the adjustment is broken.

Description:

The ECM detects that the response of the mechanical system throttle with electronic control does not conform to the norm.

Error code 187

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

Sensor Power Circuit – Voltage below normal or short to low voltage circuit.

Description:

The ECM determines that the voltage in the sensor power supply is less than the value specified in the calibration for more than 1 second.

Error Code 191

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM

Error:

A / C clutch signal in the on state indicates a short to ground.

Description:

The ECM determines that the signal from the air conditioning clutch indicates a short circuit.

Error Code 195

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

A high signal voltage is detected in the coolant level sensor circuit.

Description:

The ECM detects that the coolant level signal voltage is out of range (above normal).

Error Code 196

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

A low signal voltage is detected in the coolant level sensor circuit.

Description:

The ECM detects that the coolant level signal voltage is out of range (below normal).

Error Code 197

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

Low coolant level detected.

Description:

The ECM determines that the coolant level is below normal.

Error code 212

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The engine oil temperature sensor circuit is above normal or shorted to high voltage.

Description:

The ECM detects that the oil temperature sensor signal voltage is greater than the value specified in the calibration for more than 1 second.

Error code 213

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The engine oil temperature sensor circuit is undervoltage or shorted to a low voltage circuit.

Description:

The ECM detects that the oil temperature sensor signal voltage is lower than the value specified in the calibration for more than 1 second.

Error Code 214

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

Engine oil temperature is accurate, but above normal is the highest level of severity.

Description:

The ECM detects that the oil temperature exceeds 122 ° C for 5 seconds.

Error code 221

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

A high signal voltage has been detected in the atmospheric pressure sensor circuit.

Description:

The ECM detects that the voltage signal of the atmospheric pressure is out of range (above normal).

Error Code 222

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

A low signal voltage has been detected in the atmospheric pressure sensor circuit.

Description:

The ECM detects that the voltage signal of the atmospheric pressure is out of range (below normal).

Error Code 227

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

Sensor Power Circuit – Voltage above normal or short to high voltage circuit.

Description:

The ECM determines that the voltage in the sensor power supply exceeds the value specified in the calibration for more than 1 second.

Error code 234

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

The engine speed signal indicates that this parameter exceeds the activation limit of the engine protection system.

Description:

The ECM detects that the engine speed exceeds the limit specified in the calibration.

Error code 238

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

A low voltage is detected in the power supply circuit of the engine speed sensor +5 V.

Description:

The ECM detects that the sensor supply voltage is out of range (below normal).

Error code 239

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

A high voltage is detected in the power supply circuit of the 5-volt engine speed sensor.

Description:

The ECM detects that the sensor supply voltage is out of range (above normal).

Error code 241

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

The ECM does not receive a vehicle speed signal, or this signal changes randomly.

Description:

The ECM detects a loss of vehicle speed signal when other engine conditions indicate that the vehicle is in motion.

Error code 242

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

A high signal voltage is detected in the coolant level sensor circuit.

Description:

The ECM detects that the coolant level sensor signal voltage is greater than 5.124 VDC for more than 20 seconds.

Error code 245

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

Fan control circuit – voltage below normal or short circuit to low voltage circuit. A low signal voltage is detected in the fan control circuit when a start command is issued.

Description:

The ECM detects that the PWM signal of the fan control is not equal to the system’s power supply when this signal is set to turn on.

Error code 249

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

A high signal voltage is detected in the ambient temperature sensor circuit.

Description:

The ECM detects that the signal voltage of the ambient temperature is out of range (above normal).

Error code 252

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM

Error:

Engine oil level – chaotic nature or incorrect data.

Description:

The ECM detects a random signal from the oil level sensor.

Error code 253

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM

Error:

Engine oil level – data accurate, but below normal – highest severity level

Description:

The ECM receives a signal from the oil level sensor – a very low oil level is detected.

Error code 254

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The fuel shut-off valve circuit – voltage below normal or short circuit to low voltage circuit.

Description:

The ECM detects that a low voltage has been detected in the fuel shut-off valve circuit.

Error code 255

Engine:

ISF 2.8, ISF 3.8, ISB, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

Fuel shut-off valve circuit – voltage is above normal or short circuit to high voltage circuit.

Description:

The ECM detects an open or short to power source in the fuel shut-off valve circuit.

Error Code 256

Engine:

ISF 2.8, ISF 3.8, ISB, ISL, ISLe , ISDe , ISM

Error:

Ambient Temperature Sensor Circuit 1 – Voltage below normal or short to low voltage circuit.

Description:

The ECM detects that the signal voltage of the ambient temperature sensor is less than 0.12 VDC for more than 1 second.

Error Code 256

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

A low voltage has been detected in the ambient temperature sensor circuit.

Description:

The ECM detects that the signal voltage of the ambient temperature is out of range (below normal).

Error code 257

Engine:

ISF 2.8, ISF 3.8, ISB, ISL, ISLe , ISDe , ISM

Error:

Fuel shut-off valve – the reaction of the mechanical system is not correct, or the adjustment is broken.

Description:

The ECM limits that a mechanical shut-off of the fuel shut-off valve in the open position has occurred, or there is a leak.

Error code 269

Engine:

ISF 2.8, ISF 3.8

Error:

Anti-theft system password check passing indicator – chaotic character or incorrect data. Attempt to start the engine without permission of the anti-theft system.

Description:

This DTC becomes active if the anti-theft system has not been disabled.

Error code 271

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

A low signal voltage is detected in the circuit of the fuel system actuator valve.

Description:

A pulse width modulated signal with a level equal to the system supply voltage when this signal is turned on is not detected in the fuel system actuator valve circuit.

Error code 272

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

A high signal voltage or an open circuit is detected in the circuit of the fuel system actuator valve.

Description:

The ECM detects the presence of a short circuit on the supply circuit, a short circuit between the contacts or an open circuit in the actuator valve of the fuel pump.

Error code 281

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

Fuel Pump Supply Module – Mechanical System Response Does Not Correctly, or Adjustment is Disrupted

Description:

This DTC goes into an active state when a discharge pressure mismatch between two high-pressure plungers is detected in the fuel pump.

Error code 285

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

The ECM does not receive messages from a device connected to the multiplex network in a timely manner or does not receive it at all.

Description:

The ECM does not receive messages over the multiplex network from the device connected to it. The ECM detects an open circuit or short circuit in the J1939 communications wire harness.

Error code 286

Engine:

ISF 2.8, ISF 3.8

Error:

The ECM received only a fraction of the information it expected from the network device.

Description:

The ECM receives an invalid J1939 communication channel message from the multiplex device for more than 1 second.

Error code 287

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

Vehicle Electronic Control Module (VECU), included in the complete equipment, has detected an accelerator fault.

Description:

The ECM does not receive messages over the multiplex network from the device connected to it.

Error code 288

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

Vehicle Electronic Control Module (VECU) has detected a malfunction of the remote control accelerator.

Description:

The J1939 ECM received a message from the VECU unit (complete equipment) indicating that the remote control accelerator signal circuit or remote control switch has a short to high or low voltage circuit.

Error code 291

Engine:

ISF 2.8, ISF 3.8

Error:

Failure of the protected communication channel (communication channel with the complete equipment / vehicle) – the rate of data update does not correspond to the norm. Anti-theft system will not work normally. The engine may not start.

Description:

The ECM cannot communicate with the anti-theft system via J1939 communication channel.

Error code 292

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

Auxiliary temperature sensor input – special instructions.

Description:

Verify the calibration of the electronic control module (ECM).

Error code 293

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

A high signal voltage or an open circuit is detected in the auxiliary temperature sensor circuit of the complete equipment.

Description:

Verify the calibration of the electronic control module (ECM).

Error code 294

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

A low signal voltage is detected in the auxiliary temperature sensor circuit of the complete equipment.

Description:

Verify the calibration of the electronic control module (ECM).

Error code 295

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

Atmospheric pressure – the chaotic nature or irregularity of the data.

Description:

The chaotic nature of the signal of the ambient air pressure sensor during the first turn of the start switch to the ON position.

Error code 296

Engine:

QSB 3.3

Error:

Auxiliary Pressure Sensor Input – Special Instructions

Description:

Verify the calibration of the electronic control module (ECM).

Error code 297

Engine:

QSB 3.3

Error:

A high signal voltage has been detected in the pressure sensor circuit of the complete equipment.

Description:

Verify the calibration of the electronic control module (ECM).

Error code 298

Engine:

QSC 3.3

Error:

A low signal voltage or an open circuit is detected in the auxiliary pressure sensor circuit of the complete equipment.

Description:

Verify the calibration of the electronic control module (ECM).

Error code 311

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The relay circuit of the solenoid valve of the injector of the cylinder 1 – the current is above normal or short to ground. The current detected on the nozzle 1 when the voltage is off.

Description:

The ECM determines that there is a short to the supply circuit, a short to battery plus, or a low injector electromagnet resistance in the injector circuit.

Error code 312

Engine:

ISB, ISD, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The circuit of the relay of the electromagnetic valve of the injector of the cylinder 5 is a current above the norm or a short to ground. The current detected on the nozzle 5 when the voltage is off.

Description:

The ECM determines that there is a short to the supply circuit, a short to battery plus, or a low injector electromagnet resistance in the injector circuit.

Error code 313

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The relay circuit of the cylinder 3 solenoid valve is a current above normal or a short to ground. The current detected on the nozzle 3 when the voltage is off.

Description:

The ECM determines that there is a short to the supply circuit, a short to battery plus, or a low injector electromagnet resistance in the injector circuit.

Error code 314

Engine:

ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The relay circuit of the solenoid 6 solenoid valve is a current above normal or short to ground. The current detected on the nozzle 6 when the voltage is off.

Description:

The ECM determines that there is a short to the supply circuit, a short to battery plus, or a low injector electromagnet resistance in the injector circuit.

Error code 315

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The circuit of the relay of the electromagnetic valve of the injector of the cylinder 2 is a current above the norm or short to ground. The current detected on the nozzle 2 when the voltage is off.

Description:

The ECM determines that there is a short to the supply circuit, a short to battery plus, or a low injector electromagnet resistance in the injector circuit.

Error code 319

Engine:

ISF 2.8, ISF 3.8

Error:

Interrupting the power of a real-time clock is a chaotic character or incorrect data. Loss of power to the real time clock.

Description:

The ECM detects that real-time clock data has been lost due to a power failure.

Error Code 321

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The relay circuit of the solenoid valve of the solenoid valve of the cylinder 4 is a current above normal or short to ground. The current detected on the nozzle 4 when the voltage is off.

Description:

The ECM determines that there is a short to the supply circuit, a short to battery plus, or a low injector electromagnet resistance in the injector circuit.

Error Code 322

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

Nozzle 1 detects a current when the voltage is off.

Description:

The ECM has detected an internal failure in the injector circuit (s). If the current turns out to be higher than normal, the ECM will stop the injection through the faulty injector (s).

Error Code 324

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

Nozzle 3 detects a current when the voltage is off.

Description:

The ECM has detected an internal failure in the injector circuit (s). If the current turns out to be higher than normal, the ECM will stop the injection through the faulty injector (s).

Error Code 331

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

Nozzle 2 detects a current when the voltage is off.

Description:

The ECM has detected an internal failure in the injector circuit (s). If the current turns out to be higher than normal, the ECM will stop the injection through the faulty injector (s).

Error Code 332

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

Nozzle 4 detects a current when the voltage is off.

Description:

The ECM has detected an internal failure in the injector circuit (s). If the current turns out to be higher than normal, the ECM will stop the injection through the faulty injector (s).

Error Code 323

Engine:

ISB, ISC, ISL, ISLe , ISDe

Error:

In the nozzle 5 is detected current when the voltage is off.

Description:

The ECM has detected an internal failure in the injector circuit (s). If the current turns out to be higher than normal, the ECM will stop the injection through the faulty injector (s).

Error code 325

Engine:

ISB, ISC, ISL, ISLe , ISDe

Error:

In the injector 6, the current is detected when the voltage is turned off.

Description:

The ECM has detected an internal failure in the injector circuit (s). If the current turns out to be higher than normal, the ECM will stop the injection through the faulty injector (s).

Error Code 334

Engine:

QSB 3.3

Error:

The coolant temperature signal does not change depending on the engine conditions.

Description:

The ECM detects that the engine coolant temperature signal voltage is out of range.

Error Code 338

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The circuit of the auxiliary relay for switching off the engine during continuous operation at idle is a voltage higher than normal or a short circuit to the high voltage circuit.

Description:

The ECM detects an open or short circuit in the auxiliary engine shut-off circuit for extended idling / ignition operation.

Error code 339

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The circuit of the auxiliary relay for switching off the engine during continuous operation at idle is a voltage below normal or short circuit to a low voltage circuit.

Description:

A low voltage is detected in the auxiliary engine shut-off relay circuit during long-time idling / ignition when the switch-on signal is applied to the relay.

Error code 343

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

ECM Internal Failure Warning – Logic Device Failure. An ECM power supply fault has been detected.

Description:

This DTC is recorded when the ECM internal diagnostic routine detects an internal write or read error in the module.

Error Code 346

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The ECM calibration software is a fault in the logic device.

Description:

The ECM detects an invalid configuration of the contact sensor configuration, which is set using configurable parameters.

Error code 351

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

Injector power supply circuit – Malfunction of a logic device. The injector turn-on voltage measured by the ECM is low.

Description:

The ECM determines that the voltage in the power supply circuit of the injectors is less than the specified value.

Error code 352

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

Injector power supply circuit – Malfunction of a logic device. The injector turn-on voltage measured by the ECM is low.

Description:

The ECM determines that the voltage in the power supply circuit of the injectors is less than the specified value.

Error code 356

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The intake air flow sensor circuit is a voltage above normal or short circuit to a high voltage circuit.

Description:

The ECM determines that the mass air flow sensor signal exceeds the allowable maximum limit.

Error code 357

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The intake air flow sensor circuit is undervoltage or short circuit to a low voltage circuit.

Description:

The ECM determines that the mass air flow sensor signal is less than the minimum allowed limit.

Error code 358

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The intake air flow sensor circuit is a chaotic character or incorrect data.

Description:

The air flow sensor signal does not match the engine operating conditions.

Error Code 386

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

A high voltage has been detected in the sensor 1 power supply circuit.

Description:

The ECM determines that the voltage in the sensor supply circuit is higher than normal.

Error code 415

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

Oil pressure signal indicates that it is below the critical limit of the engine protection system.

Description:

The ECM determines that the oil pressure sensor signal voltage is less than the minimum operating limit.

Error Code 418

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

The signal of water in the fuel – the data is accurate, but above the norm – the lowest level of severity. Water in the fuel filter detected.

Description:

The ECM determines that the water level in the fuel filter is above the level of the sensor.

Error code 425

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

Engine oil temperature — Chaotic or abnormal data

Description:

The ECM determines that the engine oil temperature sensor reads above or below the other sensors installed on the engine after a long engine shutdown.

Error code 427

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

Loss of communication between the ECM and another device over SAE J1939.

Description:

The ECM detects an open circuit or short circuit in the J1939 communications wiring harness.

Error code 428

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

The sensor circuit of the presence of water in the fuel – Voltage above normal or short circuit on the high voltage circuit.

Description:

The ECM determines that the voltage in the sensor signal circuit exceeds 4.95 VDC for 1 second.

Error code 429

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

The sensor circuit of the presence of water in the fuel – Voltage below normal or short circuit on the low voltage circuit.

Description:

The ECM determines that the voltage in the sensor signal circuit is less than 0.05 V dc for 1 second.

Error code 431

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

The idling check sensor circuit is a chaotic character or incorrect data.

Description:

The ECM detects the simultaneous appearance of a voltage signal at the contacts of the presence and absence of idling of the sensor checking the idling. Voltage should only appear in one of the circuits.

Error code 432

Engine :

ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

The circuit for checking the position of the idle stroke of the pedal or accelerator lever is a violation of calibration.

Description:

The ECM determines that the accelerator pedal position sensor and the idle speed sensor signal do not match.

Error code 435

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

The pressure in the main line of the lubrication system – the chaotic nature or incorrect data

Description:

The ECM detects that the oil pressure is higher or lower than other absolute pressure sensors.

Error code 436

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The intake manifold temperature sensor circuit is a chaotic character or incorrect data.

Description:

The ECM determines that the temperature sensor in the intake manifold reads above or below the other sensors installed on the engine after a long engine shutdown.

Error code 441

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

The battery voltage is accurate, but below normal. The ECM supply voltage is below the minimum level.

Description:

The ECM determines that the main battery voltage is less than 6 V DC.

Error code 442

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

The battery voltage is accurate, but above normal. The ECM supply voltage is above maximum level.

Description:

The ECM determines that the main battery voltage is greater than 36 V DC.

Error code 449

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

The circuit of the pressure sensor in the common high pressure fuel line is accurate, but exceeds the norm.

Description:

The ECM detects that the pressure in the common high pressure fuel line is higher than the pressure of the fuel pressure reducing valve.

Error code 451

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

A high signal voltage was detected in the pressure sensor circuit in the common high pressure fuel line.

Description:

The ECM detects that the fuel supply pressure sensor signal voltage is less than 0.20 VDC for more than 1 second.

Error code 452

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

A low signal voltage is detected in the pressure sensor circuit in the common high pressure fuel line.

Description:

The ECM detects that the fuel pressure sensor signal voltage is greater than 4.80 VDC for more than 1 second.

Error code 465

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

Turbocharger bypass valve control circuit – voltage is above normal or short circuit to high voltage circuit.

Description:

The ECM determines that a high voltage has been detected in the turbocharger bypass control circuit.

Error code 466

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

Turbocharger bypass valve control circuit – voltage is below normal or short circuit to low voltage circuit.

Description:

The ECM determines that a low voltage is detected in the turbocharger bypass control circuit.

Error Code 471

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

Engine oil level below normal

Description:

Oil level sensor detected low oil level.

Error Code 477

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The voltage applied to the fluid injection controller for diesel engine exhaust systems is lower than the voltage in the electrical system.

Description:

The fluid injection controller for diesel exhaust systems detects that the battery voltage is below the threshold.

Error Code 478

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The voltage applied to the fluid injection controller for exhaust systems of diesel engines exceeds the voltage in the electrical system.

Description:

The fluid injection controller for diesel exhaust systems detects that the battery voltage exceeds a threshold value.

Error code 488

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

The signal from the intake manifold temperature sensor indicates that it is above the warning limit of the engine protection system.

Description:

The ECM determines that the voltage signal of the temperature sensor in the intake manifold exceeds the calibrated limit set in the ECM

Error Code 491

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

Turbocharger bypass valve control circuit – voltage is above normal or short circuit to high voltage circuit.

Description:

The ECM determines that a high voltage has been detected in the turbocharger bypass control circuit.

Error Code 492

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

Turbocharger bypass valve control circuit – voltage is below normal or short circuit to low voltage circuit.

Description:

The ECM determines that a low voltage is detected in the turbocharger bypass control circuit.

Error Code 498

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The circuit of the oil level sensor is voltage is above normal or short circuit to high voltage circuit.

Description:

The ECM detects a short circuit in the signal circuit to battery positive or an open ground circuit.

Error code 499

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

The circuit of the oil level sensor is undervoltage or short circuit to the low voltage circuit.

Description:

The ECM detects an internal failure in the oil level sensor.

Error code 528

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

The additional torque curve selection switch is a chaotic character or incorrect data.

Description:

The ECM detects an open circuit in the torque curve selection switch circuit.

Error code 529

Engine:

QSB 3.3

Error:

Auxiliary input / output – voltage above normal or short circuit to high voltage circuit.

Description:

The ECM determines that a high signal voltage has been detected in the auxiliary I / O circuit.

Error code 545

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

Turbocharger Bypass Valve Control Circuit — Mechanical System Response Not Correct or Adjusted.

Description:

The ECM determines that the pressure in the intake manifold has exceeded the maximum allowable value for a given engine power rating.

Error code 553

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

The circuit of the pressure sensor in the common high pressure fuel line is accurate, but exceeds the norm.

Description:

The ECM detects that the fuel pressure is higher than specified.

Error code 554

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

The circuit of the pressure sensor in the common high-pressure fuel line is a chaotic character or incorrect data.

Description:

The ECM detects no change in the fuel pressure sensor signal.

Error code 555

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

Crankcase pressure – these are accurate, but above normal – average severity

Description:

The ECM detects that the crankcase pressure is above a predetermined level.

Error code 556

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

Crankcase pressure is data accurate, but above normal is the highest level of severity.

Description:

The ECM detects that the crankcase pressure is above a predetermined level.

Error code 559

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

The pressure sensor circuit in the common high pressure fuel line is accurate, but below normal, the average severity level.

Description:

The ECM detects that the fuel pressure is below the set pressure.

Error code 584

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

Starter Relay Control Circuit – Voltage above normal or short to high voltage circuit.

Description:

An open circuit or high voltage is detected in the starter lock circuit.

Error code 585

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

Starter Relay Control Circuit – Voltage below normal or short to low voltage circuit.

Description:

A low voltage is detected in the starter lock circuit.

Error code 596

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

The battery voltage monitoring feature has detected that it is high.

Description:

The ECM determines that the battery voltage is higher than the one specified in the calibration.

Error code 597

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

The battery voltage monitoring feature has detected that it is low.

Description:

The ECM determines that the battery voltage is less than the one specified in the calibration.

Error code 598

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

The battery voltage monitoring feature has found that it is very low.

Description:

The ECM determines that the battery voltage is less than the one specified in the calibration.

Error code 599

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

The magnitude of the dual output signals exceeded the activation limit of the engine protection system.

Description:

The ECM determined that the magnitude of the dual output signals exceeded the activation limit of the engine protection system.

Error code 649

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

Replace engine oil and filter.

Description:

The ECM has determined that, in accordance with the programmable parameter of the maintenance control function, the engine oil and filter must be replaced.

Error code 686

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

Turbocharger speed – the chaotic nature or irregularity of the data.

Description:

The ECM detected an invalid turbocharger speed signal.

Error code 687

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

Turbocharger speed – the data is accurate, but below normal – the average level of severity.

Description:

The ECM has detected a low turbocharger speed.

Error code 688

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

The engine oil level is accurate, but above normal.

Description:

The oil level sensor has detected a high oil level.

Error code 689

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

The rotational speed / position of the engine crankshaft is the chaotic nature or irregularity of the data.

Description:

The ECM has detected a crankshaft position sensor signal error.

Error code 691

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

A high signal voltage was detected in the temperature sensor circuit at the input of the turbocharger compressor.

Description:

The ECM detects that the temperature signal at the input of the turbocharger compressor is greater than 4.8 VDC for more than 1 second.

Error code 692

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

A low signal voltage is detected in the temperature sensor circuit at the input to the turbocharger compressor.

Description:

The ECM detects that the temperature signal at the input of the turbocharger compressor is less than 0.2 VDC for more than 1 second.

Error code 693

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The temperature at the inlet to the turbocharger compressor is chaotic or irregular.

Description:

The ECM detects that the temperature at the input to the turbocharger compressor is too high or too low for these engine conditions.

Error code 697

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The ECM internal temperature sensor circuit is above normal or shorted to high voltage.

Description:

The ECM has detected a short circuit on the internal temperature sensor on the power circuit.

Error code 698

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

A low signal voltage or open circuit is detected in the ECM temperature sensor circuit.

Description:

The ECM has detected that the internal temperature sensor has a short to ground.

Error code 699

Engine:

ISF 2.8, ISF 3.8

Error:

An erroneous or invalid temperature inside the ECM was detected.

Description:

The ECM detects that the signal from the ECM internal temperature sensor has an invalid value.

Error code 731

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

The signals from the engine speed sensor and the camshaft position sensor are not consistent.

Description:

The ECM determines that the crankshaft position does not match the camshaft position sensor signal input to the ECM.

Error code 778

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

The ECM detects an error in the camshaft position sensor signal.

Description:

The ECM has detected that the camshaft speed / camshaft sensor signal has disappeared for more than 1 second.

Error code 779

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB 3.3

Error:

Accessory Sensor Input Circuit – Original cause unknown

Description:

The magnitude of the signal from the auxiliary equipment of the complete equipment exceeded the activation limit of the engine protection system.

Error code 779

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB

Error:

Accessory Sensor Input Circuit – Original cause unknown

Description:

The magnitude of the signal from the auxiliary equipment of the complete equipment exceeded the activation limit of the engine protection system.

Error code 784

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB, QSB 3.3

Error:

Loss of communication with the adaptive cruise control system.

Description:

The ECM does not receive a valid message on the J1939 multiplex network from the adaptive cruise control module for more than 1 second.

Error code 1117

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

Loss of power when the start switch is set to ON. – chaotic character or incorrectness of data.

Description:

The voltage in the module power supply circuit briefly falls below the limit specified in the calibration, or the power to the ECM is disconnected incorrectly.

Error code 1228

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The position of the exhaust gas recirculation valve is the chaotic nature or irregularity of the data.

Description:

The ECM determines that the exhaust gas recirculation valve position sensor generates a chaotic signal, or the position of the exhaust gas recirculation valve does not change as the engine conditions change.

Error code 1239

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

A high voltage is detected in the pedal or accelerator lever position sensor circuit.

Description:

The ECM determines that the accelerator pedal position sensor signal voltage is greater than the value specified in the calibration for more than 1 second.

Error code 1241

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

A low voltage is detected in the pedal or accelerator lever position sensor 2 circuit.

Description:

The ECM determines that the accelerator pedal position sensor signal voltage is less than the value specified in the calibration for more than 1 second.

Error code 1242

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

Pedal or accelerator position sensors – Chaotic nature or incorrect data.

Description:

The ECM has determined that the readings of the accelerator position sensor 1 differ from those of the accelerator position sensor by more than 2%.

Error code 1663

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB

Error:

The temperature sensors at the inlet of the catalytic converter and at the exit of it are interchanged in places – the state is preserved.

Description:

The engine control module (ECM) determines that the inlet temperature of the catalytic converter of the exhaust gas purification system exceeds the inlet temperature of the particulate filter during active regeneration of the particulate filter.

Error code 1664

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB

Error:

There is no catalytic converter in the exhaust system.

Description:

The electronic control module (ECM) determines that the inlet temperature of the catalytic converter and the inlet temperature of the particulate filter are the same during active regeneration of the exhaust gas cleaning system.

Error code 1665

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB

Error:

A low signal voltage was detected in the temperature sensor circuit at the input of the catalytic converter.

Description:

The ECM determines that the voltage at the input of the catalytic converter is at less than 0.1 V DC for more than 2 seconds.

Error code 1666

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB

Error:

A high signal voltage was detected in the temperature sensor circuit at the input of the catalytic converter.

Description:

The ECM detects that the voltage at the input of the catalytic converter is at a voltage greater than 4.97 V DC for more than 2 seconds.

Error code 1667

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB

Error:

The signal of the temperature sensor at the input of the catalytic converter does not change when the engine operating conditions change.

Description:

The ECM determines that the temperature sensor input signal of the catalytic converter does not change with changing engine operating conditions.

Error code 1668

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

A low signal voltage is detected in the level sensor circuit.

Description:

The ECM detects that the voltage signal of the liquid level in the fluid tank to clean the exhaust gas is out of range (below normal).

Error code 1669

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

A high signal voltage is detected in the circuit of the liquid level sensor in the tank of the exhaust gas cleaning system of diesel engines.

Description:

The ECM detects that the voltage signal of the liquid level in the fluid tank for exhaust gas cleaning is outside the allowable range (above normal).

Error code 1671

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

The fluid level for cleaning the exhaust gas in the tank is very low.

Description:

A low fluid level is detected in the exhaust gas cleaning system tank.

Error code 1673

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

The fluid level for cleaning the exhaust gases in the tank has dropped to a critical level.

Description:

Critically low level liquid for cleaning exhaust gases in the tank.

Error code 1674

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB

Error:

A low signal voltage has been detected in the temperature sensor circuit at the inlet of the particulate filter of the exhaust gas cleaning system.

Description:

The ECM detects that the signal from the temperature sensor input signal to the particulate filter is less than 0.1 V DC for more than 2 seconds.

Error code 1675

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB

Error:

A high signal voltage was detected in the temperature sensor circuit at the input of the particulate filter of the exhaust gas cleaning system.

Description:

The ECM determines that the signal from the temperature sensor input signal to the particulate filter exceeds 4.97 V dc for more than 2 seconds.

Error code 1676

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB

Error:

The signal of the temperature sensor at the inlet of the particulate filter does not change with changing engine operating conditions.

Description:

The ECM determines that the signal from the sensor temperature at the input of the particulate filter does not change as the engine conditions change.

Error code 1677

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

The sensor circuit of the temperature of the liquid in the tank exhaust gas treatment system – the voltage is below normal or short circuit on the low voltage circuit.

Description:

The ECM detects that the signal voltage of the temperature in the fluid tank to clean the exhaust gas is outside the acceptable range (below normal).

Error code 1678

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

The sensor circuit of the temperature of the liquid in the tank of the exhaust gas cleaning system of diesel engines – the voltage is above normal or short circuit to the high voltage circuit.

Description:

The ECM determines that the signal from the sensor temperature at the input of the particulate filter does not change as the engine conditions change.

Error code 1682

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

The dosing unit for exhaust gas cleaning does not provide the filling system.

Description:

The exhaust gas dosing unit does not ensure successful filling of the system after several attempts.

Error code 1683

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

A high signal voltage is detected in the fluid heater circuit in the exhaust gas cleaning system tank.

Description:

The ECM detects a short circuit to battery plus or an open circuit in the exhaust gas tank heater circuit.

Error code 1684

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

A low signal voltage is detected in the circuit of the fluid heater in the tank of the exhaust gas purification system of diesel engines.

Description:

The ECM detects a low signal voltage or a short to ground in the heater fluid heater circuit.

Error code 1688

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The fluid injection controller for an exhaust gas cleaning system is a fault in the logic device.

Description:

An internal error has been detected in the fluid injection controller for the exhaust gas cleaning system. Error data is transmitted to the ECM over the communication channel.

Error code 1689

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

Interrupting the power of a real-time clock is a chaotic character or incorrect data.

Description:

The ECM detects that real-time clock data has been lost due to a power failure.

Error code 1691

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB

Error:

The temperature increase on the catalytic converter of the exhaust gas cleaning system is less than expected.

Description:

By design, the ECM determined that the efficiency of the catalytic converter is lower than that required to successfully complete the regeneration.

Error Code 1694

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

A discrepancy was detected in the signal rate of the nitrogen oxide content sensor.

Description:

The ECM determines that the signal from the nitrogen oxides sensor does not change as the engine conditions change.

Error code 1695

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

A high voltage has been detected in the sensor power supply circuit of the complete equipment wiring harness.

Description:

The ECM detects that the sensor supply voltage is out of range (above normal).

Error Code 1696

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

A low voltage has been detected in the sensor power supply circuit of the complete equipment wiring harness.

Description:

The ECM detects that the sensor supply voltage is out of range (below normal).

Error code 1697

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

Air supply valve – voltage is above normal or short circuit to high voltage circuit.

Description:

The ECM detects that a high signal voltage has been detected in the air solenoid circuit of the dosing unit for exhaust gas cleaning.

Error code 1698

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

Air supply valve – voltage below normal or short circuit to low voltage circuit.

Description:

The ECM detects that a low signal voltage has been detected in the air solenoid circuit of the dosing unit for exhaust gas cleaning.

Error code 1711

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

Liquid dosing unit for exhaust gas cleaning system – the rate of updating data is not correct.

Description:

Communication between the ECM and the liquid dispensing unit for the exhaust gas cleaning system has been interrupted.

Error code 1712

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

An exhaust gas heater cannot melt a frozen fluid.

Description:

The ECM detects that the exhaust gas cleaning fluid heater cannot melt frozen fluid.

Error code 1713

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

The fluid heater in the exhaust gas cleaning system tank is accurate, but above normal, the average severity level. Heater fluid for cleaning the exhaust gas in the tank is constantly on.

Description:

The ECM determines that the temperature of the exhaust gas in the tank is above 75 ° C

Error code 1843

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

A high signal voltage is detected in the circuit of the crankcase pressure sensor.

Description:

The ECM determines that the voltage signal from the crankcase pressure sensor is greater than 4.8 VDC for more than 1 second.

Error code 1844

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

A low signal voltage is detected in the circuit of the crankcase pressure sensor.

