Code 002151 — Rotation speed measurement at Transmission output — Sensor voltage too low. — If the sensor voltage drops below 4.5 V, the speed sensor signal cannot be processed anymore.

Procedure

1 Check voltage at controller

Check voltage at controller

Procedure

+Batt and IGN can be protected by one fuse each or jointly by one fuse

See associated vehicle circuit diagram.

2 Check the temperature/oil level sensor

Described in the workshop manual Hall sensor only for DIWA.5, as checking is only possible with ALADIN.

2.1 For E 300 transmission controller

Position/installation site

Transmission oil temperature sensor

Terminal assignment of the sensor

Terminal assignment

Pin assignment of transmission oil temperature sensor

1 = connection to ground

2 = supply connection

ATTENTION:
The pin assignment of the temperature sensors for transmission oil and retarder oil is vice versa in the circuit diagram since the circuit diagram is laid out in preparation for the future combined temperature / oil level sensors for the transmission oil temperature.

Terminal assignment

Characteristic curve

Characteristic curve

Procedure

  1. Remove the oil pan.

  2. Check plug connections and cables.

  3. Disconnect the plug connection on the temperature sensor.

  4. Check that the inside of the sensor is undamaged:

    • When measuring the resistance, please observe the dependence on the temperature.

    • Simultaneously to the resistance measurement, the temperature of the sensor has to be measured, too, or estimated with utmost accuracy. Read the nominal resistance from the temperature curve below and compare it to the measured or estimated temperature.

    • Measure the resistance of the sensor between pin 1 and pin 2.

    • The sensor works correctly if the measured resistance deviates from the nominal resistance by no more than ± 50 ohms.

    • It is important that resistance is not measurable between the pins and the sensor housing; the resistance is infinitely large.

2.2 For E 300.1 transmission controller

Function

The combined temperature & oil level sensor is installed in version E300.1 of the transmission controller.

The integrated temperature sensor is a Pt 1000 element (platinum, 1000 ohms at 0°C). It has the same features as the temperature sensor for the converter.

The oil enters through the lower openings, air can escape through the upper openings. The channel duct is optimized so that flows outside the sensor do not cause fluctuations of the oil level in the sensor.

A wire inside the sensor is briefly heated up by a constant current. The oil level is determined via the electrical resistance of the wire. By the cooling of the wire through the oil, conclusions can be drawn as to the oil level.

The short side of the sensor faces in the direction of the oil sump (below).

Position/installation site

Position of the temperature/oil level sensor

Terminal assignment of the sensor

Terminal assignment sensor

Sensor

Connectors

Description

3

4

1

2

1

2

1

2

S-GND = sensor ground - oil level

OIL-LVL = oil level signal

S-GND = sensor ground - temperature

T-SUMP = temperature signal

The polarity of signal and ground is irrelevant for the correct function.

Temperature sensor check

The sensor function can be checked using a resistance meter. It is important that the dependence of the resistance on the sensor temperature is observed!

    Temperature sensor check

  1. Measure the resistance of the sensor between pin 1 at the bottom (S-GND) and pin 2 (T-SUMP).

  2. Measure the sensor temperature or estimate it as exactly as possible.

  3. Read the desired resistance from the displayed temperature curve and compare it with the measured value.

    The sensor works correctly if the measured resistance deviates from the nominal resistance by no more than ± 50 ohms.

Oil level sensor check

The sensor function can be checked using a resistance meter. The sensor resistance depends on the temperature!

    Oil level sensor check

  1. Measure the resistance of the sensor between pin 1 at the top (S-GND) and pin 2 at the top (OIL-LVL).

  2. Measure the sensor temperature or estimate it as exactly as possible.

  3. Read the desired resistance from the displayed temperature curve and compare it with the measured value.

    The sensor works correctly if the measured resistance deviates from the nominal resistance by no more than ± 5 ohms.

