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Ignition and Engine Control Systems - Specifications, Other: Other Volvo V50 I рестайлинг

BATTERY VOLTAGE

Measurement range 0-17.95 V.

The value indicates the voltage from the system relay to the engine control module (ECM).

The voltage must not be below 11 V when the quick test of the fuel tank system is run.

ECM-439C

The parameter indicates the result of the diagnostic for leakage in the fuel tank system. This diagnostic is run during the "Fuel tank system" test phase

  1. No fault found= No leak corresponding to the definition of major leak detected by the engine control module (ECM)
  2. Fault found= Leakage > or = 1.0 mm detected by the engine control module (ECM). Diagnostic Trouble Code (DTC) ECM-439C will be set in the engine control module (ECM).

ECM-434C

The parameter indicates the result of the diagnostic for leakage in the fuel tank system. This diagnostic is run during the "Fuel tank system" test phase.

  1. No fault found= No leak corresponding to the definition of minor leak detected by the engine control module (ECM)
  2. Fault found= 1.0 mm > leakage > or = 0.5 is detected by the engine control module (ECM). Diagnostic Trouble Code (DTC) ECM-434C will be set in the engine control module (ECM).

ECM-4360

The parameter displays the result of the diagnostic for the function in the leak diagnostic unit corresponding to the diagnostic trouble code (DTC) ECM-4360. The diagnostic is run during "Reference" test phase.

  1. No fault found = No fault is detected by the engine control module (ECM)
  2. Fault found= Fault in the leak diagnostic unit detected by the engine control module (ECM). Diagnostic Trouble Code (DTC) ECM-4360 will be stored in the engine control module (ECM).

ECM-436B

The parameter displays the result of the diagnostic for the function in the leak diagnostic unit corresponding to the diagnostic trouble code (DTC) ECM-436B. The diagnostic is run during "Reference" test phase.

  1. No fault found = No fault is detected by the engine control module (ECM)
  2. Fault found= Fault in the leak diagnostic unit detected by the engine control module (ECM). Diagnostic Trouble Code (DTC) ECM-436B will be stored in the engine control module (ECM).

ECM-436C

The parameter displays the result of the diagnostic for the function in the leak diagnostic unit corresponding to the diagnostic trouble code (DTC) ECM-436C. The diagnostic is run during "Reference" test phase.

  1. No fault found = No fault is detected by the engine control module (ECM)
  2. Fault found= Fault in the leak diagnostic unit detected by the engine control module (ECM). Diagnostic Trouble Code (DTC) ECM-436C will be stored in the engine control module (ECM).

ECM-436D

The parameter displays the result of the diagnostic for the function in the leak diagnostic unit corresponding to the diagnostic trouble code (DTC) ECM-436D. The diagnostic is run during "Reference" test phase.

  1. No fault found = No fault is detected by the engine control module (ECM)
  2. Fault found= Fault in the leak diagnostic unit detected by the engine control module (ECM). Diagnostic Trouble Code (DTC) ECM-436D will be stored in the engine control module (ECM).

REFERENCE

The reference phase for leaks and the function test of the leak diagnostic unit are running. If no faults are detected during this phase the leak test in the fuel tank system starts. If any faults are detected during the phase, the test is interrupted and the test result for the leak diagnostic unit (ECM-436X) will be "Fault found".

FUEL TANK SYSTEM

Testing for leakage in the fuel tank system is running. During the first half of the test, major leaks (leaks larger than 1.0 mm) can be detected. Diagnostic trouble code (DTC) is stored in the engine control module (ECM) if leakage is detected.

After a certain amount of time (time is dependent on the fuel level in the tank) the engine control module (ECM) assesses the seal of the fuel tank system. Assessment is made using the results of the calculations of time, measured reference power consumption of the pump, measured power consumption of the pump during the time of assessment and from the shape of the power supply curve and characteristics during pressurization. If the leak in the fuel tank system is larger than 0.5 mm but smaller than 1.0 mm a diagnostic trouble code (DTC) is stored for minor leakage in the engine control module (ECM).

NOT RUNNING

The leak diagnostic is not running, the quick test of the fuel tank system has not started or has finished.

THROTTLE POSITION, CIRCUIT 1 (%)

Measurement range -3 - +130 %.

Normal value 0 - 100 %.

There is an electrical fault if the displayed value is outside the measurement range.

The value must increase with increased throttle angle.

Approximately 0 % = throttle closed.

Approximately 100 % = wide open throttle (WOT).

THROTTLE POSITION, CIRCUIT 2 (%)

Measurement range -4 - +140 %.

Normal value 0 - 100 %.

There is an electrical fault if the displayed value is outside the measurement range.

The value must increase with increased throttle angle.

Approximately 0 % = throttle closed.

Approximately 100 % = wide open throttle (WOT).

INJECTORS 1-5

Injectors 1-5 open and close approximately 6 times per second for 30 seconds.

The injector clicks.

The engine must be switched off.

AIR CONDITIONING (A/C) RELAY

Activated using the start button and stopped using the stop button. Air conditioning A/C must be requested from the control panel.

The air conditioning A/C magnetic clutch clicks.

ENGINE COOLING FAN (FC)

The fan is activated using the start button and stopped using the stop button.