Description:

The ECM determines that the voltage signal from the crankcase pressure sensor is less than 0.2 VDC for more than 1 second.

Error code 1852

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

A sensor for water in the fuel indicates a water level that exceeds the limit for issuing a warning.

Description:

The ECM detects the presence of water in the fuel for a long time.

Error code 1866

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB

Error:

The differential pressure sensor circuit on the exhaust gas recirculation valve is a chaotic character or incorrect data.

Description:

An error was detected between the exhaust gas recirculation system differential pressure sensor signal or the sensor did not pass the auto-zero test.

Error code 1876

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB

Error:

A high signal voltage or an open circuit was detected in the temperature sensor circuit of the particulate filter of the exhaust gas cleaning system.

Description:

The ECM determines that the signal from the temperature sensor output signal of the particulate filter exceeds 4.97 V dc for more than 2 seconds.

Error code 1877

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB

Error:

A low signal voltage has been detected in the temperature sensor circuit of the particulate filter exhaust system.

Description:

The ECM determines that the signal from the temperature sensor output signal of the particulate filter is less than 0.1 V DC for more than 2 seconds.

Error code 1878

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB

Error:

The signal from the temperature sensor at the output of the particulate filter does not change with changing engine operating conditions.

Description:

The temperature in the exhaust gas cleaning system is the chaotic nature or incorrectness of the data.

Error code 1879

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB

Error:

A high signal voltage was detected in the differential pressure sensor circuit of the exhaust gas cleaning system.

Description:

The ECM determines that the signal voltage of the differential pressure sensor on the particulate filter exceeds 4.75 VDC for more than 1 second.

Error code 1881

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB

Error:

A low signal voltage or an open circuit was detected in the differential pressure sensor circuit on the particulate filter of the exhaust gas cleaning system.

Description:

The ECM determines that the signal voltage of the differential pressure sensor on the particulate filter is less than 0.25 VDC for more than 1 second.

Error code 1883

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB

Error:

The differential pressure sensor on the filter of solid particles of the exhaust gas cleaning system is a chaotic character or incorrect data.

Description:

The chaotic nature of the signal of the differential pressure sensor on the filter of solid particles of the exhaust gas cleaning system.

Error code 1896

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB

Error:

Exhaust Gas Recirculation Controller – Incorrect Calibration.

Description:

The procedure for automatically calibrating the exhaust gas recirculation valve is not completed.

Error code 1887

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

The sensor circuit content of nitrogen oxides at the outlet of the exhaust gas cleaning system – voltage below normal or short circuit to low voltage circuit.

Description:

An internal malfunction has been detected in the nitrogen oxides content sensor at the outlet of the exhaust gas cleaning system.

Error code 1898

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The drive controller changes the geometry of the turbocharger – incorrect calibration.

Description:

The ECM module predelil , that the automatic calibration of the turbocharger with variable geometry is not performed at the first turn of the start switch to the ON position.

Error code 1899

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB

Error:

The differential pressure sensor in the exhaust gas recirculation system detected a low gas consumption in the exhaust gas recirculation system, or the readings of the differential pressure sensor do not correspond to the engine operating conditions.

Description:

The pressure drop across the exhaust gas recirculation valve is accurate, but above normal, the average severity level.

Error code 1911

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISF 2.8, ISF 3.8

Error:

The circuit of the pressure sensor in the common high pressure fuel line, but exceeding the norm.

Description:

The ECM detects that the pressure in the common high pressure fuel line is higher than the specified one.

Error code 1921

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB

Error:

The amount of soot in the particulate filter of an exhaust gas cleaning system exceeds the recommended limits.

Description:

The ECM determines that the amount of soot in the particulate filter of an exhaust gas cleaning system is above normal (average severity level). To remove soot, regeneration of the exhaust gas cleaning system is necessary.

Error code 1922

Engine :

ISB, ISC, ISL, ISLe , ISDe , QSB3

Error:

The amount of soot in the particulate filter of an exhaust gas cleaning system exceeds the recommended limits.

Description:

The ECM determines that the amount of soot in the particulate filter of the exhaust gas cleaning system exceeds the maximum allowable limit.

Error Code 1938

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

The drive control of the change in the geometry of the turbocharger has detected a low battery voltage.

Description:

The power supply voltage of the electronic control module is accurate, but exceeds the norm – the average level of severity.

Error code 1942

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

The ECM detects that the signal from the crankcase pressure sensor does not change when the engine conditions change.

Description:

The ECM determines that the temperature sensor signal is chaotic.

Error code 1943

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISX, QSX, ISM

Error:

Engine torque is reduced due to the vehicle operating at high altitude.

Description:

The ECM determines that the ambient pressure is below a calibrated value.

Error Code 1962

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

A high internal drive temperature has been detected, changing the geometry of the turbocharger.

Description:

This DTC is recorded when the internal temperature of the drive changes the geometry of the turbocharger to exceed 125 ° C continuously for 30 minutes.

Error code 1966

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB

Error:

The temperature of the exhaust gases entering the exhaust gas cleaning system exceeds the engine protection limit.

Description:

The ECM determines whether there is an elevated temperature in the exhaust gas cleaning system, provided that there is no active regeneration of the particulate filter of the exhaust gas cleaning system.

Error Code 1968

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB

Error:

The temperature sensor No. 2 reading at the inlet of the particulate filter exceeded the maximum temperature limit.

Description:

The temperature sensor No. 2 reading at the inlet of the particulate filter exceeds 649 ° C for 5 seconds and then drops to below 550 ° C.

Error Code 1969

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB

Error:

The readings of the temperature sensor No. 2 at the inlet of the particulate filter exceeded the maximum limit of the engine protection system in terms of temperature.

Description:

The readings of the temperature sensor No. 2 at the inlet of the particulate filter are critical.

Error code 1972

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB

Error:

The temperature sensor No. 3 readings at the inlet of the particulate filter exceeded the maximum temperature limit.

Description:

The sensor reading on the output of the particulate filter exceeds 649 ° C for 5 seconds and then drops to below 575 ° C.

Error code 1973

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB

Error:

The readings of the temperature sensor No. 3 at the inlet of the particulate filter exceeded the maximum limit of the engine protection system in terms of temperature.

Description:

The readings of the temperature sensor No. 3 at the inlet of the particulate filter are critical.

Error code 1974

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB

Error:

Crankcase ventilation filter requires maintenance.

Description:

The ECM module determined that the pressure of crankcase gases exceeds the calibrated level.

Error Code 1981

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB

Error:

The pressure drop across the particulate filter exceeded the maximum operating limit, or the particulate filter is clogged.

Description:

The ECM determines that the particulate filter of the exhaust gas cleaning system is clogged, or that the pressure drop across the particulate filter exceeds the maximum limit.

Error Code 1993

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB

Error:

The particulate filter of the exhaust gas cleaning system is missing.

Description:

No particulate matter filter.

Error code 2182

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

An open circuit or high voltage is detected in the signal circuit of the motor brake solenoid valve.

Description:

A pulse width modulated signal with a level greater than the required signal is detected in the motor brake circuit when this signal is turned off by the ECM.

Error code 2183

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

A low voltage is detected in the signal circuit of the motor brake solenoid valve.

Description:

A signal with a pulse width modulation with a level equal to the system supply voltage when this signal is turned on is not detected in the motor brake circuit.

Error code 2185

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

A high voltage has been detected in the power supply circuit (5 V) of the accelerator position sensor.

Description:

The ECM detects that the sensor supply voltage is out of range (above normal).

Error code 2186

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

A low voltage has been detected in the power supply circuit (+5 ) In the accelerator pedal position sensor.

Description:

The ECM detects that the sensor supply voltage is out of range (below normal).

Error code 2195

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB

Error:

Discovered the opening of the vehicle emergency exit door.

Description:

A DTC registers when the vehicle’s emergency exit door is open.

Error code 2198

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

The variable geometry turbocharger controller does not correctly recognize the J1939 standard messages received from the multiplex network from the ECM.

Description:

The ECM does not receive a valid message on the J1939 multiplex network from the ECM for more than 1 second.

Error code 2265

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

A high voltage or an open circuit is detected in the signal circuit of the boost pump.

Description:

A pulse width modulated signal with a level greater than 0 V is detected in the booster fuel pump circuit when this signal is turned off by the ECM.

Error Code 2266

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

A low signal voltage has been detected in the booster pump circuit.

Description:

A pulse width modulated signal with a level of 0 V was detected in the boost fuel pump circuit when this signal was turned on by the ECM and should be equal to the system supply voltage.

Error code 2271

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

Exhaust Gas Recirculation Valve Position Sensor Circuit – Voltage Above Normal or Short Circuit to High Voltage Circuit.

Description:

The ECM determines that the EGR valve position sensor voltage is greater than the value specified in the calibration.

Error code 2272

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB, ISX, QSX

Error:

A low signal voltage has been detected on the EGR valve position sensor circuit.

Description:

The ECM determines that all position sensors show a high signal (or all position sensors show a low signal).

Error code 2273

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB, ISX, QSX

Error:

A high signal voltage has been detected in the differential pressure sensor circuit of the exhaust gas recirculation system.

Description:

The ECM detects that the differential pressure sensor signal on the exhaust gas recirculation valve exceeds 4.8 VDC for more than 4 seconds.

Error code 2274

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB, ISX, QSX

Error:

A low signal voltage has been detected in the differential pressure sensor circuit of the exhaust gas recirculation system.

Description:

The ECM detects that the differential pressure sensor signal on the exhaust gas recirculation valve is less than 0.26 VDC for more than 2 seconds.

Error Code 2288

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

The ECM has detected a high turbocharger speed.

Description:

The ECM determines that the turbocharger speed exceeds the maximum limit specified in the calibration.

Error code 2311

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM, ISX, QSX

Error:

The resistance of the actuator valve of the fuel system is too high or too low.

Description:

The malfunction code is registered in the presence of disappearing failures of a chain of the executive valve of the fuel pump.

Error code 2321

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM, ISX, QSX

Error:

Periodic disruption of the crankshaft speed sensor.

Description:

The ECM detects the presence of a fading or attenuated crankshaft speed / position sensor signal after some time has elapsed.

Error code 2322

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

Periodic disruption of the camshaft speed sensor.

Description:

The ECM detects a disappearing disappearance of the speed / camshaft position sensor signal.

Error code 2345

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

The turbocharger speed sensor shows an error when determining the speed.

Description:

The ECM has determined that the rotational speed of the turbocharger is increasing faster than is physically achievable for the turbocharger.

Error code 2346

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM, ISX, QSX

Error:

The temperature at the turbine inlet to the turbocharger exceeded the limit of the inclusion of engine protection.

Description:

The ECM determines that the calculated inlet temperature of the turbine exceeds the value specified in the calibration.

Error code 2347

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM, ISX, QSX

Error:

High exhaust air temperature of the turbocharger compressor (calculated by the ECM)

Description:

The ECM determines that the calculated temperature at the outlet of the turbocharger compressor exceeds 238 ° C.

Error code 2349

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB, ISX, QSX

Error:

The ECM has detected a broken terminal or motor winding.

Description:

The module (ECM) has detected an open circuit in the engine wiring harness or in the motor winding of the exhaust gas recirculation valve.

Error code 2351

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM, ISX, QSX

Error:

The ECM has detected a short circuit at the terminals or motor winding to ground or power.

Description:

The ECM detects a short circuit in the exhaust gas recirculation valve motor circuits.

Error code 2352

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

Exhaust gas recirculation control circuit – voltage is higher than normal or short circuit to high voltage circuit.

Description:

The ECM determines that a high voltage is detected in the exhaust gas recirculation valve motor circuit.

Error code 2357

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM, ISX, QSX

Error:

The cycle time of the electric motor valve exhaust gas recirculation system is exceeded, indicating that the valve is stuck in the open position.

Description:

This DTC is recorded when the duty cycle required to open the exhaust gas recirculation valve exceeds 95% for 3 seconds. The exhaust gas recirculation valve controller will attempt to re-open the valve after 10 seconds. The malfunction code is registered after three unsuccessful attempts.

Error code 2359

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB, ISX, QSX

Error:

The differential pressure sensor in the exhaust gas recirculation system detected a high gas flow rate in the exhaust gas recirculation system, or the readings of the differential pressure sensor do not correspond to the engine operating conditions.

Description:

The pressure drop in the exhaust gas recirculation system exceeds the value specified in the calibration.

Error code 2363

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

A low voltage is detected in the signal circuit of the motor brake solenoid valve.

Description:

A signal with a pulse width modulation with a level equal to the system supply voltage when this signal is turned on is not detected in the motor brake circuit.

Error code 2367

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM, ISX, QSX

Error:

An open circuit or high voltage is detected in the signal circuit of the motor brake solenoid valve.

Description:

A pulse width modulated signal with a level equal to the system supply voltage is detected in the motor brake circuit when this signal is turned off.

Error code 2369

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM, ISX, QSX

Error:

A low signal voltage has been detected in the motor brake control circuit.

Description:

The ECM detects that the motor brake control circuit has a short to voltage on the low voltage circuit.

Error code 2371

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM, ISX, QSX

Error:

Motor brake drive circuit – voltage is above normal or short circuit to high voltage circuit.

Description:

The ECM detects that the motor brake control circuit has a short to voltage on the high voltage circuit.

Error code 2373

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM, ISX, QSX

Error:

The pressure sensor circuit in the exhaust system – the voltage is above normal or short circuit to the high voltage circuit.

Description:

The ECM detects that the pressure sensor signal in the exhaust system is greater than 4.75 V DC for more than 4 seconds.

Error code 2374

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM, ISX, QSX

Error:

The pressure sensor circuit in the exhaust system – the voltage is below normal or short circuit to the low voltage circuit.

Description:

The ECM determines that the voltage signal from the pressure sensor in the exhaust system is less than 0.25 VDC for more than 4 seconds.

Error code 2375

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB, ISX, QSX

Error:

The temperature sensor circuit in the exhaust gas recirculation system – voltage above normal or short circuit to high voltage circuit.

Description:

The ECM determines that the signal from the temperature sensor in the exhaust gas recirculation system exceeds 5.1 VDC for more than 1 second.

Error code 2376

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB, ISX, QSX

Error:

The temperature sensor circuit in the exhaust gas recirculation system – voltage below normal or short circuit on the low voltage circuit.

Description:

The ECM determines that the signal from the temperature sensor in the exhaust gas recirculation system is less than 0.09 V dc for more than 1 second.

Error code 2377

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM, ISX, QSX

Error:

Fan control circuit – Voltage above normal or short to high voltage circuit.

Description:

The ECM detects a pulse width modulated signal with a level greater than 0 V in the fan control circuit when this signal is turned off by the ECM.

Error code 2387

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

The logic controller for changing the geometry of the turbocharger has detected abnormal extreme positions, or the drive for changing the geometry of the turbocharger cannot go to the closed position.

Description:

The fault code is set when the actual position of the drive changes the geometry of the turbocharger does not match the specified for more than 10 seconds.

Error code 2398

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

Ambient temperature – chaotic nature or incorrect data.

Description:

The ECM module has detected the chaotic nature of the signal from the ambient temperature sensor.

Error code 2442

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

Cylinder 1 injector solenoid valve relay – Incorrect calibration. Incorrect information entered from barcode nozzles.

Description:

The ECM determines that the cylinder 1 nozzle barcode value was entered into the ECM incorrectly.

Error code 2443

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

Cylinder 2 Injector Solenoid Relay – Incorrect Calibration. Incorrect information entered from barcode nozzles.

Description:

The ECM determines that the cylinder 2 nozzle barcode value was entered into the ECM incorrectly.

Error code 2444

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

Cylinder 3 injector solenoid valve relay – Incorrect calibration. Incorrect information entered from barcode nozzles.

Description:

The ECM determines that the cylinder 3 injector barcode value was entered into the ECM incorrectly.

Error code 2445

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

Cylinder 4 injector solenoid valve relay – Incorrect calibration. Incorrect information entered from barcode nozzles.

Description:

The ECM determines that the nozzle 4 barcode value was entered into the ECM incorrectly.

Error code 2448

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

Low coolant level detected.

Description:

The ECM determines that the coolant level is below the limit for normal operating conditions.

Error code 2449

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

The drive controller changes the geometry of the turbocharger – incorrect calibration.

Description:

The position of the actuator during initial power-up is not determined by internal means due to the mechanism jams or internal faults. The actual position of the drive changes the geometry of the turbocharger unknown.

Error code 2451

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

The temperature at the turbine inlet to the turbocharger exceeded the limit of the inclusion of engine protection.

Description:

The ECM determines that the calculated inlet temperature of the turbine exceeds the value specified in the calibration.

Error code 2554

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB, ISX, QSX

Error:

The chaotic nature of the signal of the pressure sensor in the exhaust system at the first turn of the start switch to the ON position.

Description:

  1. The ECM has determined that the pressure in the exhaust system is higher or lower than that of other absolute sensors in the engine after setting the start switch to the ON position when the engine is not working. 2. The ECM determines that the pressure in the exhaust system during normal engine operation is less than the value specified in the calibration.

Error code 2555

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

A high signal voltage is detected in the intake heater circuit.

Description:

A pulse width modulated signal with a level greater than 0 V is detected in the fan control circuit when this signal is turned off by the ECM.

Error code 2556

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

A low signal voltage is detected in the intake heater circuit.

Description:

No pulse width modulated signal with a level equal to the system supply voltage was detected in the intake system heater circuit when this signal was turned on.

Error code 2557

Engine:

QSB

Error:

Auxiliary signal circuit with pulse width modulation – voltage above normal or short circuit to high voltage circuit.

Description:

A high voltage signal has been detected on the analog torque circuit.

Error code 2558

Engine:

QSB

Error:

Auxiliary signal circuit with pulse width modulation – voltage below normal or short circuit to low voltage circuit.

Description:

A low signal voltage is detected in the analog torque signal circuit.

Error code 2634

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

A variable geometry turbocharger logic controller detected an internal error.

Description:

The drive changes the geometry of the turbocharger has detected an internal error in the logic controller of the turbocharger.

Error code 2635

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

A mismatch in the drive calibration of the turbocharger geometry change and the ECM was found.

Description:

  1. The ECM module has detected an incompatibility in drive calibration for changing the geometry of the turbocharger and the ECM. 2. The drive changes the geometry of the turbocharger found that the supply voltage does not match the installed drive, taking into account the catalog number. 3. The ECM module determined that the turbocharger does not have an appropriate drive for changing the geometry.

Error code 2636

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

The drive circuit changes the geometry of the turbocharger – the rate of updating data is not correct.

Description:

The main engine ECM does not receive a reliable message over the multiplex network J1939 from the drive changing the turbocharger geometry for more than 1 second.

Error code 2637

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB

Error:

A soot blockage has been detected on the front end surface of the catalytic converter.

Description:

The ECM determines the presence of conditions for clogging the end face of the catalytic converter and the possibility of clogging.

Error code 2638

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB

Error:

The temperature increase on the catalytic converter of the exhaust gas cleaning system is less than expected.

Description:

By design, the ECM determined that the efficiency of the catalytic converter is lower than that required to successfully complete the regeneration.

Error code 2639

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB

Error:

The amount of soot in the particulate filter of an exhaust gas cleaning system exceeds the recommended limits.

Description:

The ECM determines that the amount of soot in the particulate filter of the exhaust gas cleaning system is above the norm (lowest level of severity). To remove soot, regeneration of the exhaust gas cleaning system is necessary.

Error code 2646

Engine :

ISB, ISC, ISL, ISLe , ISDe , QSB

Error:

The exhaust gas recirculation valve is closed to lower the temperature of the coolant.

Description:

Coolant temperature – the state is maintained.

Error code 2659

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB

Error:

The exhaust gas recirculation valve is closed to lower the temperature of the coolant.

Description:

Coolant temperature – the state is maintained.

Error code 2728

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB

Error:

It has been found that active regeneration of the particulate filter of the exhaust gas cleaning system will be ineffective.

Description:

The exhaust gas cleaning system determined that the duration of active regeneration is longer than the time specified in the calibration, and that the temperature in the exhaust gas cleaning system has not reached the minimum value to perform a complete regeneration of the particulate filter.

Error code 2742

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB

Error:

The temperatures in the exhaust gas cleaning system do not reach the values ​​required for regeneration in stationary conditions.

Description:

  1. The ECM module determines that the measured inlet temperature of the catalytic converter does not correspond to the level required for regeneration in stationary conditions. 2. The ECM module determines that the temperature of the exhaust gases entering the exhaust gas cleaning system is not high enough to remove water from the system when the engine is at idle for a long time.

Error code 2743

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB

Error:

The temperatures in the exhaust gas cleaning system do not reach the values ​​required for regeneration in stationary conditions.

Description:

  1. The ECM module determines that the measured inlet temperature of the catalytic converter does not correspond to the level required for regeneration in stationary conditions. 2. The ECM module determines that the temperature of the exhaust gases entering the exhaust gas cleaning system is not high enough to remove water from the system when the engine is at idle for a long time.

Error code 2754

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB

Error:

An increased amount of black smoke from the engine into the particulate filter of the exhaust gas cleaning system has been detected.

Description:

This DTC is recorded when the accumulation of soot inside the particulate filter is faster than under normal conditions.

Error code 2765

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB

Error:

Barcode group nozzles – incorrect calibration. Incorrect information entered from barcode nozzles.

Description:

The ECM determines that nozzle barcode values ​​are entered into the ECM incorrectly.

Error code 2771

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

Nitrogen oxide sensor at the outlet of the exhaust gas cleaning system – The rate of data update does not correspond to the norm.

Description:

The data communication between the ECM module and the sensor of nitrogen oxides in exhaust gases through the communication channel SAE J1939.

Error code 2772

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

The sensor of nitrogen oxides at the outlet of the exhaust gas cleaning system is accurate, but above the norm is the lowest level of severity. The magnitude of the signal of the sensor content of nitrogen oxides exceeds the recommended level.

Description:

This DTC is recorded when the diagnostic procedure determines that the output of the nitrogen oxide sensor is greater than the value specified in the calibration for two consecutive ignition cycles.

Error code 2773

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

The content of nitrogen oxides at the outlet of the exhaust gas cleaning system is accurate, but above the norm is the highest level of severity. The magnitude of the signal of the sensor content of nitrogen oxides exceeds the recommended level.

Description:

This DTC is recorded when the diagnostic procedure determines that the output of the nitrogen oxide sensor is greater than the value specified in the calibration for two consecutive ignition cycles.

Error code 2777

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB

Error:

Particulate filter regeneration is disabled because the regeneration inhibit switch is set to inhibited.

Description:

This DTC is registered when the regeneration inhibit switch is set to inhibited and DTC 1921, 1922 or 2639 goes active due to the large amount of soot in the particulate filter.

Error code 2778

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB

Error:

Engine oil replacement is required due to its possible dilution with fuel.

Description:

This DTC is recorded when the ECM detects that the engine oil will liquefy the fuel.

Error code 2813

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB

Error:

The exhaust gas recovery system valve is closed during the regeneration of the particulate filter of the exhaust gas cleaning system.

Description:

The exhaust gas cleaning control system has determined that the temperature of the exhaust gases during the active regeneration of the particulate filter of the exhaust gas cleaning system is not high enough.

Error code 2961

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB, ISX, QSX

Error:

The temperature in the exhaust gas recirculation system is accurate, but above normal, the lowest level of severity. The temperature in the exhaust gas recirculation system has exceeded the activation limit of engine protection.

Description:

The ECM detects that the temperature in the exhaust gas recirculation system exceeds the temperature specified in the calibration system for more than 5 seconds.

Error code 2962

Engine:

ISB, ISC, ISL, ISLe , ISDe , QSB, ISX, QSX

Error:

The temperature in the exhaust gas recirculation system is accurate, but above normal, the average level of severity. The temperature in the exhaust gas recirculation system has exceeded the activation limit of engine protection.

Description:

The ECM determines that the temperature in the exhaust gas recirculation system exceeds 246 ° C for more than 5 seconds.

Error code 2963

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM, ISX, QSX

Error:

Coolant temperature – data is accurate, but above normal – the lowest level of severity. Coolant temperature exceeds the warning limit of the engine protection system.

Description:

The ECM determines that the signal voltage from the coolant temperature sensor exceeds the calibrated limit set in the ECM.

Error code 2964

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM, ISX, QSX

Error:

Temperature in the intake manifold – these are accurate, but exceed the norm – the lowest level of severity. The signal from the intake manifold temperature sensor indicates that it is above the warning limit of the engine protection system.

Description:

The ECM determines that the voltage signal of the temperature sensor in the intake manifold exceeds the calibrated limit set in the ECM.

Error code 2973

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM, ISX, QSX

Error:

The ECM detects that the signal from the intake manifold pressure sensor is not correct for these engine conditions.

Description:

The ECM determines that the pressure sensor signal in the intake manifold does not change when the engine conditions change or is chaotic when the start switch is turned to the ON position.

Error code 2976

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

Liquid dosing unit temperature for diesel engine exhaust systems – Chaotic nature or incorrect data. An internal error has been detected in the dosing unit for diesel engine exhaust systems.

Description:

The ECM determines that the sensor signal for the internal temperature of the liquid metering unit for diesel engine exhaust systems is inconsistent with signals from other temperature sensors installed on the engine for two consecutive ignition cycles during diagnostics.

Error code 3142

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

A high signal voltage is detected in the temperature sensor circuit at the input to the catalytic converter.

Description:

The ECM detects that the voltage at the input of the catalytic converter is higher than 4.4 VDC for more than 2 seconds.

Error code 3143

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

A low signal voltage is detected in the temperature sensor circuit.

Description:

The ECM determines that the voltage at the input of the catalytic converter is at least 0.13 V DC for more than 2 seconds.

Error code 3144

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

The signal of the temperature sensor at the inlet to the catalytic converter does not change when the engine operating conditions change.

Description:

The ECM determines that the signal from the temperature sensor at the input of the catalytic converter is invalid (contrary to common sense) for more than 5 minutes.

Error code 3145

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

Catalytic Inlet Temperature Sensor – The rate of change is not normal. The temperature sensor at the inlet of the catalytic converter does not respond to changes in engine operating conditions.

Description:

The ECM determines that the temperature at the inlet of the catalytic converter does not change as the engine conditions change.

Error code 3146

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The temperature sensor circuit on the release of the catalytic converter SCR – voltage above normal or short circuit to high voltage circuit.

Description:

The ECM detects that the voltage signal from the temperature sensor at the output of the catalytic converter exceeds the value specified in the calibration when the start switch is in the ON position.

Error code 3147

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

Catalytic Output Temperature Sensor Circuit – Voltage below normal or short to low voltage circuit.

Description:

The ECM detects that the voltage signal of the temperature sensor at the output of the catalytic converter is less than the value specified in the calibration when the start switch is in the ON position.

Error code 3149

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The temperature sensor at the outlet of the catalytic converter does not respond to changes in engine operating conditions.

Description:

The ECM determines that the temperature at the outlet of the catalytic converter does not change as the engine conditions change.

Error code 3151

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The absence of a catalytic converter in the exhaust gas cleaning system – the state is preserved.

Description:

The ECM determines that there is no selective catalytic converter in the exhaust system.

Error code 3163

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

Incorrect catalytic converter inlet temperature sensor connection – Incorrect calibration. The connectors of the temperature sensors at the inlet and at the outlet of the catalytic converter are interchanged.

Description:

The ECM determines that the temperature sensor signals at the input and at the output of the catalytic converter are interchanged.

Error code 3164

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

A high inlet temperature for the catalytic converter has been detected.

Description:

The ECM determines that the inlet temperature of the catalytic converter exceeds the value specified in the calibration.

Error code 3236

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

A high temperature has been detected at the outlet of the catalytic converter.

Description:

The ECM determines that the temperature at the outlet of the catalytic converter exceeds the value specified in the calibration.

Error code 3237

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

A high voltage signal has been detected in the circuit of a fluid line heater for diesel engine exhaust systems.

Description:

The fluid injection controller in the exhaust gas cleaning system of diesel engines determines that the voltage on the line heater exceeds the value specified in the calibration.

Error Code 3238

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

A low signal voltage has been detected in the heater line heater relay circuit for an exhaust gas cleaning system.

Description:

The ECM determines that the voltage on the line heater exceeds the value specified in the calibration.

Error Code 3239

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

A high voltage signal was detected in the heater circuit 2 of the fluid line for the exhaust systems of diesel engines.

Description:

The ECM determines that the voltage on the line heater is lower than the value specified in the calibration.

Error Code 3242

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

Exhaust Gas Heater – Mechanical System Reaction Is Not Correct Or The Adjustment Is Disrupted.

Description:

The ECM issued a command to turn on the fluid heater in the tank of the exhaust gas cleaning system, but the temperature sensor in the tank did not detect its increase.

Error Code 3258

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The circuit of the fluid line heater for the exhaust gas cleaning system is a current below normal or an open circuit.

Description:

The fluid injection controller for the exhaust gas cleaning system detects an open circuit or a short to ground in the main line heater circuit.

Error code 3261

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The circuit of the heater 2 fluid lines for exhaust systems of diesel engines – the current is below normal or open circuit.

Description:

The fluid injection controller for diesel engine exhaust systems detects an open circuit or a short to ground in the main line heater circuit.

Error code 3326

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

The ECM does not receive the expected data in a timely manner from the accelerator position sensor connected to the multiplex network, or does not receive them at all.

Description:

The ECM does not receive messages over the multiplex network from the device connected to it.

Error code 3382

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

Exhaust gas recirculation – data is accurate, but below normal – the average level of severity.

Description:

The ECM determines that the actual consumption in the exhaust gas recirculation system is lower than the target, based on current engine operating conditions.

Error code 3383

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

Exhaust gas recirculation – the data is accurate, but above normal – the average level of severity.

Description:

The ECM determines that the actual consumption in the exhaust gas recirculation system is higher than the target, based on current engine operating conditions.

Error code 3422

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The circuit of the heater 3 fluid in the exhaust gas cleaning system of diesel engines – the voltage is above normal or short circuit to the high voltage circuit.

Description:

The fluid controller in the exhaust gas cleaning system of diesel engines determines that the voltage on the main line heater exceeds the value specified in the calibration.

Error code 3425

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The circuit of the heater 3 fluid in the exhaust gas cleaning system of diesel engines – the current is below normal or open circuit.

Description:

The fluid injection controller for diesel engine exhaust systems detects an open circuit or a short to ground in the main line heater circuit.

Error code 3426

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The circuit of the heater 4 fluid in the exhaust gas cleaning system of diesel engines – the voltage is above normal or short circuit on the high voltage circuit.

Description:

The fluid injection controller in the exhaust gas cleaning system of diesel engines determines that the heater voltage exceeds the value specified in the calibration.

Error code 3429

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The circuit of the heater 4 fluid in the exhaust gas cleaning system of diesel engines – the current is below normal or open circuit.

Description:

The fluid injection controller for diesel engine exhaust systems detects an open circuit in the heater circuit.

Error code 3492

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

A real-time clock indicates that the engine is off.

Description:

The engine off timer is not working properly, and its readings do not match those of other timers in the ECM.

Error code 3539

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The throttle actuator position sensor circuit at the inlet – voltage above normal or short circuit to high voltage circuit.

Description:

The ECM determines that the throttle actuator position sensor voltage is greater than the value specified in the calibration.

Error code 3541

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

Throttle Actuator Position Sensor Circuit at Intake – Voltage below normal or short to low voltage circuit.

Description:

The ECM determines that the throttle actuator position sensor voltage at the intake is less than the value specified in the calibration.

Error code 3542

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The throttle actuator position sensor at the inlet generates a chaotic signal, or the position of the throttle actuator at the inlet does not change when the engine operating conditions change.

Description:

The ECM determines that the throttle actuator intake position sensor generates a chaotic signal, or the position of the intake throttle actuator does not change when the engine conditions change.

Error code 3548

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

Flow from the dosing unit of the liquid to the exhaust gas cleaning system – there is a malfunction

Description:

The ECM determines that the dosing unit fails to fill the system.

Error code 3557

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The controller of the injection of fluid in the exhaust gas cleaning system of diesel engines – the chaotic nature or irregularity of the data.

Description:

The fluid injection controller in the exhaust gas cleaning system of diesel engines has detected a too high or too low voltage in one of the circuits of the dosing unit.

