Cooling Fan - Left (w/ L66)
| Connector Part Information OEM: F8ZB-14A464-DA Service: See Catalog Description: 3-Way F (TN) |
Cooling Fan - Left (w/ L66) Connector Parts Information
| Pin | Wire Color | Circuit Number | Function |
|---|---|---|---|
| 1 | L-BU | 409 | Cooling Fan Motor Supply Voltage |
| 2 | Not Used | ||
| 3 | WH | 504 | Ground |
Cooling Fan - Left (w/ L66) Connector Terminal Identification
Cooling Fan - Right (w/ L66)
| Connector Part Information OEM: F8ZB-14A464-DA Service: See Catalog Description: 3-Way F (TN) |
Cooling Fan - Right (w/ L66) Connector Parts Information
| Pin | Wire Color | Circuit Number | Function |
|---|---|---|---|
| 1 | GY | 532 | Cooling Fan Motor Supply Voltage |
| 2 | Not Used | ||
| 3 | BK | 150 | Ground |
Cooling Fan - Right (w/ L66) Connector Terminal Identification
Scheme 16
| Connector Part Information OEM: 12110539 Service: See Catalog Description: 5-Way F Metri-Pack 280 Series Flex Lock (BK) |
Cooling Fan Relay 3 (w/ L66) Connector Parts Information
| Pin | Wire Color | Circuit Number | Function |
|---|---|---|---|
| 30 | WH | 504 | Ground |
| 85 | OG | 3040 | Battery Positive Voltage |
| 86 | D-BU | 473 | High Speed Cooling Fan Relay Control |
| 87 | BK | 150 | Ground |
| 87A | GY | 532 | Cooling Fan Motor Supply Voltage |
Cooling Fan Relay 3 (w/ L66) Connector Terminal Identification
Scheme 17
| Connector Part Information OEM: 12052641 Service: See Catalog Description: 2-Way F Metri-Pack 150 Series (BK) |
Coolant Level Switch Connector Parts Information
| Pin | Wire Color | Circuit Number | Function |
|---|---|---|---|
| A | PK | 239 | Ignition 1 Voltage |
| B | L-GN | 1478 | Coolant Level Switch Signal |
Coolant Level Switch Connector Terminal Identification
Reference Information
Schematic Reference
Engine Cooling Schematics
Connector End View Reference
- «Cooling System Component Views»(ref-269357-S19754076882007103000000)
- «Cooling System Connector End Views»(ref-269357-S42848675752007103000000)
- «Engine Control Module Connector End Views»(ref-269331-S34765319152007103000000)
Description and Operation
Cooling Fan Description and Operation
Electrical Information Reference
- «Circuit Testing»(ref-269314-S07587694522007103000000)
- «Connector Repairs»(ref-269314-S42425630472007103000000)
- «Testing for Intermittent Conditions and Poor Connections»(ref-269314-S15883928412007103000000)
- «Wiring Repairs»(ref-269314-S29032250872007103000000)
- «Electrical Center Identification Views»(ref-269320-S37451750092007103000000)
DTC Type Reference
Powertrain Diagnostic Trouble Code (DTC) Type Definitions
Scan Tool Reference
- «Scan Tool Data List»(ref-269379-S14844636602007103000000)
- «Scan Tool Data Definitions»(ref-269379-S36232225742007103000000)
- «Scan Tool Output Controls»(ref-269379-S08016400462007103000000)
Circuit/System Verification
Ignition ON, command each relay ON and OFF with a scan tool. Feel or listen to verify that each relay turns ON and OFF with each command.
Repair Procedures
Perform the Diagnostic Repair Verification after completing the diagnostic procedure.
