Diagnostic Starting Point - Engine Cooling
Begin the system diagnosis with the Diagnostic System Check - Engine Cooling . The Diagnostic System Check will provide the following information
- The identification of the control modules which command the system.
- The ability of the control modules to communicate through the serial data circuit.
- The identification of any stored diagnostic trouble codes (DTCs) and their status.
The use of the Diagnostic System Check will identify the correct procedure for diagnosing the system and where the procedure is located.
Scan Tool Output Controls
| Scan Tool Output Control | Additional Menu Selection(s) | Description |
|---|---|---|
| Electro-viscous Fan | The scan tool displays a Commanded State of None or percentage. This allows you to communicate with the PCM to increase or decrease the cooling fan speed in 10% increments. |
PCM Scan Tool Output Controls - 4.2L (LL8)
Scan Tool Data List
| Scan Tool Parameter | Data List | Units Displayed | Typical Data Value |
|---|---|---|---|
| Ignition Switch in RUN/Engine Running/Automatic Transmission in PARK/Manual Transmission in NEUTRAL/Air Conditioner is OFF | |||
| Desired Fan Speed | ENG 2, ENG 3 | RPM | Varies |
| ECT Sensor | ENG 1, ENG 2, ENG 3, EVAP, Misfire, HO2S | °C/°F | Varies |
| Fan Speed | ENG 2, ENG 3 | RPM | Varies |
| IAT Sensor | ENG 1, ENG 2, ENG 3, EVAP, Misfire, HO2S | °C/°F | Varies |
Powertrain Control Module (PCM) Scan Tool Data List - 4.2L (LL8)
| Scan Tool Parameter | Data List | Units Displayed | Typical Data Value |
|---|---|---|---|
| Ignition Switch in RUN/Engine Running/Automatic Transmission in PARK/Manual Transmission in NEUTRAL/Air Conditioner is OFF | |||
| Displayed Coolant Temp | Data 1 | °C/°F | Varies |
| Monitored Coolant Temp | Data 1 | °C/°F | Varies |
Instrument Panel Cluster Scan Tool Data List
Diagnostic Trouble Code (DTC) List
| DTC | Diagnostic Procedure | Module(s) |
|---|---|---|
| P0495 | DTC P0495 | PCM |
| P1481 | DTC P1481 | PCM |
| P1482 | DTC P1482 | PCM |
| P1484 | DTC P1484 | PCM |
Diagnostic Trouble Code (DTC) List
Circuit Description
The cooling fan relay sends a pulse width modulation (PWM) signal (12-14 volts) to the cooling fan by the cooling fan clutch supply voltage circuit. The powertrain control module (PCM) uses the PWM signal, which controls the speed of the cooling fan by controlling the position of the oil control valve inside the clutch. If the cooling fan RPM is to high when the PCM is commanding 0%, DTC P0495 will set.
Conditions for Running the DTC
- The engine is running.
- The system voltage is greater than 8.5 volts.
- The intake air temperature (IAT) is greater than -7°C (19°F).
- Zero percent duty cycle is commanded, and the engine RPM has been over 1800 RPM for at least 120 seconds.
Conditions for Setting the DTC
Cooling fan RPM exceeds 1600 RPM for 81 seconds.
Action Taken When the DTC Sets
- The PCM illuminates the malfunction indicator lamp (MIL) during the second consecutive trip in which the diagnostic test has been run and failed.
- The PCM will store the conditions as Freeze Frame/Failure Records data.
Conditions for Clearing the MIL/DTC
- The PCM turns the MIL OFF after the third consecutive trip that the diagnostic procedure has run and passed.
- Clear the DTC using the Clear DTC Information function of the scan tool.
Diagnostic Aids
- An inline connector could cause an intermittent DTC. Ensure to test for poor connections and pin retention at all inline connectors. Refer to system schematics for connector and locations.
- If the condition is not present, refer to «TESTING FOR INTERMITTENT CONDITIONS AND POOR CONNECTIONS»(ref-188060-S04444018862005090100000) in Wiring Systems.
- If DTCs P0495 and P0113 are set and the weather is cold, the cooling fan code may be false. Clear DTC P0495, and after an IAT repair, check if the DTC will reset.