Error Code 3558

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

Liquid dosing unit for exhaust systems of diesel engines – the voltage is above normal or short circuit on the high voltage circuit.

Description:

The ECM detects that there is a short to a high or low voltage circuit or there is an open circuit on the exhaust gas metering valve circuit.

Error code 3559

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

Liquid dosing unit for exhaust systems of diesel engines – voltage below normal or short circuit to low voltage circuit.

Description:

The ECM detects that the voltage of the signal or the power supply of the dosing unit for exhaust gas cleaning is outside the acceptable range (below normal).

Error code 3561

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

Liquid dosing unit for exhaust systems of diesel engines – the current is below the norm or open circuit.

Description:

The ECM has detected an open circuit in the liquid dispensing unit for diesel engine exhaust systems.

Error code 3562

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

Liquid line heater relay for diesel engine exhaust systems – voltage is higher than normal or short circuit to high voltage circuit.

Description:

The fluid injection controller for diesel engine exhaust systems detects that the voltage in the relay circuit of the fluid line heater for diesel engine exhaust systems exceeds the value specified in the calibration.

Error code 3563

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

Liquid line heater relay for exhaust systems of diesel engines – voltage below normal or short circuit to low voltage circuit.

Description:

The fluid injection controller for diesel engine exhaust systems detects that the voltage in the heater line heater relay circuit for diesel engine exhaust systems is less than the value specified in the calibration.

Error code 3564

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The circuit of the heater relay fluid in the exhaust gas treatment system of diesel engines – Current below normal or open circuit. An open circuit breaker fluid heater in the exhaust gas cleaning system of diesel engines.

Description:

The fluid injection controller for diesel engine exhaust systems detects an open circuit in the heater line heater relay circuit for diesel engine exhaust systems.

Error code 3564

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

Fluid metering valve for exhaust gas cleaning system – voltage above normal or short circuit to high voltage circuit.

Description:

The fluid injection controller for the exhaust gas cleaning system detects that the voltage on the metering valve of the exhaust gas cleaning system exceeds the value specified in the calibration.

Error code 3566

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

Exhaust Gas Cleaning Dosing Valve – Voltage below normal or short to low voltage circuit.

Description:

The fluid injection controller for the exhaust gas cleaning system detects that the voltage on the metering valve of the exhaust gas cleaning system is less than the value specified in the calibration.

Error code 3567

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

An internal error has been detected in the circuit for dispensing an exhaust gas cleaning fluid.

Description:

The ECM detects that there is a short to a high or low voltage circuit or there is an open circuit on the exhaust gas metering valve circuit.

Error code 3568

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

A mechanical failure of the liquid metering valve for exhaust gas cleaning systems has been detected.

Description:

The ECM determines that the exhaust pressure fluid pressure exceeds a threshold.

Error code 3569

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

Inlet lines of the dosing unit for diesel exhaust systems – the reaction of the mechanical system does not correspond to the norm or the adjustment is broken.

Description:

The fluid injection controller in the exhaust gas cleaning system of diesel engines detected mechanical failure of the inlet piping of the dosing unit, and the liquid for the exhaust systems of diesel engines is not supplied to the dosing valve.

Error code 3571

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

A high signal voltage is detected in the circuit of the fluid pressure sensor for exhaust gas cleaning.

Description:

The ECM detects that the signal voltage of the fluid pressure sensor for exhaust gas cleaning is out of range (above normal).

Error code 3572

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

A low signal voltage is detected in the circuit of the fluid pressure sensor for exhaust gas cleaning.

Description:

The ECM detects that the signal voltage of the fluid pressure sensor for exhaust gas cleaning is outside the acceptable range (below normal).

Error code 3574

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

A low fluid pressure was detected in the dosing unit.

Description:

The ECM determines that the pressure of the exhaust gas is below the threshold.

Error code 3575

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

The exhaust gas dosing unit detected an obstruction in the return line of the exhaust gas.

Description:

The ECM determines that the exhaust pressure fluid pressure exceeds a threshold.

Error code 3577

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

Valve drain the fluid in the exhaust gas cleaning system of diesel engines – voltage above normal or short circuit to high voltage circuit.

Description:

The ECM detects that the voltage at the drain valve for exhaust gas cleaning is outside the allowable range (above normal), or there is an open circuit.

Error code 3578

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

A low signal voltage has been detected in the drain valve circuit for diesel engine exhaust systems.

Description:

The ECM detects that the voltage at the drain valve for exhaust gas cleaning is outside the acceptable range (below normal).

Error code 3579

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

Liquid drain valve for exhaust systems of diesel engines – the current is below normal or open circuit.

Description:

The fluid injection controller for diesel exhaust systems detects an open circuit in the drain valve circuit for diesel exhaust systems.

Error code 3596

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The fluid pressure sensor in the exhaust system of diesel engines detected a value that is too low or too high for operating conditions.

Description:

The liquid dosing unit for diesel engine exhaust systems cannot maintain the specified fluid pressure for diesel engine exhaust systems.

Error code 3597

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

Fluid injection controller for exhaust gas cleaning system – Data update rate is inconsistent.

Description:

The ECM determines that communication over the communication channel between the ECM and the fluid injection controller for the exhaust gas cleaning system is interrupted.

Error code 3598

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

Fluid injection controller for diesel engine exhaust systems – incorrect data was obtained from the network.

Description:

The ECM determines that the data transmitted by the ECM to the fluid injection controller for diesel engine exhaust systems is not readable or missing.

Error code 3612

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

Liquid dosing unit for exhaust systems of diesel engines – the reaction of the mechanical system does not correspond to the norm or the adjustment is broken. The exhaust gas cleaning system with a selective catalytic converter detects an incomplete cycle when the power is turned off.

Description:

The fluid injection controller for diesel exhaust systems detects an incomplete purge cycle when the power is turned off.

Error code 3616

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

The position of the nozzle turbocharger with variable geometry – the reaction of the mechanical system does not meet the norm or the adjustment is broken.

Description:

The ECM has determined that the drive changes the geometry of the turbocharger is in the wrong position when setting the start switch to the ON position.

Error code 3648

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

Exhaust gas cleaning fluid injection controller temperature – these are accurate, but above normal – average severity level.

Description:

The ECM has determined that the internal temperature of the fluid injection controller for exhaust gas cleaning exceeds the warning limit.

Error code 3651

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The temperature of the liquid in the tank of the exhaust gas cleaning system of diesel engines is accurate, but below normal, the average level of severity.

Description:

The ECM determines that the temperature of the fluid in the tank of the exhaust system of diesel engines cannot reach the set level.

Error code 3679

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

Exhaust gas dosing unit – the original cause is unknown. Failed to initialize the exhaust gas dosing unit.

Description:

The dosing unit and the fluid injection controller for diesel engine exhaust systems cannot perform the initial data exchange between themselves at the first turn of the start switch to the ON position. and cannot perform initialization.

Error code 3681

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

A nitrogen oxide sensor has detected a fault in the sensor’s power supply circuit.

Description:

The ECM determines that the supply voltage of the sensor for nitrogen oxides is above or below the threshold determined by calibration.

Error code 3697

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

ECM internal error due to software malfunction.

Description:

The ECM detected a software or calibration error.

Error code 3713

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

Liquid line heater relay for diesel engine exhaust systems – the reaction of the mechanical system is not correct or the adjustment is broken.

Description:

The ECM detects that a short circuit has been detected in the battery supply circuit of the fluid line heater for diesel exhaust systems.

Error code 3726

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The sensor content of nitrogen oxides at the inlet of the exhaust gas cleaning system is accurate, but above normal, the average severity level.

Description:

The ECM detects that the liquid metering unit for the exhaust gas cleaning system does not provide the prescribed metered liquid supply.

Error code 3735

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

Auxiliary Control Switch – Data update rate is not correct.

Description:

The ECM does not receive a valid message on the J1939 multiplex network from the device connected to it for more than 1 second. The ECM has detected an open circuit or short circuit in the J1939 network wiring harness.

Error code 3736

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

An unexpected communication status has occurred in the communication channel between the ECM and the fluid controller in the exhaust gas cleaning system of diesel engines.

Description:

The ECM has sent an unexpected message to the fluid injection controller for diesel engine exhaust systems that could not be recognized.

Error code 3738

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , QSB, ISM

Error:

Liquid supply for exhaust systems of diesel engines to the dosing unit is interrupted.

Description:

The dosing unit determines that during the dosed supply of fluid for exhaust systems of diesel engines to the exhaust gas cleaning system the air supply is interrupted.

Error code 3749

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The sensor signal content of nitrogen oxides at the outlet of the exhaust gas purification system remains constant as the engine operating conditions change.

Description:

The ECM has determined that the sensor readings of nitrogen oxides do not change when the engine operating conditions change.

Error Code 3866

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The quality of the exhaust gas cleaning fluid is accurate, but below normal is the highest level of severity.

Description:

The ECM has determined that the quality of the exhaust gas is below a critical threshold.

Error code 3867

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The quality of the exhaust gas cleaning fluid is accurate, but below normal, the average level of severity.

Description:

The ECM has determined that the quality of the exhaust gas is below a critical threshold.

Error Code 3868

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

Fluid quality for exhaust gas cleaning – data refresh rate is inconsistent.

Description:

The ECM has determined that the quality of the exhaust gas is a mechanical reaction that is not normal or the adjustment is broken.

Error Code 3876

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The exhaust gas cleaning quality sensor does not recognize the presence of liquid.

Description:

The ECM has determined that the quality of the exhaust gas is a mechanical reaction that is not normal or the adjustment is broken.

Error Code 3877

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

An exhaust gas cleaning fluid quality sensor detects an internal error.

Description:

The ECM has determined that the exhaust gas cleaning fluid quality sensor is defective.

Error Code 3878

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

Exhaust gas quality sensor detects overheating.

Description:

The ECM detects that the gas cleaning sensor has overheated.

Error code 3879

Engine:

ISF 2.8, ISF 3.8, ISB, ISC, ISL, ISLe , ISDe , ISM, QSM, ISX, QSX

Error:

The quality of the exhaust gas cleaning fluid is accurate, but above normal.

Description:

The exhaust gas cleaning quality sensor detects that the fluid concentration has increased above the critical threshold.

Error Code 4157

Engine:

ISF 2.8, ISF 3.8

Error:

Exhaust Fluid Drain Valve – Mechanical System Reaction is Missing or Adjusted.

Description:

The ECM detects that the pressure of the exhaust gas does not drop when the start-up command is given to the exhaust gas cleaning valve.

Error code 4172

Engine:

ISF 2.8, ISF 3.8

Error:

A high signal voltage is detected in the dosing system air pressure sensor circuit.

Description:

The ECM detects that the voltage in the signal circuit of the air pressure sensor in the liquid dispensing system for exhaust gas cleaning is outside the acceptable range (above normal)

Error code 4173

Engine:

ISF 2.8, ISF 3.8

Error:

Absolute air pressure sensor in the dosing system – voltage below normal or short circuit to low voltage circuit. A low signal voltage is detected in the air pressure sensor circuit in the dosing system.

Description:

The ECM detects that the voltage in the signal circuit of the air pressure sensor in the liquid dispensing system for cleaning exhaust gases is out of range (below normal)

Error code 4174

Engine:

ISF 2.8, ISF 3.8

Error:

Temperature sensor in the fluid dosing system for cleaning exhaust gases – voltage is above normal or short circuit to high voltage circuit. A high signal voltage has been detected in the temperature sensor circuit in the liquid dispensing system for exhaust gas cleaning.

Description:

The ECM detects that the voltage in the signal circuit of the temperature sensor in the liquid dispensing system for exhaust gas cleaning is outside the allowable range (above normal).

Error code 4175

Engine:

ISF 2.8, ISF 3.8

Error:

Temperature sensor in the dosing system for exhaust gas cleaning – voltage below normal or short circuit to low voltage circuit. A low signal voltage is detected in the signal circuit of the temperature sensor in the fluid dispensing system for exhaust gas cleaning.

Description:

The ECM detects that the voltage in the signal circuit of the temperature sensor in the liquid dispensing system for exhaust gas cleaning is outside the acceptable range (below normal).

Error code 4176 Error code 4177

Engine:

ISF 2.8, ISF 3.8

Error:

Exhaust Fluid Dosing System Air Valve — Voltage below normal or short to low voltage circuit. A low signal voltage is detected in the dosing system air circuit.

Description:

The ECM detects that the dosing system’s air valve circuit has a short to voltage on the low voltage circuit.

Error code 4238

Engine:

ISF 2.8, ISF 3.8

Error:

The air pressure in the exhaust gas cleaning dosing system is accurate, but below normal, the average severity level. A low air pressure was detected in the dosing unit.

Description:

The ECM detects that the air pressure in the dosing system is out of range (below normal).

Error code 4239

Engine:

ISF 2.8, ISF 3.8

Error:

The air pressure in the exhaust gas cleaning dosing system is accurate, but above normal, the average severity level. A high air pressure was detected in the dosing unit.

Description:

The ECM detects that the air pressure in the dosing system is out of range (higher than normal).

Error code 4271

Engine:

ISF 2.8, ISF 3.8

Error:

Exhaust Fluid Dosing Unit Air Valve — Mechanical System Reaction Is Not Allowed, or Adjustment is Disrupted. High air pressure was detected in the dosing unit when charging the system, when a close signal was given to the dosing unit air valve.

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Allison Transmission 3000/4000 series fault code list https://beznez.net/allison-transmission-3000-4000-series-fault-code-list/ https://beznez.net/allison-transmission-3000-4000-series-fault-code-list/#respond Wed, 20 Sep 2023 08:43:46 +0000 https://beznez.net/?p=934 Automatic transmissions Allison 3000 and 4000 Series with electronic control Gen4

Show 102550100 entriesSearch:

ERROR CODEDESCRIPTIONLAMP CHECK TRANSREACTION CONTROL SYSTEM
C1312Low voltage signal to the inclusion of retarderOff.Retarder is not included
C1313High voltage signal at the inclusion of retarderOff.Retarder is not included
P0122Intermittent or low level signal accelerator pedal positionOff.The default value for default
P0123The high level of gas pedal position sensor signalOff.The default value for default
P0218Oil temperature too highOff.Sample control at excess temperature. Holds 4 transfer. Torque converter lock ban. Disables adaptation  gear.
P0562Low voltage control unitOff.Prohibition on blocking the torque converter. DNA
P0602The control unit is not programmedON.Remains in neutral
P0610Additional hardware error car with power controlON.The data are used calibration of the TID (A)
P0613Processor error control unitOff.All solenoids are turned off
P0614Data incompatibility ECM and TCM for adjusting the moment the engineON.Only neutral, back and second gear. Ban converter clutch switch adaption is off
P0634Temperature control unit exceededON.DNS, SOL OFF, actively hydraulic control.
P063EThere is no signal input on the situation of throttle, when flap auto definitionON.The default value for default
P063FThere is no coolant temperature signal of Auto determinationOff.
P0657The gap chain PatientsON.SOL OFF DNA. Ban torque converter lock, barring the master modulation.
P0658Low voltage in the circuit of PatientsON.DNS, SOL OFF hydraulic control active
P0659High voltage in the circuit of PatientsON.DNS, SOL OFF hydraulic control active
P0702The control unit does not recognize AUTOMATIC configurationON.Uses standard configuration
P0703There is a problem with the brake sensorOff.On truck it is impossible to Enable N-D, If the code is active, the work is prohibited retarder.
P0708High level signal from the current transfer.ONIgnores the signal
P070CLow oil level sensor signalOff.
P070DHigh level oil level sensor signalOff.
P0711Adjunct oil temperature sensor signalON.Uses the value of the the default temperature
P0712Low oil temperature sensor signalON.Uses standard the temperature value
P0713The high level of oil temperature sensor signalON.Uses standard the temperature value
P0716Adjunct of the turbine wheel speed sensor signalON.DNS, the AUTOMATIC TRANSMISSION is blocked on the current transfer
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Allison Transmission 1000 and 2000 Series Fault Codes List https://beznez.net/allison-transmission-1000-and-2000-series-fault-codes-list/ https://beznez.net/allison-transmission-1000-and-2000-series-fault-codes-list/#respond Wed, 20 Sep 2023 08:18:29 +0000 https://beznez.net/?p=931

Diagnostic trouble codes (DTCs) list and descriptions index

Show 102550100 entriesSearch:

