MEMORY 1 ON
Activating memory position 1.
The seat moves to the position that is stored in memory 1.
MEMORY 2 ON
Activating memory position 2.
The seat moves to the position that is stored in memory 2.
MEMORY 3 ON
Activating memory position 3.
The seat moves to the position that is stored in memory 3.
MOTOR 1 FORWARDS (R1+) ON
Motor 1 regulates the front-rear adjustment of the seat forwards and backwards.
Activation of motor 1, forwards.
MOTOR 1 BACKWARDS (R1-) ON
Motor 1 regulates the front-rear adjustment of the seat forwards and backwards.
Activation of motor 1, backwards.
MOTOR 2 FORWARDS (R2+) ON
Motor 2 regulates the rake of the backrest forwards and backwards.
Activation of motor 2, forwards.
MOTOR 2 BACKWARDS (R2-) ON
Motor 2 regulates the rake of the backrest forwards and backwards.
Activation of motor 2, backwards.
MOTOR 3 UPWARDS (R3+) ON
Motor 3 regulates the height of the seat up and down.
Activation of motor 3, up.
MOTOR 3 DOWNWARDS (R3-) ON
Motor 3 regulates the height of the seat up and down.
Activation of motor 3, down.
MOTOR 4 UPWARDS (R4+) ON
Motor 4 regulates the angle of the seat up and down.
Activation of motor 4, up.
MOTOR 4 DOWNWARDS (R4-) ON
Motor 4 regulates the angle of the seat up and down.
Activation of motor 4, down.
MEMORY 1
Read out of whether the control module interprets that memory button 1 is pressed or not.
MEMORY 2
Read out of whether the control module interprets that memory button 2 is pressed or not.
MEMORY 3
Read out of whether the control module interprets that memory button 3 is pressed or not.
Read out of whether the control module interprets that the programming button (MEM) is pressed or not.
MOTOR 1 FORWARDS (R1+)
Read out of whether the control module interprets that the control is activated or not.
MOTOR 1 BACKWARDS (R1-)
Read out of whether the control module interprets that the control is activated or not.
MOTOR 2 FORWARDS (R2+)
Read out of whether the control module interprets that the control is activated or not.
MOTOR 2 BACKWARDS (R2-)
Read out of whether the control module interprets that the control is activated or not.
MOTOR 3 UPWARDS (R3+)
Read out of whether the control module interprets that the control is activated or not.
MOTOR 3 DOWNWARDS (R3-)
Read out of whether the control module interprets that the control is activated or not.
MOTOR 4 UPWARDS (R4+)
Read out of whether the control module interprets that the control is activated or not.
MOTOR 4 DOWNWARDS (R4-)
Read out of whether the control module interprets that the control is activated or not.
MOTOR M1+
Read out of whether the control module interprets that seat motor M1+ is on or off.
MOTOR M1
Read out of whether the control module interprets that seat motor M1- is on or off.
MOTOR M2+
Read out of whether the control module interprets that seat motor M2+ is on or off.
MOTOR M2
Read out of whether the control module interprets that seat motor M2- is on or off.
MOTOR M3+
Read out of whether the control module interprets that seat motor M3+ is on or off.
MOTOR M3
Read out of whether the control module interprets that seat motor M3- is on or off.
MOTOR M4+
Read out of whether the control module interprets that seat motor M3- is on or off.
MOTOR M4
Read out of whether the control module interprets that seat motor M3- is on or off.
BATTERY VOLTAGE PSM
Reading off the power supply to the control module.
PRESENT POSITION M1
The hall sensor detects the present seat position. When motor M1 is operated, the control module counts the number of pulses from the hall sensor.
Read out of the seat position calculated in number of pulses.
Measurement range -32768 - 32767 pulses.
PRESENT POSITION M2
The hall sensor detects the present seat position. When motor M2 is operated, the control module counts the number of pulses from the hall sensor.
Read out of the seat position calculated in number of pulses.
Measurement range -32768 - 32767 pulses.
PRESENT POSITION M3
The hall sensor detects the present seat position. When motor M3 is operated, the control module counts the number of pulses from the hall sensor.
