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Home >> Chrysler >> 2011 >> 300 C, RWD >> Repair and Diagnosis >> External Pages >> Different car >> Section 66 (Drivetrain Control Module (DTCM) - Electrical Diagnostics - 3500 Cab & Chassis, 4500 & 5500) >> Diagnosis and Testing >> C1405-Transfer Case Range Position Sensor Circuit High >> Diagnostic Test

Diagnostic Test

WARNING: This page is about a different car, the 2011 RAM Cab & Chassis. However, it is still accessible from the selected car via links, so may be relevant.
  1. T-CASE POSITION SENSOR VOLTAGE ABOVE 4.8 VOLTS 
    NOTE:

    If DTCs C1405 and C2112 are both present, refer to the diagnostics procedure for C2112 before continuing.

    1. Ignition on, engine not running.
    2. With the scan tool, read the T-Case Position Sensor voltage in the DTCM.

      Is the voltage above 4.8 volts?

      Yes 

      • Go To  2.

      No 

      • Go To  6.
  2. (K504) DRIVETRAIN 5 VOLT SUPPLY CIRCUIT SHORTED TO VOLTAGE 
    Fig 1: Checking Drivetrain 5-Volt Supply Circuit For Short
    GC0090117Courtesy of CHRYSLER LLC
    1. Turn the ignition off to the lock position
    2. Disconnect the Shift Motor/Mode Sensor Assembly harness connector.
    3. Ignition on, engine not running.
    4. Measure the voltage of the (K504) Drivetrain 5 Volt Supply circuit at the Transfer Case Encoder harness connector.

      Is the voltage above 5.5 volts?

      Yes 

      • Repair the (K504) Drivetrain 5 Volt Supply circuit for a short to voltage.
      • Perform the TRANSFER CASE VERIFICATION TEST. Refer to TRANSFER CASE VERIFICATION TEST  .

      No 

      • Go To  3.
  3. (T313) MODE SENSOR SIGNAL CIRCUIT SHORTED TO VOLTAGE 
    Fig 2: Checking Mode Sensor Signal Circuit For Short
    GC0090120Courtesy of CHRYSLER LLC
    1. Measure the voltage of the (T313) Mode Sensor Signal circuit at the Shift Motor/Mode Sensor Assembly harness connector.

      Is the voltage above 5.5 volts?

      Yes 

      • Repair the (T313) Mode Sensor Signal circuit for a short to voltage.
      • Perform the TRANSFER CASE VERIFICATION TEST. Refer to TRANSFER CASE VERIFICATION TEST  .

      No 

      • Go To  4.
  4. (K594) DRIVETRAIN SENSOR RETURN CIRCUIT OPEN 
    Fig 3: Checking Drivetrain Sensor Return Circuit For Open
    GC0090112Courtesy of CHRYSLER LLC
    1. Disconnect the DTCM harness connector.
    2. Measure the resistance of the (K594) Drivetrain Sensor Return circuit between the Shift Motor/Mode Sensor Assembly harness connector and the DTCM C1 harness connector.

      Is the resistance above 5.0 Ohms?

      Yes 

      • Repair the (K594) Drivetrain Sensor Return circuit for an open.
      • Perform the TRANSFER CASE VERIFICATION TEST. Refer to TRANSFER CASE VERIFICATION TEST  .

      No 

      • Go To  5.
  5. TRANSFER CASE SHIFT MOTOR/MODE SENSOR ASSEMBLY 
    Fig 4: Checking Drivetrain Sensor Return Circuit
    GC0090114Courtesy of CHRYSLER LLC
    1. Turn the ignition off to the lock position
    2. Connect a jumper wire between the (K594) Drivetrain Sensor Return circuit and the (T313) Mode Sensor Signal circuit in the Shift Motor/Mode Sensor Assembly harness connector.
    3. Ignition on, engine not running.
    4. With the scan tool, read the T-Case Position Sensor voltage in the DTCM.
      NOTE:

      Remove the jumper wire before continuing.

      Is the voltage below 0.2 of a volt?

      Yes 

      • Replace the Transfer Case Shift Motor/Mode Sensor Assembly in accordance with the Service Information.
      • Perform the TRANSFER CASE VERIFICATION TEST. Refer to TRANSFER CASE VERIFICATION TEST  .

      No 

      • Replace the Drive Train Control Module (DTCM) in accordance with the Service Information.
      • Perform the DTCM VERIFICATION TEST. Refer to DTCM VERIFICATION TEST  .
  6. INTERMITTENT WIRING HARNESS AND CONNECTORS 
    1. The conditions necessary to set this DTC are not present at this time.
    2. Using the wiring diagram/schematic as a guide, inspect the wiring harness and connectors.
    3. Wiggle test the wiring harness and connectors while monitoring the scan tool data relative to this circuit.
    4. Look for the data to change or for the DTC to reset during the wiggle test.
    5. While monitoring the scan tool data relative to this circuit, move the selector switch to each position several times.
    6. Look for the data to change other than as expected or for the DTC to reset.

      Were any problems found?

      Yes 

      No 

      • Test complete.