DTCDESCRIPTIONCHECK TRANS LIGHT
P0121Pedal Postion Sensor Performance ProblemNo
P0122Pedal Postion Sensor Circuit Low VoltageNo
P0123Pedal Postion Sensor Circuit High VoltageNo
P0218Transmission Fluid Over TemperatureNo
P0562System Voltage LowYes
P0563System Voltage HighYes
P0602TCM Not ProgrammedYes
P0606Controller Internal PerformanceYes
P0701Transmission Control System PerformanceNo
P0703Brake Switch CircuitNo
P0705Transmission Range Sensor Circuit (PRNDL Input)No
P0706Transmission Range Sensor Circuit PerformanceYes
P0708Transmission Range Sensor Circuit High InputYes
P0710Transmission Fluid Temperature Sensor MalfunctionNo
P0711Transmission Fluid Temperature Sensor Circuit PerformanceYes
P0712Transmission Fluid Temperature Sensor Circuit Low Input (High Temperature)Yes
P0713Transmission Fluid Temperature Sensor Circuit Low Input (Low Temperature)Yes
P0716Turbine Speed Sensor Circuit PerformanceYes
P0717Turbine Speed Sensor Circuit No SignalYes
P0721Output Speed Sensor Circuit PerformanceYes
P0722Output Speed Sensor Circuit No SignalYes
P0726Engine Speed Input Circuit PerformanceYes
P0727Engine Speed Sensor Circuit No SignalYes
P0731Incorrect 1st Gear RatioYes
P0732Incorrect 2nd Gear RatioYes
P0733Incorrect 3rd Gear RatioYes
P0734Incorrect 4th Gear RatioYes
P0735Incorrect 5th Gear RatioYes
P0736Incorrect Reverse RatioYes
P0741Torque Converter Clutch System Stuck OffYes
P0742Torque Converter Clutch System Stuck OnYes
P0748Pressure Control Solenoid A ElectricalYes
P0763Shift Solenoid C ElectricalYes
P0768Shift Solenoid D ElectricalYes
P0773Shift Solenoid E ElectricalYes
P0778Pressure Control Solenoid B ElectricalYes
P0840Transmission Pressure Switch Solenoid C CircuitYes
P0841Transmission Pressure Switch Solenoid C Circuit Stuck OpenYes
P0842Transmission Pressure Switch Solenoid C Circuit Stuck ClosedYes
P0843Transmission Pressure Switch Solenoid C Circuit HighYes
P0845Transmission Pressure Switch Solenoid D CircuitYes
P0846Transmission Pressure Switch Solenoid D CircuitYes
P0847Transmission Pressure Swtich Solenoid D CircuitYes
P0848Transmission Pressure Switch Solenoid D CircuitYes
P1688Unmanaged Engine Torque Delivered to TCMYes
P1709Transmission Pressure Switch Solenoid E CircuitYes
P1710Transmission Pressure Switch Solenoid E Circuit Stuck OpenYes
P1711Transmission Pressure Switch Solenoid E Circuit Stuck ClosedYes
P1712Transmission Pressure Switch Solenoid E Circuit HighYes
P1713Transmission Pressure Switch Reverse CircuitYes
P1714Transmission Pressure Switch Reverse Circuit Stuck OnYes
P1716Transmission Pressure Switch Reverse Circuit Highno
P1718Incorrect Neutral Gear RationNo
P1720Solenoid A Controlled Clutch Not EngagedYes
P1721Solenoid B Controlled Clutch Not EngagedYes
P1723Solenoid A Controlled Clutch EngagedYes
P1724Solenoid B Controlled Clutch EngagedYes
P1726Shift Solenoid D Controlled Clutch EngagedNo
P1727Shift Controlled E Clutch EngagedNo
P1760TCM Supply VoltageNo
P1779Engine Torque Delivered To ECMYes
P1835Kickdown CircuitYes
P1860Torque Converter Clutch PWM Solenoid Circuit –ElectricalYes
P18754WD Low Switch CircuitYes
P1891Throttle Postion Sensor Pulse Width Modulation (PWM) Signal Low InputNo
P1892Throttle Postion Sensor Pulse Width Modulation (PWM) Signal High InputNo
U1000Serial Data Communication Link Malfunction (Class2)No*
U1016Class 2 Powertrain Controller State of Health FailureNo*
U1041Class 2 ABS Controller State of Health FailureNo*
U1064Class 2 TBC Controller State of Health FailureNo*
U1096Class 2 IPC Controller State of Health FailureNo*
U1300Serial Data Communication Link Low (Class2)No
U1301Serial Data Communication Link High (Class2)No
U2104Can Bus Rest Counter OverrunYes
U2105Can Bus Error ECMYes
]]>
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DAF Fault codes list -engine control units, DMCI https://beznez.net/daf-fault-codes-list-engine-control-units-dmci/ https://beznez.net/daf-fault-codes-list-engine-control-units-dmci/#respond Wed, 20 Sep 2023 08:12:57 +0000 https://beznez.net/?p=928
CodeDescriptionReason
P0016Distribution Shaft SENSOR F558Incorrect Configure Timing
– Signals from the distribution shaft sensor (F558) and the Crankshaft Speed sensor (F552).Failure or contamination of the crankshaft speed sensor (F552) and/or distribution shaft sensor (F558)
Too large air gap between the crankshaft speed sensor (F552) and Flywheel
The air gap between the distribution shaft sensor is too large (F558) and Pulse Wheel
Damage to the flywheel and/or pulse Wheels
Interrupt or short-circuit to mass on the contact A49 ECU
Interrupt on Contact A50 Ecu
P0017Crankshaft Speed Sensor F552Incorrect Configure Timing
– Signals From Sensor Revolutions Cranked ShaftF558) and the distribution shaft sensor (F552) Not Match.Failure or contamination of the crankshaft speed sensor (F552) and/or distribution shaft sensor (F558)
The air gap between the sensor is too large Revolutions
Crank Shaft (F552) and Flywheel
The air gap between the distribution shaft sensor is too large (F558) and Pulse Wheel
Damage to the flywheel and/or pulse Wheels
Interrupt or short-circuit to mass on the contact A49 ECU
Interrupt on Contact A50 Ecu
P0069Air inlet pressure sensor F649/ F802Improper supply voltage in the inlet pressure sensor
– The pressurization pressure extends beyond the range during Ignition.Resistance Contact(Oj) в
Between the air boost pressure sensor on the inlet and the ECU
Malfunction of the air boost pressure sensor on the Inlet
P0070Ambient temperature sensor F651Contact Resistance (Oj) in the wiring between the ambient temperature sensor (F651) and Ecu
– Incorrect message from sensorAmbient temperature sensor malfunction (F651)
Error Communication In the Network CAN
Interrupt, short circuit to mass or Short circuit for power in network wiring CAN
P0072Ambient temperature sensor F651Contact Resistance (Oj) in the wiring between the ambient temperature sensor (F651) and Ecu
– The ambient temperature extends beyond the range, below the threshold ValuesAmbient temperature sensor malfunction (F651)
P0073Ambient temperature sensor F651Contact Resistance (Oj) in the wiring between the ambient temperature sensor (F651) and Ecu
– The ambient temperature extends beyond the range, above the threshold ValuesAmbient temperature sensor malfunction (F651)
P0087Fuel Pressure sensor F713/F801Internal Or Outdoor Leaks Fuel
– Pressure too low Fuel.Fault Fuel Pump
The fuel pressure adjustment valve does not close
Fault Sensor Pressure Fuel
P0088Fuel Pressure sensor F713/F801– Fuel pressure adjustment valve seizing
– Pressure too high Fuel.
P0107Air inlet pressure sensor F649/ F802Improper supply voltage in the inlet pressure sensor
– Too Low Pressure Boost.Resistance Contact(Oj) в
Between the pressurized air inlet pressure sensor and the Ecu
Malfunction of the air boost pressure sensor on the Inlet
Leak In the System Fence Air
Incorrect Work Overflow Valve
Fault Turbocharger
Interrupt or short-circuit to mass on the contact A28 ECU
Interrupt or short-circuit to mass on the contact A30 ECU
Short-circuit to mass on contact C30 Ecu
P0108Air inlet pressure sensor F649/ F802Improper supply voltage in the inlet pressure sensor
– Too High Pressure Boost.Resistance Contact(Oj) в
Between the air boost pressure sensor on the inlet and the ECU
Failure of the inlet pressure sensor (F649)
Incorrect Work Overflow Valve
Fault Turbocharger
Short circuit to the power source on the contact A30 Ecu
Interrupt on Contact A27 Ecu
P0110Inlet air temperature Sensor F649/F804Contact Resistance (Oj) in the wiring between the inlet air temperature sensor and the Ecu
– The inlet air temperature extends beyond the range during Ignition.Malfunction of the air temperature sensor on the Inlet
P0112Inlet air temperature Sensor F649/F804Short-circuit to mass on contact A34 Ecu
– Voltage is too low on the contact A34 Ecu.Short-circuit between contact A27 and contact A34
Contact Resistance (Oj) in the wiring between the inlet air temperature sensor and the Ecu
Malfunction of the air temperature sensor on the Inlet
P0113Inlet air temperature Sensor F649/F804Interrupt or short circuit to the power source on the contact A34 ECU
– Too high voltage on the contact A34 Ecu.Short-circuit between contact A28 and contact A34
Short-circuit to mass on contact A27 Ecu
Malfunction of the air temperature sensor on the Inlet
P0115Coolant temperature Sensor F566Interrupt in a contact’s transaction C25 and/or contact C26 ECU
– Temperature Cooling Liquid On The inlet is out of range during ignition.Coolant temperature sensor malfunction (F566)
Fault Thermostat
Pollution Radiator
Car Has System Hydronic 10:
The car engine did not work for more than eight hours, and the additional heater was switched on.
The cooling fluid in the cooling circuit is heated by an additional heater. Therefore, there is a difference between the coolant temperature and the average temperature of the pressurized air, fuel and oil.
P0117Coolant temperature Sensor F566Coolant temperature sensor malfunction (F566)
– Voltage is too low on the contact C25 Ecu.Short-circuit to mass on contact C25 ECU
Interrupt in a contact’s transaction C25 and/or contact C26 ECU
Contact Resistance (Oj) in the wiring between the engine coolant temperature sensor (F566) and Ecu
P0118Coolant temperature Sensor F566Coolant temperature sensor malfunction (F566)
– Too high voltage on the contact C25 Ecu.Short circuit to the power source on the contact C25 Ecu
Interrupt or short circuit to the power source on the contact C25 ECU
Interrupt on Contact C26 Ecu
P0121Accelerator pedal Sensor F672Mechanical Fault Pedal Accelerator
– Seizing pedals Accelerator.Fault Spinner
The accelerator pedal is pressed and the working brake pedal is pressed at the same time.
P0122Accelerator pedal Sensor F672Interrupt or short-circuit to mass on the contact B33 ECU
– Short-circuit to mass in the transaction on the contact B33 Ecu.Interrupt or short-circuit to mass on the contact B34 Ecu
Fault Spinner
P0123Sensor Pedal Accelerator F672Interrupt in a transaction on a contact B37 Ecu
– Short circuit on the power supply in the transaction on the contact B33 Ecu.Short circuit to power supply 5 in on contact B33 Ecu
Fault Spinner
P0127Inlet air temperature Sensor F649/F804Mechanical malfunction (air cooler on the Inlet
– Too High Temperature.Too High Temperature Engine
P0168Fuel temperature Sensor F713/F803– Fault Sensor Pressure Fuel
– Reached maximum Permissible
Fuel temperature.
P0180Fuel temperature Sensor F713/F803Contact Resistance (Oj) in the wiring between the fuel temperature sensor and the Ecu
– The fuel temperature extends beyond the range during Ignition.Fault Sensor Temperature Fuel
Warm fuel due to return fuel in Result Low fuel level
P0182Fuel temperature Sensor F713/F803Short-circuit to mass on contact A41 Ecu
– Voltage is too low on the contact A41 Ecu.Resistance Contact(Oj) в
Between the fuel temperature sensor and the ECU
Fault Sensor Temperature Fuel
P0183Sensor Temperature Fuel F713/F803Interrupt On Contact A46 Ecu
– Too high voltage on the contact A41 Ecu.Interrupt or short circuit to the power source on the contact A41 ECU
Short-circuit between contacts A41 and A42 Ecu
Fault Sensor Temperature Fuel
P0195Motor Oil Temperature sensor F647/F808Contact Resistance (Oj) in the wiring between the temperature sensor of the motor oil and the Ecu
-The temperature of the motor oil at the inlet extends beyond the range during ignition.Malfunction of the temperature sensor of the motor Oil
P0197Motor Oil Temperature sensor F647/F808Short-circuit to mass on contact C29 Ecu
– Voltage is too low on the contact C29 Ecu.Short-circuit between contacts C29 and C34 ECU
Contact Resistance (Oj) in the wiring between the temperature sensor of the motor oil and the Ecu
Malfunction of the temperature sensor of the motor Oil
P0198Motor Oil Temperature sensor F647/F808Interrupt or short circuit to power supply 5 in on contact C29 ECU
– Too high voltage on the contact C29 Ecu.Fault Sensor Temperature Motor Oil
Interrupt on Contact C34 Ecu
P0201Electromagnetic valve of the pump unit of the cylinder № 1, B131– Malfunction of the electromagnetic valve of the pumping unit of the cylinder № 1 (B131)
Interrupt on Contact A3 and/or contact A4.
Short-circuit to mass on contact A4 ECU
P0202Electromagnetic valve of the pumping unit of the cylinder № 2, B132– Malfunction of the electromagnetic valve of the pumping unit of the cylinder № 2 (B132)
Interrupt on Contact A11 and/or contact A20.
Short Circuit On Mass On Contact A20
Ecu
P0203Electromagnetic valve of the pumping unit of the cylinder № 3, B133– Malfunction of the electromagnetic valve of the pumping unit of the cylinder № 3 (B133)
Interrupt on Contact A7 and/or contact A12.
Short Circuit On Mass On Contact A12 ECU
P0204Electromagnetic valve of the pumping unit of the cylinder № 4, B134– Malfunction of the electromagnetic valve of the pumping unit of the cylinder № 4 (B134)
Interrupt on Contact A23 and/or contact A24.
Short Circuit On Mass On Contact A24
Ecu
P0205Electromagnetic valve of the pumping unit of the cylinder № 5, B135– Malfunction of the electromagnetic valve of the pumping unit of the cylinder № 5 (B135)
Interrupt on Contact A8 and/or contact A15.
Short-circuit to mass on contact A8 ECU
P0206Electromagnetic valve of the pumping unit of the cylinder № 6, B136– Malfunction of the electromagnetic valve of the pumping unit of the cylinder № 6 (B136)
Interrupt on Contact A16 and/or contact A19.
Short Circuit On Mass On Contact A16
Ecu
P0217Coolant temperature Sensor F566Fault Fan
– Too high Temperature.Fault Thermostat
– Pollution/Lock Radiator
P0219Crankshaft Speed Sensor F552Engine Mx:
– Warning about exceeding of allowed speedThis problem occurs when the
2250 rpm during normal operation and at 2300 rpm, if engine brake is on Engine PR:
This problem occurs when the
2800 rpm during normal operation and at 2900 rpm, if engine brake is on
P0234The inlet air pressure is too high at the active bypass valve.Interrupt or short-circuit to mass on the contact C8 ECU
Short circuit to the power source on the contact C8 Ecu
Interrupt on Contact C59 Ecu
P0243Bypass valve B368– Fault Overflow Valve (B368)
– Interrupt in a transaction on a contact C8 Ecu.
P0245Bypass valve B368– Fault Overflow Valve (B368)
– Short-circuit to mass on contact C8 ECU
P0246Bypass valve B368– Fault Overflow Valve (B368)
– Short circuit to the power source on the contact C8 ECU
P0261Electromagnetic valve of the pump unit of the cylinder № 1, B131Interrupt on Contact A3 and/or contact A4 ECU
Short-circuit to mass on contact A4 ECUFault Electromagnetic
Interrupt on Contact A3 ECUValve of the pump unit of the cylinder № 1 (B131)
P0262Electromagnetic valve of the pump unit of the cylinder № 1, B131Short circuit to the power source on the contact A8 Ecu
– Short circuit to the power source on the contact A4 Ecu.Malfunction of the electromagnetic valve of the pumping unit of the cylinder № 1 (B131)
Malfunction of the electromagnetic valve of the pumping unit of the cylinder № 5 (B135)
P0263The level of the cylinder № is too low 1Short circuit to the power source on the contact A36 Ecu.
Malfunction of solenoid valve in cylinder 1 engine brake Mx (B411)
Mechanical failure (e.g. nozzle malfunction, pusher or valve breakage)
This problem occurs only when:The valve gap is too large (> 1.0 mm), in this case, check whether the actuator is causing the Valve.
Temperature Cooling Liquid Above 62 CMalfunction of the electromagnetic valve of the pumping unit of the cylinder № 1 and/or nozzle (check Resistance
Engine speed above idle speed
P0264Electromagnetic valve of the pumping unit of the cylinder № 2, B132Interrupt on Contact A11 and/or contact A20 ECU
– Short Circuit On Mass On Contact A20Malfunction of the electromagnetic valve of the pumping unit of the cylinder № 2 (B132)
Ecu.
P0265Electromagnetic valve of the pumping unit of the cylinder № 2, B132Short circuit to the power source on the contact A24 Ecu
– Short circuit to the power source on the contact A20 Ecu.Malfunction of the electromagnetic valve of the pumping unit of the cylinder № 2 (B132)
Fault Electromagnetic
Valve of the pump unit of the cylinder № 4 (B134)
P0266The level of the cylinder № is too low 2Short circuit to the power source on the contact A52 Ecu.
Fault Electromagnetic
Valve in cylinder 2 engine brakes Mx (B412)
This problem occurs only when:Mechanical Fault
Temperature Cooling Liquid Above 62 C(e.g. nozzle malfunction, pusher or valve breakage)
Engine speed above idle speedToo Big Gap Valve
(> 1.0 mm), in this case, check that the valve actuator is not the cause.
Malfunction of the electromagnetic valve of the pumping unit of the cylinder № 2 and/or nozzles (check Resistance
Incorrectly marked TDC on the flywheel (engine PR)
– Aluminum Push Ring For Installation Sensor The speed of the crankshaft has left its place (the engine PR With engine PTO)
P0267Electromagnetic valve of the pumping unit of the cylinder № 3, B133Interrupt on Contact A7 and/or contact A12 Ecu
– Short Circuit On Mass On Contact A12 ECUMalfunction of the electromagnetic valve of the pumping unit of the cylinder № 3 (B133)
P0268Electromagnetic valve of the pumping unit of the cylinder № 3, B133Short circuit to the power source on the contact A16 Ecu
– Short circuit to the power source on the contact A12 Ecu.Malfunction of the electromagnetic valve of the pumping unit of the cylinder № 3 (B133)
Malfunction of the electromagnetic valve of the pumping unit of the cylinder № 6 (B136)
P0269The level of the cylinder № is too low 3Short circuit to the power source on the contact A44 Ecu.
Malfunction of the solenoid valve in the cylinder 3 engine brakes Mx (B413)
Mechanical failure (e.g. nozzle malfunction, pusher or valve breakage)
This problem occurs only when:The valve gap is too large (> 1.0 mm), in this case, check whether the actuator is causing the Valve.
Temperature Cooling Liquid Above 62 CMalfunction of the electromagnetic valve of the pumping unit of the cylinder № 3 and/or nozzles (check Resistance
Engine speed above idle speed
P0270Electromagnetic valve of the pumping unit of the cylinder № 4, B134Interrupt On Contact A23 and/or Contact A24 Ecu
– Short Circuit On Mass On Contact A24Fault Electromagnetic
Ecu.Valve of the pump unit of the cylinder № 4 (B134)
P0271Electromagnetic valve of the pumping unit of the cylinder № 4, B134Short circuit to the power source on the contact A20 Ecu
– Short circuit to the power source on the contact A24 Ecu.Malfunction of the electromagnetic valve of the pumping unit of the cylinder № 2 (B132)
Malfunction of the electromagnetic valve of the pumping unit of the cylinder № 4 (B134)
P0272The level of the cylinder № is too low 4Short circuit to the power source on the contact A56 Ecu.
Malfunction of the solenoid valve in the cylinder 4 engine brakes Mx (B414)
Mechanical failure (e.g. nozzle malfunction, pusher or valve breakage)
This problem occurs only when:The valve gap is too large (> 1.0 mm), in this case, check whether the actuator is causing the Valve.
Temperature Cooling Liquid Above 62 CMalfunction of the electromagnetic valve of the pumping unit of the cylinder № 4 and/or nozzles (check Resistance
Engine speed above idle speed
P0273Electromagnetic valve of the pumping unit of the cylinder № 5, B135Interrupt On Contact A15 and/or contact A8 ECU
– Short-circuit to mass on contact A8Malfunction of the electromagnetic valve of the pumping unit of the cylinder № 5 (B135)
Ecu
P0274Electromagnetic valve of the pumping unit of the cylinder № 5, B135Short circuit to the power source on the contact A4 Ecu
– Short circuit to the power source on the contact A8 Ecu.Malfunction of the electromagnetic valve of the pumping unit of the cylinder № 1 (B131)
Fault Electromagnetic
Valve of the pump unit of the cylinder № 5 (B135)
P0275The level of the cylinder № is too low 5Short circuit to the power source on the contact A40 Ecu.
Fault Electromagnetic
Valve in cylinder 5 engine brakes Mx (B415)
This problem occurs only when:Mechanical Fault
Temperature Cooling Liquid Above 62 C(e.g. nozzle malfunction, pusher or valve breakage)
Engine speed above idle speedToo Big Gap Valve
(> 1.0 mm), in this case, check that the valve actuator is not the cause.
Fault Electromagnetic Valve Pump Unit
Cylinder № 5 and/or nozzles (check resistance)
Incorrectly marked TDC on the flywheel (engine PR)
Aluminum Push Ring For Installation Sensor The speed of the crankshaft has left its place (the engine PR With engine PTO)
P0276Electromagnetic valve of the pumping unit of the cylinder № 6, B136Interrupt On Contact A19 and/or Contact A16 Ecu
– Short Circuit On Mass On Contact A16 Ecu.Malfunction of the electromagnetic valve of the pumping unit of the cylinder № 6 (B136)
P0277Electromagnetic valve of the pumping unit of the cylinder № 6, B136Short circuit to the power source on the contact A12 Ecu
– Short circuit to the power source on the contact A16 Ecu.Malfunction of the electromagnetic valve of the pumping unit of the cylinder № 3 (B133)
Malfunction of the electromagnetic valve of the pumping unit of the cylinder № 6 (B136)
P0278The level of the cylinder № is too low 6Short circuit to the power source on the contact A48 Ecu.
Malfunction of the solenoid valve in the cylinder 6 engine brakes Mx (B416)
Mechanical failure (e.g. nozzle malfunction, pusher or valve breakage)
This problem occurs only when:The valve gap is too large (> 1.0 mm), in this case, check whether the actuator is causing the Valve.
Temperature Cooling Liquid Above 62 CMalfunction of the electromagnetic valve of the pumping unit of the cylinder № 6 and/or nozzles (check Resistance
Engine speed above idle speed
P0298Engine oil temperature too high– The coolant filter in the oil block is contaminated (engine Mx)
P0299The inlet air pressure is too low at the active bypass valve.
P0335Crankshaft Speed Sensor F552Interrupt, short circuit to power supply, short circuit to mass, contact resistance (Oj) or interrupt in the transaction on the contact A49 and/or contact A50
– No signal or signal Invalid.Ecu
Failure or contamination of the crankshaft speed sensor (F552)
There is too much air gap between the crankshaft speed sensor and the Flywheel
No Hole (Oy) in the flywheel due to the Pollution
Interrupt or short-circuit to mass on the contact A49
Ecu
Interrupt on Contact A50 Ecu
P0336Crankshaft Speed Sensor F552Unreliable Connection Or Bad Contact
– Signal disruption during normal operationFailure of the crankshaft speed sensor (F552)
There is too much air gap between the crankshaft speed sensor and the Flywheel
External Influence
P0340Sensor Distribution Shaft F558Short circuit, short circuit to power source, short circuit to mass, contact resistance (Oj) or interrupt in the transaction on the contact A53 Ecu
– Signal Missing Or Invalid.malfunction or contamination of the distribution shaft sensor (F558)
Too Big Air
The gap between the distribution shaft sensor and the pulse wheel
Interrupt on Contact A54 Ecu
P0341Distribution Shaft SENSOR F558Unreliable Connection Or Bad Contact
– Signal disruption during normal operationFailure of the camshaft sensor (F558)
Too Big Air
The gap between the distribution shaft sensor and the pulse wheel
– External Influence
P0475Brake Valve-Retarder B192Fault Valve Brakes- Moderator B192
– Interrupt in a transaction on a contact C28 Ecu.Interrupt or short-circuit to mass on the contact C60,
C61 Or C62 ECU
P0477Brake Valve-Retarder B192– Malfunction of the brake valve-retarder B192
– Short Circuit On Mass On Contact C28 Ecu.
P0478Brake Valve-Retarder B192– Malfunction of the brake valve-retarder B192
– Short circuit to the power source on the contact C28 Ecu.
P0480Electronically controlled fan Clutch B335– Malfunction of the fan clutch with electronic control (B335)
– Interrupt in a transaction on a contact C16 Ecu.
P0500Speed CarPossible influence of external factors on the car speed signal coming from the speed sensor in the MTCO
– Signal Invalid.Too large air gap between the speed sensor and the pulse Wheel
Interrupt, Short Circuit
To “mass” or short circuit to the power source on the contact A53 ECU
Interrupt, Short Circuit
To “mass” or short circuit to the power source on the contact A45 ECU
P0501Speed carPossible influence of external factors on the car speed signal coming from the speed sensor in the MTCO
– Changing the car speed signal is not allowed.Too large air gap between the speed sensor and the pulse Wheel
Incorrectly Programmed Factor K
P0503Speed Car– Possible influence of external factors on the car speed signal coming from the speed sensor in the MTCO
– Car speed signal goes beyond the borders Range.
P0513Connection with immobilizer is impossible.Fault Block Immobilizer
– The injection is blocked.Immobilizer Not Recognizes The key Ignition
Immobilizer Not
Programmed in electronic unit DMCI
P0522Motor Oil Pressure sensor F744/F810Fault Sensor Pressure Motor Oil
– Voltage is too low on the contact C33 Ecu.Interrupt or short-circuit to mass on the contact C33 ECU
Short-circuit between contacts C33 and C34 ECU
Short-circuit to mass on contact A28 Ecu
Interrupt or short-circuit to mass on the contact C30 ECU
P0523Motor Oil Pressure sensor F744/F810Fault Sensor Pressure Motor Oil
– Too high voltage on the contact C33 Ecu.Short circuit to the power source on the contact C33 Ecu
Short-circuit between contacts C30 and C33 ECU
Interrupt in a contact’s transaction C30 and/or contact C33 ECU
P0524Motor Oil Pressure sensor F744/F810Fault Sensor Pressure Motor Oil
– The motor pressure is too low Oil.Incorrect supply voltage in the motor oil pressure sensor
Contact Resistance (Oj) in the wiring between the motor oil pressure sensor and the Ecu
Too little motor oil in Maslosbornike
Short-circuit to mass on contact A28 Ecu
Pollution Grid For
Cooling Liquid In the Oil Block
Leak In the Oil Pump
Bearing, damage to the centrifugal oil Filter
P0527Electronically controlled fan Clutch B335Malfunction of the fan clutch with electronic control (B335)
– Too High Speed Fan.Irregular Short Circuit
To “mass” on the contact C35 or C36
P0528Electronically controlled fan Clutch B335Interrupt or short-circuit to mass on the contact C35 ECU
– Too Low Speed Fan.Short-circuit to mass on contact A42 ECU
Interrupt or short-circuit to mass on the contact C36
Ecu
Short circuit to the power source on the contact C36 Ecu
Interrupt On Contact C31 Ecu
Malfunction of the fan clutch with electronic control (B335)
P0541Relay of the grating air heater on the inlet (G014)Short-circuit to mass on contact C32 Ecu.
– Short Circuit On Mass On Contact C32Failure of the relay of the grating air heater at the inlet (G014)
Ecu.
P0542Relay of the grating air heater on the inlet (G014)Failure of the relay of the grating air heater at the inlet (G014)
– Short Circuit to power source OnShort Circuit On Source
Contact C32 ECU.Power supply on the contact C32 ECU.
P0543Relay of the grating air heater on the inlet (G014)Failure of the relay of the grating air heater at the inlet (G014)
– Interrupt on Contact C32 Ecu.Interrupt in power supply or contact C32 Ecu
Interrupt or short-circuit to mass on the contact C60, C61 or C62 Ecu
P0562Supply voltageThe adjusted voltage of the generator is too low (A513)
– The ECU supply voltage is too low on the contact B60 and/or Contact B61, and/or Contact B62.Contact Resistance (Oj) in the wiring between the generator (A513) and ECU
P0563Supply voltage– Fault Generator (A513)
-Too high power supply voltage of the ECU on the contact B60 and/or contact B61, and/or contact B62.
P0565Network communication CAN -Cruise control– Malfunction of the steering wheel switches (C916)
– Incorrect message CAN About the Switch OFF Cruise control transmitted through VIC-2.
P0567Network communication CAN -Cruise control– Malfunction of the steering wheel switches (C916)
– Incorrect message CAN About the Switch What Cruise control transmitted through VIC-2.
P0569Network communication CAN -Cruise control– Malfunction of the steering wheel switches (C916)
– Incorrect message CAN About the Switch SET Cruise control transmitted through VIC-2.
P0570Network communication CAN -Cruise control– Malfunction of the steering wheel switches (C916)
– Incorrect message CAN About the Switch SET + Cruise Control transmitted through VIC-2.
P0585Network communication CAN -Cruise control– Malfunction of the steering wheel switches (C916)
– Incorrect message CAN About the Switch SET + and SET -Cruise control transmitted through VIC-2.
P0602ECU DMCI (d965)– Program Ecu DMCI
Required Programming Ecu DMCI
Results in the following symptoms:
Maximum engine speed 1500 rpm
Warning Engine Red Color
P060AECU DMCI (d965)
– Internal Fault ЭБУ 1 (CPU).
P0611ECU DMCI (d965)
– Internal Fault 5 (TPU).
P0615Reserved
– Interrupt in a transaction on a contact A25 Ecu.
P0616Reserved
– Short Circuit On Mass On Contact A25
Ecu.
P0617Reserved
– Short circuit to the power source on the contact A25 Ecu.
P062BEcu DMCI (D965)
– Supply voltage supplied to pump units/nozzle, above 50 In the.
P062DEcu DMCI (D965)
– The supply voltage supplied to the pump units/nozzle is below 50 In the.
P0640Relay of the grating air heater on the inlet (G014)Short-circuit to mass on contact C32 Ecu.
– Short Circuit.Short circuit to the power source on the contact C39 Ecu
P0642Power Sensor 5 in on B335 and F713 / F801Short-circuit to mass on contact A42 Ecu
– Low supply voltage on the contact C35 ECU or on contact A42 ECUShort-circuit to mass on contact C35 ECU
Malfunction of the fan clutch with electronic control (B335)
P0643Power Sensor 5 in on B335 and F713 / F801Short circuit to the power source on the contact A42 Ecu
– High voltage supply on the contact C35 ECU or on contact A42 ECUShort circuit to the power source on the contact A45 Ecu
P0650Interrupt in a transaction on a contact B18 ECU.
P0652Power Sensor 5 in on F672Accelerator pedal sensor malfunction (F672)
– Voltage is too low on the contact B34 Ecu.Short-circuit to mass on contact B34 ECU
Short-circuit between contacts B34 and B37 and/or contact in 38 Ecu
P0653Power Sensor 5 in on F672– Short circuit to the power source on the contact B34 Ecu
– Too high voltage on the contact B34 Ecu.
P0657Starter Interruption
– Interrupt in a transaction on a contact B9 Ecu.
P0658Starter Interruption
– Short-circuit to mass on contact B9 ECU
P0659Interrupt Starter– Fault Starter
– Short circuit to the power source on the contact B9 Ecu.
P0666Temperature sensor in ECU DMCI D965
– Internal Fault.
P0668Temperature sensor in ECU DMCI D965
– Internal Fault.
P0669Temperature sensor in ECU DMCI D965
– Internal Fault.
P0685Relay Source Power G126No power supply to the ECU DMCI D965
Constant Feed Power In the Ecu
DMCI D965
P0691Electronically controlled fan Clutch B335– Malfunction of the fan clutch with electronic control (B335)
– Short Circuit On Mass On Contact C16
Ecu.
P0692Electronically controlled fan Clutch B335– Malfunction of the fan clutch with electronic control (B335)
– Short Circuit to power source On
Contact C16 ECU.
P0698Power Sensor 5 in on F649 / F802 and F744 / F810Short-circuit to mass on contact A28 Ecu
– Voltage is too low on the contact A28 or С30 Ecu.Short-circuit between contacts A27 and A28 Ecu
Malfunction of the air boost pressure sensor on the Inlet
Short-circuit to mass on contact C30 Ecu
P0699Power Sensor 5 in on F649 / F802 and F744 / F810Short circuit to the power source on the contact C30 Ecu
– Too high voltage on the contact A28 or С30 Ecu.Malfunction of the air boost pressure sensor on the Inlet
Short-circuit to mass on contact C35 Ecu
Short circuit to the power source on the contact A28 Ecu
P0703Connection CAN– Network communication error CAN
– Incorrect message CANComing from the pedal Brakes.
P081CConnection CAN– Network communication error CAN
– Incorrect message from the parking brake switch.
P0830Clutch switch (E575)Input signal, via clutch switch (E575), on contact BThe 36 ECU is present despite the The That the car has already gained some speed. This is Connected With Following Causes:
– No signal or unlikelyFaulty Proximity Switch
Towing a car while working Engine
P0833Connection CAN– Network communication error CAN
– Incorrect message CANComing from the pedal Clutch.
P1087Fuel Pressure sensor F713/F801
– Pressure too low Fuel.
P1108Air inlet pressure sensor F649/ F802– Malfunction of the air boost pressure sensor on the Inlet
– Measured Pressure Above Settlement.
P1116Coolant temperature Sensor F566There is too much difference between the measured temperature of motor oil and the coolant temperature of the engine.
– The signal is invalid.Contact Resistance (Oj) in the wiring between the engine coolant temperature sensor (F566) and Ecu
Coolant temperature sensor malfunction (F566)
P1168Fuel temperature Sensor F713/F803– Restriction of blocked leakage in fuel pressure control valve
– Temperature too high Fuel.
P1180Fuel temperature Sensor F713/F803– Low fuel level in the fuel tank and high ambient temperature Air
– Temperature too high Fuel.
P1191Fuel Filter– Feed Fuel Locked.
– Filter Scored.
P1194Fuel filter– Feed Fuel Locked.
– Filter strongly Scored.
P1201Solenoid Valve Nozzles Cylinder № 1, B421Malfunction of the electromagnetic valve of the cylinder nozzle № 1 (B421)
Interrupt on Contact A1 and/or contact A2 Ecu.Short Circuit On Food On contact A17 ECU
Short-circuit to mass on contact A1Short circuit to the power source on the contact A9 Ecu
Ecu
P1202Solenoid valve of cylinder nozzle № 1, B421– Malfunction of the electromagnetic valve of the cylinder nozzle № 1 (B421)
– Short-circuit between contacts A1 and A2
Ecu.
P1203Solenoid valve of cylinder nozzle № 1, B421Malfunction of the electromagnetic valve of the cylinder nozzle № 1 (B421)
– Short-circuit to mass on contact A1 Ecu.Interrupt On Contact A2 Ecu
Interrupt On Contact A1 Ecu
Short Circuit On Food On contact A17 ECU
Short circuit to the power source on the contact A9 Ecu
P1204Solenoid valve of cylinder nozzle № 1, B421Malfunction of the electromagnetic valve of the cylinder nozzle № 1 (B421)
– Short Circuit to power source OnShort Circuit On Source
Contact A1 ECU.Power supply on the contact A5 ECU
P1205Solenoid valve of CYLINDER nozzle № 5, B425Malfunction of the solenoid valve of the cylinder nozzle № 5 (B425)
– Interrupt on Contact A5 and/or contact A14 Ecu.Short-circuit to mass on contact A5 ECU.
Short circuit to the power source on the contact A21 Ecu
Short circuit to the power source on the contact A13 Ecu
P1206Solenoid valve of CYLINDER nozzle № 5, B425– Malfunction of the solenoid valve of the cylinder nozzle № 5 (B425)
– Short-circuit between contact A5 и
Contact A14 ECU.
P1207Solenoid valve of CYLINDER nozzle № 5, B425Malfunction of the solenoid valve of the cylinder nozzle № 5 (B425)
– Short-circuit to mass on contact A5 Ecu.Interrupt On Contact A14 Ecu
Interrupt On Contact A5 Ecu
Short circuit to the power source on the contact A13 Ecu
P1208Solenoid valve of CYLINDER nozzle № 5, B425Malfunction of the solenoid valve of the cylinder nozzle № 5 (B425)
– Short circuit to the power source on the contact A5 Ecu.Short circuit to the power source on the contact A1 Ecu
Short circuit to the power source on the contact A5 Ecu
P1209Solenoid Valve Nozzles Cylinder № 3, B423Malfunction of the solenoid valve of the cylinder nozzle № 3 (B423)
Interrupt on Contact A6 and/or contact A9 Ecu.Short circuit to the power source on the contact A1 Ecu
Short-circuit to mass on contact A9Short Circuit On Food On contact A17 ECU
Ecu
P1210Solenoid valve of CYLINDER nozzle № 3, B423– Malfunction of the solenoid valve of the cylinder nozzle № 3 (B423)
– Short-circuit between contact A6 и
Contact A9 ECU.
P1211Solenoid valve of CYLINDER nozzle № 3, B423Malfunction of the solenoid valve of the cylinder nozzle № 3 (B423)
– Short-circuit to mass on contact A9 Ecu.Interrupt On Contact A6 Ecu
Interrupt On Contact A9 Ecu
Short circuit to the power source on the contact A1 Ecu
Short Circuit On Food On contact A17 ECU
P1212Solenoid valve of CYLINDER nozzle № 3, B423Malfunction of the solenoid valve of the cylinder nozzle № 3 (B423)
– Short Circuit to power source OnShort Circuit On Source
Contact A9 ECU.Power supply on the contact A13 ECU.
P1213Solenoid valve of CYLINDER nozzle № 6, B426Malfunction of the solenoid valve of the cylinder nozzle № 6 (B426)
– Interrupt on Contact A13 and/or contact A18 Ecu.Short circuit to the power source on the contact A5 Ecu
Short-circuit to mass on contact A13 Ecu.
Short circuit to the power source on the contact A21 Ecu
P1214Solenoid valve of CYLINDER nozzle № 6, B426– Malfunction of the solenoid valve of the cylinder nozzle № 6 (B426)
– Short-circuit between contacts A13 и
A18 ECU.
P1215Solenoid valve of CYLINDER nozzle № 6, B426Malfunction of the solenoid valve of the cylinder nozzle № 6 (B426)
– Short Circuit On Mass On Contact A13 Ecu.Short circuit to the power source on the contact A5 Ecu
Interrupt On Contact A18 Ecu
Interrupt On Contact A13 Ecu
Short circuit to the power source on the contact A21 Ecu
P1216Solenoid valve of CYLINDER nozzle № 6, B426Malfunction of the solenoid valve of the cylinder nozzle № 6 (B426)
– Short Circuit to power source OnShort Circuit On Source
Contact A13 ECU.Power supply on the contact A9 ECU
P1217Solenoid valve of cylinder nozzle № 2, B422Malfunction of the solenoid valve of the cylinder nozzle № 2 (B422)
– Interrupt in a transaction on a contact A10 and/or contact A17 Ecu.Short-circuit to mass on contact A17 Ecu.
Short circuit to the power source on the contact A1 Ecu
Short circuit to the power source on the contact A9 Ecu
P1218Solenoid valve of cylinder nozzle № 2, B422– Malfunction of the solenoid valve of the cylinder nozzle № 2 (B422)
– Short-circuit between contacts A10 и
A17 ECU.
P1219Solenoid valve of cylinder nozzle № 2, B422Malfunction of the solenoid valve of the cylinder nozzle № 2 (B422)
– Short Circuit On Mass On Contact A17Interrupt on Contact A10 Ecu
Ecu.Interrupt On Contact A17 Ecu
– Short circuit to the power source on the contact A1 Ecu
Short circuit to the power source on the contact A9 Ecu
P1220Solenoid valve of cylinder nozzle № 2, B422Malfunction of the solenoid valve of the cylinder nozzle № 2 (B422)
– Short circuit to the power source on the contact A17 Ecu.Short circuit to the power source on the contact A21 Ecu.
P1221Solenoid valve of CYLINDER nozzle № 4, B424Malfunction of the solenoid valve of the cylinder nozzle № 4 (B424)
– Interrupt on Contact A21 and/or contact A22 Ecu.Short-circuit to mass on contact A21 ECU
Short circuit to the power source on the contact A5 Ecu
Short circuit to the power source on the contact A13 Ecu
P1222Solenoid valve of CYLINDER nozzle № 4, B424– Malfunction of the solenoid valve of the cylinder nozzle № 4 (B424)
– Short-circuit between contact A21 и
Contact A22 ECU.
P1223Solenoid valve of CYLINDER nozzle № 4, B424Malfunction of the solenoid valve of the cylinder nozzle № 4 (B424)
– Short Circuit On Mass On Contact A21 Ecu.Interrupt On Contact A22 Ecu
Interrupt On Contact A21 Ecu
– Short circuit to the power source on the contact A5 Ecu
Short circuit to the power source on the contact A13 Ecu
P1224Solenoid valve of CYLINDER nozzle № 4, B424Malfunction of the solenoid valve of the cylinder nozzle № 4 (B424)
– Short circuit to the power source on the contact A21 Ecu.Short Circuit On Food On contact A17 ECU
P1225Solenoid valve of CYLINDER nozzle № 1 B421, solenoid valve of cylinder nozzle– Malfunction of the electromagnetic valve of the cylinder nozzle № 1 B421, electromagnetic Valve
№ 2 B422 or solenoid valve № cylinder NOZZLE 3 B423Nozzles of the cylinder № 2 B422 or solenoid valve № cylinder NOZZLE 3 B423
– Short-circuit to mass on contact A2, contact A6 or contact A10 Ecu.
P1226Solenoid valve of CYLINDER nozzle № 1 B421, solenoid valve of cylinder nozzle– Malfunction of the electromagnetic valve of the cylinder nozzle № 1 B421, solenoid valve № cylinder NOZZLE 2 B422 or Solenoid Valve NOZZLES Cylinder № 3 B423
№ 2 B422 or solenoid valve № cylinder NOZZLE 3 B423
– Short Circuit to power source On
Contact A2, contact A6 or contact A10 ECU.
P1227Malfunction of the solenoid valve of the cylinder nozzle № 4 B424, solenoid valve № cylinder NOZZLE 5 B425 or solenoid valve № cylinder NOZZLE 6 B426– Malfunction of the solenoid valve of the cylinder nozzle № 4 B424, solenoid valve № cylinder NOZZLE 5 B425 or Solenoid Valve NOZZLES Cylinder № 6 B426
– Short circuit to Mass on Contact
A14, contact A18 or contact A22 ECU.
P1228Malfunction of the solenoid valve of the cylinder nozzle № 4 B424, solenoid valve № cylinder NOZZLE 5 B425 or solenoid valve № cylinder NOZZLE 6 B426– Malfunction of the solenoid valve of the cylinder nozzle № 4 B424, solenoid valve № cylinder NOZZLE 5 B425 or Solenoid Valve NOZZLES Cylinder № 6 B426
– Short Circuit to power source On
Contact A14, contact A18 or contact A22 ECU.
P1230Electromagnetic valve of the pump unit of the cylinder № 1, B131– Malfunction of the electromagnetic valve of the pumping unit of the cylinder № 1 (B131)
– Short-circuit between contacts A3 and A4
Ecu.
P1234Electromagnetic valve of the pumping unit of the cylinder № 5, B135– Malfunction of the electromagnetic valve of the pumping unit of the cylinder № 5 (B135)
– Short-circuit between contacts A8 и
A15 ECU.
P1238Electromagnetic valve of the pumping unit of the cylinder № 3, B133– Malfunction of the electromagnetic valve of the pumping unit of the cylinder № 3 (B133)
– Short-circuit between contact A7 и
Contact A12 ECU.
P1242Electromagnetic valve of the pumping unit of the cylinder № 6, B136– Malfunction of the electromagnetic valve of the pumping unit of the cylinder № 6 (B136)
– Short-circuit between contact A16 и
Contact A19 ECU.
P1246Electromagnetic valve of the pumping unit of the cylinder № 2, B132– Malfunction of the electromagnetic valve of the pumping unit of the cylinder № 2 (B132)
– Short-circuit between contact A11 и
Contact A20 ECU.
P1250Electromagnetic valve of the pumping unit of the cylinder № 4, B134– Malfunction of the electromagnetic valve of the pumping unit of the cylinder № 4 (B134)
– Short-circuit between contacts A23 и
A24 ECU.
P1335Crankshaft Speed Sensor F552Short circuit, short circuit to power source, short circuit to mass, contact resistance (Oj) or interrupt in the transaction on the contact A49 and/or contact A50 ECU
– No signal from the crankshaft speed sensor F552.Failure or contamination of the crankshaft speed sensor (F552)
Too large air gap between the crankshaft speed sensor (F552) and Flywheel
P1336Crankshaft Speed Sensor F552Unreliable Connection Or Bad Contact
– Signal disturbance during Run.Failure of the crankshaft speed sensor (F552)
Too large air gap between the crankshaft speed sensor (F552) and Flywheel
External Influence
P1340Distribution Shaft SENSOR F558Interrupt or short-circuit to mass on the contact A53 ECU
– No signal from the distribution shaft sensor F558.malfunction or contamination of the distribution shaft sensor (F558)
Too Big Air
The gap between the distribution shaft sensor (F558) and the pulse wheel
P1341Distribution Shaft SENSOR F558Unreliable Connection Or Bad Contact
– Signal disturbance during Run.Failure of the camshaft sensor (F558)
The air gap between the distribution shaft sensor and the pulsed Wheel
External Influence
P1342Sensor Distribution Shaft F558
– Total Fault
P1500Speed Car
– Wrong Change Signal.
P1501Speed Car– Invalid Information From Tachometer
– Signal Out Valid Limit.
P150FSensor Level Oil F673
– Low oil level warning when ignition is on.
P1524Motor Oil Pressure sensor F744/F810Too Low Pressure Oil
– Low Pressure Oil.Short-circuit to mass on contact A28 Ecu
P153APressure sensor in the crankcase F806
– Pressure outside the permissible limits during ignition firing.
P153BPressure sensor in the crankcase F806
– Too low Pressure
P153CPressure sensor in the crankcase F806
– Too high Pressure
P153DPressure sensor in the crankcase F806
– filter element of the crankcase ventilation Missing
P153EPressure sensor in the crankcase F806
– Crankcase Ventilation Filter Dirty
P153FPressure sensor in the crankcase F806
– Valve Ventilation Carter Stuck в Closed position
P1540Pressure sensor in the crankcase F806
– Reduced engine power due to faulty ventilation Carter
P1541Pressure sensor in the crankcase F806
– Too much difference Pressure
P1601Ecu DMCI (D965)
– Internal Error
P1650Red warning VIC-2/3– Fault Ecu VIC
– Opening in the transaction on the contact B22 Ecu.
P1651Red warning VIC-2/3– Fault Ecu VIC
– Short Circuit On Mass On Contact B22 Ecu.
P1652Red warning VIC-2/3
– Short circuit to the power source on the contact B22 Ecu.
P1654Short-circuit to mass on contact B18 ECU.
P1655Short circuit to the power source on the contact B18 ECU
P1656Output Value Revolutions Engine– Short-circuit to mass on contact B1 Ecu
P1657Output Value Revolutions Engine– Short circuit to the power source on the contact B1 Ecu
P1658Ecu DMCI (D965)Interrupt, short circuit to mass or Short circuit to the power source on the contact A2 Ecu
– Internal malfunction 6.Interrupt, short circuit to mass or Short circuit to the power source on the contact A1 Ecu
Interrupt, short circuit to mass or Short circuit to the power source on the contact A10 Ecu
Interrupt, short circuit to mass or Short circuit to the power source on the contact A17 Ecu
Interrupt, short circuit to mass or Short circuit to the power source on the contact A6 Ecu
Interrupt, short circuit to mass or Short circuit to the power source on the contact A9 Ecu
Interrupt, short circuit to mass or Short circuit to the power source on the contact A22 Ecu
Interrupt, short circuit to mass or Short circuit to the power source on the contact A21 Ecu
Interrupt, short circuit to mass or Short circuit to the power source on the contact A15 Ecu
Interrupt, short circuit to mass or Short circuit to the power source on the contact A5 Ecu
Interrupt, short circuit to mass or Short circuit to the power source on the contact A18 Ecu
Interrupt, short circuit to mass or Short circuit to the power source on the contact A13 Ecu
P1674Ecu DMCI (D965)
– Internal malfunction 7.
P1675Ecu DMCI (D965)
– Internal malfunction 8.
P1676Ecu DMCI (D965)
– Internal malfunction 9.
P1677Ecu DMCI (D965)
– Internal malfunction 10.
P1678Ecu DMCI (D965)– Incorrect software in Ecu
– Internal malfunction 11.
P1679Ecu DMCI (D965)
– Internal Error
P1681Ecu DMCI (D965)– Software and hardware mismatch Ensure.
– Internal malfunction 12.
P1682Sensor Level Oil F673– Opening in the transaction on the contact B14 Ecu.
– Opening in the transaction on the contact B13 Ecu.
P1683Oil level sensor F673
– Short circuit to the power source on the contact B13 Ecu.
P1684Oil level sensor F673
– Short Circuit On Mass On Contact B13 Ecu.
P2074Air inlet pressure sensor F649/ F802Malfunction of the air boost pressure sensor on the Inlet
-The measured air boost pressure at the inlet is lower than the inlet air pressurization pressure.Clogged Intermediate Cooler
Clogged Item Air Filter
Leakage or narrowing of the pass section in the air intake system between the turbo and the inlet Collector
Fault Overflow Valve
Damage Turbocharger
Catalytic neutralizer briquettes are clogged due to calcium contamination
Damage Nozzle Nozzles
Used Biodiesel Fuel does not conform to specifications DAF
P2100Reduced engine performance due to malfunction EASNetwork communication error CAN Between the additional emission treatment system (EAS) and DMCI
Error System Additional
Emission processing (EAS) (Check system errors EAS)
P2106Accelerator pedal Sensor F672Interrupt in a transaction on a contact B37 Ecu
– Gearbox protection function Active.Interrupt or short-circuit to mass on the contact B33 ECU
Interrupt or short-circuit to mass on the contact B34 ECU
Short circuit to the power source on the contact B33 Ecu
Short circuit to the power source on the contact B34 Ecu
P2135Accelerator pedal Sensor F672Interrupt On Contact B37 Ecu
– Spinner Signal to Contacts B33 ECU outside the permissible limits in relation to the idle switch signal on the contact B41 Ecu.Interrupt On Contact B38 Ecu
Interrupt or short-circuit to mass on the contact B41 ECU
Short circuit to the power source on the contact B41 Ecu
Short-circuit between contacts B33 and B37 Ecu
Short-circuit between contacts B38 and B41 Ecu
Opening in the accelerator pedal sensor wiring (F672)
Contact Resistance (Oj) in the wiring between the accelerator pedal sensor (F672) and ECU
Accelerator pedal sensor malfunction (F672)
P2147Electromagnetic valve of the pumping unit of the cylinder № 1 B131, electromagnetic valve of pumping unit of cylinder № 2 B132 or solenoid valve of № cylinder pumping Unit 3 B133– Fault Pump Unit
– Short-circuit to mass on contact A3,
Contact A7 or contact A11 ECU.
P2148Electromagnetic valve of the pumping unit of the cylinder № 1 B131, electromagnetic valve of pumping unit of cylinder № 2 B132 or solenoid valve of № cylinder pumping Unit 3 B133– Fault Pump Unit
– Short Circuit to power source On
Contact A3, contact A7 or contact A11 ECU.
P2150Electromagnetic valve of the pumping unit of the cylinder № 4 B134, solenoid valve of pumping unit of cylinder № 5 B135 or solenoid valve of pumping unit of cylinder № 6 B136– Malfunction of the electromagnetic valve of the pumping unit of the cylinder № 4 B134, № cylinder pumping unit Electromagnetic valve 5
– Short circuit to Mass on ContactB135 or solenoid valve of № cylinder pumping Unit 6 B136
A15, contact A19 or contact A23 ECU.
P2151Electromagnetic valve of the pumping unit of the cylinder № 4 B134, Solenoid valve– Malfunction of the electromagnetic valve of the pumping unit of the cylinder № 4 B134, electromagnetic valve pumping Unit
Pump unit of the cylinder № 5 B135 or solenoid valve of pumping unit of cylinder № 6 B136Cylinder № 5
– Short circuit to the power source on the contact A15, contact A19 or contact A23B135 or solenoid valve of № cylinder pumping Unit 6 B136
Ecu.
P2184Second coolant temperature sensor F743
– Voltage is too low on the contact A37
Ecu.
P2185Second coolant temperature sensor F743
– Too high voltage on the contact A37
Ecu.
P2228Atmospheric pressure sensor in ECU DMCI D965– Malfunction of the atmospheric pressure sensor in the ECU DMCI D965
– Internal malfunction; Too low pressure.
P2229Atmospheric pressure sensor in ECU DMCI D965– Malfunction of the atmospheric pressure sensor in the ECU DMCI D965
– Internal malfunction; Pressure too high.
P250AOil level sensor F673Too small quantity added Oil.
– Level too low Oil.External Leak
Internal Leak
P250BSensor Level Oil F673
– Unlikely the oil level when ignition is on.
P250COil level sensor F673
– Signal is too low on the contact B13 Ecu.
P250DOil level sensor F673
– Signal is too high on the contact B13 Ecu.
P250EOil level sensor F673
– Perhaps the wrong level Oil.
P250FOil level sensor F673Too small quantity added Oil.
– Level too low Oil.External Leak
Internal Leak
P252FSensor Level Oil F673Too much oil has been added.
– High Level Oil.Leakage of other engine fluids in pan (fuel, coolant)
P2541Fuel Pressure sensor F713/F801Short-circuit to mass on contact A45 Ecu
– Voltage is too low on the contact A45 Ecu.Short-circuit between contact A45 and contact A46
Contact Resistance (Oj) in the wiring between the fuel pressure sensor and the Ecu
Fault Sensor Pressure Fuel
Short-circuit to mass on contact A42 Ecu
Short-circuit to mass on contact C35 ECU
Short-circuit to mass on contact A45 Ecu
P2542Fuel Pressure sensor F713/F801Short circuit to the power source on the contact A45 Ecu
– Too high voltage on the contact A45 Ecu.Fault Sensor Pressure Fuel
P2544Connection CAN– Network communication error CAN
– Wrong Message CAN From Brake switch Engine.
P2550The level of the engine brake request is too low.
P2551The engine brake request level is too high.
P2609Relay of the grating air heater on the inlet (G014)
– Interrupt on Contact C60, contact C61 and
Or Contact C62 ECU.
P3405Electromagnetic Valve cylinder № 1 engine brakes Mx, B411Malfunction of the electromagnetic valve of the cylinder № 1 engine brake Mx (B411)
– Interrupt on Contact A36 Ecu.Interrupt on Contact A35 Ecu
P3407Solenoid Valve Cylinder № 1 Brakes– Malfunction of the solenoid valve of the cylinder № 1 Brakes
Engine Mx, B411Engine MX (B411)
– Short Circuit On Mass On Contact A36 Ecu.
P3408Electromagnetic Valve cylinder № 1 engine brakes Mx, B411– Malfunction of the electromagnetic valve of the cylinder № 1 engine brake Mx (B411)
– Short Circuit to power source On
Contact A36 ECU.
P3413Electromagnetic Valve cylinder № 2 engine brakes Mx, B412Malfunction of the electromagnetic valve of the cylinder № 2 engine brakes Mx (B412)
– Interrupt on Contact A52 Ecu.Interrupt on Contact A51 Ecu
P3415Electromagnetic Valve cylinder № 2 engine brakes Mx, B412– Malfunction of the electromagnetic valve of the cylinder № 2 engine brakes Mx (B412)
– Short Circuit On Mass On Contact A52
Ecu.
P3416Electromagnetic Valve cylinder № 2 engine brakes Mx, B412– Malfunction of the electromagnetic valve of the cylinder № 2 engine brakes Mx (B412)
– Short Circuit to power source On
Contact A52 ECU.
P3421Electromagnetic Valve cylinder № 3 engine brakes Mx, B413Malfunction of the electromagnetic valve of the cylinder № 3 engine brakes Mx (B413)
– Interrupt on Contact A44 Ecu.Interrupt on Contact A43 Ecu
P3423Electromagnetic Valve cylinder № 3 engine brakes Mx, B413– Malfunction of the electromagnetic valve of the cylinder № 3 engine brakes Mx (B413)
– Short Circuit On Mass On Contact A44
Ecu.
P3424Electromagnetic Valve cylinder № 3 engine brakes Mx, B413– Malfunction of the electromagnetic valve of the cylinder № 3 engine brakes Mx (B413)
– Short Circuit to power source On
Contact A44 ECU.
P3429Electromagnetic Valve cylinder № 4 engine brakes Mx, B414Malfunction of the solenoid valve in the cylinder 4 engine brakes Mx (B414)
– Interrupt on Contact A56 Ecu.Interrupt on Contact A55 Ecu
P3431Electromagnetic Valve cylinder № 4 engine brakes Mx, B414– Malfunction of the solenoid valve in the cylinder 4 engine brakes Mx (B414)
– Short Circuit On Mass On Contact A56
Ecu.
P3432Electromagnetic Valve cylinder № 4 engine brakes Mx, B414– Malfunction of the solenoid valve in the cylinder 4 engine brakes Mx (B414)
– Short Circuit to power source On
Contact A56 ECU.
P3437Electromagnetic Valve cylinder № 5 engine brakes Mx, B415Malfunction of the electromagnetic valve of the cylinder № 5 engine brakes Mx (B415)
– Interrupt on Contact A40 Ecu.Interrupt on Contact A39 Ecu
P3439Electromagnetic Valve cylinder № 5 engine brakes Mx, B415– Malfunction of the electromagnetic valve of the cylinder № 5 engine brakes Mx (B415)
– Short Circuit On Mass On Contact A40
Ecu.
P3440Electromagnetic Valve cylinder № 5 engine brakes Mx, B415– Malfunction of the electromagnetic valve of the cylinder № 5 engine brakes Mx (B415)
– Short Circuit to power source On
Contact A40 ECU.
P3445Electromagnetic Valve cylinder № 6 engine brakes Mx, B416Malfunction of the electromagnetic valve of the cylinder № 6 engine brakes Mx (B416)
– Interrupt on Contact A48 Ecu.Interrupt on Contact A47 Ecu
P3447Electromagnetic Valve cylinder № 6 engine brakes Mx, B416– Malfunction of the electromagnetic valve of the cylinder № 6 engine brakes Mx (B416)
– Short Circuit On Mass On Contact A48
Ecu.
P3448Electromagnetic Valve cylinder № 6 engine brakes Mx, B416– Malfunction of the electromagnetic valve of the cylinder № 6 engine brakes Mx (B416)
– Short Circuit to power source On
Contact A48 ECU.
U0011Network communication CAN– Short-circuit to mass on contact B27 and/or contact B35 ECU
– Problem with hardware or software in V-CAN1.
U0101Network communication CANError Communication In the Network CAN
– Transmission speed is too low (ETC1) over the network CAN.Interrupt, short circuit to mass or Short circuit for power in network wiring CAN
U0103Link On Network CAN– Network communication error CAN
– Transmission speed too low Messages– Interrupt Short Circuit On Mass Or Short
Gearboxes (ETC2) over the network CAN.Power Closure in network wiring CAN
U0104Network communication CANError Communication In the Network CAN
– Message transfer rate is too low VIC-2 (CCVS1) over the network CAN.Interrupt, short circuit to mass or Short circuit for power in network wiring CAN
U0113Network communication CANError Communication In the Network CAN
– Message transfer rate is too low EAS (Ti1) over the network CAN.Interrupt, short circuit to mass or Short circuit for power in network wiring CAN
U0120Network communication CANError Communication In the Network CAN
– Message transfer rate is too low (ETC7) Network CAN.Interrupt, short circuit to mass or Short circuit for power in network wiring CAN
U0128Network communication CANError Communication In the Network CAN
– Message transfer rate is too low VIC-2 (CCVS2) over the network CAN.Interrupt, short circuit to mass or Short circuit for power in network wiring CAN
U0129Network communication CANError Communication In the Network CAN
– The speed of transmission of the ABS messages is too lowD/EBS-2 (EBC1) over the network CAN.Interrupt, short circuit to mass or Short circuit for power in network wiring CAN
U0133Network communication CANError Communication In the Network CAN
– Message transfer rate is too low EBS-2 (VDC_1) over the network CAN.Interrupt, short circuit to mass or Short circuit for power in network wiring CAN
U0140Network communication CANError Communication In the Network CAN
– The speed of transmission of the tachograph messages is too low (HRVD) over the network CAN.Interrupt, short circuit to mass or Short circuit for power in network wiring CAN
U0141Network communication CANError Communication In the Network CAN
– The speed of transmission of the tachograph messages is too low (TCO1) over the network CAN.Interrupt, short circuit to mass or Short circuit for power in network wiring CAN
U0142Network communication CANError Communication In the Network CAN
– Message transfer rate is too low (TD) over the network CAN.Interrupt, short circuit to mass or Short circuit for power in network wiring CAN
U0155Network communication CANError Communication In the Network CAN
– Message transfer rate is too low (J1939, Private message A) over the network CAN.Interrupt, short circuit to mass or Short circuit for power in network wiring CAN
U0156Network communication CANError Communication In the Network CAN
– Message transfer rate is too low (J1939, Private message B) over the network CAN.Interrupt, short circuit to mass or Short circuit for power in network wiring CAN
U0157Network communication CANError Communication In the Network CAN
– Message transfer rate is too low (And_V) over the network CAN.Interrupt, short circuit to mass or Short circuit for power in network wiring CAN
U0404Network communication CAN– Network communication error CAN
– The selected transfer is out of the allowable limits.
U0422Network communication CAN– Network communication error CAN
– The speed of transmission of the tachograph messages is too high (HRVD) over the network CAN.
U0431Network communication CAN– Network communication error CAN
– The speed of transmission of the tachograph messages is too high (TC01) over the network CAN.
U0405Network communication CAN– Network communication error CAN
– Message transfer rate is too high VIC-2 (CCVS1) over the network CAN.
U0417Network communication CAN– Network communication error CAN
– Message transfer rate is too high VIC-2 (CCVS2) over the network CAN.
U0418Network communication CAN– Network communication error CAN
– The speed of transmission of the ABS messages is too highD/EBS-2 (EBC1) over the network CAN.
U0441Network communication CAN– Mismatch Ecu
– Code Wine Does not match the code Wine In the system EAS.
U1011Network communication CANShort-circuit to mass on contact C60, contact C61 and/or contact C62 ECU
– Problem with hardware or software in V-CAN2.Interrupt, short-circuit to mass or short-circuit On Food в Transaction Network CAN On Contact B15 и B23 ECU
U1101Link On Network CAN– Network communication error CAN
– Transmission speed is too high (ETC1) by Network
CAN.
U1103Network communication CAN– Network communication error CAN
– Transmission speed is too high (ETC2) over the network CAN.
U1110Network communication CANError Communication In the Network CAN
– Message transfer rate is too low (RC1) over the network CAN.Interrupt, short circuit to mass or Short circuit for power in network wiring CAN
U1113Network communication CAN– Network communication error CAN
– Message transfer rate is too high EAS (Ti1) over the network CAN.
U1119Network communication CAN– Network communication error CAN
– Message transfer rate is too high (Tsc1_BE) over the network CAN.
U1120Network communication CANError Communication In the Network CAN
– Message transfer rate is too low (Tsc1_BE) over the network CAN.Interrupt, short circuit to mass or Short circuit for power in network wiring CAN
U1121Network communication CAN– Network communication error CAN
– Message transfer rate is too high Boxes Gear (Tsc1_To) On Network CAN.
U1122Network communication CANError Communication In the Network CAN
– Transmission speed is too low (Tsc1_To) over the network CAN.Interrupt, short circuit to mass or Short circuit for power in network wiring CAN
U1123Network communication CAN– Network communication error CAN
– Message transfer rate is too high VIC-2 (Tsc1_And) over the network CAN.
U1124Network communication CANError Communication In the Network CAN
– Message transfer rate is too low VIC-2 (Tsc1_And) over the network CAN.Interrupt, short circuit to mass or Short circuit for power in network wiring CAN
U1125Network communication CAN– Network communication error CAN
– Message transfer rate is too high (Tsc1_Is) over the network CAN.
U1126Network communication CANError Communication In the Network CAN
– Message transfer rate is too low (Tsc1_Is) over the network CAN.Interrupt, short circuit to mass or Short circuit for power in network wiring CAN
U1127Network communication CAN– Network communication error CAN
– Message transfer rate is too high (Tsc1_BR) over the network CAN.
U1128Network communication CANError Communication In the Network CAN
– Message transfer rate is too low (Tsc1_BR) over the network CAN.Interrupt, short circuit to mass or Short circuit for power in network wiring CAN
U1129Network communication CAN– Network communication error CAN
– Message transfer rate is too high (Tsc1_TR) over the network CAN.
U1130Network communication CANError Communication In the Network CAN
– Message transfer rate is too low (Tsc1_TR) over the network CAN.Interrupt, short circuit to mass or Short circuit for power in network wiring CAN
U1133Network communication CAN– Network communication error CAN
– Message transfer rate is too high (Tsc1_SR) over the network CAN.
U1134Network communication CANError Communication In the Network CAN
– Message transfer rate is too low (Tsc1_SR) over the network CAN.Interrupt, short circuit to mass or Short circuit for power in network wiring CAN
U1142Network communication CAN– Network communication error CAN
– Message transfer rate is too high (TD) over the network CAN.
U1143Network communication CAN– Network communication error CAN
– The frequency of messages coming from the adaptive cruise control device is too high
U1144Network communication CAN– Network communication error CAN
– The frequency of messages coming from the adaptive cruise control device is too low
U1145Link On Network CAN– Network communication error CAN
– The frequency of messages coming from the adaptive device is too high Cruise
Control
U1146Network communication CAN– Network communication error CAN
– The frequency of messages coming from the adaptive cruise control device is too low
U1155Network communication CAN– Network communication error CAN
– Message transfer rate is too high (J1939, Private message A) over the network CAN.
U1156Network communication CAN– Network communication error CAN
– Message transfer rate is too high (J1939, Private message B) over the network CAN.
U1157Network communication CAN– Network communication error CAN
– Message transfer rate is too high (And_V) over the network CAN.
U1179Network communication CAN– Malfunction of the steering wheel switches (C916)
– A fault message has been received (F_FLEX_RSG_SW).
U1180Network communication CAN– Network communication error CAN
-Received a fault message (parasitic power outside the permissible limits).
U1188Network communication CAN– Network communication error CAN
– A fault message has been received (the speed of the front axle is outside the allowable limits).
U1189Network communication CAN– Network communication error CAN
– Message transfer rate is too high Is 42 (ERC1_DR) over the network CAN.
U1190Network communication CANError Communication In the Network CAN
– Message transfer rate is too low Is 42 (ERC1_DR) over the network CAN.Interrupt, short circuit to mass or Short circuit for power in network wiring CAN
U1192Network communication CAN– Network communication error CAN
– Message transfer rate is too high (ETC7) Network CAN.
U1193Network communication CAN– Network communication error CAN
– Message transfer rate is too high (DD) over the network CAN.
U1194Network communication CANError Communication In the Network CAN
– Message transfer rate is too low (DD) over the network CAN.Interrupt, short circuit to mass or Short circuit for power in network wiring CAN
U1197Network communication CAN– Network communication error CAN
– The speed of transmission of the ABS messages is too highD/EBS-2 (EBC2) over the network CAN.
U1198Network communication CANError Communication In the Network CAN
– The speed of transmission of the ABS messages is too lowD/EBS-2 (EBC2) over the network CAN.Interrupt, short circuit to mass or Short circuit for power in network wiring CAN
U1199Network communication CAN– Network communication error CAN
– Message transfer rate is too high (Tsc1_DR) over the network CAN.
U1200Network communication CANError Communication In the Network CAN
– Message transfer rate is too low (Tsc1_DR) over the network CAN.Interrupt, short circuit to mass or Short circuit for power in network wiring CAN
U1201Network communication CAN– Network communication error CAN
– Message transfer rate is too high (J1939, Private message A) over the network CAN.
U1202Network communication CANError Communication In the Network CAN
– Message transfer rate is too low (J1939, Private message A) over the network CAN.Interrupt, short circuit to mass or Short circuit for power in network wiring CAN
U1205Network communication CAN– Include к Control Movement On the slope
– A fault message has been received, VIC-2 (DSC_OFF_REQUEST_SW).
U1206Network communication CAN– Include к Control Movement On the slope
– A fault message has been received, VIC-2 (DSC_ON_REQUEST_SW).
U1404Link On Network CAN– Network communication error CAN
– Current transfer out of tolerance Limits.
U1501Network communication CAN– Network communication error CAN
– Incorrect message of the output shaft speed of the gearbox on the network CAN of the tachograph.
U1544Network communication CAN– Network communication error CAN
– A fault message has been received (the actual value of the torque retarder out of the permissible Limits).
U1545Network communication CAN– Network communication error CAN
– A fault message was received (the required torque value retarder out of the permissible Limits).
U1546Network communication CAN– Network communication error CAN
– A fault message has been received (torque retardered at the driver’s request outside the permissible Limits).
U1547Network communication CAN– Network communication error CAN
– A fault message has been received (select Retarder out of the allowable limits).
U1645Network communication CAN– Network communication error CAN
– Message transfer rate is too high EBS-2 (VDC_1) over the network CAN.
]]>
https://beznez.net/daf-fault-codes-list-engine-control-units-dmci/feed/ 0
Scania EMS Fault Codes 1316-4170 https://beznez.net/scania-ems-fault-codes-1316-4170/ https://beznez.net/scania-ems-fault-codes-1316-4170/#respond Wed, 20 Sep 2023 06:41:49 +0000 https://beznez.net/?p=925 EMS 1316