The powertrain control module (PCM) uses the cooling fan speed signal in order to determine the actual fan speed in relation to the desired fan speed. The PCM uses the cooling fan speed signal in order to reduce the cooling fan noise and in order to maintain the powertrain cooling requirements. The PCM supplies power and ground to the clutch hall effect sensor of the cooling fan clutch. The hall effect sensor returns a signal pulse through the speed signal circuit in response to the reluctor track, which is located inside the fan clutch. If during operation, the PCM detects a loss of the cooling fan speed signal, DTC P1481 will set.
- The engine is running.
- System voltage is greater than 8.5 volts.
- The PCM has detected a loss of cooling fan speed signal.
- The above condition is present for at least 11 seconds.
- The PCM will illuminate the malfunction indicator lamp (MIL) during the second consecutive trip in which the diagnostic test has been run and failed.
- The PCM will store the condition as Freeze Frame/Failure Records data.
- The PCM commands the cooling fan clutch to 100%.
- The PCM turns OFF the malfunction indicator lamp (MIL) after the third consecutive trip that the diagnostic test has run and passed.
- The history DTC will clear after 40 consecutive warm-up cycles have occurred without a malfunction.
- Clear the DTC by using the Clear DTC Information function of the scan tool.
- An inline connector could cause an intermittent DTC. Ensure to test for poor connections and pin retention at all inline connectors. Refer to system schematics for connector and locations.
- If the condition is not present, refer to «TESTING FOR INTERMITTENT CONDITIONS AND POOR CONNECTIONS»(ref-188060-S04444018862005090100000) in Wiring Systems.
- Disconnect the harness connector of the cooling fan clutch from the shroud. Inspect the exposed wires between the harness connector and the tubing.
- Inspect the cooling fan clutch harness in order to ensure that the clutch supply voltage circuit is not shorted to the following circuits: The 5-volt reference circuit. The cooling fan speed signal circuit. The low reference circuit.
- DTC P1481 will set if the engine is started without the drive belt ON.
The powertrain control module (PCM) sends a pulse width modulation (PWM) signal of 0-12 volts via the cooling fan clutch control circuit to the cooling fan relay. The PCM uses this PWM to control the position of the oil control valve located inside the cooling fan clutch. If during operation, the PCM detects an improper circuit condition on the cooling fan clutch control circuit DTC P1482 will set.
System voltage is greater than 8.5 volts.
- An improper voltage level has been detected on the cooling fan clutch control circuit.
- The above condition is present for at least 6 seconds.
- The PCM will illuminate the malfunction indicator lamp (MIL) during the second consecutive trip in which the diagnostic test has been run and failed.
- The PCM stores the conditions present when the DTC sets as Freeze Frame/Failure Records data.
- The PCM commands the cooling fan clutch to 100%.
- The PCM turns OFF the malfunction indicator lamp (MIL) after the third consecutive trip the diagnostic has run and passed.
- The history DTC will clear after 40 consecutive warm-up cycles have occurred without a malfunction.
- The DTC can be cleared by using the scan tool Clear DTC Information function.
- An inline connector could cause an intermittent DTC. Ensure to test for poor connections and pin retention at all inline connectors. Refer to system schematics for connector and locations.
- If the condition is not present, refer to «TESTING FOR INTERMITTENT CONDITIONS AND POOR CONNECTIONS»(ref-188060-S04444018862005090100000) in Wiring Systems.
- Disconnect the harness connector of the cooling fan clutch from the shroud. Inspect the exposed wires between the harness connector and the tubing.
The cooling fan relay sends a pulse width modulation (PWM) signal of 12-14 volts to the cooling fan clutch through the cooling fan clutch supply voltage circuit. The powertrain control module (PCM) uses this PWM signal in order to control the speed of the cooling fan clutch. The signal controls the position of the oil control valve inside the cooling fan clutch. If the cooling fan RPM is different than the PCM is expecting, DTC P1484 will set. The actual cooling fan RPM vs the desired cooling fan RPM is not always exactly the same. There can be up to an 800-RPM difference.
- The engine is running.
- The system voltage is greater than 8.5 volts.
- The intake air temperature (IAT) is greater than -7°C (19°F).
- DTCs P1481 and P1482 are not set.