- «Cooling Fan and Shroud Replacement (L61)»(ref-269357-S36682214402007103000000) or «Cooling Fan and Shroud Replacement (L66)»(ref-269357-S32487156712007103000000) or «Cooling Fan and Shroud Replacement (LAT)»(ref-269357-S35954697212007103000000)
- «Engine Control Module Replacement»(ref-269331-S18419485052007103000000)
Schematic Reference
Engine Cooling Schematics
Connector End View Reference
- «Cooling System Component Views»(ref-269357-S19754076882007103000000)
- «Cooling System Connector End Views»(ref-269357-S42848675752007103000000)
- «Powertrain Control Module Connector End Views»(ref-269336-S15318355472007103000000)
Description and Operation
Cooling Fan Description and Operation
Electrical Information Reference
- «Circuit Testing»(ref-269314-S07587694522007103000000)
- «Connector Repairs»(ref-269314-S42425630472007103000000)
- «Testing for Intermittent Conditions and Poor Connections»(ref-269314-S15883928412007103000000)
- «Wiring Repairs»(ref-269314-S29032250872007103000000)
DTC Type Reference
Powertrain Diagnostic Trouble Code (DTC) Type Definitions
Scan Tool Reference
- «Scan Tool Data List»(ref-269383-S06999164502007103000000)
- «Scan Tool Data Definitions»(ref-269383-S11237427482007103000000)
- «Scan Tool Output Controls»(ref-269383-S33708712012007103000000)
Ignition ON, command each relay ON and OFF with a scan tool. Feel or listen to verify that each relay turns ON and OFF with each command.
Perform the Diagnostic Repair Verification after completing the diagnostic procedure.
- «Cooling Fan and Shroud Replacement (L61)»(ref-269357-S36682214402007103000000) or «Cooling Fan and Shroud Replacement (L66)»(ref-269357-S32487156712007103000000) or «Cooling Fan and Shroud Replacement (LAT)»(ref-269357-S35954697212007103000000)
- «Engine Cooling Fan Replacement (L66)»(ref-269357-S39531303192007103000000)
- «Powertrain Control Module Replacement»(ref-269336-S26163275262007103000000)
Symptoms - Engine Cooling
| IMPORTANT | Review the system operation in order to familiarize yourself with the system functions. Refer to Cooling System Description and Operation . |
Intermittent
Faulty electrical connections or wiring may be the cause of intermittent conditions. Refer to Testing for Intermittent Conditions and Poor Connections .
Schematic Reference
Engine Cooling Schematics
Connector End View Reference
Cooling System Connector End Views
Description and Operation
Cooling System Description and Operation
Electrical Information Reference
- «Circuit Testing»(ref-269314-S07587694522007103000000)
- «Connector Repairs»(ref-269314-S42425630472007103000000)
- «Testing for Intermittent Conditions and Poor Connections»(ref-269314-S15883928412007103000000)
- «Wiring Repairs»(ref-269314-S29032250872007103000000)
Scan Tool Reference
- «Scan Tool Data List»(ref-269357-S06231473192007103000000)
- «Scan Tool Output Controls»(ref-269357-S09752388622007103000000)
- Turn ON the ignition with the engine OFF.
- Command the instrument cluster indicators ON and OFF with a scan tool.
- The low coolant indicator lamp should turn ON and OFF on command.
- The low coolant indicator should be OFF with the engine coolant at the proper level.
Perform the Diagnostic Repair Verification after completing the diagnostic procedure.
- «Surge Tank Replacement»(ref-269357-S03434737892007103000000)
- «Control Module References»(ref-269316-S24390412312007103000000)
- «Instrument Cluster Replacement»(ref-269324-S39777496332007103000000)
Repair Verification
Verify that the low coolant indicator is OFF with the engine coolant at the proper level.
