LEMON Manuals: Even more car manuals for everyone
Home >> Mercedes Benz >> 2012 >> GL350 >> Repair and Diagnosis >> Transmission >> Automatic Trans >> Automatic Transmission - 164 Chassis - 2 Of 2 >> Basic Knowledge >> Intelligent servo module (ISM) component description - GF27.19-P-4015GZ

Intelligent servo module (ISM) component description - GF27.19-P-4015GZ

TRANSMISSION 722.9 in MODEL 164.1/8 up to Model Year 8 

Fig 1: Identifying Intelligent Servo Module Component
G10115604Courtesy of MERCEDES-BENZ USA

Location 

The intelligent servo module for DIRECT SELECT is mounted on the left in the direction of travel on the transmission housing. The intelligent servo module for DIRECT SELECT has an integral range selector lever and supersedes the previously used range selector lever.

Task 

The intelligent servomodul far DIRECT SELECT reads in the signals from the following internal sensors:

In addition via the Controller Area Network bus class C (engine compartment) (CAN-C) there is a connection to the:

The intelligent servo module for DIRECT SELECT actuates the following components depending on processed input signals:

This involves the processing of the following data from other systems: 

ESP control unit 

EIS [EZS] control unit, up to 31.5.07 

EIS [EZS] control unit, as of 1.6.07 

IMPORTANT If the gear selector position "N" is engaged before "terminal 15 OFF" and the driver door is opened after "terminal 15 OFF" the gear selector position "N" remains engaged.

Central gateway control unit 

Fully integrated transmission control (VGS) control unit 

The following information is passed to other systems: 

Instrument cluster 

Fully integrated transmission control (VGS) control unit 

Design, shown in range selector lever position "N" 

Fig 2: Identifying Range Selector Lever Position N
G10115605Courtesy of MERCEDES-BENZ USA

Function 

The main motor is actuated and the drive pinion gears induce the threaded spindle to rotate. The slider moves into the requested position and the range selector lever assumes the given specified position.

The actual position is recorded by the angle sensor and sent via CAN-C to the fully integrated transmission control (VGS) control unit.

Emergency-P function start position 

Fig 3: Identifying Emergency-P Function Start Position
G10115606Courtesy of MERCEDES-BENZ USA

The additional battery (G1/7), which is located under the floor panel in the front passenger footwell, can be used to supply voltage to the emergency motor via the EIS [EZS] control unit in the event of an emergency, e.g. if there is an undervoltage on the on-board electrical system.

This in turn causes the eccentric shaft to turn.

Emergency-P function intermediate position 

Fig 4: Identifying Emergency-P Function Intermediate Position
G10115607Courtesy of MERCEDES-BENZ USA

The rotating eccentric shaft presses down onto the release studs of the left carriage half.

This in turn causes the mechanical connection between the left and right carriage halves to be broken.

Emergency-P function end position 

Fig 5: Identifying Emergency-P Function End Position
G10115608Courtesy of MERCEDES-BENZ USA

The pre-compressed coil spring pushes the two carriage halves apart. The right slider half slides along the threaded spindle to the right and presses the range selector lever into position "P". The eccentric shaft continues to rotate, until the emergency motor is no longer actuated. The actual position of the eccentric shaft is recorded by the positions sensor for the eccentric shaft and sent to the electronic circuit.

IMPORTANT The emergency P-function is automatically overridden, if the emergency case, which, e.g. is caused by undervoltage in the on-board electrical system, is no longer given. The main motor drives the threaded spindle by way of the drive pinion gears. The left carriage half runs on to the right carriage half, the coil spring is pre-compressed again and the mechanical connection made again.