- The engine speed is less than 3200 RPM.
- The engine speed is not changing more than 250 RPM for 5 seconds.
- Fan command is greater than 0%.
- The maximum allowable error of 1000 RPM in the cooling fan speed occurs for 100 seconds.
- The PCM detects that the cooling fan clutch is locked up.
- The Reduced Engine Power indicator illuminates only if the PCM detects that the cooling fan clutch is locked up.
- The PCM illuminates the malfunction indicator lamp (MIL) during the second consecutive trip in which the diagnostic test has been run and failed.
- The PCM will store the conditions as Freeze Frame/Failure Records data.
- The PCM commands the cooling fan clutch to 100%.
| IMPORTANT | Follow this procedure in order to clear DTC P1484 after completing a repair. |
- Use the Clear DTC Information function on the scan tool.
- Perform an ignition key cycle.
The PCM turns OFF the MIL after the third consecutive trip that the diagnostic test has run and passed.
The history DTC will clear after 40 consecutive warm-up cycles have occurred without a malfunction.
- An inline connector could cause an intermittent DTC. Ensure to test for poor connections and pin retention at all inline connectors. Refer to system schematics for connector and locations.
- If the condition is not present, refer to «TESTING FOR INTERMITTENT CONDITIONS AND POOR CONNECTIONS»(ref-188060-S04444018862005090100000) in Wiring Systems.
- Disconnect the harness connector of the cooling fan clutch from the shroud. Inspect the exposed wires between the harness connector and the tubing.
- If DTCs P1484 and P0113 are set, and the weather conditions are cold, the cooling fan code may be false. Clear DTC P1484, and after an IAT sensor check, allow the DTC to reset.
Visual/Physical Inspection
- Inspect for aftermarket devices which could affect the operation of the Cooling System. Refer to «CHECKING AFTERMARKET ACCESSORIES»(ref-188060-S13306781072005090800000) in Wiring Systems.
- Inspect the easily accessible or visible system components for obvious damage or conditions which could cause the symptom.
Symptom List
Refer to a symptom diagnostic procedure from the following list in order to diagnose the symptom
- «Engine Coolant Temperature Indicator Always On»(ref-191875-S14177012442005091600000)
- «Engine Overheating»(ref-191875-S01622769952005091600000)
- «Loss of Coolant»(ref-191875-S02771472082005091600000)
- «Thermostat Diagnosis»(ref-191875-S05883443122005091600000)
- «Coolant Heater Inoperative»(ref-191875-S38148914232005091600000)
- «Engine Fails To Reach Normal Operating Temperature»(ref-191875-S04548750712005091600000)
- «Excessive Fan Noise»(ref-191875-S10997738202005091600000)
Thermostat Diagnosis
| Step | Action | Yes | No |
|---|---|---|---|
| IMPORTANT: The temperature stick is a pencil-like device that has a wax material containing certain chemicals which melt at a given temperature. Use the temperature sticks to determine a thermostat's operating temperature by rubbing 87°C (188°F) and 97°C (206°F) sticks on the thermostat housing. The marks made by the sticks should melt when coolant temperatures reach 87°C (188°F) and 97°C (206°F), respectively. These temperatures are the normal operating range of the thermostat. | |||
| 1 | Remove the radiator cap. Rub a 87°C (188°F) and a 97°C (206°F) J 24731 on the engine water outlet housing which connects to the radiator inlet hose. See Special Tools and Equipment . Warm up the engine at fast idle. Check for coolant flow before engine reaches proper operating temperature. Is there coolant flow before either mark begins to melt? | Go to Step 2 | Go to Step 3 |
| 2 | The thermostat may be stuck open, prematurely opening or missing. Replace the thermostat. Refer to Thermostat Replacement (4.2L Engine) . Recheck the thermostat opening temperature as in Step 1. Does the engine still fail to reach proper operating temperature? | Go to Engine Fails To Reach Normal Operating Temperature . | System OK |
| 3 | Does the coolant begin to flow by the time one or both of the temperature stick marks on the engine water outlet housing begin to melt? | System OK | Go to Step 4 |
| 4 | The thermostat may be stuck closed or opening too slowly. Replace the thermostat. Refer to Thermostat Replacement (4.2L Engine) . Recheck the thermostat opening temperature as in Step 1. Does the engine still overheat? | Go to Engine Overheating . | System OK |
| IMPORTANT |
|---|
| The temperature stick is a pencil-like device that has a wax material containing certain chemicals which melt at a given temperature. Use the temperature sticks to determine a thermostat's operating temperature by rubbing 87°C (188°F) and 97°C (206°F) sticks on the thermostat housing. The marks made by the sticks should melt when coolant temperatures reach 87°C (188°F) and 97°C (206°F), respectively. These temperatures are the normal operating range of the thermostat. |
Thermostat Diagnosis
Pressure Cap Testing
| CAUTION | To avoid being burned, do not remove the radiator cap or surge tank cap while the engine is hot. The cooling system will release scalding fluid and steam under pressure if radiator cap or surge tank cap is removed while the engine and radiator are still hot. |
Scheme 32
- Remove the pressure cap.