The fan can be heard.

EVAPORATIVE EMISSION SYSTEM (EVAP) VALVE

The evaporative emission system (EVAP) valve opens and closes 5 times per second. Activated using the start button and stopped using the stop button.

The EVAP valve clicks.

ELECTRONIC THROTTLE MODULE (ETM) 50/75/100 %

The shutter in the electronic throttle module (ETM) opens.

The throttle opens to different positions depending on which activation is selected (50, 75 or 100 %).

Read off "Throttle angle, actual value", "Throttle position, circuit 1" or "Throttle position, circuit 2" to check the function.

The engine must be switched off at activation.

ENGINE SPEED (RPM)

Measurement range 0-10400 RPM.

The engine control module (ECM) derives the engine speed (RPM) from the engine speed (RPM) sensor signal.

The idle speed varies depending on the engine coolant temperature (720 ± 50 r/min).

BATTERY VOLTAGE (V)

Measurement range 0-20 V.

The normal value is 13-14.5 V when the generator (GEN) is charging.

The value indicates the voltage at the engine control module (ECM).

ENGINE COOLANT TEMPERATURE (ECT) (°C)

Measurement range -40 - +120 °C.

The engine control module (ECM) derives the temperature from the engine coolant temperature (ECT) sensor signal.

OUTSIDE TEMPERATURE (VIA CEM) (°C)

Measurement range -40 - +120 °C.

The engine control module (ECM) derives the temperature from the outside temperature sensor signal.

INTAKE AIR TEMPERATURE (IAT) (°C)

Measurement range -40 - +120 °C.

The engine control module (ECM) calculates the temperature from the temperature sensor for intake air (integrated in the mass air flow (MAF) sensor).

ATMOSPHERIC PRESSURE (PA)

Measurement range 0-2267 hPa.

The value indicates atmospheric pressure at the engine control module (ECM).

Normal value at sea level is 1, 013 hPa.

IGNITION ADVANCE (°)

Measurement range -20 - +62 ° btdc.

Normal value when idling varies depending on the engine coolant temperature (ECT) etc.

INTAKE PRESSURE SENSOR (V)

Measurement range 0-5 V.

The normal pressure (atmospheric pressure at sea level) is approximately 3.6 V with the ignition on (open throttle) and approximately 1.9 V at idle.

The voltage increases with pressure in the intake manifold.

MASS AIR FLOW (G/S)

Measurement range 0-200 g/s.

The value indicates the mass air flow that passes through the mass air flow (MAF) sensor.

The engine control module (ECM) calculates the value based on the signal from the mass air flow (MAF) sensor.

Normal value with the engine at operating temperature and idling and under no load, neutral and air conditioning (A/C) switched off: approximately 4 g/s.

Note. Other values apply if the generator (GEN) is under load, if for example, high beam is on, the heated rear windshield is on etc.

AIR MASS (V)

Measurement range 0-5 V.

Operating range approximately 0.5 - 4.5 V. The voltage increases with load.

ACCELERATOR PEDAL (AP), ANALOG (%)

Measurement range 0 -100 %.

Analog signal from the accelerator pedal (AP) position sensor to the engine control module (ECM).

The value indicates the accelerator pedal (AP) position.

Approximately 8 %= the accelerator pedal (AP) completely released.

Approximately 88 %= the accelerator pedal (AP) completely depressed.

The analog signal is usually used by the engine control module (ECM).

HINT: The value must follow the parameter "Accelerator pedal, PWM".

ACCELERATOR PEDAL (AP), PWM (%)

Measurement range 0 -100 %.

PWM signal from the accelerator pedal (AP) position sensor to the engine control module (ECM).

The value indicates the accelerator pedal (AP) position.

Approximately 8 %= the accelerator pedal (AP) completely released.

Approximately 88 %= the accelerator pedal (AP) completely depressed.

The PWM signal is used if there is a fault with the analog signal.

HINT: The value must follow the parameter "Accelerator pedal, analog".

THROTTLE ANGLE, DESIRED VALUE (%)

Measurement range 0 -100 %.

The value indicates the signal transmitted to the throttle unit from the engine control module (ECM).

0 % = throttle shut.

100 % = throttle fully open. This corresponds to an opening angle of approximately 84 degrees.

THROTTLE ANGLE, ACTUAL VALUE (%)

Measurement range 0 -100 %.

The engine control module (ECM) derives the value from the throttle position (TP) sensor, potentiometer 1. The value indicates the throttle opening.

If a fault is detected in the throttle position (TP) sensor, potentiometer 1, by the engine control module (ECM), the value from the throttle position (TP) sensor, potentiometer 2, will be used to represent the throttle angle. This presumes that the function of throttle position (TP) sensor, potentiometer 2 is OK.

0 % = throttle shut.

100 % = throttle fully open. This corresponds to an opening angle of approximately 84 degrees.

Must follow the parameter "Throttle angle, desired value".

Measurement range -3 - +130 %.

Normal value 0 - 100 %.

There is an electrical fault if the displayed value is outside the measurement range.

The value must increase with increased throttle angle.

Approximately 0 % = throttle closed.

