Power Windows (PW (EFH)), Function - GF72.29-P-0003RF
Model 205, 253
Function requirements, general
- No overvoltage or undervoltage
- Circuit 15R r circuit 15 ON o run-on time active
Run-on:
If circuit 15R is switched off, the power windows can still be operated for 5 min. If, during the run-on time, the circuits status or the door status is changed, the run-on time starts again.
The electronic ignition lock control unit transmits the status of circuit 15 via the interior CAN to the front door control units, the rear door control units (model 205.0/1/2, 253) and the rear control unit (model 205.4).
The status of the corresponding front door (open or closed) is evaluated by the left front door control unit or right front door control unit.
Power windows (PW), general
The side windows of the vehicle can be opened and closed electrically to ventilate the vehicle interior. With model 205.3 the rear triangular windows are stationary.
The convenience feature is a possibility to open and close the side windows from one central control point.
Operation possibilities:
- Driver-side power window and outside mirror adjustment switch group
- Left front power window switch
- Right front power window switch
- Left rear power window switch (model 205.0/1/2/4, 253)
- Right rear power window switch (model 205.0/1/2/4, 253)
- Rear side window child safety lock switch (model 205.0/1/2, 253)
- Passenger-side power window switch
- Left rear power window switch (model 205.0/1/2, 253)
- Right rear power window switch (model 205.0/1/2, 253)
The actuation of the power windows in combination with the soft top is described at a different location and is not included here.
Press and hold down power window switch to perform a manual function. To start an automatic function it is sufficient to momentarily actuate beyond the catch point. Actuation takes place for as long as (max. 25 s) the corresponding request is pending or until the side window has reached the lower or upper stop.
In model 205.0/1/2, 253, operation of the rear power window switch can be inhibited via the rear side window child safety lock switch.
The priority of possible functions depends on their requirement. A command with higher priority is performed if a function with lower priority is currently active. A lower priority function is interrupted first and is accomplished only after the second valid request. If a command with lower priority is still present after completion of an operation request with higher priority, the former command is ignored. It is first necessary for the controls to recognize non-actuation of the lower priority request before the corresponding function can be activated.
Priority sequence:
- Driver-side power window and outside mirror adjustment switch group
- Remaining power window switches
- Actuation via diagnostic tester
- Close side window with PRE-SAFE® (with CODE 299 (PRE-SAFE® system))
- Open side window with crash ventilation
- Convenience opening/closing through central locking
- Convenience opening/closing via recirculated air function
The power window functions comprise the following partial functions:
- Function sequence for normalization
- Function sequence for manual raising and lowering
- Function sequence for automatic raising and lowering
- Function sequence for short stroke (model 205.4)
- Function sequence for actuation via PRE-SAFE® (with CODE 299 (PRE-SAFE® system))
- Function sequence for crash ventilation
- Function sequence for excess force limiter
- Function sequence for lockup reversing
- Function sequence for overheating protection
- Function sequence for child safety lock (model 205.0/1/2, 253)
Function sequence for normalization
Normalizing is the basis for assigning the current position to the side window position detected by the respective front door control unit, rear door control unit (model 205.0/1/2, 253) or rear control unit (model 205.4). The corresponding side window must be fully closed manually for this purpose and the power window switch pressed for another approx. 300 ms. If the power window switch is then released, the side window lowers by approx. 20 mm. The side window must now be fully closed again within 4 s and the power window switch pressed for another 300 ms.
The corresponding signal path is described in the chapter "Manual raising and lowering".
The location counter in the respective front door control unit, rear door control unit (model 205.0/1/2, 253) or rear control unit (model 205.4) is set to 0 and the normalization process is completed. The location counter evaluates the signals from the Hall sensor integrated in the corresponding power window motor. The counter status is increased when opening and decreased when closing the side windows.
The ratio between counter status and armature rotations of the power window motor is 4:1.
The power windows are denormalized under the following conditions:
- Position counter status greater than maximum adjustment range
- Position counter status going beyond zero point tolerance for stored zero point
- No Hall sensor signals when power window motor in question is actuated
The reason for denormalization is stored in the relevant front door control unit, rear door control unit (model 205.0/1/2, 253) or rear door control unit (model 205.4). When the power windows are denormalized, only the manual raising and lowering functions are possible.
Normalization is a basic requirement for using the full functionality of the power window assembly.
Additional function requirements for manual raising and lowering
- Child safety lock switched off (model 205.0/1/2, 253 for rear side windows)
Function sequence for manual raising and lowering
Actuate and hold down corresponding power window switch to the first catch point or beyond in the opening or closing direction. Actuation lasts as long (maximum 25 s) as the corresponding request is pending or until the lower or upper stop is reached.