- Wash the pressure cap sealing surface with water.
- Use the J 24460-01 in order to test the pressure cap.
- Test the pressure cap for the following conditions: Pressure release when the J 24460-01 exceeds the pressure rating of the pressure cap. Maintain the rated pressure for at least 10 seconds. Note the rate of pressure loss.
- Replace the pressure cap under the following conditions: The pressure cap does not release pressure which exceeds the rated pressure of the cap. The pressure cap does not hold the rated pressure.
Cooling System Leak Testing
| CAUTION | Under pressure, the temperature of the solution in the radiator can be considerably higher, without boiling. Removing the radiator cap while the engine is hot (pressure is high), will cause the solution to boil instantaneously, with explosive force. The solution will spew out over the engine, fenders, and the person removing the cap. Serious bodily injury may result. Flammable antifreeze, such as alcohol, is not recommended for use at any time. Flammable antifreeze could cause a serious fire. |
| CAUTION | In order to help avoid being burned, do not remove the radiator cap while the engine and the radiator are hot. Scalding fluid and steam can be blown out under pressure if the cap is removed too soon. |
Scheme 33
- Remove the pressure cap.
- Test the operation of the pressure cap. Refer to «Pressure Cap Testing»(ref-191875-S02104100682005091600000) .
- Wash the pressure cap mating surface with water.
- Use the J 24460-01 in order to apply pressure to the cooling system. Do not exceed the pressure cap rating.
- The cooling system should hold the rated pressure for at least 2 minutes. Observe the gauge for any pressure loss.
- Repair any leaks as required.
The electro-viscous clutch is controlled by the PCM. The PCM controls a solenoid that regulates a fluid pressure that controls slip of the fan clutch. Internal to the fan is a centrifugal fluid pump, solenoid, hall effect sensor, valve lever and a hydraulic fluid. There is two chambers for the fluid, these two chambers are separated by a valve lever. The first chamber is the storage chamber, which holds excess fluid. The second chamber is the working chamber. As the pressure of the fluid is increased in the working chamber the amount of slip the fan has is decreased. The position of the valve lever is controlled by an electric solenoid.
- Turning off the engine when the cooling fan clutch is engaged, the cooling fan clutch will be engaged at engine restart. This may cause an excessive noise concern. This is a normal condition.
- If the engine is turned off for an extended period of time, usually over night, the hydraulic fluid may fill working chamber and cause limited slip at engine restart. This may cause the excessive noise condition. This is a normal condition.
- To engage the cooling fan clutch, it can take up to 2 minutes for a 100% command with the engine at 2000 RPM. The lower the engine speed, the longer it will take the cooling fan clutch to engage.
- To disengage the cooling fan clutch, it can take up to 2 minutes with the engine at 2000 RPM. The lower the engine speed, the longer it will take to disengage.
- In lower ambient air temperatures the cooling fan clutch will engage in less time, however it will take longer to disengage.
- An inline connector could cause an intermittent DTC. Ensure to test for poor connections and pin retention at all inline connectors. Refer to system schematics for connector and locations.
- If the condition is not present, refer to «TESTING FOR INTERMITTENT CONDITIONS AND POOR CONNECTIONS»(ref-188060-S04444018862005090100000) in Wiring Systems.