Approximately 100 % = wide open throttle (WOT). This corresponds to an opening angle of approximately 84 degrees.

Measurement range -4 - +140 %.

Normal value 0 - 100 %.

There is an electrical fault if the displayed value is outside the measurement range.

The value must increase with increased throttle angle.

Approximately 0 % = throttle closed.

Approximately 100 % = wide open throttle (WOT). This corresponds to an opening angle of approximately 84 degrees.

BRAKE PEDAL POSITION (%)

Measurement range 0 -100 %.

The value indicates the brake pedal position.

The value is between 3 and 15% when the brake pedal is not actuated. The value increases as the pedal is depressed.

CLUTCH PEDAL POSITION (%)

Measurement range 0 -100 %.

The engine control module (ECM) calculates the value from the clutch pedal sensor signal.

The value indicates the clutch pedal position.

The value increases as the pedal is depressed.

AIR CONDITIONING (A/C) PRESSURE (PA)

Measurement range 0- +3100 kPa.

The engine control module (ECM) calculates the value from the signal from the air conditioning (A/C) pressure sensor.

The value indicates the pressure at the high-pressure side of the air conditioning (A/C) system.

The engine control module (ECM) calculates the pressure based on the signal from the air conditioning (A/C) pressure sensor. The pressure is given as a value relative to the atmospheric pressure.

PURGE VALVE, FLOW (LITERS PER MINUTE)

Measurement range 0-100 liters per minute.

The value indicates the estimated flow of the system through the purge valve. Used as an input parameter during compensation for other parts of the system.

Normal value at idle is 0 liters per minute when there is no purging and 5 - 40 liters per minute during purging.

EVAP VALVE, OPERATING TIME ON (S)

Measurement range 0 -100, 000μs.

The value indicates the time that the PWM signal to the EVAP signal is high, i. e. the time that the valve is open and purging. 1 000 μs corresponds to 1 % opening.

The normal value at idle is 0 μs when there is no purging and 0 - 35 000 μs during purging.

INJECTION PERIOD (S)

Measurement range 0 - 262140 μs.

The signal transmitted from the engine control module (ECM) for the injection period.

Normal value when the engine is idling at operating temperature: 2000 - 4000 μs.

FRONT HEATED OXYGEN SENSOR (HO2S), POWER CONSUMPTION HEATER PAD (A)

Probe heating in the front heated oxygen sensor (HO2S).

Measurement range -63 - +3163 mA.

Actual electrical consumption required to maintain the correct probe temperature.

FRONT HEATED OXYGEN SENSOR (HO2S)

Measurement range 0 -2.

Normal value is lambda=1.

At rich mixture is lambda < 1.

At lean mixture is lambda>1.

SIGNAL CENTER HEATED OXYGEN SENSOR (V)

Applies only to certain versions (B5244S7).

Measurement range 0-5 V.

The signal from the center heated oxygen sensor (HO2S) to the engine control module (ECM).

Normal value when the engine is running at even load is approximately 0.6 V.

SIGNAL, REAR HEATED OXYGEN SENSOR (V)

Measurement range 0-5 V.

The signal from the rear heated oxygen sensor (HO2S) to the engine control module (ECM).

Normal value when the engine is running at even load is approximately 0.6 V.

LONG TERM FUEL TRIM

The parameter displays the adaptation factor of the lambda probe.

Measurement range 0-2 lambda-adap.

Compensates the injection period at the relevant load so that the lambda value can be correctly reached.

Normal value 1.

There are 36 adaptation windows. Which window is active depends on the load and the engine speed.

Works together with "Lambda compensation".

LAMBDA COMPENSATION

The parameter displays the compensation factor of the lambda probe.

Measurement range 0 -2.

lambda value compensation increases or reduces the injection period depending on the deviation.

Normal value 1.

Works together with "Lambda adaption".

FUEL PRESSURE (PA)

Measurement range 0-1067 kPa.

The parameter indicates absolute pressure.

Normal value 480 ± 5 kPa when idling with the engine at operating temperature. The pressure drops when the ignition is switched off.

FUEL TEMPERATURE (°C)

Measurement range -40 - +120 °C.

The engine control module (ECM) derives the temperature from the fuel temperature sensor signal. The fuel temperature sensor is integrated in the fuel pressure sensor.

FUEL PUMP (FP), WORKLOAD (%)

Measurement range 0 -100 %.

Operating range 10 - 85 %. Normal value 50 % (±10 %).

The value indicates the signal transmitted from the engine control module (ECM) to the fuel pump (FP) control module.

SPEED (KM/H)

Measurement range 0 -255 km/h

The value displays the vehicle speed.

HINT: Miles per hour in certain markets.

CAMSHAFT SHIFT ANGLE, INTAKE (CA)

Measurement range 0 - 160 CA.

The engine control module (ECM) calculates the value using the signals from the engine speed (RPM) sensor (crankshaft position) and the camshaft position (CMP) sensor (camshaft position).

The value indicates how much the camshaft is deployed.

When the camshaft is in its 0-position (camshaft not deployed), the angle is 0 CA. When the camshaft is fully deployed, the angle is 50 CA.

Normal value at idle, engine at operating temperature, approximately 20 CA.

CA = Crank Angle.