Front side window in driver side:
The status of the left front power window switch in the power window switch group and driver side outside mirror adjustment are read in by the left front door control unit via the left door LIN. The left front door control unit then actuates the left front door power window motor and directly reads in the signals from the Hall sensor.
Front side window in passenger side:
The status of the passenger side power window switch is read directly in by the right front door control unit. The right front door control unit then actuates the right front door power window motor and directly reads in the signals from the Hall sensor.
The status of the right front power window switch in the power window switch group and driver side outside mirror adjustment is read in by the left front door control unit via the left door LIN and transmitted to the right front door control unit via the interior CAN. The right front door control unit then actuates the right front door power window motor and directly reads in the signals from the Hall sensor.
Rear side window (model 205.0/1/2, 253):
The status of the rear power window switch is read in directly by the corresponding rear door control unit. The respective rear door control unit then actuates the relevant rear power window motor and reads in the signals from the Hall sensor directly.
The status of the rear power window switch in the power window switch group and driver side outside mirror adjustment is read in by the left front door control unit via the left door LIN and transmitted to the rear door control unit via the interior CAN. The respective rear door control unit then actuates the relevant rear power window motor and reads in the signals from the Hall sensor directly.
Rear side window (model 205.4):
The status of the rear power window switch in the driver side power window and outside mirror adjustment switch group is read in by the left front door control unit via the left front door LIN and transmitted to the rear control unit via the interior CAN. The rear control unit then actuates the relevant rear power window motor and reads in the signals from the Hall sensor directly.
Additional function requirements for automatic raising and lowering
- Power windows normalized
- Child safety lock switched off (model 205.0/1/2, 253 for rear side windows)
Function sequence for automatic raising and lowering
The corresponding power window switch must be actuated just beyond the first catch point in the opening or closing direction and then released.
The remaining function sequence corresponds to that of manual raising and lowering.
Actuation of the power window motors is discontinued automatically upon reaching the bottom or top stop. The automatic reserving function is active during automatic raising.
Additional function requirements for short stroke (model 205.4)
- Power windows normalized
Function sequence for short stroke (model 205.4)
When a door is opened, the side window in the door and the associated rear side window are lowered to the short stroke position. After closing the door, both side windows are closed again. The front door control unit is responsible for controlling the front side windows, and the rear control unit is responsible for controlling the rear side windows.
Short stroke:
- Front side window approx. 4 mm
- Rear side window approx. 4 mm
The respective front door control unit detects the status of the relevant door and actuates the front power window motor directly. The corresponding front side window is lowered to the short stroke position. The respective front door control unit transmits the "Move to short stroke position" request to the rear control unit via the interior CAN. The rear control unit then directly actuates the rear power window motor. The corresponding rear side window is lowered to the short stroke position.
Additional function requirements for actuation via PRE-SAFE (with CODE 299 (PRE-SAFE® system))
- Power windows normalized
Function sequence for actuation via PRE-SAFE® (with CODE 299 (PRE-SAFE® system))
If the Electronic Stability Program control unit detects an unstable driving condition (e.g. understeer or oversteer), the side windows are closed to a defined position (50 mm ± 4 mm before the upper stop) to reduce the risk of injury.
The Electronic Stability Program control unit transmits the PRE-SAFE® adjustment request via the suspension FlexRay, electronic ignition lock control unit and interior CAN to the front door control units, rear door control units (model 205.0/1/2, 253) or rear control unit (model 205.4). The respective front door control unit then actuates the relevant front power window motor directly. The respective rear door control unit (model 205.0/1/2, 253) or the rear control unit (model 205.4) then actuates the relevant rear power window motor directly.
Actuation by PRE-SAFE® is interrupted in case of:
- Active automatic reversing function (side windows reversed)
- Blockage detection
- Request from corresponding power window switch
Additional function requirements for crash ventilation
- Power windows normalized
- Front side window closed further than 50 mm ± 4 mm before upper stop
Function sequence for crash ventilation
Smoke particles are produced in the vehicle interior when the pyrotechnical restraint equipment is triggered. To ensure these smoke particles are quickly removed, the front side windows are automatically opened after an accident to a defined position (50 mm ± 4 mm before the upper stop).
The supplemental restraint system control unit sends the crash signal over the user interface CAN, electronic ignition lock control unit and interior CAN to the front door control units. The front door control units then actuate the front door power window motors directly.
The crash ventilation is interrupted:
- Blockage detection
- Request from corresponding power window switch
Crash ventilation is blocked for the following:
- Active PRE-SAFE® function (with CODE 299 (PRE-SAFE® system))
Additional function requirements for excess force limiter
- Window position in the range from 3 to 230 mm (clear opening)
- Power windows normalized
Function sequence for excess force limiter
The excess force limiter function operates when the window is raised automatically or manually, however, at different sensitivity levels (escalation stages). The power consumption of the power window motor serves as a reference for excessive force.