Schematic Reference
Engine Cooling Schematics
Connector End View Reference
- «Cooling System Component Views»(ref-269357-S19754076882007103000000)
- «Cooling System Connector End Views»(ref-269357-S42848675752007103000000)
- «Engine Control Module Connector End Views»(ref-269331-S34765319152007103000000)
Description and Operation
Cooling Fan Description and Operation
Electrical Information Reference
- «Circuit Testing»(ref-269314-S07587694522007103000000)
- «Connector Repairs»(ref-269314-S42425630472007103000000)
- «Testing for Intermittent Conditions and Poor Connections»(ref-269314-S15883928412007103000000)
- «Wiring Repairs»(ref-269314-S29032250872007103000000)
- «Electrical Center Identification Views»(ref-269320-S37451750092007103000000)
DTC Type Reference
Powertrain Diagnostic Trouble Code (DTC) Type Definitions
Scan Tool Reference
- «Scan Tool Data List»(ref-269379-S14844636602007103000000)
- «Scan Tool Data Definitions»(ref-269379-S36232225742007103000000)
- «Scan Tool Output Controls»(ref-269379-S08016400462007103000000)
- If DTCs P0480 or P0481 are set, then perform those diagnostics first.
- Ignition ON, verify with a scan tool that the ECM is not commanding fan activation.
- Ignition ON, observe that the fan is not activated.
- «Cooling Fan and Shroud Replacement (L61)»(ref-269357-S36682214402007103000000) or «Cooling Fan and Shroud Replacement (L66)»(ref-269357-S32487156712007103000000) or «Cooling Fan and Shroud Replacement (LAT)»(ref-269357-S35954697212007103000000)
- «Engine Control Module Replacement»(ref-269331-S18419485052007103000000)
- Ignition ON, verify with a scan tool that the ECM is not commanding fan activation.
- Ignition ON, observe that the fan is not activated.
Schematic Reference
Engine Cooling Schematics
Connector End View Reference
- «Cooling System Component Views»(ref-269357-S19754076882007103000000)
- «Cooling System Connector End Views»(ref-269357-S42848675752007103000000)
- «Powertrain Control Module Connector End Views»(ref-269336-S15318355472007103000000)
Description and Operation
Cooling Fan Description and Operation
Electrical Information Reference
- «Circuit Testing»(ref-269314-S07587694522007103000000)
- «Connector Repairs»(ref-269314-S42425630472007103000000)
- «Testing for Intermittent Conditions and Poor Connections»(ref-269314-S15883928412007103000000)
- «Wiring Repairs»(ref-269314-S29032250872007103000000)
DTC Type Reference
Powertrain Diagnostic Trouble Code (DTC) Type Definitions
Scan Tool Reference
- «Scan Tool Data List»(ref-269383-S06999164502007103000000)
- «Scan Tool Data Definitions»(ref-269383-S11237427482007103000000)
- «Scan Tool Output Controls»(ref-269383-S33708712012007103000000)
- Verify that the following DTCs are not set: P0480, P0481. If any of the DTCs are set, refer to «Diagnostic Trouble Code (DTC) List - Vehicle»(ref-269313-S32971520902007103000000) .
- Ignition ON, verify with a scan tool that the PCM is not commanding fan activation.
- Ignition ON, observe that the fans are not activated.
- «Cooling Fan and Shroud Replacement (L61)»(ref-269357-S36682214402007103000000) or «Cooling Fan and Shroud Replacement (L66)»(ref-269357-S32487156712007103000000) or «Cooling Fan and Shroud Replacement (LAT)»(ref-269357-S35954697212007103000000)
- «Engine Cooling Fan Replacement (L66)»(ref-269357-S39531303192007103000000)
- «Powertrain Control Module Replacement»(ref-269336-S26163275262007103000000)
- Ignition ON, verify with a scan tool that the PCM is not commanding fan activation.
- Ignition ON, observe that the fan is not activated.
