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Cylinder shutoff, function - GF07.61-P-3033L

ENGINE 137.970 

Fig 1: Cylinder Shutoff Function Diagram
G04839934

Design/function 

The left bank of cylinders is shut off by no longer operating its inlet and exhaust valves. The valves remain constantly closed during cylinder shutoff.

At the same time fuel injection is interrupted and the spark duration of the left bank of cylinders is greatly shortened.

The cylinder shutoff function is integrated in the ME control module.

The following inputs and outputs/functions are required:

Input signals already present are also used in the ME control module for the cylinder shutoff. These are, for example:

Existing functions in the ME control module are harmonized to the cylinder shutoff. For example:

Cylinder shutoff OFF 

Both parts of the shift oscillating levers are interlocked by means of moving coupling pins when cylinder shutoff OFF. Springs push the coupling pins into the "interlocked" position.

Fig 2: Identifying Cylinder Shutoff OFF
G04839935

Cylinder shutoff ON 

The electromagnetic cylinder shutoff valves (Y80/1, Y81/1) are actuated by the ME control module and open. Pressurized oil flows through the oscillating lever shafts behind the pressure pins and the coupling pins are pushed back. Both parts of the oscillating lever are now able to move freely relative to each other - inlet and exhaust valves are no longer operated.

Fig 3: Identifying Cylinder Shutoff ON
G04839936

When cylinder shutoff ON the decoupled valve levers are supported on the base circle of the cylinder shutoff on the camshaft. The roller levers are pushed further along their camshaft track by spring elements. This ensures that both valve and roller levers maintain a defined position and the coupling pin is able to slide again into the hole in the roller lever when cylinder shutoff OFF.

Fig 4: [Identifying Cylinder Shutoff]
G04839937

Pressurized oil supply 

The secondary oil pump is positioned ahead of the left bank of cylinders to provide a reliable supply of pressurized oil for the cylinder shutoff. The oil pressure in the idle speed range is already greater than 3 bar. The pump is driven by the camshaft.

Fig 5: Identifying Secondary Oil Pump
G04839938

Shift point cylinder shutoff 

If the shift conditions are met, the cylinder shutoff can be switched on only in certain engine positions in view of the mechanical circumstances at the engine:

Cylinder shutoff activation conditions 

Cylinder shutoff deactivation conditions 

Cylinder shutoff engagement threshold 

The engagement threshold determines how the cylinder shutoff switches on and off in the moderate engine speed and load range. It is dependent on the correction programming with the STAR DIAGNOSIS.

Correction programming of cylinder shutoff 

The following settings are possible:

IMPORTANT

Correction programming of the cylinder shutoff is permissible only for a temporary period when dealing with complaints.

In stage 1 the cylinder shutoff engages more frequently below 2000 rpm. Depending on the style of driving slight improvements in the fuel consumption are possible, but restrictions in comfort (humming noises) are likely.

Stage 2 or 3: A restriction or blocking of the cylinder shutoff must only be performed for a temporary period if major complaints regarding comfort exist and at the same time involves drawbacks in terms of fuel consumption.

Actuation of throttle valve actuator 

When cylinder shutoff ON 6 cylinders of the engine are shut off. The throttle valve is opened further in line with the engine load and speed to ensure that the engine torque remains as constant a possible.

When cylinder shutoff OFF the situation is reversed and the throttle valve is closed accordingly.

Operation of the throttle valve is performed shortly before cylinder shutoff ON or OFF.

The same engine torque should, if possible, be available when switching over between the two engine operating modes to ensure that the driver does not sense any difference in power output and the switchover takes place smoothly.

Actuation of the exhaust flap 

When cylinder shutoff ON the electromagnetic exhaust flap switchover valve is actuated by the ME control module up to approx. 2200 rpm. Vacuum flows into the aneroid capsule and the exhaust flap partially shuts off the cross-section of the exhaust pipe. This makes it possible to optimize the noise characteristic of the exhaust system.

Actuation of the cylinder shutoff valves 

The electromagnetic cylinder shutoff valves (Y80/1, Y81/1) are actuated by the output stages in the ME control unit by means of a pulsed d.c. voltage.

When the cylinder shutoff is switched on, the on/off ratio is set to approx. 95 % for not more than 0.5 s in order to increase the starting current and to achieve a more rapid response. The time limit also protects the coil windings from excessive thermal stresses.

Further measures at engine/transmission in connection with cylinder shutoff 

  Cylinder shutoff valve location/task/design/function   GF07.05-P-3101L
  Cylinder shutoff oil pressure sensor location/task/design/function   GF18.40-P-3101B
  Exhaust flap switchover valve location/task/design/function   GF07.05-P-3102B
  Exhaust flap location/task/design/function   GF49.10-P-3101B
  ME-SFI control module position / task / design / function   GF07.61-P-5000F 
  EA/CC/ISC actuator location/task/design/function   GF30.22-P-4010F
  Oil sensor Location/Function/Design/function Oil temperature signal GF18.40-P-4111L
  ECI ignition system function Detection of combustion misfiring by means of ionic current signals and diagnosis of the cylinder shutoff GF15.15-P-3000L
  ETC control module, location/task Information on drive position engaged via CAN. GF27.19-P-4012G