The system is designed adaptively to prevent mechanical sluggishness being evaluated as pinching. This means that the system detects a sluggishness via the higher power consumption of the respective power window motor and calculates an additional force of 10 N for the next request. This ensures a constant speed when opening or closing the power windows even in the face of advanced wear or external influences such as moisture and ice.
The adaptation is limited to a maximum value of 80 N. The individual escalation stages depend on the operating request and history and are shown in the table below.
| Manual closing | 1. Actuation (escalation stage 1) | 2nd actuation (escalation stage 2) | 3rd actuation (escalation stage 3) |
|---|---|---|---|
| Holding power window switches | Stop at 100 N (+15 N) | Stop at 130 N (+15 N) | Actuation remains active |
| Releasing power window switches | Reverse by 20 mm (+5 mm) | Reverse by 20 mm (+5 mm) | Actuation stopped |
| Automatic closing | |||
| Releasing power window switches | Stop at 60 N (-10 N); reverse by 125 mm (+5 mm) | Stop at 80 N (-10 N); reverse by 125 mm (+5 mm) | Only manual raising possible |
The status changes if the power window switch is actuated again within 2 s of the end of the reversing process. If the power window switch is actuated again after a period of 2 s, escalation level 1 (1st actuation) is started again.
If trapping is detected during automatic window closing that has been triggered by the comfort closing function via the air recirculation function, the respective front door control unit, rear door control unit (model 205.0/1/2, 253) or the rear control unit (model 205.4) is started with escalation stage 1 (1st actuation).
If during automatic window closing as triggered by the Keyless-Go function (with CODE 889 (KEYLESS-GO)) or the side window closing function via PRE-SAFE® (with CODE 299 (PRE-SAFE® system)), trapping is detected, the respective front door control unit, the rear door control unit (model 205.0/1/2, 253), or the rear control unit (model 205.4) starts with escalation stage 2 (2nd actuation).
In the case of non-normalized power windows, the excess force limiter is active from a pinching force of 100 N. The side window always reverses when it runs into the upper seal.
On power windows which have not been normalized, the excess force limiter is deactivated within a short time after two closing requests.
This allows normalization at the upper stop.
Mechanical vibrations caused by bad road conditions are not recognized as pinching and do not lead to reversal of the corresponding power window. The "rough road detection" required for this purpose is thus active from a speed of 8 km/h.
Additional function requirements for lock-up reversing
- Power windows normalized
Function sequence for lockup reversing
If - when the side window is raised - the respective front door control unit, rear door control unit (model 205.0/1/2, 253) or the rear control unit (model 205.4) does not detect any change in the Hall sensor signals within 150 ms + 20 ms or detects a force increase of 160 N over the adjustment range traveled, the raising sequence is immediately stopped and the side window is opened by 20 mm. The lock-up reversing function depends on the type of rolling up.
Escalation stages for excess force limiter function apply.
Function sequence for overheating protection
The power window motors are protected by software overheating protection in the relevant front door control unit, rear door control unit (model 205.0/1/2, 253) or in the rear control unit (model 205.4). The software simulates temperature characteristics depending on the operating time. The parameters that are required for this were determined in trials, and are stored in the respective front door control unit, rear door control unit (model 205.0/1/2, 253) or rear door control unit (model 205.4).
The permissible ambient temperature range for the power window motors is -40°C to 85°C.
Function sequence for child safety lock (model 205.0/1/2, 253)
When the child safety lock is switched on, the rear side windows cannot be opened and closed by actuating the rear power window switch. Actuations already activated are interrupted immediately by the rear power window motors. The child safety lock can be switched on and off via the rear side window child safety switch in the power window switch group and driver side outside mirror adjustment.
The status of the rear side window child safety lock is read by the left front door control unit via the front door LIN. The left front door control unit transmits the status of the child safety lock to the rear door control unit via the interior CAN.
The rear side window child safety lock switch signals the driver that the child safety lock is activated. To this end, the left front door control unit sends a request to actuate the LED over the left front door LIN to the rear side window child safety lock switch.
If the position of the rear side window child safety lock switch can no longer be read with certainty, the child safety lock function is regarded as permanently switched on.
| Electrical function diagram for power windows | Model 205.0/1/2, 253 | PE72.29-P-2050-97FBA | |
| Model 205.3/4 | PE72.29-P-2050-97FBB | ||
| Overview of system components for windows and sightproofing | GF67.00-P-9999RF |