Headlamp Control, Function - GF82.10-P-2009FG
Model 213 up to model year 2021
except code 631 (Static LED headlamps, left-hand traffic)
except code 632 (Headlamps, LED, static, right-side traffic)
except code P35 (Light Package)
Function requirements, general
- No undervoltage or overvoltage
Driving lights actuation, general
Driving lights actuation includes all functions which serve the optimum illumination of the road while driving.
The driving lights actuation encompasses the following subfunctions:
- Function sequence for low beam actuation
- Function sequence for high beam actuation
- Function sequence for daytime running lights actuation
- Function sequence for auto on/off driving lights
- Function sequence for headlamp range adjustment (HRA) (except code 489 (AIR BODY CONTROL), except model 213.2)
The driving lights are actuated corresponding to the position of the exterior lights switch (S1). The front SAM control unit (N10/6) reads in the status of the exterior lights switch directly.
Additional function requirements for low beams actuation
- Terminal 15 ON
The electronic ignition lock control unit (N73) sends the status of circuit 15 to the front SAM control unit over the interior CAN (CAN B).
Front standing lights actuation is switched off when the low beams are active. This is because of the different light colors of the light source.
Function sequence for low beam actuation
Turning the exterior lights switch into the "low beams" position requests actuation of the low beams.
The front SAM control unit reads in the status of the exterior lights switch directly, and actuates the left low beam (E1 e2) in the left front lamp unit (E1) and the right low beam (E2e2) in the right front lamp unit (E2).
The front SAM control unit also sends the "Low beams indicator lamp ON" request via interior CAN, electronic ignition lock control unit and user interface CAN (CAN HMI) to the instrument cluster (A1), which then actuates the low beams warning indicator.
The active exterior lights function is displayed via an appropriate information display in the instrument cluster.
If standing lights actuation is active, for example, the instrument cluster actuates the standing lights information display. If low beams actuation is now activated, the instrument cluster switches the standing lights information display off and actuates the low beams information display. The same applies to high beams actuation.
The standing lights actuation is not switched off in the following countries:
- Brazil
- Georgia
- Canada
- Korea
- Russia
- Ukraine
- USA
- Belarus
Additional function requirements, high beam actuation
- For high beams function: Circuit 15 and low beams On
- For headlamp flasher function: Terminal 15R On
The electronic ignition lock control unit sends the status of circuit 15 to the front SAM control unit over the interior CAN.
Function sequence for high beam actuation
The high beams actuation is comprised of the following subfunctions:
- Function sequence for high beams
- Function sequence for headlamp flasher
Function sequence for high beams
High beam actuation is requested by pushing the combination switch (S4) forward.
The steering column tube module control unit (N80) directly reads in the switch position of the combination switch and sends it to the front SAM control unit via the chassis FlexRay (Flex E), electronic ignition lock control unit and interior CAN.
The front SAM control unit receives the switch position of the combination switch and actuates the left high beam (E1e1) and the right high beam (E2e1) directly.
In addition, the front SAM control unit transmits the status "High beams ON" via the interior CAN, the electronic ignition lock control unit and the user interface CAN to the instrument cluster, which then actuates the high beams information display..
Function sequence for headlamp flasher
The function sequence and signal path for the headlamp flasher function correspond to that of the high beam function.
However, to request the headlamp flasher function, the combination switch must be pulled backward.
If the combination switch is pulled back and held, the high beam actuation is active for maximum 30 s. The continuously present request is then interpreted as a "jammed combination switch" and high beam actuation is deactivated.
Additional function requirements for daytime running lights actuation
- Circuit 15 ON and "engine running" or "drivetrain operational" signal set or circuit 15 ON and vehicle speed above 3 km/h
- Exterior lights switch in "Auto" position
The electronic ignition lock control unit sends the status of circuit 15 to the front SAM control unit over the interior CAN. The CDI control unit (N3/9) (diesel engine) or the ME-SFI [ME] control unit (N3/10) (gasoline engine) transmits the "Engine running" or "Drivetrain operational" signal via the drive train CAN (CAN C1), the powertrain control unit (N127), the chassis FlexRay, the electronic ignition lock control unit and the interior CAN to the front SAM control unit.
The Electronic Stability Program control unit (N30/4) transmits the vehicle speed via the chassis FlexRay, the electronic ignition lock control unit and the interior CAN to the front SAM control unit. The front SAM control unit reads in the status of the exterior lights switch directly.
Function sequence for daytime running lights actuation
The front SAM control unit reads in all relevant information, evaluates it and actuates the daytime running light in the left position light and daytime running light (E1e27) and the daytime running light in the right position light and the daytime running light (E2e27) directly in vehicles except code 498 (Japan version).