HINT: The value must follow the parameter "Camshaft shift angle, intake desired value".

CAMSHAFT SHIFT ANGLE, INTAKE DESIRED VALUE (CA)

Measurement range 0 - 160 CA.

The value indicates the engine control module (ECM) target value for "Camshaft shift angle, intake".

CA = Crank Angle.

CAMSHAFT ADAPTATION, INTAKE (CA)

Measurement range -50 CA to +50 CA.

The value indicates how the camshaft flanks relate to reference positions on the crankshaft (the reference position on the crankshaft is 6 CA before top dead center (TDC)).

The value is 27 CA when the camshaft 0-position (angle position) is correct. The normal value is 27 CA ±8 CA.

The value is updated following adaptation of the camshaft position (angle position). The adaptation is carried out when the camshaft control is not active (fully returned camshaft), the camshaft is moved back fully in certain operating conditions, such as engine braking.

CA = Crank Angle.

MISFIRE COUNTER 1-5

Counts the number of misfires during a set number of crankshaft revolutions for each cylinder.

Normal value is 0.

KNOCK SENSOR (CA)

Ignition retardation requested due to knock in the cylinders.

Measurement range 0 -72 CA.

Normal value 0 CA.

This value indicates the mean value of the timing retardation for all cylinders.

CA = Crank Angle.

ENGINE COOLING FAN (%)

Measurement range: 0 - 100%

PWM signals transmitted by the engine control module (ECM) to the engine cooling fan control module to control the speed of the engine cooling fan.

IGNITION KEY IN POSITION II

OFF = ignition off.

ON = ignition on.

IGNITION KEY IN POSITION III

OFF = starting mode off.

ON= start mode on.

CRUISE CONTROL ON/OFF BUTTON

OFF = ON/OFF button unaffected.

ON = ON/OFF button affected.

CRUISE CONTROL RESUME BUTTON

Note. The cruise control must be on when reading this parameter.

OFF = resume button unaffected.

ON = resume button activated.

CRUISE CONTROL SET- BUTTON

Note. The cruise control must be on when reading this parameter.

OFF= SET- button unaffected.

ON = SET- button affected.

CRUISE CONTROL SET+ BUTTON

Note. The cruise control must be on when reading this parameter.

OFF= SET+ button unaffected.

ON = SET+ button affected.

AIR CONDITIONING (A/C) COMPRESSOR, ACTIVE

The deployment signal from the engine control module (ECM) to the air conditioning (A/C) compressor relay.

OFF = The engine control module (ECM) does not activate the air conditioning (A/C) compressor relay.

ON = The engine control module (ECM) activates the air conditioning (A/C) compressor relay.

STOP LAMP SWITCH

The engine control module (ECM) calculates the value from the stop lamp switch signal.

ON = stop lamp switch on.

OFF = stop lamp switch unaffected.

CAMSHAFT POSITION (CMP) SENSOR, INTAKE

The signal displays the pulses from the camshaft sensor (intake).

Switches between high and low as the camshaft rotates.

CONTENTS

Select type of description

  1. see «DESCRIPTION OF FROZEN VALUES»(ref-479169-S42004261732012061200000)
  2. see «STATUS IDENTIFIER, DESCRIPTION»(ref-479178-S08850697452012061200000)
  3. see «COUNTERS, DESCRIPTION»(ref-479115-S16948717902012061200000)

THROTTLE ANGLE (%)

Measurement range 0-100 %.

The engine control module (ECM) calculates the value from potentiometer 1 for the throttle position (TP) sensor. The value indicates the throttle opening.

If a fault is detected in the throttle position (TP) sensor, potentiometer 1 by the engine control module (ECM), the value from the throttle position (TP) sensor potentiometer 2 will be used to represent the throttle angle.

0 % = throttle shut.

100 % = throttle fully open.

HINT: The value must follow the parameter "Throttle angle, desired value" when the accelerator pedal (AP) is affected.

THROTTLE POSITION (TP) SENSOR, POTENTIOMETER 1 (V)

The parameter can be read off to check the function when activating "Throttle unit".

Measurement range 0-80 V.

The engine control module (ECM) derives the value from potentiometer 1 for the throttle position (TP) sensor.

The value must increase with increased throttle angle.

Approximately 0.5 V = throttle closed.

Approximately 4.0 V = wide open throttle (WOT).

THROTTLE POSITION (TP) SENSOR, POTENTIOMETER 2 (V)

The parameter can be read off to check the function when activating "Throttle unit".

Measurement range 0-80 V.

The engine control module (ECM) derives the value from potentiometer 2 for the throttle position (TP) sensor.

The value must decrease with an increased throttle angle.

Approximately 4.0 V = throttle closed.

Approximately 0.5 V = wide open throttle (WOT).

THROTTLE UNIT

Note. The accelerator pedal must be pressed down at least 90% during the activation.

The throttle in the throttle unit opens depending on which activation has been selected (50, 75 or 100 %).

Read off "Throttle position sensor, potentiometer 1" or "Throttle position sensor, potentiometer 2" to check the function.

The engine must be switched off at activation.

The air conditioning (A/C) relay is activated and supplies power to the air conditioning (A/C) compressor's electromagnetic clutch.

