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Home >> Jeep >> 2025 >> Grand Cherokee Altitude, AWD >> Repair and Diagnosis >> External Pages >> Different car >> Section 39 (Integrated Dual Charge Module (IDCM) - DTCS P0CF6-00 To P1503-00) >> DTC Troubleshooting >> P0D2A-00 Battery Charger 1 Input Current Too High >> Diagnostic Test

Diagnostic Test

WARNING: This page is about a different car, the 2025 Jeep Grand Cherokee. However, it is still accessible from the selected car via links, so may be relevant.
  1. CHECK FOR AN ACTIVE DTC 
    WARNING:

    On vehicles equipped with the high voltage system, you must thoroughly read and follow all High Voltage Safety procedures. In addition, before performing any diagnostic or service procedure near a high voltage component, you must perform the High Voltage Power Down. Failure to follow these instructions may result in possible serious or fatal injury.

    Read the HIGH-VOLTAGE SAFETY PROCEDURES. Refer to  HIGH VOLTAGE SAFETY PROCEDURES  . 

    When the HIGH-VOLTAGE POWER-DOWN PROCEDURE is necessary. Refer to  HIGH VOLTAGE POWER DOWN  . 

    1. With the scan tool, read DTCs and record on the repair order.
    2. Record the Environmental Data.
    3. With the scan tool, erase DTCs.
    4. Using the recorded Environmental Data, along with the When Monitored and Set Conditions above, operate the vehicle in the conditions that set the DTC.
    5. With the scan tool, read Integrated Dual Charge Module (IDCM) DTCs.

      Did the DTC return?

      Yes 

      • Go To  2

      No 

  2. CHECK THE ELECTRIC VEHICLE SUPPLY EQUIPMENT (EVSE) CHARGING CAPABILITY 
    NOTE:

    If the customer's EVSE is not available, use a known good EVSE for this test step. 

    1. Connect the customers EVSE Charging Unit to the vehicle.
    2. Using the Scan Tool, Monitor the AC output.

      Is the EVSE Charging Unit operating correctly?

      Yes 

      No 

      • Go To  3
  3. CHECK EVSE CHARGING UNIT 
    1. Refer to the EVSE User service information and follow the troubleshooting guide to determine if the problem is with the EVSE Charging Unit or the vehicle.
    2. Using the Scan Tool, Monitor the AC output.

      Is the EVSE Charging Unit operating correctly?

      Yes 

      • Go To  4

      No 

  4. CHECK THE (H324) CHARGING PORT AC LINE 1 CIRCUIT FOR A SHORT TO GROUND 
    1. Turn the ignition off.
    2. Check for continuity between ground and the (H324) Charging Port AC Line 1 circuit at the Charge Port located in the EVSE Door opening.

      Is continuity to ground present?

      Yes 

      No 

      • Go To  5
  5. CHECK THE (H325) CHARGING PORT AC LINE 2 CIRCUIT FOR A SHORT TO GROUND 
    1. Check for continuity between ground and the (H325) Charging Port AC Line 2 circuit at the Charge Port located in the EVSE Door opening.

      Is continuity to ground present?

      Yes 

      No 

      • Go To  6
  6. CHECK THE (H326) CHARGING PORT GROUND CIRCUIT FOR AN OPEN/HIGH RESISTANCE 
    1. Disconnect the IDCM C4 connector.
    2. Measure the resistance of the (H326) Charging Port Ground circuit between the IDCM C4 connector and the Charge Port Inlet connector located in the EVSE Door opening.

      Is the resistance below 3.0 Ohms?

      Yes 

      • Go To  7

      No 

  7. CHECK THE (H324) CHARGING PORT AC LINE 1 CIRCUIT FOR AN OPEN/HIGH RESISTANCE 
    1. Measure the resistance of the (H324) Charging Port AC Line 1 circuit between the IDCM C4 harness connector and the Charge Port Inlet connector located in the EVSE Door Opening.

      Is the resistance below 3.0 Ohms?

      Yes 

      • Go To  8

      No 

  8. CHECK THE (H325) CHARGING PORT AC LINE 2 CIRCUIT FOR AN OPEN/HIGH RESISTANCE 
    1. Measure the resistance of the (H325) Charging Port AC Line 2 circuit between the IDCM C4 harness connector and the Charge Port Inlet connector, located in the EVSE Door Opening.

      Is the resistance below 3.0 Ohms?

      Yes 

      • Go To  9

      No 

  9. CHECK RELATED HARNESS CONNECTIONS 
    1. Disconnect all IDCM harness connectors.
    2. Disconnect all related in-line harness connections (if equipped).
    3. Disconnect the related component harness connectors.
    4. Inspect harness connectors, component connectors, and all male and female terminals for the following conditions:
      • Proper connector installation.
      • Damaged connector locks.
      • Corrosion.
      • Other signs of water intrusion.
      • Weather seal damage (if equipped).
      • Bent terminals.
      • Overheating due to a poor connection (terminal may be discolored due to excessive current draw).
      • Terminals that have been pushed back into the connector cavity.
      • Perform a terminal drag test on each connector terminal to verify proper terminal tension.

      Repair any conditions that are found.

    5. Reconnect all IDCM harness connectors. Be certain that all harness connectors are fully seated and the connector locks are fully engaged.
    6. Reconnect all in-line harness connectors (if equipped). Be certain that all connectors are fully seated and the connector locks are fully engaged.
    7. Reconnect all related component harness connectors. Be certain that all connectors are fully seated and the connector locks are fully engaged.
    8. With the scan tool, erase DTCs.
    9. Using the recorded Environmental Data, along with the When Monitored and Set Conditions above, operate the vehicle in the conditions that set the DTC.
    10. With the scan tool, read IDCM DTCs.

      Did the DTC return?

      Yes 

      No