Depending on the ambient light situation, taillight actuation (without license plate illumination) is activated in twilight a well as daytime running lights actuation. The low beams actuation is activated as it gets darker.
This function is not available in the following countries:
- China
- Taiwan
- Japan
- India
Additional function requirements for auto on/off driving lights
- Circuit 15 ON and "engine running" or "drivetrain operational" signal set or circuit 15 ON and vehicle speed above 3 km/h
- Exterior lights switch in "Auto" position
The electronic ignition lock control unit sends the status of circuit 15 to the front SAM control unit over the interior CAN. The "Engine running" or "Drivetrain operational" signal is sent by the CDI control unit or the ME-SFI [ME] control unit to the front SAM control unit via drive train CAN, powertrain control unit, chassis FlexRay, electronic ignition lock control unit and interior CAN. The Electronic Stability Program control unit transmits the vehicle speed via the chassis FlexRay, the electronic ignition lock control unit and the interior CAN to the front SAM control unit.
The front SAM control unit reads in the status of the exterior lights switch directly.
Function sequence for auto on/off driving lights
In the auto on/off driving lights, the low beams are automatically switched on or off.
The auto on/off driving lights are purely a comfort function and do not relieve the driver of the need to follow the operating instructions as prescribed by the road traffic regulations.
| Behavior of exterior lights when auto on/off driving lights activated at night | ||
|---|---|---|
| Start of trip | Standing lamp | Low beam |
| Transmitter key (A8/1) not in the vehicle interior | Off | Off |
| Transmitter key in the vehicle interior | Off | Off |
| Circuit 15R ON | On | Off |
| Terminal 15 ON | On after 2 s | Off |
| "Engine running" or "drivetrain ready" signal set or vehicle speed above 3 km/h | Off | On (high beams permissible) |
| End of trip At the end of a trip, overlaps may occur between the auto on/off driving lights and the headlamp switch-off delay. | Standing lamp | Low beam |
| "Engine running" or "drivetrain ready" signal set or vehicle speed above 3 km/h | Off | On (high beams permissible) |
| Circuit 15R ON | On after 2 s | Off |
| Transmitter key in the vehicle interior (driver door closed) | On | Off |
| Transmitter key in the vehicle interior (driver door open) | Off | Off |
| Transmitter key not in the vehicle interior | Off | Off |
The low beams are switched on and off automatically depending on the ambient light situation or depending on the activities of the windshield wiper system:
- Function sequence for auto on/off driving lights over light sensor (B38/2b2) in rain/light sensor with additional functions (B38/2)
- Function sequence for auto on/off driving lights over wiper activities
Function sequence for auto on/off driving lights over light sensor in rain/light sensor with additional functions
The light sensor records the ambient brightness. The rain/light sensor with additional functions reads in the signals of the light sensor directly, evaluates them and transmits the "Low beams ON" request via the rain/light sensor LIN (LIN B16) to the front SAM control unit. The front SAM control unit then activates the low beams actuation.
In the event of any light sensor failure, the auto on/off driving lights are not deactivated until the engine is switched off.
When the vehicle is being driven through a tunnel and if the wiper start suppression function is active, the auto on/off driving lights function remains switched on.
Function sequence for auto on/off driving lights over wiper activities
If the low beams are switched on or off due to the activities of the windshield wiper, this is referred to as "Adverse weather light". The front SAM control unit actuates the windshield wiper system.
If the windshield wiper system is activated for 20 s with a wipe cycle time of below 6 s, the front SAM control unit activates low beam actuation. If there are no wipe cycles for 60 s, low beams actuation is deactivated.
If the wiper startup suppression function is canceled, the auto on/off driving lights remain active for an additional 60 s.
Additional function requirements for headlamp range adjustment (HRA) (except code 489 (AIR BODY CONTROL), except model 213.2)
- Driving lights On (low beam/high beam)
Function sequence for HRA (except code 489 (AIR BODY CONTROL), except model 213.2)
The HRA [LWR] is installed as an item of passive safety equipment to prevent oncoming traffic from being dazzled.
The incline angle of the driving lights can be corrected by operating the headlamp range controller (S1s8).
The headlamp range controller actuates the left headlamp range adjustment actuator motor (E1m1) and the right headlamp range adjustment actuator motor (E2m1) directly.
The left headlamp range adjustment actuator motor moves the headlamp unit in the left front lamp unit.
The right headlamp range adjustment actuator motor moves the headlamp unit in the right front lamp unit.
| Electrical function schematic for driving lights actuation | PE82.10-P-2059-97DBA | ||
| Overview of exterior lights system components | GF82.10-P-9998FG |