3 Check connectors, plug-in contacts, plug-in connections

Procedure

  1. Check connectors, plug-in contacts, connector connections and cabling.

  2. Check the connectors and their contacts for firm seating, interruption, short circuit, cable breakage and corrosion. The following chapters may be helpful:

  3. Possibly check pin assignment according to circuit diagram and measure contact resistances.

3.1 Troubleshooting a short-circuit to ground

3.1.1 Description

There may be several reasons why a short-circuit to ground is detected for a signal:

Contact of cable to ground

Short-circuits can occur in different places, for instance:

3.1.2 Localizing the short-circuit

  1. Turn the ignition off.

  2. Pull connector that carries the faulted signal out of the transmission controller and check contacts.

  3. Use a multimeter set to resistance mode to check whether the short-circuit in the cable is still present.

  4. Refer to circuit diagram to find out whether the short-circuit may have been caused by a connected electrical component. The fault possibilities are thus narrowed down.

  5. If the electrical component is intact, disconnect all electrical components from the cable. Measure resistance between the signal line and

    • all ground lines

    • battery ground and ground contact at transmission controller

    • measure all other lines at unplugged connector.

  6. Note the number of contacts at which a resistance value was measured that does not comply with the correct value.

  7. Disconnect one after the other all connectors on which the faulted signal is present, check contacts.

  8. Measure into each opened connection with the multimeter before disconnecting the next plug connection and track the short-circuit to the connecting point of the electrical component (e.g. kickdown switch).

  9. If the measured value is correct, the short-circuit is located in the previous line section.

  10. Recheck all contacts of the faulted line segment and look for defective spots.

  11. If the fault cannot be localized, there may be a loose contact. The fault may be reproduced by shaking at the cables.

3.1.3 Eliminating the short-circuit

  1. If abrasions, cable breaks, defective contacts or other defects have been detected, replace the affected cable or the electrical component.

  2. Eliminate the defect causing the problem.

  3. If you are certain that the short-circuit is not located outside the transmission controller, replace the controller with another one and check whether the fault has been eliminated.

  4. If the fault has been eliminated due to the reproducibility of the fault, reinstall the original transmission controller.

  5. If the fault recurs, the transmission controller is probably defective.

  6. Order a controller with the same item number and install it in the vehicle.

3.2 Troubleshooting for short-circuit to 24 volts

3.2.1 Description

There may be a number of reasons why a short-circuit to 24 V is detected for a signal:

Contact of the cable with 24 volts

Short-circuits can occur in different places, for instance:

3.2.2 Localizing the short-circuit

  1. Turn the ignition off.

  2. Pull connector that carries the faulted signal out of the transmission controller and check contacts.

  3. Use a multimeter set to resistance mode to check whether the short-circuit in the cable is still present.

  4. Refer to circuit diagram to find out whether the short-circuit may have been caused by a connected electrical component. The fault possibilities are thus narrowed down.

  5. If the electrical component is intact, disconnect all electrical components from the cable. Measure resistance between the signal line and

    • all lines conducting 24 volts

    • positive pole of battery

    • supply voltage of the transmission controller

    • measure all other lines at unplugged connector

  6. Note the number of contacts at which a resistance value was measured that does not comply with the correct value.

  7. Disconnect one after the other all connectors on which the faulted signal is present, check contacts.

  8. Measure into each opened connection with the multimeter before disconnecting the next plug connection and track the short-circuit to the connecting point of the electrical component (e.g. kickdown switch).

  9. If the measured value is correct, the short-circuit is located in the previous line section.

  10. Recheck all contacts of the faulted line segment and look for defective spots.

  11. If the fault cannot be localized, there may be a loose contact. The fault may be reproduced by shaking at the cables.

3.2.3 Eliminating the short-circuit

  1. If abrasions, cable breaks, defective contacts or other defects have been detected, replace the affected cable or the electrical component.

  2. Eliminate the defect causing the problem.

  3. If you are certain that the short-circuit is not located outside the transmission controller, replace the controller with another one and check whether the fault has been eliminated.

  4. If the fault has been eliminated due to the reproducibility of the fault, reinstall the original transmission controller.

  5. If the fault recurs, the transmission controller is probably defective.

  6. Order a controller with the same item number and install it in the vehicle.

3.3 Troubleshooting a short-circuit of two signals

3.3.1 Description

If a signal is short-circuited to another signal, the cause is in most cases an abrasion or several mutually touching pins in a plug connection.