Blocks:

2098547, 2098546, 2098545, 2096902, 2096901, 9000000, 2089202, 2089201, 2089200

Title:

Oil pressure sensor

Fault:

The signal from the oil pressure sensor in the engine lubrication system is below the normal value. This means that the oil pressure, measured at a certain speed, is lower than normal.

The reasons:

A possible reason is that one of the following valves in the lubrication system is jammed in the open position:

Safety valve located in the housing of the oil pump.

Pressure reducing valve, usually located in the housing of the centrifugal oil purifier.

Other causes may be a damaged oil pump, oil filter, centrifugal oil cleaner, suction tube and / or low oil level in the oil pan.

Clogging the suction strainer may be another possible cause.

Notes:

Excessively low oil pressure can cause serious damage to the engine and cause it to break.

The control lamp for low oil pressure is on.

Elimination:

Check the valves in the oil system and check for damage to the oil pump, oil filter, centrifugal oil purifier, suction tube and suction strainer. Also check the oil level in the crankcase.

EMS 1318

Blocks:

2098547, 2098546, 2098545, 2096902, 2096901, 9000000, 2089202, 2089201, 2089200

Title:

Fan speed sensor

Fault:

The power supply voltage of the fan speed sensor was below normal.

The reasons:

Possible reasons:

Electrical connectors or electrical leads to the fan have been damaged.

Malfunction of the fan speed or coolant speed sensor electrical circuit.

Notes:

Low engine cooling efficiency. Risk of engine overheating.

The fan speed sensor and the coolant pump have a common power supply. In the event of a fault in one of the elements, it may affect the electrical circuits of other elements.

Elimination:

Check the fan solenoid valve as well as the electrical connectors and wiring.

Check fan speed sensor and coolant pump with connectors and electrical wiring.

EMS 1376

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

Battery voltage

Fault:

The battery voltage was above the allowable value. It was 47 V or more for 0.5 seconds.

The reasons:

This fault may be caused by the operation of the starter charger.

Notes:

If the speed is not recorded, the engine stops immediately without a delay. If the engine is recording the engine speed, the engine will continue to idle for 5 minutes. After that, the engine will stop.

Elimination:

Check the battery and alternator.

Check the connectors and wiring.

EMS 1378

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

Battery voltage

Fault:

Battery voltage was below acceptable value. For 5 seconds, the battery voltage was in the range of 9 … 21.44 V.

The reasons:

It is possible that this fault is caused by a defective alternator or battery circuit. It is also possible that the power of simultaneously enabled consumers is too high.

Notes:

A crankshaft speed of less than 400 rpm during engine start is not considered a malfunction.

The fault affects the emission of nitrogen oxides (NOx) by the car, and a warning lamp lights up in the instrument cluster, warning of a high level of pollutants. On vehicles with NOx control, a text message is also displayed.

Cars with NOx control

An active DTC limits the maximum engine torque to approximately 40% after the engine has been running for 50 hours.

An active DTC cannot be deleted from the control unit. When the malfunction is resolved so that the malfunction code becomes inactive, the control unit must ensure that the malfunction has been eliminated.

Elimination:

Check the battery and alternator.

Check the connectors and wiring.

Continue as follows to ensure that the problem is resolved:

Start the engine and let it run at idle for at least 15 seconds.

If the fault is resolved, the fault code becomes inactive. Clear the fault code.

Using the ignition key, turn off and turn on the power three times in a row at intervals of 10 seconds to deactivate the test lamp.

EMS 1378

Blocks:

2098547, 2098546, 2098545, 2096902, 2096901, 9000000, 2089202, 2089201, 2089200

Title:

Battery voltage

Fault:

Battery voltage when the engine is at idle was below the allowable value.

The reasons:

It is possible that this fault is caused by a defective generator or battery circuit. Another reason may be too high current consumption.

Notes:

Starting the engine is difficult and certain high current-consuming functions are deactivated . Examples of disconnecting equipment: seat heating and heated exterior mirrors.

Elimination:

Check the battery and alternator.

Check the connectors and wiring.

Check the power and consumption of the system.

EMS 1379

Blocks:

2098547, 2098546, 2098545, 2096902, 2096901, 9000000, 2089202, 2089201, 2089200

Title:

Battery voltage

Fault:

The battery voltage was above the allowable value.

The reasons:

Generator malfunction may result in too high charging current.

Notes:

The engine control unit turns off the EGR system and the engine power decreases.

Elimination:

Check the generator and measure the system voltage.

If the operating time since the generation of the fault code exceeds 10 hours, empty the EGR cooler, as there is a danger of condensation in the air-cooled EGR cooler after the EGR system is turned off.Empty the EGR cooler following the instructions given in the manual for service stations, subgroup 01-65.

EMS 1379

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

Battery voltage

Fault:

The battery voltage was above the allowable value. Within 5 seconds, the battery voltage was more than 30.56 V.

The reasons:

The failure of the generator can be, for example, an increase in the voltage of the on-board network to 36 V.

Notes:

If the voltage at the terminals of the battery for 15 minutes will be in the range of 30.56 … 47 V, the engine will automatically go into idle mode.

Elimination:

Check the battery and alternator.

Check the connectors and wiring.

EMS 1592

Blocks:

2098547, 2098546, 2098545, 2096902, 2096901, 9000000, 2089202, 2089201, 2089200

Title:

Throttle valve

Fault:

Initiation of the throttle operating range at engine start gives the wrong value.

The reasons:

The throttle potentiometer cannot find the throttle zero mode.

The throttle adaptation ended in failure.

There may be a fault in the throttle potentiometer.

Notes:

The engine goes into emergency mode.

Elimination:

Check fuses.

Check the power supply of the potentiometers and the actuator throttle.

Check wiring and connectors.

EMS 1594

Blocks:

2098547, 2098546, 2098545, 2096902, 2096901, 9000000, 2089202, 2089201, 2089200

Title:

Generator 1

Fault:

The generator shows:

that it does not perform charging, although it is on, i.e. at engine speeds that are equal to or above idle

that it performs charging, although not included, i.e. at engine speeds that are equal to or below idle

The reasons:

Short circuit or open circuit generator.

Notes:

The poor state of the power supply system. Functions that consume a large amount of current and therefore require charging system performance will be disabled. Examples of these functions are: low beam, seat heating and heated rear view mirrors.

The engine control unit switches off the exhaust gas recirculation system. In accordance with current legal requirements, engine power is reduced on vehicles that are equipped with NOx exhaust control.

The fault code cannot be cleared while the fault is present.

Elimination:

Check electrical connectors, wiring and alternator.

If the operating time since the generation of the fault code exceeds 10 hours, empty the EGR cooler, as there is a danger of condensation in the air-cooled EGR cooler after the EGR system is turned off. Empty the EGR cooler following the instructions given in the manual for service stations, subgroup 01-65.

EMS 1601

Blocks:

2098547, 2098546, 2098545, 2096902, 2096901, 9000000, 2089202, 2089201, 2089200

Title:

Gas pressure sensor

Fault:

Deviation of the reference voltage of the gas pressure sensor.

The reasons:

Faulty gas pressure sensor or short circuit in the electrical circuit.

Notes:

The engine stops or goes into fail-safe mode of operation. Torque is reduced to protect the engine.

Elimination:

Check the element, connectors and wiring.

Check the supply voltage of the sensor and engine control unit.

EMS 1602

Blocks:

2098547, 2098546, 2098545, 2096902, 2096901, 9000000, 2089202, 2089201, 2089200

Title:

Gas pressure sensor

Fault:

Gas pressure sensor reference voltage too low

The reasons:

A short to ground in the supply voltage circuit of the gas pressure sensor.

Motor control supply voltage too low.

Notes:

The engine stops or goes into fail-safe mode of operation. Torque is reduced to protect the engine.

Elimination:

Check the element, connectors and wiring.

Check the supply voltage of the sensor and engine control unit.

EMS 1603

Blocks:

2098547, 2098546, 2098545, 2096902, 2096901, 9000000, 2089202, 2089201, 2089200

Title:

Gas pressure sensor

Fault:

Gas pressure sensor reference voltage too high.

The reasons:

Short to battery + in the gas supply voltage sensor voltage supply circuit.

Motor control supply voltage too high.

Notes:

The engine stops or goes into failsafe mode of operation. Torque is reduced to protect the engine.

Elimination:

Check the element, connectors and wiring.

Check the supply voltage of the sensor and engine control unit.

EMS 1617

Blocks:

2098547, 2098546, 2098545, 2096902, 2096901, 9000000, 2089202, 2089201, 2089200

Title:

Throttle valve

Fault:

Throttle Voltage Reference Deviation.

The reasons:

Damaged throttle or short circuit.

Notes:

The engine stops or goes into failsafe mode of operation. Torque is reduced to protect the engine.

Elimination:

Check the element, connectors and wiring. Replace throttle valve.

EMS 1618

Blocks:

2098547, 2098546, 2098545, 2096902, 2096901, 9000000, 2089202, 2089201, 2089200

Title:

Throttle valve

Fault:

Throttle reference voltage too low

The reasons:

Short circuit to ground on the throttle circuit or battery voltage too low.

Notes:

The engine stops or goes into failsafe mode of operation. Torque is reduced to protect the engine.

Elimination:

Check the element, connectors and wiring. Replace throttle valve.

EMS 1619

Blocks:

2098547, 2098546, 2098545, 2096902, 2096901, 9000000, 2089202, 2089201, 2089200

Title:

Throttle valve

Fault:

Throttle reference voltage too high.

The reasons:

Short circuit on the throttle electric circuit + battery or battery voltage too high.

Notes:

The engine stops or goes into failsafe mode of operation. Torque is reduced to protect the engine.

Elimination:

Check the element, connectors and wiring. Replace throttle valve.

