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Home >> Chrysler >> 2009 >> Sebring Base, 2D Convertible, ED3 >> Repair and Diagnosis >> Engine Performance >> System >> DTCS P0122 To P0222 - GPEC >> P0198-Engine Oil Temperature Sensor Circuit High >> Diagnostic Test

Diagnostic Test

  1. DTC IS ACTIVE 
    NOTE: Diagnose and repair any system voltage or sensor reference voltage DTCs before continuing with this test.
    1. Start the engine and allow it to reach normal operating temperature.
      WARNING: When the engine is operating, do not stand in direct line with the fan. Do not put your hands near the pulleys, belts or fan. Do not wear loose clothing. Failure to follow these instructions may result in possible serious or fatal injury.
    2. With the scan tool, select View DTCs.

      Is the status Active for this DTC?

      Yes 

      • Go to step  2

      No 

  2. (G24) EOT SIGNAL CIRCUIT SHORTED TO VOLTAGE 
    Fig 1: Checking Engine Oil Temperature Sensor Circuit
    GC0099802Courtesy of CHRYSLER LLC
    1. Turn the ignition off.
    2. Disconnect the Engine Oil Temperature Sensor connector.
    3. Disconnect the Powertrain Control Module (PCM) connector.
    4. Turn the ignition on.
    5. Measure the voltage of the (G24) EOT Signal circuit in the Engine Oil Temperature Sensor harness connector.

      Is there any voltage present?

      Yes 

      No 

      • Go to step  3
  3. (G24) ENGINE OIL TEMP SIGNAL OPEN OR HIGH RESISTANCE 
    Fig 2: Checking Engine Oil Temperature Sensor Circuit
    GC0099805Courtesy of CHRYSLER LLC
    1. Turn the ignition off.
      NOTE: When checking circuits at the Powertrain Control Module (PCM), be careful not to damage or distort the connector terminals. Improper measurement technique could result in poor pin to terminal contact.
    2. Measure the resistance of the (G24) EOT Signal circuit between the Engine Oil Temperature Sensor harness connector and the Powertrain Control Module (PCM) harness connector.

      Is the resistance below 5.0 ohms?

      Yes 

      • Go to step  4

      No 

  4. (K915) SENSOR GROUND CIRCUIT OPEN OR HIGH RESISTANCE 
    Fig 3: Checking Engine Oil Temperature Sensor Circuit
    GC0099806Courtesy of CHRYSLER LLC
    NOTE: When checking circuits at the Powertrain Control Module (PCM), be careful not to damage or distort the connector terminals. Improper measurement technique could result in poor pin to terminal contact.
    1. Measure the resistance of the (K915) Sensor Ground circuit between the Engine Oil Temperature Sensor harness connector and the Powertrain Control Module (PCM) harness connector.

      Is the resistance below 5.0 ohms?

      Yes 

      • Go to step  5

      No 

  5. ENGINE OIL TEMPERATURE SENSOR SIGNAL VOLTAGE 
    Fig 4: Checking Engine Oil Temperature Sensor Circuit
    GC0099807Courtesy of CHRYSLER LLC
    1. Turn the ignition off.
    2. Connect the Powertrain Control Module (PCM) connector.
    3. Connect a jumper wire between the (G24) EOT Signal circuit and the (K915) Sensor Ground in the Engine Oil Temperature Sensor harness connector.
    4. Turn the ignition on.
    5. With the scan tool, read the Engine Oil Temperature Sensor signal voltage.

      Is the voltage below 1.0 volt with the jumper wire in place?

      Yes 

      • Go to step  6

      No 

      • Go to step  7
  6. ENGINE OIL TEMPERATURE SENSOR 
    1. Turn the ignition off.
    2. Inspect the wiring and connectors between the Engine Oil Temperature Sensor and the Powertrain Control Module (PCM).
    3. Look for any chafed, pierced, pinched, or partially broken wires.
    4. Look for broken, bent, pushed out or corroded terminals. Verify that there is good pin to terminal contact in the related connectors.

      Were any problems found?

      Yes 

      No 

  7. POWERTRAIN CONTROL MODULE (PCM) 
    1. Using the wiring diagram/schematic as a guide, inspect the wiring and connectors between the Engine Oil Temperature Sensor and the Powertrain Control Module (PCM).
    2. Look for any chafed, pierced, pinched, or partially broken wires.
    3. Look for broken, bent, pushed out or corroded terminals.
    4. Monitor the scan tool data relative to this circuit and wiggle test the wiring and connectors.
    5. Look for the data to change or for the DTC to reset during the wiggle test.
    6. Refer to any Technical Service Bulletins that may apply.

      Were any problems found?

      Yes 

      No