Contact of the cable with another cable

Short-circuits can occur in different places, for instance:

3.3.2 Localizing the short-circuit

  1. Turn the ignition off.

  2. Pull connector that carries the faulted signal out of the transmission controller and check contacts.

  3. Use a multimeter set to resistance mode to check whether the short-circuit in the cable is still present. Accordingly, check resistance between the affected signal line and all other lines.

  4. Refer to wiring diagram to find out whether the short-circuit may have been caused by a connected electrical component. The fault possibilities are thus narrowed down.

  5. If the electrical component is intact, disconnect all electrical components from the cable. Accordingly, recheck resistance between the affected signal line and all other lines.

  6. Check number of contacts that are short-circuited to each other. Disconnect one after the other all connectors on which the faulted signals are present, check contacts.

  7. Measure with the multimeter into each opened connection before disconnecting the next plug connection.

  8. If the measured value is correct, the short-circuit is located in the previous line section.

  9. Recheck all contacts of the faulted line segment and look for defective spots.

  10. If the fault cannot be localized, there may be a loose contact. The fault may be reproduced by shaking at the cables.

3.3.3 Eliminating the short-circuit

  1. If abrasions, cable breaks, defective contacts or other defects have been detected, replace the affected cable or the electrical component.

  2. Eliminate the defect causing the problem.

  3. If you are certain that the short-circuit is not located outside the transmission controller, replace the controller with another one and check whether the fault has been eliminated.

  4. If the fault has been eliminated due to the reproducibility of the fault, reinstall the original transmission controller.

  5. If the fault recurs, the transmission controller is probably defective.

  6. Order a controller with the same item number and install it in the vehicle.

3.4 Troubleshooting for cable break

3.4.1 Description

A defective electrical component may be displayed as cable break (loose contact, jammed switching contact or too high line resistance).

Cable break

Cable breaks can occur in different places, for instance:

3.4.2 Localizing the cable break

  1. Turn the ignition off.

  2. Pull connector on which the interrupted signal applies out of the transmission controller and check contacts.

  3. Refer to wiring diagram to find out whether the interruption may be caused by a connected electrical component. The fault possibilities are thus narrowed down.

  4. If the electrical component is intact, insert a cable jumper at this end of the cable connection between the signal line and the return line required for the signal.

  5. Use a multimeter set to resistance mode to measure between the signal line and the corresponding return line whether a cable break exists.

  6. Disconnect one after the other all connectors on which the affected signal is present, check contacts.

  7. Measure into each opened connection with the multimeter before disconnecting the next plug connection and track the cable break to the connecting point of the electrical component.

  8. If the measured value is correct, the cable break is located in the previous line section.

  9. Recheck all contacts of the faulted line segment and find defective spots.

  10. If the fault cannot be localized, there may be a loose contact. The fault may be reproduced by shaking at the cables.

3.4.3 Eliminating the cable break

  1. If abrasions, cable breaks, defective contacts or other defects have been detected, replace the affected cable or the electrical component.

  2. Eliminate the defect causing the problem.

  3. If you are certain that the interruption is not located outside the transmission controller, replace the controller and check whether the fault has been eliminated.

  4. If the fault has been eliminated due to the reproducibility of the fault, reinstall the original transmission controller.

  5. If the fault recurs, the transmission controller is probably defective.

  6. Order a controller with the same item number and install it in the vehicle.

4 Replace controller

NOTICE

Damage to the transmission controller due to overvoltage!

  1. Turn the ignition off prior to installation or removal.

  2. Never expose the on-board electrical wiring to higher voltages than 45 V.

  3. Do not touch any contacts to avoid ESD (electrostatic discharging) and soiling

Dismantle/replace the controller and send it to the Voith Customer Service for inspection.

Dismantle the controller

Procedure for dismantling the controller

  1. Unplug connectors A, B, C, D (connector secured by "lug", lift "lug")

  2. Press the device backwards (I.) against the springs (1).

  3. List the device out of the rail (2) upwards (II.).

  4. Pull out the device.

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