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Headlamp Control, Function - GF82.10-S-2009TRC

Model 447.6/7 

with code LG2 (LED Intelligent Light System) 

except code XM0 (Facelift) 

Function requirements, general 

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:

IMPORTANT The electronic ignition lock (EZS) control unit (N73) sends the status of circuit 15 via the interior CAN (CAN B) to the signal acquisition and actuation module (SAM) control unit (N10/1).

IMPORTANT The driving lights are actuated corresponding to the position of the illumination switch (S1). The signal acquisition and actuation module (SAM) control unit directly reads in the status of the illumination switch.

Additional function requirements for low beams actuation 

IMPORTANT During low beams actuation, the standing light actuation is active, this is described in the "Standing/parking lights actuation function" document.

Function sequence for low beam actuation 

Turning the illumination switch into the "low beams" position requests actuation of the low beams.

The signal acquisition and actuation module (SAM) control unit directly reads in the status of the illumination switch and sends a request for switching on the low beams via interior CAN, electronic ignition lock (EZS) control unit and front end CAN (CAN G) to the left headlamp control unit (E1/1n9). Via the left headlamp LIN (LIN G1) and left front actuation module, LED exterior lighting (E1/1n7), it then actuates the left low beam (short range) (E1/1e15) and the left low beam (long range) (E1/1e16).

The signal acquisition and actuation module (SAM) control unit also sends a request for switching on the low beams via interior CAN, electronic ignition lock (EZS) control unit and front end CAN to the right headlamp control unit (E2/1n9).

Via the right headlamp LIN (LIN G2) and right front actuation module, LED exterior lighting (E2/1 n7), it then actuates the right low beam (short range) (E2/1e15) and the right low beam (long range) (E2/1e16).

The signal acquisition and actuation module (SAM) control unit also sends the "Low beams indicator lamp" request via interior CAN to the instrument cluster (IC [KI]) control unit (A1/1), which then actuates the low beams indicator lamp

Additional function requirements for high beam actuation 

Function sequence for high beam actuation 

The high beams actuation is comprised of the following subfunctions:

Function sequence for high beams 

High beam actuation is requested by pushing the combination switch (S4) forward.

The steering column tube module (MRM) control unit (N80) directly reads in the switch position of the combination switch and sends this via the chassis CAN (CAN E), electronic ignition lock (EZS) control unit, and interior CAN to the signal acquisition and actuation module (SAM) control unit.

The signal acquisition and actuation module (SAM) control unit sends the "High beams On" request via interior CAN, electronic ignition lock (EZS) control unit and front end CAN to the left headlamp control unit and to the right headlamp control unit. The left headlamp control unit then actuates the left low beam (long range) via left headlamp LIN and left front actuation module, LED exterior lighting. At the same time, the right headlamp control unit actuates the right low beam (long range) via right headlamp LIN and right front actuation module, LED exterior lighting. The low beams (long range) then generate the high beams. The left high beam (E1/1e1) and the right high beam (E2/1e1) are also switched on if necessary.

The signal acquisition and actuation module (SAM) control unit also transmits a "High beams indicator lamp" request via the interior CAN to the instrument cluster (IC) control unit, which then actuates the high beams indicator lamp (A1/1e3).

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. Then the pending request is interpreted as a "stuck combination switch" and the actuation of the high beams is canceled.

Additional function requirements for daytime running lights actuation 

Function sequence for daytime running lights actuation 

The instrument cluster (IC [KI]) control unit sends a request for switching on the daytime running lights via interior CAN to the signal acquisition and actuation module (SAM) control unit.

The CDI control unit (N3/33) (with engine 651.9) or the CDI control unit (N3/36) (with engine 622) transmits the "Engine running" signal via the chassis CAN, the electronic ignition lock (EZS) control unit and the interior CAN to the signal acquisition and actuation module (SAM) control unit.

The Electronic Stability Program (ESP) control unit (N30/4) sends the vehicle speed via the chassis CAN, electronic ignition lock (EZS) control unit and interior CAN to the signal acquisition and actuation module (SAM) control unit.

The signal acquisition and actuation module (SAM) control unit evaluates all relevant information and sends a request for switching on the daytime running lights via interior CAN, electronic ignition lock (EZS) control unit and front end CAN to the left headlamp control unit and to the right headlamp control unit.

The left headlamp control unit then actuates the daytime running lights in the left parking/standing/daytime running light (E1/1e13) via left headlamp LIN and left front actuation module, LED exterior lighting.