Fan Clutch Diagnosis
| Step | Action | Yes | No |
|---|---|---|---|
| DEFINITION: Testing the engagement and disengagement of the fan clutch. | |||
| 1 | Were you sent here from the diagnostic system check? | Go to Step 2 | Go to Diagnostic System Check - Engine Cooling . |
| 2 | Is there excessive fan air noise? | Go to Step 3 | Go to Excessive Fan Noise . |
| 3 | Fan air noise is normal during cold engine start up. Does the fan noise go away at normal engine operating temperature? | Go to Step 13 | Go to Excessive Fan Noise . |
| 4 | IMPORTANT: The engine must be turned off and the engine temperature should be cold. Rotate the fan clutch.Does the fan clutch rotate? | Go to Step 5 | Go to Step 14 |
| 5 | Visually inspect the fan blades for cracks, looseness or damage. Are the fan blades in good condition? | Go to Step 6 | Go to Step 15 |
| 6 | Visually inspect the fan clutch for signs of silicone leakage. Slight silicone leakage may not effect the fan clutch engagement Excessive leakage will prevent the fan clutch from engaging Is the silicone fluid leakage excessive? | Go to Step 14 | Go to Step 7 |
| 7 | Inspect the fan clutch for proper installation. Move the fan blade back and forth in a lateral motion. Inspect for fan blade to fan clutch movement. Is the fan blade loose at the fan clutch? | Go to Step 10 | Go to Step 8 |
| 8 | Inspect the fan clutch for wear. Move the fan blade back and forth in a lateral motion. IMPORTANT: Approximately 6.5 mm (1/4 in) movement at the tip of the fan blade is normal. Inspect for fan clutch lateral movement. Is the fan clutch lateral movement excessive? | Go to Step 14 | Go to Step 9 |
| 9 | The fan clutch should have more turning resistance when the engine is at or above normal operating temperature. Does the fan clutch have more resistance when the engine temperature is raised? | Go to Step 11 | Go to Step 14 |
| 10 | Tighten the fan. Refer to Fan Clutch Replacement . Is the action complete? | Go to Step 16 | |
| 11 | Perform a fan clutch engagement test. Ensure the engine coolant level is full. Ensure the cooling fan drive belt tension is correct and not slipping. Position and secure a thermometer between the fan clutch and the radiator. Ensure the cooling fan is disengaged before starting this test. Sufficiently cover the radiator grille to restrict the air flow. IMPORTANT: Do not allow engine temperature to exceed 121°C (250°F). Start the engine. Turn the A/C ON, if equipped. Operate the engine at approximately 2,000 RPM. Inspect the thermometer reading when the fan clutch engages. Do not continue this test if the fan clutch does not engage between 85-96°C (185-205°F). Fan clutch engagement will be indicated by an increase in fan air noise, fan speed, and a drop of about 3-10°C (5-15°F) on the thermometer reading. Did the fan clutch engage between 85-96°C (185-205°F)? | Go to Step 12 | Go to Step 14 |
| 12 | Once the fan clutch engages, perform the following steps: Uncover the radiator grille. Turn the A/C OFF, if equipped. Operate the engine at approximately 2,500 RPM to reduce the engine operating temperature. Remove the thermometer. Did the engine return to normal operating temperature? | Go to Step 13 | |
| 13 | As the engine temperature returns to normal, the fan clutch will disengage, indicated by a reduction in fan air noise and fan speed. Did the fan clutch disengage? | Go to Step 16 | Go to Step 14 |
| 14 | Replace the fan clutch. Refer to Fan Clutch Replacement . Is the repair complete? | Go to Step 16 | |
| 15 | Replace the fan blades. Refer to Fan Clutch Replacement . Is the repair complete? | Go to Step 16 | |
| 16 | Operate the fan clutch to verify proper operation. Did you find and correct the condition? | System OK | Go to Step 2 |
| IMPORTANT |
|---|
| The engine must be turned off and the engine temperature should be cold. |
| IMPORTANT |
|---|
| Approximately 6.5 mm (1/4 in) movement at the tip of the fan blade is normal. |
| IMPORTANT |
|---|
| Do not allow engine temperature to exceed 121°C (250°F). |
Fan Clutch Diagnosis