There is an audible clicking sound from the air conditioning (A/C) relay and from the electromagnetic clutch of the air conditioning (A/C) compressor.

The speed of the engine cooling fan (FC) changes depending on which activation is selected.

There is audible fan noise.

CANISTER PURGE (CP) VALVE

The EVAP valve opens and closes at a specific frequency.

There is an audible clicking sound from the EVAP valve.

TURBOCHARGER (TC) CONTROL VALVE

The turbocharger (TC) control valve opens and closes at a certain frequency.

The turbocharger (TC) control valve makes a clicking sound.

CONTENT

Select type of description

  1. see «DESCRIPTION OF FROZEN VALUES»(ref-479169-S27044776922012061200000)
  2. see «STATUS IDENTIFIER, DESCRIPTION»(ref-479178-S08850697452012061200000)
  3. see «COUNTERS, DESCRIPTION»(ref-479115-S16948717902012061200000)

Measurement range 0-10400 RPM.

The engine control module (ECM) derives the engine speed (RPM) from the engine speed (RPM) sensor signal.

The idle speed varies depending on the engine coolant temperature (ECT).

IDLING SPEED, DIFFERENCE DESIRED VALUE (RPM)

Measurement range -1280-1270 RPM.

The value indicates the idle speed deviation from the engine control module (ECM) desired value (target value).

Measurement range 0-17.95 V.

The normal value is 13.5-14.5 V when the generator (GEN) is charging.

The value indicates the voltage from the system relay to the engine control module (ECM).

Measurement range -48 to +143°C.

The engine control module (ECM) derives the temperature from the engine coolant temperature (ECT) sensor signal.

Measurement range -48 to +143 °C.

The engine control module (ECM) calculates the temperature from the temperature sensor for the intake air.

Measurement range -40 to +110°C.

The engine control module (ECM) derives the temperature from the outside temperature sensor signal.

Measurement range 0-5120 hPa.

The value indicates atmospheric pressure at the engine control module (ECM).

Normal value at sea level is 1, 013 hPa.

IGNITION ADVANCE (°BTDC)

Measurement range -96 to +95.3° before top dead centre (BTDC).

The value is calculated from the engine speed (RPM) sensor signal.

The value when idling varies depending on the engine coolant temperature (ECT).

BOOST PRESSURE (HPA)

Measurement range 0-2550 hPa.

The value which is calculated from the boost pressure, indicates the pressure in the intake system downstream of the turbocharger (TC).

The engine control module (ECM) calculates the boost pressure from the boost pressure sensor. The pressure is relative to atmospheric pressure.

TURBOCHARGER (TC) CONTROL VALVE (%)

Measurement range 0 - 100 %.

The value indicates the deployment signal from the control module for deploying the turbocharger (TC) control valve, the amount the turbocharger (TC) control valve opens to adjust the turbo pressure.

0 % = no control (turbocharger (TC) control valve closed).

100 % = full control (the turbocharger (TC) control valve opens completely).

MASS AIR FLOW (KG/H)

Measurement range 0-1020 kg/h.

The value indicates the mass air flow that passes through the mass air flow (MAF) sensor.

The engine control module (ECM) derives the value based on the signal from the mass air flow (MAF) sensor.

Normal value with the engine at operating temperature and idling, neutral and air conditioning (A/C) switched off: approximately 12-20 kg/h.

Note. Other values apply if the generator is under load, e. g., high beam is on, the heated rear window is on, etc.

MASS AIR FLOW, CORRECTION VALUE

Measurement range 0-4.

The value is a stored average of the correction factor of the mass air flow that the engine draws in.

Mass air flow, correction factor= The control module's calculated desired value for the mass air flow divided by (/) the actual measured mass air flow.

Normal range: 1 (±0.2).

ACCELERATOR PEDAL (AP) POSITION SENSOR, ANALOG (VIA CEM) (V)

Measurement range 0-320 V.

The engine control module (ECM) receives the value for the accelerator pedal (AP) position sensor signal from the central electronic module (CEM) via CAN communication.

The value indicates the accelerator pedal (AP) position.

Approximately 0.5 V = the accelerator pedal (AP) completely released.

Approximately 4.0 V = the accelerator pedal (AP) completely depressed.

Measurement range 0 - 100 %.

The engine control module (ECM) calculates the value from potentiometer 1 for the throttle position (TP) sensor. The value indicates the throttle opening.

If a fault is detected in the throttle position (TP) sensor, potentiometer 1 by the engine control module (ECM), the value from the throttle position (TP) sensor potentiometer 2 will be used to represent the throttle angle.

0 % = throttle shut.

100 % = throttle fully open.

HINT: The value must follow the parameter "Throttle angle, desired value" when the accelerator pedal (AP) is affected.

ACCELERATOR PEDAL (AP) POSITION SENSOR, PULSE WIDTH MODULATION (PWM) (%)

Measurement range 0 - 100 %.

Pulse width modulation (PWM) signal from the accelerator pedal (AP) position sensor to the engine control module (ECM). The control module derives the value from the digital output for the accelerator pedal (AP) position sensor.

The value indicates the accelerator pedal (AP) position.