Read out of the seat position calculated in number of pulses.
Measurement range -32768 - 32767 pulses.
PRESENT POSITION M4
The hall sensor detects the present seat position. When motor M4 is operated, the control module counts the number of pulses from the hall sensor.
Read out of the seat position calculated in number of pulses.
Measurement range -32768 - 32767 pulses.
CONTENTS
Select type of description.
- See: «DESCRIPTION OF FROZEN VALUES»(ref-466864-S42360121342012042500000) .
- See: «STATUS IDENTIFIER, DESCRIPTION»(ref-466864-S30379079932012050300000) .
- See: «COUNTERS, DESCRIPTION»(ref-466864-S06270420842012050300000) .
EXPLANATION
Not all the parameters described need to be implemented in the control module. This varies from system to system.
Frozen values are parameter values that are stored when a diagnostic trouble code (DTC) is stored.
BATTERY VOLTAGE, VALUE
Measurement range: 5 - 30 V.
Normal value when the generator (GEN) is charging: 13.0 - 14.5 V.
DISTANCE, VALUE
Measurement range: 0 - 1048575 km.
The value indicates the total mileage of the car at the time the diagnostic trouble code (DTC) was stored.
PASSENGER COMPARTMENT TEMPERATURE, VALUE
Measurement range: -60 - 195 °C.
OUTSIDE TEMPERATURE, VALUE
Measurement range: -128 - 127.75 °C.
ENGINE RUNNING, STATUS
The status displays whether the engine was running when the diagnostic trouble code (DTC) was stored.
No = the engine was not running
Yes = the engine was running
TIME, VALUE
The value displays the time that has passed since the diagnostic trouble code (DTC) was stored.
Read out whether the control module interprets that memory button 1 is on or off when the diagnostic trouble code (DTC) is stored.
Read out whether the control module interprets that memory button 2 is on or off when the diagnostic trouble code (DTC) is stored.
Read out whether the control module interprets that memory button 3 is on or off when the diagnostic trouble code (DTC) is stored.
Read out whether the control module interprets that memory button MEM is on or off when the diagnostic trouble code (DTC) is stored.
Read out whether the control module interprets that the control for activating motor 1, forwards, is on or off when the diagnostic trouble code (DTC) is stored.
Read out whether the control module interprets that the control for activating motor 1, backwards, is on or off when the diagnostic trouble code (DTC) is stored.
Read out whether the control module interprets that the control for activating motor 2, forwards, is on or off when the diagnostic trouble code (DTC) is stored.
Read out whether the control module interprets that the control for activating motor 2, backwards, is on or off when the diagnostic trouble code (DTC) is stored.
Read out whether the control module interprets that the control for activating motor 3, up, is on or off when the diagnostic trouble code (DTC) is stored.
Read out whether the control module interprets that the control for activating motor 3, down, is on or off when the diagnostic trouble code (DTC) is stored.
Read out whether the control module interprets that the control for activating motor 4, up, is on or off when the diagnostic trouble code (DTC) is stored.
Read out whether the control module interprets that the control for activating motor 4, down, is on or off when the diagnostic trouble code (DTC) is stored.
Read out whether the control module interprets that motor 1+, forwards, is on or off when the diagnostic trouble code (DTC) is stored.
Read out whether the control module interprets that motor 1-, backwards, is on or off when the diagnostic trouble code (DTC) is stored.
Read out whether the control module interprets that motor 2+, forwards, is on or off when the diagnostic trouble code (DTC) is stored.
Read out whether the control module interprets that motor 2-, backwards, is on or off when the diagnostic trouble code (DTC) is stored.
Read out whether the control module interprets that motor 3+, up, is on or off when the diagnostic trouble code (DTC) is stored.
Read out whether the control module interprets that motor 3-, down, is on or off when the diagnostic trouble code (DTC) is stored.
Read out whether the control module interprets that motor 4+, up, is on or off when the diagnostic trouble code (DTC) is stored.
Read out whether the control module interprets that motor 4-, down, is on or off when the diagnostic trouble code (DTC) is stored.
Power supply to the power seat module (PSM).
Measurement range 0-26 V.