EMS 1681

Blocks:

2098547, 2098546, 2098545, 2096902, 2096901, 9000000, 2089202, 2089201, 2089200

Title:

Cooling Fan

Fault:

The voltage in the circuit was outside the limits.

The reasons:

A short to ground on the fan solenoid circuit.

Notes:

If the fan is electrically controlled, it cannot be turned off.

If the fan is hydraulically controlled, it will not operate.

Elimination:

Check the electromagnetic winding of the fan, as well as the elements of the electrical circuit, electrical connectors and wiring.

EMS 1682

Blocks:

2098547, 2098546, 2098545, 2096902, 2096901, 9000000, 2089202, 2089201, 2089200

Title:

Cooling Fan

Fault:

The voltage in the circuit was outside the limits.

The reasons:

Short to battery + in the fan solenoid circuit.

Notes:

If the fan is controlled hydraulically, it cannot be turned off.

If the fan is electrically controlled, it will not operate.

Elimination:

Check the electromagnetic winding of the fan, as well as the elements of the electrical circuit, electrical connectors and wiring.

EMS 1683

Blocks:

2098547, 2098546, 2098545, 2096902, 2096901, 9000000, 2089202, 2089201, 2089200

Title:

Cooling fan for additional cooler

Fault:

The voltage in the circuit was outside the limits.

The reasons:

A short to ground in the electrical circuit of the auxiliary cooler fan.

Notes:

If the fan is electrically controlled, it cannot be turned off.

If the fan is hydraulically controlled, it will not operate.

Elimination:

Check the electromagnetic winding of the fan, as well as electrical connectors and wiring.

EMS 1684

Blocks:

2098547, 2098546, 2098545, 2096902, 2096901, 9000000, 2089202, 2089201, 2089200

Title:

Cooling fan for additional cooler

Fault:

The voltage in the circuit was outside the limits.

The reasons:

Short to battery + in the additional circuit of the additional cooler fan.

Notes:

If the fan has a hydraulic drive, it cannot be turned off.

If the fan has an electric drive, it will not operate.

Elimination:

Check the electromagnetic winding of the fan, as well as electrical connectors and wiring.

EMS 1800

Blocks:

2098547, 2098546, 2098545, 2096902, 2096901

Title:

Engine crankshaft speed sensor

Fault:

Incorrect value from engine speed sensor.

The reasons:

Fault in the electrical circuit.

Notes:

Failsafe mode: Limit torque and engine speed. Increased idling speed.

Elimination:

Check the connectors and electrical wiring. Replace sensor.

EMS 1830

Blocks:

9000000, 2089202, 2089201, 2089200

Title:

Engine crankshaft speed sensor

Fault:

Incorrect value from engine speed sensor.

The reasons:

Fault in the electrical circuit.

Notes:

Emergency mode: Limit torque and engine speed. Increased idling speed.

Elimination:

Check the connectors and electrical wiring. Replace sensor.

EMS 1831

Blocks:

2098547, 2098546, 2098545, 2096902, 2096901, 9000000, 2089202, 2089201, 2089200

Title:

Engine crankshaft speed sensor

Fault:

No signal from engine speed sensor

The reasons:

The sensor may not be connected to ground.

Notes:

The engine goes into failsafe mode of operation. Engine does not start again after shutdown.

Elimination:

Check the element, connectors and wiring. Replace engine speed sensor.

EMS 2065

Blocks:

2098547, 2098546, 2098545, 2096902, 2096901, 2110164, 2110165, 2110166, 2110162, 2110116, 9000000, 2089202, 2089201, 2089200

Title:

Circuit

Fault:

Coupling slips

The reasons:

Possible reasons:

The clutch is worn.

The car has been modified so that the gearbox does not match the vehicle’s SOPS file.

The speed sensor is located incorrectly.

Notes:

The engine control unit reduces torque until the clutch stops slipping.

Elimination:

If repair and maintenance has not been done recently:

Check for actual clutch slippage.

If repair and maintenance has been done recently:

Check that the appropriate gearbox type (correct SOPS file) is programmed in the vehicle.

Check the vehicle speed sensor for proper location.

EMS 4096

Blocks:

2098557, 2098556, 2110163, 2110160, 9000000, 2089202, 2089201, 2089200

Title:

Engine speed

Fault:

The engine speed exceeded the allowable value.

The reasons:

Incorrect handling, for example, incorrectly shifted to a lower gear.

Notes:

The fuel supply to the engine stops at 3000 rpm. Restoration of the fuel supply occurs after the engine speed becomes less than 3000 rpm. In this case, the engine braking mechanism works with maximum efficiency. After reducing the engine speed, normal engine operation is restored.

Elimination:

Notify the driver about the possibility of engine damage when the engine is running at high speeds.

EMS 4097

Blocks:

2098557, 2098556, 2110163, 2110160, 9000000, 2089202, 2089201, 2089200

Title:

Engine speed

Fault:

The engine speed exceeded the allowable value.

The reasons:

Incorrect handling, for example, incorrectly shifted to a lower gear.

Notes:

The fuel supply to the engine stops at 3000 rpm. Restoration of the fuel supply occurs after the engine speed becomes less than 3000 rpm. In this case, the engine braking mechanism works with maximum efficiency. After reducing the engine speed, normal engine operation is restored.

Elimination:

Notify the driver about the possibility of engine damage when the engine is running at high speeds.

EMS 4098

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

SCR – Main Unit

Fault:

No description

The reasons:

Internal malfunction in the main unit.

Notes:

As a result of a fault, the injection of the reagent is turned off.

The fault affects the emission of nitrogen oxides (NOx) by the car, and a warning lamp lights up in the instrument cluster, warning of a high level of pollutants. On vehicles with NOx control, a text message is also displayed.

Cars with NOx control

An active DTC limits the maximum engine torque to approximately 40%.

An active DTC cannot be deleted from the control unit. When the malfunction is resolved so that the malfunction code becomes inactive, the control unit must ensure that the malfunction has been eliminated.

Elimination:

Start the engine four times in a row. If the DTC is still active, replace the SCR control unit; This means that the main unit should be replaced.

In order for the control unit to verify a fault, it must perform a sequence of checks. When the control unit performs a complete sequence of checks without detecting a fault, the fault becomes inactive.

The control unit must check in four consecutive cycles, which means that the engine should be started four times in a row.

You can click on the DTC monitoring function and view the DTC. There you can see if the conditions under which the control unit confirms the repair are satisfied. When conditions are satisfied and a check is performed, the status of the DTC is displayed during the check process. If the DTC is under review, the control unit has detected a fault. If the fault is resolved, the fault code becomes inactive. Clear the fault code.

To turn off the alarm, turn off and turn on the ignition with the ignition key three times in a row at 10-second intervals.

EMS 4102

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

Defrosting the reagent in the SCR system

Fault:

The pump does not raise the pressure in the SCR system for a given time.

The reasons:

A malfunction may be due to one of the following reasons:

Reagent tank is empty.

The reagent tank vent is blocked.

Tank pre-filter or main filter blocked.

Reagent lines are leaking or clogged.

The heating system in the tank is not able to defrost the reagent during cold weather.

Reagent dispenser does not close completely.

Internal malfunction in the main unit.

Pressure sensor malfunction.

The vent valve is stuck open.

The pre-filter on the main unit is blocked.

Notes:

As a result of a fault, the injection of the reagent is turned off.

The fault affects the emission of nitrogen oxides (NOx) by the car, and a warning lamp lights up in the instrument cluster, warning of a high level of pollutants. On vehicles with NOx control, a text message is also displayed.

Cars with NOx control

An active DTC limits the maximum engine torque to approximately 40%.

An active DTC cannot be deleted from the control unit. When the malfunction is resolved so that the malfunction code becomes inactive, the control unit must ensure that the malfunction has been eliminated.

Elimination:

Check if there is already some reagent in the tank and make sure that it is not frozen.

Check to see if the vent is clogged tank reagent channel.

Check lines and connections for leaks and blockages.

Check whether the prefilter filter, main filter or filter in the combination tank is clogged.

Check if the reagent tank is working.

Ensure the reagent dispenser closes completely.

If the fault lies in the main unit, it should be replaced.

Follow the verification system as provided in SDP3 for the SCR system. System checks can help detect some of the faults listed above.

Continue as follows to ensure that the problem is resolved:

To ensure that the problem has been rectified, you can check the “Recognizing DTCs for NOx Control Invalid”, which is on the “Checks” tab in SDP3. This test should be performed outdoors, because the exhaust gas temperature becomes very high and there is a risk that the exhaust hose will melt. Performing this check may take from 5 to 30 minutes, depending on which DTCs are active.

Otherwise, you can take the following steps so that the control unit recognizes the fault as invalid.

Start the engine and turn it off.

If the fault is resolved, the fault code becomes inactive. Clear the fault code.

To turn off the alarm, turn off and turn on the ignition with the ignition key three times in a row at 10-second intervals.

EMS 4103

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

Defrosting the reagent in the SCR system

Fault:

The pressure in the SCR system does not fall as expected when opening the solenoid valve in the return line.

The reasons:

A fault code can be generated if the reagent tank vent is plugged.

The cause of the fault can also be:

The reagent return line is blocked, or the solenoid valve does not open as it should.

Notes:

As a result of a fault, the injection of the reagent is turned off.

The fault affects the emission of nitrogen oxides (NOx) by the car, and a warning lamp lights up in the instrument cluster, warning of a high level of pollutants. On vehicles with NOx control, a text message is also displayed.

Cars with NOx control

An active DTC limits the maximum engine torque to approximately 40%.

An active DTC cannot be deleted from the control unit. When the malfunction is resolved so that the malfunction code becomes inactive, the control unit must ensure that the malfunction has been eliminated.

Elimination:

Check if the reagent tank is not blocked.

Make sure the reagent in the return line is not frozen. If the reagent is frozen : Check that the engine coolant level is not too low.

To check if the return pipe heating is working. Start the engine and make sure the piping is getting warm. If not, make sure the engine coolant reaches it as it should be.

Also ensure that the solenoid valve opens fully. If the heat is normal, check that the return line is not blocked.

Continue as follows to ensure that the problem is resolved:

To ensure that the problem has been rectified, you can check the “Recognizing DTCs for NOx Control Invalid”, which is on the “Checks” tab in SDP3. This test should be performed outdoors, because the exhaust gas temperature becomes very high and there is a risk that the exhaust hose will melt. Performing this check may take from 5 to 30 minutes, depending on which DTCs are active.

Otherwise, you can perform the following actions so that the control unit recognizes the failure as invalid:

Start the engine and turn it off.

If the fault is resolved, the fault code becomes inactive. Clear the fault code.

To turn off the alarm, turn off and turn on the ignition with the ignition key three times in a row at 10-second intervals.

EMS 4104

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

Data exchange between the NOx sensor after the catalytic converter and the SCR control unit.

Fault:

The SCR control unit receives several CAN messages from the NOx sensor in too fast a sequence.

The reasons:

Failure to communicate between the NOx sensor and the SCR control unit.

Notes:

The fault affects the emission of nitrogen oxides (NOx) by the car, and a warning lamp lights up in the instrument cluster, warning of a high level of pollutants. On vehicles with NOx control, a text message is also displayed.

Cars with NOx control

An active DTC limits the maximum engine torque to approximately 40% after the engine has been running for 50 hours.

An active DTC cannot be deleted from the control unit. When the malfunction is resolved so that the malfunction code becomes inactive, the control unit must ensure that the malfunction has been eliminated.

Elimination:

Check the electrical wiring and clean the connectors.

If this does not help, replace the NOx sensor.

Continue as follows to ensure that the problem is resolved:

Turn off and turn on the onboard power supply with the ignition key.

If the fault is resolved, the fault code becomes inactive. Clear the fault code.

Using the ignition key, turn off and turn on the power three times in a row at intervals of 10 seconds to deactivate the test lamp.

EMS 4105

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

Data exchange between the NOx sensor after the catalytic converter and the SCR control unit.

Fault:

The SCR control unit does not receive the CAN message from the NOx sensor.

The reasons:

Data transfer between the NOx sensor and the SCR control unit is not working.

If the malfunction code occurs once, it may be due to the replacement of the NOx sensor.

If the fault code repeats, there is probably a fault in the electrical supply voltage circuit to the NOx sensor, NOx sensor, electrical connectors or wiring.

Notes:

The fault affects the emission of nitrogen oxides (NOx) by the car, and a warning lamp lights up in the instrument cluster, warning of a high level of pollutants. On vehicles with NOx control, a text message is also displayed.

Cars with NOx control

An active DTC limits the maximum engine torque to approximately 40% after the engine has been running for 50 hours.

An active DTC cannot be deleted from the control unit. When the malfunction is resolved so that the malfunction code becomes inactive, the control unit must ensure that the malfunction has been eliminated.

Elimination:

Check the electrical wiring and clean the connectors.

If this does not help, make sure that the SCR control unit receives the ignition voltage (U15) and there is a voltage supply to the NOx sensor control unit.

If this does not help, replace the NOx sensor.

Continue as follows to ensure that the problem is resolved:

Turn off the power with the ignition key, wait at least 90 seconds and then turn it on again with the key.

If the fault is resolved, the fault code becomes inactive. Clear the fault code.

Using the ignition key, turn off and turn on the power three times in a row at intervals of 10 seconds to deactivate the test lamp.

EMS 4106

Blocks:

2098547, 2098546, 2098545, 2096902, 2096901

Title:

NOx sensor

Fault:

Problem with CAN bus communication with NOx sensor after catalytic converter.

The reasons:

The malfunction may be caused by the loss of power supply to the NOx sensor and the simultaneous power supply to the SCR control unit.

If the fault recurs frequently, there is probably a fault in the connectors or the wiring.

Notes:

Malfunction adversely affects engine emissions of nitric oxide. The control lamp is on.

Elimination:

Check the wiring and clean the connectors. Ensure that power is simultaneously supplied to the SCR control unit and the NOx sensor.

If this does not help, first replace the NOx sensor, and if that does not help, replace the SCR control unit.

To verify that the problem is resolved, follow these steps:

Switch off the ignition with the key, wait 90 seconds and then turn it on again. If the fault is resolved, the fault code becomes inactive. Clear the fault code.

Turn off and turn on the ignition three times at intervals of 10 seconds to deactivate the test lamp.

EMS 4106

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

NOx sensor connection

Fault:

The engine control unit has no CAN message from the NOx sensor. If the vehicle is equipped with an SCR system, the CAN message is transmitted via the SCR control unit.

The reasons:

Communication between the engine control unit and the SCR control unit or between the SCR control unit and the NOx sensor is interrupted.

If a malfunction code 4108 was generated at the same time, there may be a problem in the communication between the engine control unit and the SCR control unit.

If a malfunction code 4108 was generated at the same time, there may be a communication failure between the SCR control unit and the NOx sensor.

If the DTC was generated only once, it may be due to the interruption of the voltage supply to the NOx sensor while maintaining the voltage supply to the SCR control unit.

The SCR control unit in the main unit may be faulty.

If a fault code is generated frequently, it may be due to a problem in the wiring harness or connectors.

Notes:

The fault affects the emission of nitrogen oxides (NOx) by the car, and a warning lamp lights up in the instrument cluster, warning of a high level of pollutants. On vehicles with NOx control, a text message is also displayed.

Cars with NOx control

An active DTC limits the maximum engine torque to approximately 40% after the engine has been running for 50 hours.

An active DTC cannot be deleted from the control unit. When the malfunction is resolved so that the malfunction code becomes inactive, the control unit must ensure that the malfunction has been eliminated.

Elimination:

Also check for DTCs related to CAN communication in other control units. Troubleshoot these problems first.

Check the wiring and clean the connectors.

If this does not help, check whether the SCR control unit and the NOx sensor are receiving an on / off voltage (U15) signal simultaneously. If the above action does not help, replace the NOx sensor first, and if that does not work, replace the SCR control unit. However, it is not typical for the fault to be covered in the SCR control unit. Before replacing the SCR control unit, make sure that the fault is not caused by something else.

Continue as follows to ensure that the problem is resolved:

Turn off and turn on the onboard power supply with the ignition key.

If the fault is resolved, the fault code becomes inactive. Clear the fault code.

Using the ignition key, turn off and turn on the power three times in a row at intervals of 10 seconds to deactivate the test lamp.

EMS 4107

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

Communication with the SCR control unit

Fault:

CAN MSG8 message “NOx sensor data before catalytic converter” (NOx sensor data before catalytic converter) is not received from NOx sensor. If the vehicle configuration is configured for an SCR system, this message is received via the SCR control unit.

The reasons:

The data exchange between the engine control unit and the NOx sensor in front of the catalytic converter was interrupted.

On vehicles with the SCR system, this message is sent via the SCR control unit. If a 100C fault code was generated at the same time, there may be a communication failure between the engine control unit and the SCR control unit. See fault code description 100C.

If the vehicle is equipped with an SCR system and the DTC 10C was not generated simultaneously, there may be a communication failure between the SCR control unit and the NOx sensor in front of the catalytic converter.

If the DTC was generated only once, it may be due to the interruption of the voltage supply to the NOx sensor while maintaining the voltage supply to the SCR control unit. If this DTC is generated frequently, it may be due to wiring problems or loose connectors.

Notes:

No description

Elimination:

Clear the DTC memory and try to start the engine.

Turn off and turn on the onboard power supply with the ignition key several times.

If the DTC is generated again, check the wiring and clean the electrical connectors.

If the fault code is still generated, make sure that both the SCR control unit and the NOx sensor in front of the catalytic converter receive voltage through terminal U15 simultaneously.

If the fault is not detected, first replace the NOx sensor for the catalytic converter and then the SCR control unit (if equipped with the car).

EMS 4107

Blocks:

2098547, 2098546, 2098545, 2096902, 2096901

Title:

NOx sensor

Fault:

Problem with CAN bus communication with NOx sensor in front of the catalytic converter.

The reasons:

The malfunction may be caused by the loss of power supply to the NOx sensor and the simultaneous power supply to the SCR control unit.

If the fault recurs frequently, there is probably a fault in the connectors or the wiring.

Notes:

Malfunction adversely affects engine emissions of nitric oxide. The control lamp is on.

On engines with a NOx control system, torque is reduced by 40%. The fault code cannot be cleared while the fault is present. When the malfunction is resolved, the control unit must verify this in order for the fault code to become inactive.

Elimination:

Check the wiring and clean the connectors. Ensure that power is simultaneously supplied to the SCR control unit and the NOx sensor.

If this does not help, first replace the NOx sensor, and if that does not help, replace the SCR control unit.

To verify that the problem is resolved, follow these steps:

Switch off the ignition with the key, wait 90 seconds and then turn it on again. If the fault is resolved, the fault code becomes inactive. Clear the fault code.

Turn off and turn on the ignition three times at intervals of 10 seconds to deactivate the test lamp.

EMS 4108

Blocks:

2098547, 2098546, 2098545, 2096902, 2096901

Title:

SCR control unit

Fault:

The data exchange between the engine control unit and the SCR control unit has been stopped.

The reasons:

The malfunction may be due to the loss of power to the SCR control unit and the simultaneous powering of the engine control unit.

If the fault recurs frequently, there is probably a fault in the connectors or the wiring.

Notes:

Reagent injection is deactivated.

As data exchange stops, no additional DTCs for the SCR system are generated.

Malfunction adversely affects engine emissions of nitric oxide. The control lamp is on.

On engines with a NOx control system, torque is reduced by 40%. The fault code cannot be cleared while the fault is present. When the malfunction is resolved, the control unit must verify this in order for the fault code to become inactive.

Elimination:

If there are other DTCs for the SCR system, first diagnose them.

Turn off and turn on the ignition with the ignition key several times. If there is no fault code indicating that the SCR system is off, check the wiring and clean the electrical connectors. Make sure the fuses for the SCR system are not blown.

Make sure that both control units are powered at the same time.

If the steps above do not help, replace the SCR control unit. If this does not help, replace the engine control unit.

Switch off the ignition with the key, wait 90 seconds and then turn it on again. If the fault is resolved, the fault code becomes inactive. Clear the fault code.

Turn off and turn on the ignition three times at intervals of 10 seconds to deactivate the test lamp.

EMS 4108

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

Communication with the SCR control unit

Fault:

The engine control unit does not receive a CAN message from the NOx sensor. If the vehicle is equipped with an SCR system, the CAN message is transmitted via the SCR control unit.

The reasons:

Communication between engine control unit and SCR control unit interrupted.

If there are several faults, the SCR control unit shuts down the SCR system to prevent damage. This means that communication between the SCR control unit and the engine control unit has been lost.

If this DTC is generated alone and there are no other DTCs of the SCR system, this may be due to the interruption of the supply voltage to the SCR control unit while simultaneously supplying voltage to the engine control unit.

The SCR control unit in the pump may be faulty.

If a fault code is generated frequently, it may be due to a problem in the wiring harness or connectors.

If fault code 5688 was generated at the same time, there may be a fault in the engine control unit.

If this DTC was generated, and DTC 5688 is not, it is possible that there is a fault in the wiring.

Notes:

As a result of a fault, the injection of the reagent is turned off.

Fault codes are generated based on information from the SCR control unit. If there is no communication between the SCR control unit and the engine control unit, no SCR related fault codes are generated in the engine control unit.

If this DTC is generated, there is no communication between the engine control unit and the SCR control unit. This may imply that there are no SCRs related to the SCR in the engine control unit, and those that have been erased will not be generated again, even if there is still a fault.

The fault affects the emission of nitrogen oxides (NOx) by the car, and a warning lamp lights up in the instrument cluster, warning of a high level of pollutants. On vehicles with NOx control, a text message is also displayed.

Cars with NOx control

An active DTC limits the maximum engine torque to approximately 40%.

An active DTC cannot be deleted from the control unit. When the malfunction is resolved so that the malfunction code becomes inactive, the control unit must ensure that the malfunction has been eliminated.

Elimination:

If there are fault codes for the SCR system, first diagnose them.

Switch the ignition on and off several times. Fault codes that were not generated in the engine control unit could be present in the SCR control unit, because this fault code is active.

If there is no fault code indicating that the SCR system is currently disconnected, check the wiring and clean the electrical connectors. Make sure the fuses for the SCR system are not blown.

Also make sure that both control units receive ignition signals at the same time (U15).

If the steps above do not help, replace the SCR control unit. If this does not help, replace the engine control unit.

Continue as follows to ensure that the problem is resolved:

Turn off the power with the ignition key, wait at least 90 seconds and then turn it on again with the key.

If the fault is resolved, the fault code becomes inactive. Clear the fault code.

Using the ignition key, turn off and turn on the power three times in a row at intervals of 10 seconds to deactivate the test lamp.

EMS 4109

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

Incorrect CAN version

Fault:

The engine control unit and the SCR control unit do not agree on which CAN version is used.

The reasons:

A fault occurs if one of the control units has been replaced and they are not compatible with each other.

Notes:

As a result of a fault, the injection of the reagent is turned off.

The fault affects the emission of nitrogen oxides (NOx) by the car, and a warning lamp lights up in the instrument cluster, warning of a high level of pollutants. On vehicles with NOx control, a text message is also displayed.

Cars with NOx control

An active DTC limits the maximum engine torque to approximately 40%.

An active DTC cannot be deleted from the control unit. When the malfunction is resolved so that the malfunction code becomes inactive, the control unit must ensure that the malfunction has been eliminated.

Elimination:

Check the spare part number of the control unit and replace the control unit that has the wrong spare part number.

Continue as follows to ensure that the problem is resolved:

Turn off the ignition with the key, wait at least 90 seconds and then turn it on again with the key.

If the fault is resolved, the fault code becomes inactive. Clear the fault code.

To turn off the alarm, turn off and turn on the ignition with the ignition key three times in a row at 10-second intervals.

EMS 4110

Blocks:

2098547, 2098546, 2098545, 2096902, 2096901

Title:

NOx sensor

Fault:

NOx sensor in front of the catalytic converter did not start within the specified time.

The reasons:

NOx sensor malfunction.

Notes:

On engines with a NOx control system, torque is reduced by 40%. The fault code cannot be cleared while the fault is present. After the malfunction has been rectified, in order for the malfunction code to become inactive, the control unit must verify this.

Elimination:

Replace the NOx sensor. After the startup phase, the fault code must be inactive.

EMS 4111

Blocks:

2098547, 2098546, 2098545, 2096902, 2096901

Title:

NOx sensor

Fault:

The NOx sensor after the catalytic converter did not start within the specified time.

The reasons:

NOx sensor malfunction.

Notes:

On engines with a NOx control system, torque is reduced by 40%. The fault code cannot be cleared while the fault is present. After the malfunction has been rectified, in order for the malfunction code to become inactive, the control unit must verify this.

Elimination:

Replace the NOx sensor. After the startup phase, the fault code must be inactive.

EMS 4112

Blocks:

2098557, 2098556, 2110163, 2110160, 9000000, 2089202, 2089201, 2089200

Title:

Engine speed

Fault:

The crankshaft speed for some period exceeded the permissible value.

The reasons:

This malfunction may be caused by difficult gear changes or fuel ingress into the oil.

Notes:

The engine retarder was activated to reduce the engine speed. With this fault, the maximum torque of the engine is reduced by 30 %. Increased engine speed at idle will also be lower than usual.

Elimination:

Notify the driver about the possibility of engine damage when the engine is running at high speeds. Check for fuel leaks.

EMS 4113

Blocks:

2098557, 2098556, 2110163, 2110160, 9000000, 2089202, 2089201, 2089200

Title:

Engine speed

Fault:

The crankshaft speed for some period exceeded the permissible value.

The reasons:

This DTC may be due to poor gear changes, but it may also be due to the retarder motor brakes.

Notes:

The engine retarder was activated to reduce the engine speed. Check whether a fault code 4112 is generated at the same time.

Elimination:

Notify the driver about the possibility of engine damage when the engine is running at high speeds.

EMS 4114

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

Defrosting the reagent in the SCR system

Fault:

The pump does not raise the pressure in the SCR system for a given time.

The reasons:

A malfunction may be due to one of the following reasons:

Reagent tank is empty.

The reagent tank vent is blocked.

Tank pre-filter or main filter blocked.

Reagent lines are leaking or clogged.

The heating system in the tank is not able to defrost the reagent during cold weather.

Reagent dispenser does not close completely.

Internal malfunction in the main unit.

Pressure sensor malfunction.

The vent valve is stuck open.

The pre-filter on the main unit is blocked.

Notes:

As a result of a fault, the injection of the reagent is turned off.

The fault affects the emission of nitrogen oxides (NOx) by the car, and a warning lamp lights up in the instrument cluster, warning of a high level of pollutants. On vehicles with NOx control, a text message is also displayed.

Cars with NOx control

An active DTC limits the maximum engine torque to approximately 40%.

An active DTC cannot be deleted from the control unit. When the malfunction is resolved so that the malfunction code becomes inactive, the control unit must ensure that the malfunction has been eliminated.

Elimination:

Check if there is already some reagent in the tank and make sure that it is not frozen.

Check to see if the vent is clogged tank reagent channel.

Check lines and connections for leaks and blockages.

Check whether the prefilter filter, main filter or filter in the combination tank is clogged.

Check if the reagent tank is working.

Ensure the reagent dispenser closes completely.

If the fault lies in the main unit, it should be replaced.

Follow the verification system as provided in SDP3 for the SCR system. System checks can help detect some of the faults listed above.

Continue as follows to ensure that the problem is resolved:

To ensure that the problem has been rectified, you can check the “Recognizing DTCs for NOx Control Invalid”, which is on the “Checks” tab in SDP3. This test should be performed outdoors, because the exhaust gas temperature becomes very high and there is a risk that the exhaust hose will melt. Performing this check may take from 5 to 30 minutes, depending on which DTCs are active.

Otherwise, you can take the following steps so that the control unit recognizes the fault as invalid.

Start the engine and turn it off.

If the fault is resolved, the fault code becomes inactive. Clear the fault code.

To turn off the alarm, turn off and turn on the ignition with the ignition key three times in a row at 10-second intervals.

EMS 4115

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

Defrosting the reagent in the SCR system

Fault:

The pressure in the SCR system does not fall as expected when the injection valve is open.

The reasons:

The cause of the malfunction may be:

Reagent freezing in the injection pipe.

Freezing or crystallization of the reagent in the dispenser, piping or spray nozzle of the reagent.

Notes:

As a result of a fault, the injection of the reagent is turned off.

The fault affects the emission of nitrogen oxides (NOx) by the car, and a warning lamp lights up in the instrument cluster, warning of a high level of pollutants. On vehicles with NOx control, a text message is also displayed.

Cars with NOx control

An active DTC limits the maximum engine torque to approximately 40%.

An active DTC cannot be deleted from the control unit. When the malfunction is resolved so that the malfunction code becomes inactive, the control unit must ensure that the malfunction has been eliminated.

Elimination:

Make sure that the engine coolant level is not too low.

To verify that the heating line between the main unit and the reagent dispenser is working. Start the engine and make sure the suction line gets warm. Otherwise, make sure that the coolant from the engine reaches the line as it should be. Also ensure that the water valve opens fully.

If heat is present, remove and clean the nozzle sprayer, reagent dispenser and piping.

Follow the verification system as provided in SDP3 for the SCR system. System checks can help detect some of the faults listed above.

Continue as follows to ensure that the problem is resolved:

To ensure that the problem has been rectified, you can check the “Recognizing DTCs for NOx Control Invalid”, which is on the “Checks” tab in SDP3. This test should be performed outdoors, because the exhaust gas temperature becomes very high and there is a risk that the exhaust hose will melt. Performing this check may take from 5 to 30 minutes, depending on which DTCs are active.

Otherwise, you can take the following steps so that the control unit recognizes the fault as invalid.

Start the engine and turn it off.

If the fault is resolved, the fault code becomes inactive. Clear the fault code.

To turn off the alarm, turn off and turn on the ignition with the ignition key three times in a row at 10-second intervals.

EMS 4116

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

SCR air pressure

Fault:

Air pressure in SCR system too high.

The reasons:

A malfunction may be due to one of the following reasons:

The formation of crystals in the nozzle sprayer or the pipe between the reagent dispenser and the nozzle sprayer.

The air line between the main unit and the reagent dispenser is plugged or twisted.

Malfunction in additive dispenser.

Notes:

As a result of a fault, the injection of the reagent is turned off.

The fault affects the emission of nitrogen oxides (NOx) by the car, and a warning lamp lights up in the instrument cluster, warning of a high level of pollutants. On vehicles with NOx control, a text message is also displayed.

Cars with NOx control

An active DTC limits the maximum engine torque to approximately 40%.

An active DTC cannot be deleted from the control unit. When the malfunction is resolved so that the malfunction code becomes inactive, the control unit must ensure that the malfunction has been eliminated.

Elimination:

Check whether the injection device or the pipeline is not blocked between the reagent dispenser and the injection device.

Check the air line between the main unit and the reagent dispenser for any blockage or twist.

Replace additive dispenser.

If the problem persists, replace the main unit.

Follow the verification system as provided in SDP3 for the SCR system. System checks can help detect some of the faults listed above.

Continue as follows to ensure that the problem is resolved:

To ensure that the problem has been rectified, you can check the “Recognizing DTCs for NOx Control Invalid”, which is on the “Checks” tab in SDP3. This test should be performed outdoors, because the exhaust gas temperature becomes very high and there is a risk that the exhaust hose will melt. Performing this check may take from 5 to 30 minutes, depending on which DTCs are active.

Otherwise, you can take the following steps so that the control unit recognizes the fault as invalid.

There should be no other active DTCs for air pressure in the SCR system and for faults in the main unit.

Make sure the SCR system starts up and perform a road test of a vehicle lasting 15 minutes four times in succession. Switch off the ignition with the key at intervals of 90 seconds between cycles.

If the fault is resolved, the fault code becomes inactive. Clear the fault code.

You can click on the DTC monitoring function and view the DTC. There you can see if the conditions under which the control unit confirms that the fault has been eliminated have been satisfied. When conditions are satisfied and a check is performed, the status of the DTC is displayed during the check process. If the DTC is under review, the control unit has detected a fault. If the fault is resolved, the fault code becomes inactive and can be erased.

To turn off the alarm, turn off and turn on the ignition with the ignition key three times in a row at 10-second intervals.