Approximately 5 %= the accelerator pedal (AP) completely released.

Approximately 80 %= the accelerator pedal (AP) completely depressed.

Measurement range 0 - 100 %.

The engine control module (ECM) calculates a target value for the throttle opening (throttle angle).

The value indicates what the throttle angle should be.

0 % = throttle shut.

100% = throttle fully open.

Measurement range 0-80 V.

The engine control module (ECM) derives the value from potentiometer 1 for the throttle position (TP) sensor.

The value must increase with increased throttle angle.

Approximately 0.5 V = throttle closed.

Approximately 4.0 V = wide open throttle (WOT).

Measurement range 0-80 V.

The engine control module (ECM) derives the value from potentiometer 2 for the throttle position (TP) sensor.

The value must decrease with an increased throttle angle.

Approximately 4.0 V = throttle closed.

Approximately 0.5 V = wide open throttle (WOT).

LEAKAGE FLOW OVER THE THROTTLE (KG/H)

Measurement range 0-655 kg/h.

The value indicates how much air passes through the throttle at closed throttle position (CTP). The engine control module (ECM) calculates the value from the mass air flow (MAF) sensor and the throttle position (TP) sensor signals.

AIR CONDITIONING (A/C) PRESSURE (KPA)

Measurement range -176 to +3277 kPa.

The engine control module (ECM) derives the value from the air conditioning (A/C) pressure sensor signal.

The value indicates the pressure at the high-pressure side of the air conditioning (A/C) system.

The engine control module (ECM) calculates the pressure based on the signal from the air conditioning (A/C) pressure sensor. The pressure is given as a value relative to the atmospheric pressure.

EVAPORATIVE EMISSION SYSTEM (EVAP) VALVE (%)

Measurement range 0-100 %

The value indicates the deployment signal from the control module for deploying the EVAP canister purge valve (the amount the valve opens to empty the canister).

0 % = no control (EVAP canister purge valve closed).

100% = full control (EVAP canister purge valve opens completely).

EVAP, FLOW (KG/H)

Measurement range 0-25 kg/h

The engine control module (ECM) calculates the flow through the evaporative emission system (EVAP) valve. This value increases with increased flow.

INJECTION PERIOD (MS)

Measurement range 0.0-150 ms.

The signal transmitted by the engine control module (ECM) for injection period.

Normal value when the engine is idling at operating temperature: 1.0-3.0 ms

SHORT-TERM FUEL TRIM, BANK 1

Measurement range 0-2.

The value displays how much the injection period needs to be corrected (from the preprogrammed injection period in the control module) to reach lambda=1. If the engine runs lean or rich (lambda deviates from 1), the short-term fuel trim injection period is increased or decreased so that lambda=1. The average value of this parameter from different engine speed and load ranges is used for the different fuel trim adaptations (idling, lower partial load and upper partial load) so that the short-term fuel trim is always around 1.

Short-term fuel trim = the actual injection period required to reach lambda=1, divided by (/) the injection period in preprogrammed in the control module to reach lambda=1.

The normal value oscillates around 1, when the lambda adaptations for each engine speed (RPM) / load range are ready.

Value over 1: the control module increases the injection period (to prevent a lean fuel / air mix).

Value under 1: the control module decreases the injection period (to prevent a rich fuel air mix).

The parameter must be checked under stable conditions, such as stable engine speed (RPM) and load.

HINT: When lambda deviates from 1, the short-term fuel trim initially compensates at every engine speed (RPM) / load range (idle speed and load). When erasing the diagnostic trouble codes (DTCs), the adaptation values will be reset. This means the short-term fuel trim will be high or low when driving in the low engine speed/load ranges before the adaptations are ready.

LONG-TERM FUEL TRIM BANK 1, IDLE SPEED (%)

Measurement range from -72 to +72 %.

Additive adaptation of the short-term fuel trim (correcting the injection period), adaptation that occurs at idle speed. The value indicates how much the short-term fuel trim has been corrected at idle speed so that the short-term fuel trim value can again oscillate around 1.

In the event of an air leakage for example, the value will increase at idle speed (= longer injection time). This is to compensate the fuel / air mix for air capacity. Regardless of the load /engine speed, the same injection time is added. This means that the parameter value does not significantly affect the fuel / air mix at higher loads / engine speeds.

Normal value when the engine is idling: 0 ± 5 %.

Value over 0 %: the control module increases the injection period (to prevent a lean fuel / air mix).

Value under 0 %: the control module decreases the injection period (to prevent a rich fuel air mix).

HINT: When diagnostic trouble codes (DTCs) are erased, the adaptation returns to 0%.

LONG-TERM FUEL TRIM BANK 1, LOAD

Measurement range 0 -2.

Multiplicative adaptation of the short-term fuel trim, adaptation that occurs at load. The value stored in the control module indicates how much the short-term fuel trim in the load range has been corrected so that the short-term fuel trim value can again oscillate around 1 at the upper part load.

In the event of low fuel pressure for example, the value will increase (= longer injection time). This is to compensate the fuel/air mix for the lack of fuel.

Normal value 1 ± 0.1. The load range of the engine must be reached for the value to be updated.