At the same time, the right headlamp control unit actuates the daytime running lights in the right parking/standing/daytime running light (E2/1e13) via right headlamp LIN and right front actuation module, LED exterior lighting.

The daytime running lights actuation is deactivated as soon as the illumination switch is turned to the "Standing lights", "Manual driving lights", "Left parking light" or "Right parking light" position.

Additional function requirements for auto on/off driving lights 

The CDI control unit sends the "Engine running" signal via the chassis CAN, electronic ignition lock (EZS) control unit and interior CAN to the signal acquisition and actuation module (SAM) control unit.

The Electronic Stability Program (ESP) control unit transmits the vehicle speed via the chassis CAN, the electronic ignition lock (EZS) control unit and the interior CAN to the signal acquisition and actuation module (SAM) control unit.

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 merely 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 during the day
Start of trip  Standing lamp  Daytime running lamps  Low beam 
Circuit 15R ON OFF OFF OFF
Circuit 15 ON OFF OFF OFF
"Engine running" signal set and vehicle speed > 3 km/h OFF ON OFF
End of trip  Standing lamp  Daytime running lamps  Low beam 
Circuit 15R ON OFF OFF OFF
"Engine running" signal set and vehicle speed > 3 km/h OFF ON OFF
Behavior of exterior lights when auto on/off driving lights activated at night
Start of trip  Standing lamp  Low beam 
Circuit 15R ON ON OFF
Circuit 15 ON ON OFF
"Engine running" signal set and vehicle speed > 3 km/h ON 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 
Circuit 15R ON ON OFF
"Engine running" signal set and vehicle speed > 3 km/h ON On (high beams permissible)

The low beams are switched on or off depending on the ambient brightness or depending on the activities of the windshield wiper system:

Function sequence for auto on/off driving lights via humidity and light sensor (B38) (with code LA2 (Headlamp Assist)) or via humidity sensor/light sensor/rain sensor (B38/2) (with code JF1 (Rain sensor)) or via humidity sensor/light sensor/rain sensor/sun sensor (B38/3) (with code HH4 (THERMOTRONIC automatic air conditioning)) 

The ambient brightness is detected by the humidity and light sensor or the humidity sensor/light sensor/rain sensor or humidity sensor/light sensor/rain sensor/sun sensor. This reads the signals in, evaluates them and transmits a signal to the signal acquisition and actuation module (SAM) control unit via the roof LIN (LIN B13). The signal acquisition and actuation module (SAM) control unit evaluates this signal and activates the low beams actuation.

IMPORTANT In the event of failure of the humidity and light sensor or the humidity sensor/light sensor/rain sensor or the humidity sensor/light sensor/rain sensor/sun sensor, the auto on/off driving lights are not deactivated until the engine is switched off.

IMPORTANT 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 system, one refers to adverse weather light. The signal acquisition and actuation module (SAM) control unit controls the windshield wiper system.

If the windshield wiper system is activated for more than 20 s with a wipe cycle time of less than 6 s, the signal acquisition and actuation module (SAM) control unit activates the low beams actuation. If there are no wipe cycles for 60 s, low beams actuation is deactivated.

IMPORTANT If the wiper startup suppression function is canceled, the auto on/off driving lights remain active for an additional 60 s. Detailed information on the wiper startup suppression function can be found in the document "Windshield wipe, function".

Additional function requirement for headlamp range adjustment (HRA) 

Function sequence for headlamp range adjustment (HRA [LWR]) 

The headlamp range adjustment system corrects the headlamp range of the vehicle headlamps in accordance with the load and the pitch motions of the vehicle that are induced by the vehicle dynamics.

The left headlamp control unit directly reads in the signals from the front axle level sensor (B22/2) and the rear axle level sensor (B22/3) and evaluates them.

The left headlamp control unit then directly actuates the left headlamp range adjustment actuator motor (E1/1m1) and the right headlamp range adjustment actuator motor (E2/1m1).

If the vehicle is moving at a constant speed, the headlamp range adjustment system operates in "Static mode" at a low adjustment speed. When the vehicle is accelerated, the "dynamic mode" is activated and the reaction time of the headlamp range adjustment is reduced sharply. Depending on the speed change and additional signals such as brake pedal and accelerator pedal position, the "dynamic mode" is activated.

IMPORTANT When the vehicle is stationary, headlamp range adjustment takes place in "Dynamic mode".

  Electrical function schematic for driving lights actuation   PE82.10-S-2059-97TRC
  Overview of exterior lights system components   GF82.10-S-9998TRA