EMS 4116

Blocks:

2098547, 2098546, 2098545, 2096902, 2096901

Title:

SCR system

Fault:

Air pressure is too high.

The reasons:

May be due to the following:

The formation of crystals in the nozzle sprayer or the pipe between the reagent dispenser and the nozzle sprayer.

The air line between the main unit and the reagent dispenser is blocked.

Malfunction in additive dispenser.

Notes:

Reagent injection is deactivated.

Malfunction adversely affects engine emissions of nitric oxide. The control lamp is on.

On engines with a NOx control system, torque is reduced by 40%. The fault code cannot be cleared while the fault is present. When the malfunction is resolved, the control unit must verify this in order for the fault code to become inactive.

Elimination:

Check whether the injection device or the pipeline is not blocked between the reagent dispenser and the injection device.

Check the air line between the main unit and the reagent dispenser for any blockage.

Replace additive dispenser. If the fault still persists after this, replace the SCR main unit. Perform SCR system checks in SDP3.

In order to ensure that the malfunction has been rectified, in SDP3, recognize the invalidity of the malfunction codes of the NOx control system. This operation should be performed outdoors, because the exhaust gas temperature becomes very high and there is a risk that the exhaust gas hose will be damaged.

Turn off and turn on the ignition three times at intervals of 10 seconds to deactivate the test lamp.

EMS 4118

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

SCR control unit

Fault:

Incorrect or unreliable data.

The reasons:

Internal malfunction in the control unit.

Notes:

As a result of a fault, the injection of the reagent is turned off.

The fault affects the emission of nitrogen oxides (NOx) by the car, and a warning lamp lights up in the instrument cluster, warning of a high level of pollutants. On vehicles with NOx control, a text message is also displayed.

Cars with NOx control

An active DTC limits the maximum engine torque to approximately 40%.

An active DTC cannot be deleted from the control unit. When the malfunction is resolved so that the malfunction code becomes inactive, the control unit must ensure that the malfunction has been eliminated.

Elimination:

Ensure that the diaphragm pump is not clogged or damaged. If there is damage, replace the diaphragm pump.

Turn off the ignition with the key, wait at least 90 seconds and then turn it on again with the key. If the DTC is still active, replace the SCR control unit; This means that the main unit should be replaced.

Continue as follows to ensure that the problem is resolved:

Turn off the ignition with the key, wait at least 90 seconds and then turn it on again with the key.

If the fault is resolved, the fault code becomes inactive. Clear the fault code.

Using the ignition key, turn off and turn on the power three times in a row at intervals of 10 seconds to deactivate the test lamp.

EMS 4119

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

SCR control unit

Fault:

Incorrect or unreliable data.

The reasons:

Internal malfunction in the control unit.

Notes:

As a result of a fault, the injection of the reagent is turned off.

The fault affects the emission of nitrogen oxides (NOx) by the car, and a warning lamp lights up in the instrument cluster, warning of a high level of pollutants. On vehicles with NOx control, a text message is also displayed.

Cars with NOx control

An active DTC limits the maximum engine torque to approximately 40%.

An active DTC cannot be deleted from the control unit. When the malfunction is resolved so that the malfunction code becomes inactive, the control unit must ensure that the malfunction has been eliminated.

Elimination:

Ensure that the diaphragm pump is not clogged or damaged. If there is damage, replace the diaphragm pump.

Turn off the ignition with the key, wait at least 90 seconds and then turn it on again with the key. If the DTC is still active, replace the SCR control unit; This means that the main unit should be replaced.

Continue as follows to ensure that the problem is resolved:

Turn off the ignition with the key, wait at least 90 seconds and then turn it on again with the key.

If the fault is resolved, the fault code becomes inactive. Clear the fault code.

Using the ignition key, turn off and turn on the power three times in a row at intervals of 10 seconds to deactivate the test lamp.

EMS 4120

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

SCR control unit

Fault:

Incorrect or unreliable data.

The reasons:

Internal malfunction in the control unit.

Notes:

The fault affects the emission of nitrogen oxides (NOx) by the car, and a warning lamp lights up in the instrument cluster, warning of a high level of pollutants. On vehicles with NOx control, a text message is also displayed.

Cars with NOx control

An active DTC limits the maximum engine torque to approximately 40%.

An active DTC cannot be deleted from the control unit. When the malfunction is resolved so that the malfunction code becomes inactive, the control unit must ensure that the malfunction has been eliminated.

Elimination:

Replace the SCR control unit. This means that the main unit must be replaced.

Continue as follows to ensure that the problem is resolved:

Turn off the ignition with the key, wait at least 30 seconds and then turn it on again with the key.

If the fault is resolved, the fault code becomes inactive. Clear the fault code.

To turn off the alarm, turn off and turn on the ignition with the ignition key three times in a row at 10-second intervals.

EMS 4121

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

SCR control unit

Fault:

Incorrect or unreliable data.

The reasons:

Internal malfunction in the control unit.

Notes:

As a result of a fault, the injection of the reagent is turned off.

The fault affects the emission of nitrogen oxides (NOx) by the car, and a warning lamp lights up in the instrument cluster, warning of a high level of pollutants. On vehicles with NOx control, a text message is also displayed.

Cars with NOx control

An active DTC limits the maximum engine torque to approximately 40%.

An active DTC cannot be deleted from the control unit. When the malfunction is resolved so that the malfunction code becomes inactive, the control unit must ensure that the malfunction has been eliminated.

Elimination:

Ensure that the diaphragm pump is not clogged or damaged. If there is damage, replace the diaphragm pump.

Turn off the ignition with the key, wait at least 90 seconds and then turn it on again with the key. If the DTC is still active, replace the SCR control unit; This means that the main unit should be replaced.

Continue as follows to ensure that the problem is resolved:

Turn off the ignition with the key, wait at least 90 seconds and then turn it on again with the key.

If the fault is resolved, the fault code becomes inactive. Clear the fault code.

Using the ignition key, turn off and turn on the power three times in a row at intervals of 10 seconds to deactivate the test lamp.

EMS 4122

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

SCR system emergency stop

Fault:

The SCR system was turned off.

The reasons:

The SCR system was turned off due to too high temperature in the main unit.

Notes:

If the temperature drops to an acceptable level, the SCR system starts up again.

The fault affects the emission of nitrogen oxides (NOx) by the car, and a warning lamp lights up in the instrument cluster, warning of a high level of pollutants. On vehicles with NOx control, a text message is also displayed.

Cars with NOx control

An active DTC limits the maximum engine torque to approximately 40%.

An active DTC cannot be deleted from the control unit. When the malfunction is resolved so that the malfunction code becomes inactive, the control unit must ensure that the malfunction has been eliminated.

Elimination:

Check for any other DTCs that have been generated and may have caused this DTC, and use them to troubleshoot.

Continue as follows to ensure that the problem is resolved:

Switch off the ignition with the key, wait at least 90 seconds and then turn it on again with the key for 25 seconds.

If the fault is resolved, the fault code becomes inactive. Clear the fault code.

To turn off the alarm, turn off and turn on the ignition with the ignition key three times in a row at 10-second intervals.

EMS 4122

Blocks:

2098547, 2098546, 2098545, 2096902, 2096901

Title:

SCR main unit

Fault:

The temperature limit for the main SCR unit has been exceeded.

The reasons:

The SCR system was deactivated due to the too high temperature of the main unit.

Notes:

If the temperature drops to an acceptable level, the system will start again.

Malfunction adversely affects engine emissions of nitric oxide. The control lamp is on.

On engines with a NOx control system, torque is reduced by 40%. The fault code cannot be cleared while the fault is present. When the malfunction is resolved, the control unit must verify this in order for the fault code to become inactive.

Elimination:

If there are other DTCs for the SCR system, first diagnose them.

Switch off the ignition with the key, wait 90 seconds and then turn it on again. If the fault is resolved, the fault code becomes inactive. Clear the fault code.

Turn off and turn on the ignition three times at intervals of 10 seconds to deactivate the test lamp.

EMS 4123

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

Voltage supply to elements in the SCR system

Fault:

The voltage in the electrical supply circuit of the reagent dispenser was out of range.

The reasons:

Short to battery + in the reagent dispenser electrical circuit.

Notes:

As a result of a fault, the injection of the reagent is turned off.

The fault affects the emission of nitrogen oxides (NOx) by the car, and a warning lamp lights up in the instrument cluster, warning of a high level of pollutants. On vehicles with NOx control, a text message is also displayed.

Cars with NOx control

An active DTC limits the maximum engine torque to approximately 40%.

An active DTC cannot be deleted from the control unit. When the malfunction is resolved so that the malfunction code becomes inactive, the control unit must ensure that the malfunction has been eliminated.

Elimination:

Check the reagent dispenser, its connectors and wiring.

Check the battery voltage.

Continue as follows to ensure that the problem is resolved:

Turn off the power with the ignition key, wait at least 90 seconds and then turn it on again with the key.

If the fault is resolved, the fault code becomes inactive. Clear the fault code.

Using the ignition key, turn off and turn on the power three times in a row at intervals of 10 seconds to deactivate the test lamp.

EMS 4124

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

Voltage supply to elements in the SCR system

Fault:

The voltage in the electrical supply circuit of the reagent dispenser was out of range.

The reasons:

Interruption in the electric supply circuit of the reagent dispenser.

Notes:

As a result of a fault, the injection of the reagent is turned off.

The fault affects the emission of nitrogen oxides (NOx) by the car, and a warning lamp lights up in the instrument cluster, warning of a high level of pollutants. On vehicles with NOx control, a text message is also displayed.

Cars with NOx control

An active DTC limits the maximum engine torque to approximately 40%.

An active DTC cannot be deleted from the control unit. When the malfunction is resolved so that the malfunction code becomes inactive, the control unit must ensure that the malfunction has been eliminated.

Elimination:

Check the reagent dispenser, its connectors and wiring.

Check the battery voltage.

Continue as follows to ensure that the problem is resolved:

Turn off the power with the ignition key, wait at least 90 seconds and then turn it on again with the key.

If the fault is resolved, the fault code becomes inactive. Clear the fault code.

Using the ignition key, turn off and turn on the power three times in a row at intervals of 10 seconds to deactivate the test lamp.

EMS 4128

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

SCR reagent pressure

Fault:

The reagent pressure at start-up drops by more than 0.5 bar.

The reasons:

The vent valve is stuck open or there are leaks in the reagent hose.

Notes:

The SCR system is turned off until the next cycle of motion begins (ignition is switched off with the key) and any reagent is injected, which leads to an increase in the level of discharge. When the system is turned off, fault codes 100C, 100A and 100B (CAN time exceeded) can be generated. Be sure to troubleshoot this problem before taking action on codes 100C, 100A, and 100B.

Note: Diagnostics regarding this DTC cannot be performed while the SCR system is off. Therefore, this DTC cannot become passive or be generated again (if deleted) before the next cycle of motion. In order to be able to read the fault codes, turn off the ignition with the key for 90 seconds and then turn it on again.

Elimination:

Check whether the vent valve is open in the open position. Check reagent hose for leaks.

EMS 4129

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

SCR – Reagent Injection Valve

Fault:

With injection, the pressure in the SCR system does not decrease as expected.

The reasons:

This may be due to a blockage in the injection valve, on the release of the main unit, or in the hose between the main unit and the injection valve.

Notes:

As a result of this fault, the SCR system shuts down.

When the ambient temperature is below -10 ° C, a malfunction may result in damage to the injection valve in the reagent dispenser.

The fault affects the emission of nitrogen oxides (NOx) by the car, and a warning lamp lights up in the instrument cluster, warning of a high level of pollutants. On vehicles with NOx control, a text message is also displayed.

Cars with NOx control

An active DTC limits the maximum engine torque to approximately 40%.

An active DTC cannot be deleted from the control unit. When the malfunction is resolved so that the malfunction code becomes inactive, the control unit must ensure that the malfunction has been eliminated.

Elimination:

Make sure the hose is not twisted.

Check whether reagent crystals are present in the reagent dispenser or main unit. Wash off the crystals with water.

If the temperature was below -10 ° C, check to see if the injection valve in the reagent dispenser is leaking.

Follow the verification system as provided in SDP3 for the SCR system. System checks can help detect some of the faults listed above.

Continue as follows to ensure that the problem is resolved:

To ensure that the problem has been rectified, you can check the “Recognizing DTCs for NOx Control Invalid”, which is on the “Checks” tab in SDP3. This test should be performed outdoors because the exhaust gas temperature becomes very high and there is a risk that the exhaust gas hose will melt. Performing this check may take from 5 to 30 minutes, depending on which DTCs are active.

Otherwise, you can take the following steps so that the control unit recognizes the fault as invalid.

Verify that the SCR system is running four times in sequence. Switch off the ignition with the key at intervals of 90 seconds between cycles.

If the fault is resolved, the fault code becomes inactive. Clear the fault code.

You can click on the DTC monitoring function and view the DTC. There you can see if the conditions under which the control unit confirms that the fault has been eliminated have been satisfied. When conditions are satisfied and a check is performed, the status of the DTC is displayed during the check process. If the DTC is under review, the control unit has detected a fault. If the fault is resolved, the fault code becomes inactive and can be erased.

To turn off the alarm, turn off and turn on the ignition with the ignition key three times in a row at 10-second intervals.

EMS 4129

Blocks:

2098547, 2098546, 2098545, 2096902, 2096901

Title:

Emergency stop engine on request DLN 1

Fault:

No description

The reasons:

No description

Notes:

No description

Elimination:

Restart engine

EMS 4130

Blocks:

2098547, 2098546, 2098545, 2096902, 2096901

Title:

SCR system

Fault:

An improbable signal at startup.

The reasons:

Input data is not recorded when the ignition is turned on.

Notes:

No description

Elimination:

On engines with an NOx control system, to eliminate the problem, you must turn off the ignition with a key, wait 90 seconds and then turn it on again.

EMS 4130

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

SCR switch

Fault:

Digital inputs are not recorded when the ignition is turned on with a key.

The reasons:

No description

Notes:

No description

Elimination:

For engines with NOx control, this problem is resolved as follows:

Switch off the voltage, wait 90 seconds.

Turn on the voltage again.

If the fault is resolved, the digital fault code becomes inactive.

EMS 4131

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

Voltage supply for SCR control unit

Fault:

The SCR control unit turns off too soon. The power to the SCR system was turned off before the system was turned off.

The reasons:

If the car has a mass switch (used in buses and ADR cars), a fault code can be generated if the battery mass switch is used within 90 seconds after the ignition is turned off.

There may be a fault in the supply voltage to the SCR system.

In addition, the malfunction may be due to an internal malfunction in the control unit.

If at the same time a fault code 5657 is generated, the fault is probably not in the SCR system.

Notes:

Full system shutdown will not be performed. It takes approximately 90 seconds to turn off the SCR system after the ignition key is turned off.

This means that a reagent will remain in the hoses and in the nozzle dispenser.

This can cause the system to freeze in cold weather, which is likely to cause damage to the SCR system.

Elimination:

Switch off the ignition with the key, wait 90 seconds and then turn it on again. If the DTC remains inactive, delete the DTC.

If the fault code persists and at the same time no fault code 5657 has been generated, check the power supply to the main unit.

If the fault lies in the main unit, it should be replaced.

EMS 4132

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

Voltage supply for SCR control unit

Fault:

The SCR control unit shuts down too late.

The reasons:

Internal fault in the main unit or faulty wiring of the SCR control unit.

Notes:

SCR system does not turn off.

The current is still consumed, which can lead to a low battery.

Elimination:

Check electrical wiring.

If the fault lies in the main unit, it should be replaced.

EMS 4133

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

SCR control unit

Fault:

Incorrect or unreliable data.

The reasons:

Internal malfunction in the control unit.

Notes:

As a result of a fault, the SCR system shuts down and the reagent injection shuts down.

When the SCR system is turned off, fault codes 4108, 4106, and 4107 relating to data exchange with the SCR system can also be generated. Perform a primary troubleshooting using this fault code.

When the SCR system is disabled, the communication between the SCR control unit and the engine control unit can be interrupted. To ensure correct handling of the DTC, control units must be able to communicate with each other. Try to reestablish the connection, for which you should turn off the ignition, wait 90 seconds and turn on the ignition again.

The fault affects the emission of nitrogen oxides (NOx) by the car, and a warning lamp lights up in the instrument cluster, warning of a high level of pollutants. On vehicles with NOx control, a text message is also displayed.

Cars with NOx control

An active DTC limits the maximum engine torque to approximately 40%.

An active DTC cannot be deleted from the control unit. When the malfunction is resolved so that the malfunction code becomes inactive, the control unit must ensure that the malfunction has been eliminated.

Elimination:

Replace the SCR control unit. This means that the main unit must be replaced.

Continue as follows to ensure that the problem is resolved:

Switch off the ignition with the key, wait at least 90 seconds and then turn it on again with the key for 30 seconds.

If the fault is resolved, the fault code becomes inactive. Clear the fault code.

To turn off the alarm, turn off and turn on the ignition with the ignition key three times in a row at 10-second intervals.

EMS 4134

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

SCR control unit

Fault:

Incorrect or unreliable data.

The reasons:

Internal malfunction in the control unit.

Notes:

As a result of a fault, the SCR system shuts down and the reagent injection shuts down.

When the SCR system is turned off, fault codes 4108, 4106, and 4107 relating to data exchange with the SCR system can also be generated . Perform a primary troubleshooting using this fault code.

When the SCR system is disabled, the communication between the SCR control unit and the engine control unit can be interrupted. To ensure correct handling of the DTC, control units must be able to communicate with each other. Try to reestablish the connection, for which you should turn off the ignition, wait 90 seconds and turn on the ignition again.

The fault affects the emission of nitrogen oxides (NOx) by the car, and a warning lamp lights up in the instrument cluster, warning of a high level of pollutants. On vehicles with NOx control, a text message is also displayed.

Cars with NOx control

An active DTC limits the maximum engine torque to approximately 40%.

An active DTC cannot be deleted from the control unit. When the malfunction is resolved so that the malfunction code becomes inactive, the control unit must ensure that the malfunction has been eliminated.

Elimination:

Replace the SCR control unit. This means that the main unit must be replaced.

Continue as follows to ensure that the problem is resolved:

Switch off the ignition with the key, wait at least 90 seconds and then turn it on again with the key for 30 seconds.

If the fault is resolved, the fault code becomes inactive. Clear the fault code.

To turn off the alarm, turn off and turn on the ignition with the ignition key three times in a row at 10-second intervals.

EMS 4135

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

SCR control unit

Fault:

Incorrect or unreliable data.

The reasons:

Internal malfunction in the control unit.

Notes:

As a result of a fault, the SCR system shuts down and the reagent injection shuts down.

When the SCR system is turned off, fault codes 4108, 4106, and 4107 relating to data exchange with the SCR system can also be generated. Perform a primary troubleshooting using this fault code.

When the SCR system is disabled, the communication between the SCR control unit and the engine control unit can be interrupted. To ensure correct handling of the DTC, control units must be able to communicate with each other. Try to reestablish the connection, for which you should turn off the ignition, wait 90 seconds and turn on the ignition again.

The fault affects the emission of nitrogen oxides (NOx) by the car, and a warning lamp lights up in the instrument cluster, warning of a high level of pollutants. On vehicles with NOx control, a text message is also displayed.

Cars with NOx control

An active DTC limits the maximum engine torque to approximately 40%.

An active DTC cannot be deleted from the control unit. When the malfunction is resolved so that the malfunction code becomes inactive, the control unit must ensure that the malfunction has been eliminated.

Elimination:

Replace the SCR control unit. This means that the main unit must be replaced.

Continue as follows to ensure that the problem is resolved:

Switch off the ignition with the key, wait at least 90 seconds and then turn it on again with the key for 30 seconds.

If the fault is resolved, the fault code becomes inactive. Clear the fault code.

To turn off the alarm, turn off and turn on the ignition with the ignition key three times in a row at 10-second intervals.

EMS 4143

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

SCR – Reagent Pressure

Fault:

The pressure did not increase sufficiently after starting the reagent pump at full capacity.

The reasons:

Possible causes of a malfunction can be the following:

Reagent hoses are leaking or plugged.

The main unit received irreparable damage due to flooding of diesel fuel into the reagent tank.

The heating system in the tank does not work in cold weather.

Ventilation tank is not working.

Tank pre-filter or main filter blocked.

The reagent dosing unit does not close completely.

Internal malfunction in the main unit.

Pressure sensor malfunction.

The vent valve is stuck open.

The pre-filter on the main unit is blocked.

Notes:

A malfunction causes a reagent injection shut-off.

The fault affects the emission of nitrogen oxides (NOx) by the car. On the instrument cluster a warning lamp lights up which warns of a too high level of harmful emissions. On vehicles with NOx control, a text message is also displayed.

Cars with NOx control

An active DTC limits the maximum engine torque to approximately 40%.

An active DTC cannot be deleted from the control unit. When the malfunction is resolved so that the malfunction code becomes inactive, the control unit must ensure that the malfunction has been eliminated.

Elimination:

  1. Check if there is a reagent in the tank.
  2. Check if there is diesel in the tank. If there is diesel in the tank, clean the tank and replace the main unit.
  3. Check for diesel in the pump. If diesel is present in the pump, the pump, gaskets, filter, and vent valve must be replaced.
  4. Make sure the tank ventilation is working.
  5. Make sure that the reagent lines are not leaking and not blocked.
  6. Check if the prefilter or main filter is clogged.
  7. Check for signal from reagent pressure sensor.
  8. Check if the reagent tank is working.
  9. Ensure that the reagent dispenser can close completely.
  10. For one minute, bring the pressure in the tank to 0.5 bar. Use hose kit 99628.
  11. Check for double urea leaks in the reagent intake unit hose.
  12. Check that the hose clamp is installed correctly. Tighten the clamp or install a new hose clamp.

The fault code EMS 4143 may also be due to the fact that due to the presence of diesel fuel, the valve plate expands in the pump. Due to the deformation of the valve plate, pressure build-up in the pump is not possible. Check for diesel in the filter.

If the fault lies in the main unit, it should be replaced.

Follow the verification system as provided in SDP3 for the SCR system. System checks can help detect some of the faults listed above.

Continue as follows to ensure that the problem is resolved:

There should not be any active trouble codes for the following cases:

  • main unit malfunction
  • air pressure in the SCR system
  • temperature sensor after the catalytic converter
  • reagent pressure sensor

To ensure that the problem has been rectified, you can check the “Recognizing DTCs for NOx Control Invalid”, which is on the “Checks” tab in SDP3. This test should be performed outdoors because the exhaust gas temperature becomes very high and there is a risk that the exhaust system will melt. It takes about 5-30 minutes to complete the test.

Alternatively, you can perform the following actions so that the control unit recognizes the failure to be invalid:

Verify that the SCR system is running four times in sequence. Switch off the ignition with the key at intervals of 90 seconds between cycles.

If the fault is resolved, the fault code becomes inactive. Clear the fault code.

You can click on the DTC monitoring function and view the DTC. There you can see if the conditions under which the control unit confirms that the fault has been eliminated have been satisfied. When conditions are satisfied and a check is performed, the status of the DTC is displayed during the check process. If the DTC is under review, the control unit has detected a fault. If the fault is resolved, the fault code becomes inactive and can be erased.

To switch off the test lamp, you can turn off the ignition with the ignition key three times in succession with pauses between switching off for at least 10 seconds so that the engine control unit has time to restart.

EMS 4144

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

SCR – Main Unit

Fault:

No description

The reasons:

Internal malfunction in the main unit. The malfunction may also be due to the fact that the diaphragm pump is blocked or has a malfunction.

Notes:

As a result of a fault, the injection of the reagent is turned off.

The fault affects the emission of nitrogen oxides (NOx) by the car, and a warning lamp lights up in the instrument cluster, warning of a high level of pollutants. On vehicles with NOx control, a text message is also displayed.

Cars with NOx control

An active DTC limits the maximum engine torque to approximately 40%.

An active DTC cannot be deleted from the control unit. When the malfunction is resolved so that the malfunction code becomes inactive, the control unit must ensure that the malfunction has been eliminated.

Elimination:

Ensure that the diaphragm pump is not clogged or damaged. If there is damage, replace the diaphragm pump.

Turn off the ignition with the key, wait at least 90 seconds and then turn it on again with the key. If the DTC is still active, replace the SCR control unit; This means that the main unit should be replaced.

Continue as follows to ensure that the problem is resolved:

Turn off the ignition with the key, wait at least 90 seconds and then turn it on again with the key.

If the fault is resolved, the fault code becomes inactive. Clear the fault code.

Using the ignition key, turn off and turn on the power three times in a row at intervals of 10 seconds to deactivate the test lamp.

EMS 4144

Blocks:

2098547, 2098546, 2098545, 2096902, 2096901

Title:

SCR main unit

Fault:

Reagent pump speed too low.

The reasons:

Internal fault in the main unit of the SCR system.

Notes:

As a result of a fault, the injection of the reagent is turned off.

Malfunction adversely affects engine emissions of nitric oxide. The control lamp is on.

On engines with a NOx control system, torque is reduced by 40%. The fault code cannot be cleared while the fault is present. When the malfunction is resolved, the control unit must verify this in order for the fault code to become inactive.

Elimination:

Switch off the onboard power using the ignition key. Wait at least 90 seconds and then turn on the power again. If the DTC still persists, replace the main SCR unit.

Verify troubleshooting as follows:

Switch off the onboard power using the ignition key. Wait at least 90 seconds and then turn on the power again.

If the fault is resolved, the fault code becomes inactive. Then clear the fault code.

Turn off and turn on the power three times at intervals of 10 seconds to deactivate the test lamp.

EMS 4145

Blocks:

2098547, 2098546, 2098545, 2096902, 2096901

Title:

SCR main unit

Fault:

Reagent pump speed too high.

The reasons:

The cause may be air in the reagent suction piping or internal fault in the main unit.

Notes:

As a result of a fault, the injection of the reagent is turned off.

Malfunction adversely affects engine emissions of nitric oxide. The control lamp is on.

On engines with a NOx control system, torque is reduced by 40%. The fault code cannot be cleared while the fault is present. When the malfunction is resolved, the control unit must verify this in order for the fault code to become inactive.

Elimination:

Check for reagent leaking between reagent tank and main unit.

If there is a leak : Turn off the power with the key, wait at least 90 seconds and then turn it on again. If the DTC still persists, replace the main SCR unit.

Verify troubleshooting as follows:

  1. Switch off the onboard power using the ignition key. Wait at least 90 seconds and then turn on the power again.
  2. If the fault is resolved, the fault code becomes inactive. Then clear the fault code.
  3. Turn off and turn on the power three times at intervals of 10 seconds to deactivate the test lamp.

EMS 4145

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

SCR – Main Unit

Fault:

The frequency of the diaphragm pump in the main unit was above the allowable value.

The reasons:

  • The cause of the malfunction may be:
  • Air in the reagent suction piping.
  • Internal malfunction in the main unit.

Notes:

As a result of a fault, the injection of the reagent is turned off.

The fault affects the emission of nitrogen oxides (NOx) by the car, and a warning lamp lights up in the instrument cluster, warning of a high level of pollutants. On vehicles with NOx control, a text message is also displayed.

Cars with NOx control

An active DTC limits the maximum engine torque to approximately 40%.

An active DTC cannot be deleted from the control unit. When the malfunction is resolved so that the malfunction code becomes inactive, the control unit must ensure that the malfunction has been eliminated.

Elimination:

Make sure the diaphragm pump is not damaged. If there is damage, replace the diaphragm pump.

Create a pressure in the reagent tank to check for any leakage of reagent between the reagent tank and the main unit.

If there are no leaks : Turn off the ignition with the key, wait at least 90 seconds and then turn it on again with the key. If the DTC is still active, replace the SCR control unit; This means that the main unit should be replaced.

Continue as follows to ensure that the problem is resolved:

  1. Turn off the ignition with the key, wait at least 90 seconds and then turn it on again with the key.
  2. If the fault is resolved, the fault code becomes inactive. Clear the fault code.
  3. Using the ignition key, turn off and turn on the power three times in a row at intervals of 10 seconds to deactivate the test lamp.

EMS 4146

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

SCR – Voltage supply

Fault:

The voltage of one of the sensors having a common power is higher than the set value.

The reasons:

The fuel level sensor, which is currently the only sensor in this sensor group, has a short to battery.

Notes:

As a result of a fault, the injection of the reagent is turned off.

The fault affects the emission of nitrogen oxides (NOx) by the car, and a warning lamp lights up in the instrument cluster, warning of a high level of pollutants. On vehicles with NOx control, a text message is also displayed.

Cars with NOx control

An active DTC limits the maximum engine torque to approximately 40%.

An active DTC cannot be deleted from the control unit. When the malfunction is resolved so that the malfunction code becomes inactive, the control unit must ensure that the malfunction has been eliminated.

Elimination:

Check the electrical components, electrical connectors and wiring.

Sensor resistance should be in the range between 397 ohms and 92 ohms.

Continue as follows to ensure that the problem is resolved:

  1. Turn off the power with the ignition key, wait at least 90 seconds and then turn it on again with the key.
  2. If the fault is resolved, the fault code becomes inactive. Clear the fault code.
  3. Using the ignition key, turn off and turn on the power three times in a row at intervals of 10 seconds to deactivate the test lamp.

EMS 4146

Blocks:

2098547, 2098546, 2098545, 2096902, 2096901

Title:

SCR main unit

Fault:

Internal supply voltage in the main SCR unit is too high.

The reasons:

Short circuit level sensor in the tank on the + battery.

Notes:

As a result of a fault, the injection of the reagent is turned off.

Malfunction adversely affects engine emissions of nitric oxide. The control lamp is on.

On engines with a NOx control system, torque is reduced by 40%. The fault code cannot be cleared while the fault is present. When the malfunction is resolved, the control unit must verify this in order for the fault code to become inactive.

Elimination:

Check the electrical components, electrical connectors and wiring. Sensor resistance should be between 92 ohms and 397 ohms.

Confirm by turning off the key with the key, wait 90 seconds and then turn it on again. If the fault is resolved, the fault code becomes inactive. Clear the fault code.

Turn off and turn on the ignition three times at intervals of 10 seconds to deactivate the test lamp.

EMS 4147

Blocks:

2098547, 2098546, 2098545, 2096902, 2096901

Title:

SCR main unit

Fault:

Internal supply voltage in the main SCR unit is too low.

The reasons:

Short circuit of the level sensor in the tank to ground.

Notes:

As a result of a fault, the injection of the reagent is turned off.

Malfunction adversely affects engine emissions of nitric oxide. The control lamp is on.

On engines with a NOx control system, torque is reduced by 40%. The fault code cannot be cleared while the fault is present. When the malfunction is resolved, the control unit must verify this in order for the fault code to become inactive.

Elimination:

Check the electrical components, electrical connectors and wiring. Sensor resistance should be between 92 ohms and 397 ohms.

Confirm by turning off the key with the key, wait 90 seconds and then turn it on again. If the fault is resolved, the fault code becomes inactive. Clear the fault code.

Turn off and turn on the ignition three times at intervals of 10 seconds to deactivate the test lamp.

EMS 4147

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

SCR – Voltage supply

Fault:

The voltage of one of the sensors having a common power is below the set value.

The reasons:

The level sensor in the tank, which is currently the only sensor in this group, has a short to ground.

Notes:

As a result of a fault, the injection of the reagent is turned off.

The fault affects the emission of nitrogen oxides (NOx) by the car, and a warning lamp lights up in the instrument cluster, warning of a high level of pollutants. On vehicles with NOx control, a text message is also displayed.

  • Cars with NOx control
  • An active DTC limits the maximum engine torque to approximately 40%.
  • An active DTC cannot be deleted from the control unit. When the malfunction is resolved so that the malfunction code becomes inactive, the control unit must ensure that the malfunction has been eliminated.

Elimination:

Check the electrical components, electrical connectors and wiring.

Sensor resistance should be in the range between 397 ohms and 92 ohms.

Continue as follows to ensure that the problem is resolved:

  1. Turn off the power with the ignition key, wait at least 90 seconds and then turn it on again with the key.
  2. If the fault is resolved, the fault code becomes inactive. Clear the fault code.
  3. Using the ignition key, turn off and turn on the power three times in a row at intervals of 10 seconds to deactivate the test lamp.

EMS 4148

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

SCR – Main Unit

Fault:

No description

The reasons:

Internal malfunction in the main unit.