At least 30 minutes of driving with load may be required before the adaptation is complete (complete = short-term fuel trim oscillates around 1 at load).

Value over 1: the control module increases the injection period (to prevent a lean fuel / air mix).

Value under 1: the control module decreases the injection period (to prevent a rich fuel / air mix).

HINT: When diagnostic trouble codes (DTCs) are erased, the adaptation returns to 1.

LONG-TERM FUEL TRIM, BANK 1

C/L= Closed Loop, fuel trim is active

O/L = Open Loop, fuel trim is not active

FRONT HEATED OXYGEN SENSOR (HO2S), BANK 1 (^)

Measurement range 0-16.

Normal value is lambda=1.

At rich mixture is lambda < 1.

At lean mixture is lambda > 1.

REAR HEATED OXYGEN SENSOR (HO2S), BANK 1 (V)

Measurement range -0.2 to +1.13.

The signal from the rear heated oxygen sensor (HO2S) to the engine control module (ECM).

Normal value when the engine is running at even load is approximately 0.6 V.

The voltage may vary between -0.2 and 0.9 V. The voltage may, during engine braking for example, drop to -0.2 V.

Measurement range 50-4680 kPa.

The parameter indicates absolute pressure.

The engine control module (ECM) derives the pressure from the fuel pressure sensor signal. When idling, with the engine at operating temperature and in neutral, the value should be approximately 400 kPa.

HINT: The value must follow "Fuel pressure, desired value".

FUEL PRESSURE, DESIRED VALUE (PA)

Measurement range: 0-6553.5 kPa.

The parameter indicates absolute pressure.

The engine control module (ECM) calculates the target value for "Fuel pressure". The value indicates what the fuel pressure should be.

Measurement range -40 to +215°C.

The engine control module (ECM) derives the temperature from the fuel temperature sensor signal. The fuel temperature sensor is integrated in the fuel pressure sensor.

Measurement range 0 - 100 %.

The value shows the PWM signal between the engine control module (ECM) and the fuel pump (FP) control module. A higher pulse ratio gives a higher fuel pressure. At 400 kPa the pulse ratio must be approximately 35% (±5%). The values are not relevant if the battery voltage is too low.

Measurement range 0-319 km/h

The value displays the vehicle speed.

ENGINE COOLING FAN (FC) (%)

Measurement range 0-100%

Pulse width modulation (PWM) signals transmitted by the engine control module (ECM) to the engine cooling fan (FC) control module to activate the engine cooling fan (FC).

INTAKE VALVES, OPENING ANGLE (CA)

The parameter corresponds to the "Camshaft shift angle" but is calculated from another reference position on the crankshaft.

Measurement range between -256CA and +256CA.

The engine control module (ECM) calculates the value using the signals from the engine speed (RPM) sensor (crankshaft position) and the camshaft position (CMP) sensor (camshaft position).

The value indicates when the intake valves open relative to top dead center (TDC) for the cylinders. The value decreases with increased control of the camshaft.

When the camshaft is in its 0-position (camshaft not deployed), the angle is 27°CA. When the camshaft is fully deployed, the angle is -23°CA.

(CA=Crank Angle).

HINT: The value must follow the parameter "Intake valves, target value opening angle".

INTAKE VALVES, TARGET VALUE OPENING ANGLE (CA)

Measurement range between -256 CA and +256 CA.

The value indicates the engine control module (ECM) target value for "Intake valves, opening angle".

EXHAUST VALVES, CLOSING ANGLE (CA)

The parameter corresponds to the "Camshaft shift angle" but is calculated from another reference position on the crankshaft.

Measurement range between -256 CA and +256 CA.

The engine control module (ECM) calculates the value using the signals from the engine speed (RPM) sensor (crankshaft position) and the camshaft position (CMP) sensor (camshaft position).

The value indicates when the exhaust valves close relative to top dead center (TDC) for the cylinders. The value decreases with increased control of the camshaft.

When the camshaft is in its 0-position (camshaft not deployed), the angle is 26.5 °CA. When the camshaft is fully deployed, the angle is -3.5 °CA.

(CA=Crank Angle).

HINT: The value must follow the parameter "Exhaust valves, target value closing angle".

EXHAUST VALVES, TARGET VALUE CLOSING ANGLE (CA)

Measurement range between -256 CA and +256 CA.

The value indicates the engine control module (ECM) target value for "exhaust valves, closing angle".

EXHAUST CAMSHAFT, LEEWAY (CA)

Measurement range between -511 to +511°.

The value indicates the camshaft deviation from the basic setting.

The value is 0° when the camshaft position (angle) corresponds with the crankshaft position (angle). The normal value is 0° +/-8°.

The value is updated following adaptation of the camshaft position (angle position). The adaptation is performed when the camshaft control is not active (fully returned camshaft).

INTAKE CAMSHAFT, LEEWAY (CA)

Measurement range between -511 to +511°.

The value indicates the camshaft deviation from the basic setting.

The value is 0° when the camshaft position (angle) corresponds with the crankshaft position (angle). The normal value is 0° +/-8°.

The value is updated following adaptation of the camshaft position (angle position). The adaptation is performed when the camshaft control is not active (fully returned camshaft).