Notes:

As a result of a fault, the injection of the reagent is turned off.

The fault affects the emission of nitrogen oxides (NOx) by the car, and a warning lamp lights up in the instrument cluster, warning of a high level of pollutants. On vehicles with NOx control, a text message is also displayed.

  • Cars with NOx control
  • An active DTC limits the maximum engine torque to approximately 40%.
  • An active DTC cannot be deleted from the control unit. When the malfunction is resolved so that the malfunction code becomes inactive, the control unit must ensure that the malfunction has been eliminated.

Elimination:

Turn off the ignition with the key, wait at least 90 seconds and then turn it on again with the key. If the DTC is still active, replace the main unit.

Continue as follows to ensure that the problem is resolved:

  1. Turn off the ignition with the key, wait at least 90 seconds and then turn it on again with the key.
  2. If the fault is resolved, the fault code becomes inactive. Clear the fault code.
  3. To turn off the alarm, turn off and turn on the ignition with the ignition key three times in a row at 10-second intervals.

EMS 4149

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

SCR – Main Unit

Fault:

No description

The reasons:

Internal malfunction in the main unit.

Notes:

As a result of a fault, the injection of the reagent is turned off.

The fault affects the emission of nitrogen oxides (NOx) by the car, and a warning lamp lights up in the instrument cluster, warning of a high level of pollutants. On vehicles with NOx control, a text message is also displayed.

  • Cars with NOx control
  • An active DTC limits the maximum engine torque to approximately 40%.
  • An active DTC cannot be deleted from the control unit. When the malfunction is resolved so that the malfunction code becomes inactive, the control unit must ensure that the malfunction has been eliminated.

Elimination:

Turn off the ignition with the key, wait at least 90 seconds and then turn it on again with the key. If the DTC is still active, replace the main unit.

Continue as follows to ensure that the problem is resolved:

  1. Turn off the ignition with the key, wait at least 90 seconds and then turn it on again with the key.
  2. If the fault is resolved, the fault code becomes inactive. Clear the fault code.
  3. To turn off the alarm, turn off and turn on the ignition with the ignition key three times in a row at 10-second intervals.

EMS 4152

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

SCR – Reagent Temperature

Fault:

The temperature of the reagent inside the main unit was above the permissible value.

The reasons:

  • The cause of the malfunction may be:
  • Water heating valve stuck open.
  • Internal malfunction in the control unit.

Notes:

As a result of a fault, the SCR system shuts down and the reagent injection shuts down.

When the SCR system is turned off, fault codes 4108, 4106, and 4107 relating to data exchange with the SCR system can also be generated. Perform a primary troubleshooting using this fault code.

When the SCR system is disabled, the communication between the SCR control unit and the engine control unit can be interrupted. To ensure correct handling of the DTC, control units must be able to communicate with each other. Try to reestablish the connection, for which you should turn off the ignition, wait 90 seconds and turn on the ignition again.

High temperatures in the SCR system may cause decomposition of the reagent.

The fault affects the emission of nitrogen oxides (NOx) by the car, and a warning lamp lights up in the instrument cluster, warning of a high level of pollutants. On vehicles with NOx control, a text message is also displayed.

  • Cars with NOx control
  • An active DTC limits the maximum engine torque to approximately 40%.
  • An active DTC cannot be deleted from the control unit. When the malfunction is resolved so that the malfunction code becomes inactive, the control unit must ensure that the malfunction has been eliminated.

Elimination:

Check whether the water valve is open in the open position.

If the fault lies in the main unit, the main unit should be replaced.

Continue as follows to ensure that the problem is resolved:

  1. Turn off the ignition with the key, wait at least 90 seconds and then turn it on again with the key.
  2. If the fault is resolved, the fault code becomes inactive. Clear the fault code.
  3. To turn off the alarm, turn off and turn on the ignition with the ignition key three times in a row at 10-second intervals.

EMS 4152

Blocks:

2098547, 2098546, 2098545, 2096902, 2096901

Title:

SCR main unit

Fault:

Reagent temperature in main unit too high.

The reasons:

This may be due to jamming in the open position of the heating valve or an internal fault in the main unit.

Notes:

As a result of the failure, the injection of the reagent is turned off and the SCR system is deactivated.

When the SCR system is turned off, fault codes 4106, 4107, and 4108 relating to data transmission for the SCR system can be generated. Start troubleshooting based on the code for the reagent temperature.

First, re-establish communication between control units so that DTC management works correctly. Do this by turning off the ignition with the key, waiting at least 90 seconds and then turning it on again.

High temperatures in the system may cause decomposition of the reagent.

Malfunction adversely affects engine emissions of nitric oxide. The control lamp is on.

Elimination:

Check the coolant valve for sticking in the open position.

If the fault lies in the main unit, it should be replaced.

Confirm by turning off the key with the key, wait 90 seconds and then turn it on again. If the fault is resolved, the fault code becomes inactive. Clear the fault code.

Turn off and turn on the ignition three times at intervals of 10 seconds to deactivate the test lamp.

EMS 4157

Blocks:

2098547, 2098546, 2098545, 2096902, 2096901

Title:

SCR main unit

Fault:

Implausible pressure in the SCR system compared to atmospheric pressure.

The reasons:

This may be due to a malfunction in the atmospheric pressure sensor, blockage in the return line between the main unit and the reagent tank or in the air outlet pipe from the reagent tank.

Notes:

As a result of a fault, the injection of the reagent is turned off.

Malfunction adversely affects engine emissions of nitric oxide. The control lamp is on.

On engines with a NOx control system, torque is reduced by 40%. The fault code cannot be cleared while the fault is present. When the malfunction is resolved, the control unit must verify this in order for the fault code to become inactive.

Elimination:

  1. Check for malfunction codes indicating a malfunction in the atmospheric pressure sensor.
  2. Check for obstructions in the return line between the main unit and the reagent tank.
  3. Check whether there is a blockage in the rejecting tank’s air outlet piping.
  4. If no other problems are found, replace the SCR main unit .

EMS 4157

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

SCR pressure

Fault:

The pressure in the SCR system is implausible compared to atmospheric pressure.

The reasons:

  • The fault may be due to different reasons:
  • Atmospheric pressure sensor defective.
  • A blockage in the return hose between the main unit and the reagent tank or in the reagent tank drain hose.
  • Malfunction of the main unit.
  • Malfunction of the pressure sensor in the main unit.
  • Faulty ventilation valve.
  • Diaphragm pump damaged by diesel fuel.

Notes:

As a result of a fault, the injection of the reagent is turned off.

The fault affects the emission of nitrogen oxides (NOx) by the car, and a warning lamp lights up in the instrument cluster, warning of a high level of pollutants. On vehicles with NOx control, a text message is also displayed.

Cars with NOx control

An active DTC limits the maximum engine torque to approximately 40%.

An active DTC cannot be deleted from the control unit. When the malfunction is resolved so that the malfunction code becomes inactive, the control unit must ensure that the malfunction has been eliminated.

Elimination:

  1. Check whether the coordinator has fault codes that indicate a malfunction in the atmospheric pressure sensor.
  2. Make sure that there is no blockage in the return pipe between the main unit and the reagent tank.
  3. Check whether there is a blockage in the rejectant air outlet pipe.
  4. Check the wiring.
  5. If everything else is in order, as a last resort, replace the main unit.
  6. In order for the control unit to verify a fault, it must perform a sequence of checks. When the control unit performs a complete sequence of checks without detecting a fault, the fault becomes inactive.

The conditions under which the control unit checks:

  • There should be no other DTCs related to faults in the main unit.
  • The SCR system should have completely shut down the system. It takes approximately 90 seconds to turn off the SCR system after the ignition key is turned off.
  • The control unit must perform the test in four consecutive cycles. Start the engine and let it run at idle for at least 3 minutes. Then turn off and turn on the power four times, at intervals of at least 90 seconds.
  • You can click on the DTC monitoring function and view the DTC. There you can see if the conditions under which the control unit confirms that the fault has been eliminated have been satisfied . When conditions are satisfied and a check is performed, the status of the DTC is displayed during the check process. If the DTC is under review, the control unit has detected a fault. If the fault is resolved, the fault code becomes inactive. Clear the fault code.
  • Using the ignition key, turn off and turn on the power three times in a row at intervals of 10 seconds to deactivate the test lamp.

EMS 4160

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

SCR – Reagent Pressure

Fault:

The pressure at system start was above the allowable value.

The reasons:

  • The return line to the tank may be plugged. There may be blockage inside or outside the main unit.
  • The reagent tank vent valve may be blocked.
  • The vent gasket has expanded due to the presence of diesel in the urea.

Notes:

As a result of a fault, the injection of the reagent is turned off.

The fault affects the emission of nitrogen oxides (NOx) by the car, and a warning lamp lights up in the instrument cluster, warning of a high level of pollutants. On vehicles with NOx control, a text message is also displayed.

Cars with NOx control

An active DTC limits the maximum engine torque to approximately 40%.

An active DTC cannot be deleted from the control unit. When the malfunction is resolved so that the malfunction code becomes inactive, the control unit must ensure that the malfunction has been eliminated.

Elimination:

  1. Check for the presence of diesel in the pre-filter on the reagent tank. If diesel fuel is present in the filter, thoroughly flush the main unit and replace the diaphragm pump, gaskets, and vent valve. See the instructions in the Multi system.
  2. Check that the reagent tank vent valve is not clogged. If there is an obstruction, replace the vent valve.
  3. Check that the return hose to the tank is blocked.
  4. If the fault lies in the main unit, it should be replaced.
  5. Follow the verification system as provided in SDP3 for the SCR system. System checks can help detect some of the faults listed above.
  6. Continue as follows to ensure that the problem is resolved:
  7. To ensure that the problem has been rectified, you can check the “Recognizing DTCs for NOx Control Invalid”, which is on the “Checks” tab in SDP3. This test should be performed outdoors because the exhaust gas temperature becomes very high and there is a risk that the exhaust system will melt. Performing this check may take from 5 to 30 minutes, depending on which DTCs are active.
  8. Alternatively, you can perform the following actions so that the control unit recognizes the failure to be invalid:
  9. There should be no active DTCs for air pressure in the SCR system, for faults in the main unit, for blocking the injection device, or for a temperature sensor downstream of the catalytic converter.
  10. Start the engine and verify that the engine speed is above 1,000 rpm and that the SCR system starts up four times in a row at 90-second intervals between cycles. If the temperature is below -8 ° C or the reagent is frozen, the SCR system will not start.
  11. If the fault is resolved, the fault code becomes inactive. Clear the fault code.
  12. You can click on the DTC monitoring function and view the DTC. There you can see if the conditions under which the control unit confirms that the fault has been eliminated have been satisfied. When conditions are satisfied and a check is performed, the status of the DTC is displayed during the check process. If the DTC is still present, the control unit has detected a fault. If the fault is resolved, the fault code becomes inactive and can be erased.

Using the ignition key, turn off and turn on the power three times in a row at intervals of 10 seconds to deactivate the test lamp.

EMS 4160

Blocks:

2098547, 2098546, 2098545, 2096902, 2096901

Title:

SCR main unit

Fault:

The reagent return line pressure is too high at system startup.

The reasons:

There may be blockage in the return line to the reagent tank, in the valve of the reagent tank or in the main unit.

Notes:

As a result of a fault, the injection of the reagent is turned off.

Malfunction adversely affects engine emissions of nitric oxide. The control lamp is on.

On engines with a NOx control system, torque is reduced by 40%. The fault code cannot be cleared while the fault is present. When the malfunction is resolved, the control unit must verify this in order for the fault code to become inactive.

Elimination:

  1. Check for blockage in the return line to the reagent tank or in the reagent tank valve. If the fault lies in the main unit, it should be replaced.
  2. Perform SCR system checks in SDP3.
  3. In order to ensure that the malfunction has been rectified, in SDP3, recognize the invalidity of the malfunction codes of the NOx control system. This operation should be carried out outdoors, because the exhaust gas temperature becomes very high, as a result of which the exhaust gas hose can be damaged.
  4. Turn off and turn on the ignition three times at intervals of 10 seconds to deactivate the test lamp.

EMS 4163

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

SCR – Reagent Temperature

Fault:

The temperature sensor in the main unit indicates that the reagent temperature is below acceptable.

The reasons:

Internal malfunction in the control unit.

Notes:

The fault affects the emission of nitrogen oxides (NOx) by the car, and a warning lamp lights up in the instrument cluster, warning of a high level of pollutants. On vehicles with NOx control, a text message is also displayed.

Cars with NOx control

An active DTC limits the maximum engine torque to approximately 40%.

An active DTC cannot be deleted from the control unit. When the malfunction is resolved so that the malfunction code becomes inactive, the control unit must ensure that the malfunction has been eliminated.

Elimination:

  1. Check the electrical wires to the temperature sensor.
  2. Check whether the water valve of the heating system is stuck in the closed position.
  3. If the fault lies in the main unit, replace the main unit.
  4. Continue as follows to ensure that the problem is resolved:
  5. Reagent temperature in the tank should be above -8 ° C.
  6. Turn off the power with the ignition key, wait at least 90 seconds and then turn it on again with the key.
  7. If the fault is resolved, the fault code becomes inactive. Clear the fault code.
  8. Using the ignition key, turn off and turn on the power three times in a row at intervals of 10 seconds to deactivate the test lamp.

EMS 4164

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

SCR – Reagent tank temperature

Fault:

The temperature in the tank is below acceptable.

The reasons:

  • Malfunction in the tank temperature sensor or tank heating system.
  • The water valve for the heating system can open in the open position.

Notes:

The fault affects the emission of nitrogen oxides (NOx) by the car, and a warning lamp lights up in the instrument cluster, warning of a high level of pollutants. On vehicles with NOx control, a text message is also displayed.

Cars with NOx control

An active DTC limits the maximum engine torque to approximately 40%.

An active DTC cannot be deleted from the control unit. When the malfunction is resolved so that the malfunction code becomes inactive, the control unit must ensure that the malfunction has been eliminated.

Elimination:

  1. Check the temperature sensor in the tank and wiring.
  2. Check whether the water valve of the heating system is stuck in the closed position.
  3. Continue as follows to ensure that the problem is resolved:
  4. The temperature of the reagent in the tank should be above -8 ° C.
  5. Turn off the power with the ignition key, wait at least 90 seconds and then turn it on again with the key.
  6. If the fault is resolved, the fault code becomes inactive. Clear the fault code.
  7. Using the ignition key, turn off and turn on the power three times in a row at intervals of 10 seconds to deactivate the test lamp.

EMS 4165

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

Compressed air supply for SCR system

Fault:

The compressed air supply for the SCR system is not sufficient to run the SCR system.

The reasons:

The air pressure in the vehicle’s compressed air supply system may be too low due to high air flow or leakage outside the SCR system.

Notes:

As a result of a fault, the injection of the reagent is turned off.

The fault affects the emission of nitrogen oxides (NOx) by the car, and a warning lamp lights up in the instrument cluster, warning of a high level of pollutants. On vehicles with NOx control, a text message is also displayed.

Cars with NOx control

An active DTC limits the maximum engine torque to approximately 40%.

An active DTC cannot be deleted from the control unit. When the malfunction is resolved so that the malfunction code becomes inactive, the control unit must ensure that the malfunction has been eliminated.

Elimination:

  1. Check for malfunction codes in the air supply system (APS) and troubleshoot them.
  2. If fault codes that indicate a low pressure in the air supply system are detected in APS, and fault code 8247 was not generated, it is likely that the fault code is due to a temporary problem related to the air pressure on the vehicle.
  3. Turn off the ignition with the key, wait at least 90 seconds and then turn it on again with the key.
  4. If the DTC remains inactive, delete the DTC.
  5. To turn off the alarm, turn off and turn on the ignition with the ignition key three times in a row at 10-second intervals.

EMS 4165

Blocks:

2098547, 2098546, 2098545, 2096902, 2096901

Title:

Exhaust Gas Emission System (EEC)

Fault:

Insufficient supply of compressed air to start the EEC system.

The reasons:

The air pressure in the car’s compressed air supply system may be too low due to high air flow or leakage.

Notes:

As a result of a fault, the injection of the reagent is turned off.

Malfunction adversely affects engine emissions of nitric oxide. The control lamp is on.

On engines with a NOx control system, torque is reduced by 40%. The fault code cannot be cleared while the fault is present. When the malfunction is resolved, the control unit must verify this in order for the fault code to become inactive.

Elimination:

  1. Check for malfunction codes in the compressed air system (APS) and troubleshoot them.
  2. If there are fault codes indicating low pressure in the compressed air circuit, but fault code 8247 has not been generated, there may be a temporary problem with the air pressure.
  3. Confirm by turning off the key with the key, wait 90 seconds and then turn it on again. If the fault is resolved, the fault code becomes inactive. Clear the fault code.

EMS 4166

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

SCR air pressure

Fault:

The difference in air pressure before and after constriction during dosing is less than expected

The reasons:

The injection device or air hose is plugged.

Notes:

The SCR system does not inject the additive, resulting in increased exhaust emissions.

Elimination:

Ensure that the nozzle nozzle and the air hose are not blocked between the SCR control unit and the nozzle nozzle.

EMS 4167

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

SCR Voltage

Fault:

The SCR control unit detects that the battery voltage is lower than the value measured by the engine control unit.

The reasons:

Electrical wiring or main unit connectors are damaged.

Notes:

The fault affects the emission of nitrogen oxides (NOx) by the car, and a warning lamp lights up in the instrument cluster, warning of a high level of pollutants. On vehicles with NOx control, a text message is also displayed.

Cars with NOx control

An active DTC limits the maximum engine torque to approximately 40%.

An active DTC cannot be deleted from the control unit. When the malfunction is resolved so that the malfunction code becomes inactive, the control unit must ensure that the malfunction has been eliminated.

Elimination:

  1. Check the wiring and electrical connectors of the main unit.
  2. Continue as follows to ensure that the problem is resolved:
  3. Start the engine and then shut it down again.
  4. Turn on the onboard power with the ignition key.
  5. If the fault is resolved, the fault code becomes inactive. Clear the fault code.
  6. Using the ignition key, turn off and turn on the power three times in a row at intervals of 10 seconds to deactivate the test lamp.

EMS 4167

Blocks:

2098547, 2098546, 2098545, 2096902, 2096901

Title:

Exhaust Gas Emission System (EEC)

Fault:

The measured voltage in the control unit of the exhaust emission lowering system is lower than the voltage in the engine control unit.

The reasons:

Damaged wiring or connectors.

Notes:

No description

Elimination:

  1. Check the wiring and connectors of the exhaust system.
  2. For engines with a NOx control system:
  3. Start the engine.
  4. Turn off the engine.
  5. Turn on the ignition.
  6. If the fault is resolved, the fault code becomes inactive.

EMS 4168

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

Nitrogen oxide (NOx) release

Fault:

The measured level of nitrogen oxides (NOx) is above acceptable.

High level of exhaust toxicity. There is a risk of exceeding the prescribed limit of NOx emissions. Torque reduction is not activated.

The reasons:

  • The control unit detects that the SCR system incorrectly reduces the amount of nitrogen oxides.
  • This may be caused by the following:
  • NOx emission level too high.
  • Low quality reagent.
  • Reagent injection nozzle malfunction.
  • Catalytic Closure.
  • NOx sensor transmits incorrect value.
  • Malfunction in dosing module.
  • Malfunction in the main unit.

Notes:

The fault affects the emission of nitrogen oxides (NOx) by the car, and a warning lamp lights up in the instrument cluster, warning of a high level of pollutants. On vehicles with NOx control, a text message is also displayed.

Cars with NOx control

An active DTC cannot be deleted from the control unit. When the malfunction is resolved so that the malfunction code becomes inactive, the control unit must ensure that the malfunction has been eliminated.

Elimination:

  1. Check for any other trouble codes related to exhaust emissions.
  2. Make sure that the reagent tank contains an AdBlue reagent.
  3. Ensure that the reagent lines and injection device are not plugged. The crystals can be washed off with water.
  4. Make sure the reagent dispenser is not blocked. The crystals can be washed off with water.
  5. Check the NOx sensor.
  6. Check that the catalytic converter is intact.
  7. Continue as follows to ensure that the problem is resolved:
  8. To ensure that the problem has been rectified, you can check the “Recognizing DTCs for NOx Control Invalid”, which is on the “Checks” tab in SDP3. This test should be performed outdoors, because the exhaust gas temperature becomes very high and there is a risk that the exhaust hose will melt. Performing this check may take from 5 to 30 minutes, depending on which DTCs are active.
  9. Otherwise, you can perform the following actions so that the control unit recognizes the failure as invalid:
  10. Perform a road test with a heavy load on it.
  11. If the fault is resolved, the fault code becomes inactive. Clear the fault code.
  12. To turn off the alarm, turn off and turn on the ignition with the ignition key three times in a row at 10-second intervals.

EMS 4169

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

Nitrogen oxide (NOx) release

Fault:

The measured level of nitrogen oxides (NOx) is above acceptable.

Excessively high exhaust emissions. In the car, the prescribed limit of NOx emissions is exceeded. Torque reduction activated.

The reasons:

  • The control unit detects that the SCR system incorrectly reduces the amount of nitrogen oxides.
  • This may be caused by the following:
  • NOx emission level too high.
  • Low quality reagent.
  • Reagent injection nozzle malfunction.
  • Catalytic Closure.
  • The catalytic converter may be damaged by oil transferred from the turbocharger.
  • NOx sensor transmits incorrect value.
  • Malfunction in dosing module.
  • Malfunction in the main unit.

Notes:

The fault affects the emission of nitrogen oxides (NOx) by the car, and a warning lamp lights up in the instrument cluster, warning of a high level of pollutants. On vehicles with NOx control, a text message is also displayed.

Cars with NOx control

An active DTC limits the maximum engine torque to approximately 40%.

An active DTC cannot be deleted from the control unit. When the malfunction is resolved so that the malfunction code becomes inactive, the control unit must ensure that the malfunction has been eliminated.

Elimination:

  1. Check the SCR system in the following sequence:
  2. Check for any other active DTCs related to exhaust emissions.
  3. Make sure that the quality of the reagent in the appropriate tank meets the applicable standards.
  4. Ensure that the reagent lines and injection device are not plugged. The crystals can be washed off with water.
  5. Make sure the reagent dispenser is not blocked. The crystals can be washed off with water.
  6. Check the NOx sensor.
  7. Check that the catalytic converter is intact.
  8. Ensure that the catalytic converter substrate is intact.
  9. Check for faults in the turbocharger. Contact with oil can lead to irreparable damage to the catalytic converter.
  10. Continue as follows to ensure that the problem is resolved:
  11. To ensure that the problem has been rectified, you can check the “Recognizing DTCs for NOx Control Invalid”, which is on the “Checks” tab in SDP3. This test should be performed outdoors, because the exhaust gas temperature becomes very high and there is a risk that the exhaust hose will melt. It takes about 5-30 minutes to complete the test.
  12. Otherwise, you can perform the following actions so that the control unit recognizes the failure as invalid:
  13. Perform a road test with a heavy load on it.
  14. If the fault is resolved, the fault code becomes inactive. Clear the fault code.
  15. Using the ignition key, turn off and turn on the power three times in a row at intervals of 10 seconds to deactivate the test lamp.

EMS 4169

Blocks:

2098547, 2098546, 2098545, 2096902, 2096901

Title:

SCR system

Fault:

The measured content of nitric oxide (NOx) after the catalytic converter is higher than the allowable one.

The reasons:

This may be due to a malfunctioning catalytic converter or NOx sensor or problems with reagent injection.

Notes:

Malfunction adversely affects engine emissions of nitric oxide. The control lamp is on.

On engines with a NOx control system, torque is reduced by 40%. The fault code cannot be cleared while the fault is present. When the malfunction is resolved, the control unit must verify this in order for the fault code to become inactive.

Elimination:

  1. Check for additional trouble codes that adversely affect the level of harmful emissions.
  2. Make sure that the AdBlue reagent is the correct brand in the tank.
  3. Make sure that the reagent lines or injection nozzles are not blocked.
  4. Do not damage the catalytic converter.
  5. The crystals at the inlet of the catalytic converter can be washed off with water.
  6. Make sure the reagent dispenser is not blocked. The crystals can be washed off with water.
  7. Check the NOx sensors. Do not confuse sensors before and after the catalytic converter.
  8. In order to ensure that the malfunction has been rectified, in SDP3, recognize the invalidity of the malfunction codes of the NOx control system. This operation should be carried out outdoors, because the exhaust gas temperature becomes very high, as a result of which the exhaust gas hose can be damaged.
  9. Turn off and turn on the ignition three times at intervals of 10 seconds to deactivate the test lamp.

EMS 4170

Blocks:

2110164, 2110165, 2110166, 2110162, 2110116

Title:

SCR – Nitrogen oxides (NOx) after catalytic converter

Fault:

The measured amount of nitrogen oxides is different from what should be.

The reasons:

  • The control unit detects that the SCR system incorrectly reduces the amount of nitrogen oxides.
  • This may be due to a malfunctioning catalytic converter, a malfunctioning NOx sensor, or a malfunctioning reagent dosing system.

Notes:

The fault affects the emission of nitrogen oxides (NOx) by the car, and a warning lamp lights up in the instrument cluster, warning of a high level of pollutants. On vehicles with NOx control, a text message is also displayed.

Cars with NOx control

An active DTC cannot be deleted from the control unit. When the malfunction is resolved so that the malfunction code becomes inactive, the control unit must ensure that the malfunction has been eliminated.

Elimination:

  1. Check for any other trouble codes related to exhaust emissions.
  2. Make sure that the reagent tank contains an AdBlue reagent.
  3. Ensure that the reagent lines and injection device are not plugged. The crystals can be washed off with water.
  4. Make sure the reagent dispenser is not blocked. The crystals can be washed off with water.
  5. Check the NOx sensor.
  6. Check that the catalytic converter is intact.
  7. Continue as follows to ensure that the problem is resolved:
  8. In order for the control unit to verify a fault, it must perform a sequence of checks. When the control unit performs a complete sequence of checks without detecting a fault, the fault becomes inactive.
  9. The control unit must perform the test in four consecutive cycles. It is necessary to perform a road test of a vehicle with a large load – four times in succession with an intermediate engine shutdown.
  10. You can click on the DTC monitoring function and view the DTC. There you can see if the conditions under which the control unit confirms that the fault has been eliminated have been satisfied. When conditions are satisfied and a check is performed, the status of the DTC is displayed during the check process. If the DTC is under review, the control unit has detected a fault. If the fault is resolved, the fault code becomes inactive. Clear the fault code.
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Komatsu Fault/Error Codes list https://beznez.net/komatsu-fault-error-codes-list/ https://beznez.net/komatsu-fault-error-codes-list/#respond Wed, 20 Sep 2023 06:30:29 +0000 https://beznez.net/?p=922 E02 PC – EPC system;
E03, parking brake system;
E10, engine controller power failure, engine management system malfunction
E11, engine control failure (reduction of output power to protect the engine);
E14 – failure of the feedback system;
E15, engine sensor malfunction (temperature, fuel pressure, oil pressure);
EOE network failure.
989L00 Error code: engine controller lockout warning (mode 1).
989M00, motor controller for blocking the warning (mode 2).
989N00, motor controller for blocking the warning (mode 3).
AA10NX Clogged air filter.
AB00KE Charging voltage too low or missing.
B @ BAZG, low oil pressure.
B @ BAZK, the oil level is too low.
B @ BCNS, engine coolant overheating.
B @ BCZK coolant level too low.
B @ HANS, hydraulic oil from overheating.
CA111, internal engine controller malfunction.
CA115, engine crankshaft speed sensor and speed sensor malfunction.
CA122, the feedback voltage of the intake air pressure sensor is too high.
CA123, intake air pressure sensor feedback voltage is too low.
CA131, throttle sensor feedback sensor failure.
CA132, Throttle Sensor Feedback Pressure and Low Failure.
CA144, coolant temperature high temperature sensor feedback fault 145, coolant temperature sensor feedback voltage too low or short circuit;
CA153, intake air temperature sensor feedback voltage is too high;
CA154, intake air temperature sensor feedback voltage is too low;
CA155, intake air temperature too high (excess);
CA187, sensor supply voltage is too high;
CA221, the ambient pressure sensor feedback voltage is too high;
CA222, the ambient pressure sensor feedback voltage is too low;
CA227, sensor supply voltage is too high;
CA234, engine speeding;
CA238, supply voltage from speed sensor failure;
CA271, IMV / PCV1 short circuit;
CA272, IMV / PCV1;
CA322, injector open circuit, short circuit;
CA323, injector, open circuit, short circuit failure;
CA324, injector, open circuit, short circuit;
CA325, injector, open circuit, short circuit; CA435, engine oil pressure switch failure;
CA331, nozzle open circuit, short circuit fault;
CA332, injector, open circuit, short circuit fault;
CA342, correction code is incorrect;
CA351, drive circuit failure;
CA352, sensor supply voltage too low;
CA386, sensor supply voltage too high;
CA428, the feedback voltage of the fuel moisture sensor is too high;
CA429, the feedback voltage of the fuel moisture sensor is too low;
CA441, battery voltage too low;
CA442, battery voltage too high;
CA449, the total pressure in the reservoir is too high;
CA451, the common rail pressure sensor feedback value is too large;
CA452, Common Rail Pressure Sensor Feedback is too low;
CA488, intake air temperature too high (reduced torque);
CA553, the total pressure in the manifold is too high;
CA559, the total pressure in the manifold is too low;
CA689, engine crankshaft speed sensor malfunction;
CA731, engine speed sensor signal phase failure;
CA757, all data lost;
CA778, spare engine sensor failure;
CA633, data transfer to suspend failure;
CA2185, the power supply voltage of the throttle valve is too high;
CA2186, Throttle Power Voltage Too Low;
CA2249, the total manifold pressure is too low;
CA2311, IMV, solenoid failure;
CA2555, preheat suction too high voltage;
CA2556, pre-open the low voltage fault in the input;
D19JKZ Elimination of code personalization;
D862KA GPS Antenna Diagram;

DA22KK Pump solenoid supply voltage too low;
DA25KP sensor supply failure 5V;
DA29KQ, selection of abnormal mode;
DA2RMC, CAN open (display);
DGH2KB, hydraulic oil temperature sensor short circuit;
DHPAMA, before the pump pressure sensor is abnormal;
DHPBMA, after the pump pressure sensor is abnormal;
DHS3MA Stick to restore an abnormal pressure sensor PPC;
DHS4MA bucket used in an abnormal pressure sensor PPC;
The DHS8MA boom amplifies the abnormal pressure sensor PPC;
DHSAMA, turn right, the PPC pressure sensor is abnormal;
DHSBMA, abnormal left turn of the pressure sensor PPC;
DHSDMA for opening an abnormal pressure sensor PPC;
DHX1MA, abnormal load sensor;
DW43KA, running high-voltage circuit of the electromagnetic valve of the converter;
DW43KB, short and low solenoid solenoid valve short circuit;
DW45KA Rotation to maintain an open solenoid circuit;
DW45KB Turn to ensure a short circuit of the solenoid valve;
DW91KA, two overflow solenoid valve circuits;
DW91KB – convergence of the short circuit of the electromagnetic valve;
DWA2KA, spare solenoid valve circuit;
DWA2KB, short circuit of the spare solenoid valve;
DWK0KA, two overflow solenoid valve circuits;
DWK0KB, two short-circuit overflow solenoid valve;
DXA8KA former pump PC-EPC solenoid valve;
DXA8KB former pump PC-EPC short circuit of the solenoid valve;

DXA9KA, after the PC-EPC solenoid valve circuit;
DXA9KB, after a short circuit of the PC-EPC pump solenoid valve;
DXE0KA, LS-EPC solenoid valve circuit;
DXE0KB, LS-EPC solenoid valve short circuit;
DXE4KA, EPC safety switch;
DXE4KB EPC Fault Short;
DXE5KA Pump starts / shunts an open circuit of the main solenoid valve;
DXE5KB merging or disabling the main short circuit of the solenoid valve;
DXE6KA low voltage release / shunt of the LS solenoid valve;
DXE6KB fusion / shunting LS short circuit of the solenoid valve;
DY20KA is not working properly. , Exclusion of parking DY20MA;
DY2CKA Engine engine;
DY2CKB motor shorting washers.

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