MISFIRE COUNTER EMISSIONS IMPACT

The engine control module (ECM) calculates the overall total for the number of misfires affecting emissions for all cylinders during a certain number of crankshaft revolutions. The value is also affected by misfires that cause catalytic converter damage.

The value is reset when the ignition is switched off.

Normal value is 0 (= no misfire).

MISFIRE COUNTER, CYL X

Can only be read off on vehicles from model year 2005- inclusive.

The value indicates the number of misfires for each cylinder during the present operating cycle.

The value is affected by misfires which affect emissions and cause catalytic converter damage.

The value is reset when the ignition is switched off.

The normal value is 0 (= no misfiring).

IGNITION RETARDATION, KNOCKING (CA)

Ignition retardation requested due to knock in the cylinders.

Measurement range 0 -72 CA.

Normal value 0 CA.

This value indicates the mean value of the timing retardation for all cylinders.

CA = Crank Angle.

GENERATOR (GEN), CURRENT

The instantaneous generator (GEN) current to charge the battery.

The engine control module (ECM) receives information about the value of the signal from the alternator control module (ACM) via LIN communication.

GENERATOR (GEN), TARGET VALUE

The engine control module (ECM) controls the generator (GEN) via LIN communication when requested by the central electronic module (CEM). The parameter indicates the charge voltage requested by the engine control module (ECM) for the alternator control module (ACM).

When the engine is running, the value of the parameter must be approximately the same than battery voltage.

With the ignition on, the value of the parameter must be approximately 10.6 volts.

THROTTLE UNIT ADAPTATION

If necessary the engine control module runs an adaptation of the throttle unit by guiding the throttle to the limit positions so that it " learns" the parameters of that actual throttle unit.

The status indicates if the adaptation has been run or not.

OK = Adaptation of the throttle unit has run.

NOT OK = Adaptation of the throttle unit has not run.

Note. The basic conditions must be met before an adaptation of the throttle unit can be performed.

POSITION GEAR SELECTOR

Only vehicles that have an automatic transmission.

The engine control module calculates the status of the signal from the directly connected cable from the transmission control module.

P/N engaged = gear selector position is in ""or "".

P/N disengaged = gear selector position is not in ""or "".

Only vehicles that have an automatic transmission.

The engine control module calculates the status of the signal from the transmission control module via CAN.

P/N engaged = gear selector position is in "" or "".

P/N disengaged = gear selector position is not in ""or "".

IGNITION SWITCH

The engine control module (ECM) calculates the status of the signal from the directly connected cable from the central electronic module (CEM).

Position 2 = Ignition switch position in position 2 (ignition on).

Position 3 = Ignition switch position in position 3 (start).

IGNITION SWITCH (VIA CAN)

The engine control module (ECM) calculates the status of the signal from the central electronic module (CEM) via CAN communication.

Position 2 = Ignition switch position in position 2 (ignition on).

Position 3 = Ignition switch position in position 3 (start).

Engine running = Ignition switch position in position 2 (ignition on) and the engine running.

IMMOBILIZER, START PERMITTED

YES = The immobilizer allows start up

NO = The immobilizer does not allow start up

CRUISE CONTROL RESUME

The cruise control must be on when reading this parameter.

OFF= resume button unaffected.

ON = resume button activated.

CRUISE CONTROL SET+

The cruise control must be on when reading this parameter.

OFF= SET+ unaffected.

ON = SET+ affected.

CRUISE CONTROL SET

The cruise control must be on when reading this parameter.

OFF= SET- unaffected.

ON = SET- affected.

CLUTCH PEDAL POSITION SENSOR

Measurement range 0 - 100 %.

The engine control module (ECM) receives the value for the clutch pedal position sensor signal from the central electronic module (CEM) via CAN communication.

The value indicates the clutch pedal position.

0 % = released clutch pedal.

100 % = Clutch pedal pressed down.

CLUTCH PEDAL SWITCH

Engine control module (ECM) receives the value for the clutch pedal switch.

The value indicates the clutch pedal position

Clutch pedal pressed down.

Released clutch pedal.

The engine control module (ECM) calculates the value from the directly connected signal from the brake light switch.

ON = brake lamp switch on.

OFF = brake lamp switch unaffected.

AIR CONDITIONING (A/C) COMPRESSOR, STATUS

The signal transmitted by the engine control module (ECM) for activating the air conditioning (A/C) compressor relay.

OFF = The engine control module (ECM) does not activate the air conditioning (A/C) compressor relay.

ON = The engine control module (ECM) activates the air conditioning (A/C) compressor relay.

AIR CONDITIONING (A/C) PRESSURE SWITCH

The engine control module (ECM) calculates the value from the signal from the air conditioning (A/C) pressure switch.

OFF = Engine control module (ECM) allows start up of compressor.

ON = Engine control module (ECM) does not allow start up of compressor.

OIL PRESSURE SENSOR

The engine control module (ECM) calculates the value from the oil pressure switch signal. The value is only relevant when the engine is running.

ON = the oil pressure switch circuit is closed, signal to the driver information module (DIM) via CAN for lit oil pressure warning lamp.

OFF = the oil pressure monitor's circuit is open, signal to the driver information module (DIM) via CAN for oil pressure warning light not lit.