Schematic Reference
Engine Cooling Schematics
Connector End View Reference
- «Cooling System Component Views»(ref-269357-S19754076882007103000000)
- «Cooling System Connector End Views»(ref-269357-S42848675752007103000000)
- «Engine Control Module Connector End Views»(ref-269331-S34765319152007103000000)
Description and Operation
Cooling Fan Description and Operation
Electrical Information Reference
- «Circuit Testing»(ref-269314-S07587694522007103000000)
- «Connector Repairs»(ref-269314-S42425630472007103000000)
- «Testing for Intermittent Conditions and Poor Connections»(ref-269314-S15883928412007103000000)
- «Wiring Repairs»(ref-269314-S29032250872007103000000)
- «Electrical Center Identification Views»(ref-269320-S37451750092007103000000)
DTC Type Reference
Powertrain Diagnostic Trouble Code (DTC) Type Definitions
Scan Tool Reference
- «Scan Tool Data List»(ref-269379-S14844636602007103000000)
- «Scan Tool Data Definitions»(ref-269379-S36232225742007103000000)
- «Scan Tool Output Controls»(ref-269379-S08016400462007103000000)
- If DTCs P0480 or P0481 are set, then perform those diagnostics first.
- Ignition ON, command each relay ON and OFF with a scan tool. Observe to verify that the fan turns ON and OFF with each command.
- «Cooling Fan and Shroud Replacement (L61)»(ref-269357-S36682214402007103000000) or «Cooling Fan and Shroud Replacement (L66)»(ref-269357-S32487156712007103000000) or «Cooling Fan and Shroud Replacement (LAT)»(ref-269357-S35954697212007103000000)
- «Engine Control Module Replacement»(ref-269331-S18419485052007103000000)
Ignition ON, command each relay ON and OFF with a scan tool. Observe to verify that each fan turns ON and OFF with each command.
Schematic Reference
Engine Cooling Schematics
Connector End View Reference
- «Cooling System Component Views»(ref-269357-S19754076882007103000000)
- «Cooling System Connector End Views»(ref-269357-S42848675752007103000000)
- «Powertrain Control Module Connector End Views»(ref-269336-S15318355472007103000000)
Description and Operation
Cooling Fan Description and Operation
Electrical Information Reference
- «Circuit Testing»(ref-269314-S07587694522007103000000)
- «Connector Repairs»(ref-269314-S42425630472007103000000)
- «Testing for Intermittent Conditions and Poor Connections»(ref-269314-S15883928412007103000000)
- «Wiring Repairs»(ref-269314-S29032250872007103000000)
DTC Type Reference
Powertrain Diagnostic Trouble Code (DTC) Type Definitions
Scan Tool Reference
- «Scan Tool Data List»(ref-269383-S06999164502007103000000)
- «Scan Tool Data Definitions»(ref-269383-S11237427482007103000000)
- «Scan Tool Output Controls»(ref-269383-S33708712012007103000000)
- If DTCs P0480 or P0481 are set, then perform those diagnostics first.
- Ignition ON, command each relay ON and OFF with a scan tool. Observe to verify that the fan turns ON and OFF with each command.
- «Cooling Fan and Shroud Replacement (L61)»(ref-269357-S36682214402007103000000) or «Cooling Fan and Shroud Replacement (L66)»(ref-269357-S32487156712007103000000) or «Cooling Fan and Shroud Replacement (LAT)»(ref-269357-S35954697212007103000000)
- «Engine Cooling Fan Replacement (L66)»(ref-269357-S39531303192007103000000)
- «Powertrain Control Module Replacement»(ref-269336-S26163275262007103000000)
Ignition ON, command each relay ON and OFF with a scan tool. Observe to verify that the fans turn ON and OFF with each command.
Engine Overheating
| Problem | Action |
|---|---|
| Coolant fan inoperative | Refer to Low Engine Coolant Indicator Always On . |
| Thermostat stuck closed | Replace the thermostat. |
| Radiator fins obstructed | Remove or relocate add-on parts that block air to the radiator Clean away bugs, leaves, etc. In cold climates, clear away snow, etc. from the radiator core |
| Surge tank outlet hose pinched or kinked (at radiator) | Relieve kinks by re-routing Replace the hose if necessary |
| Incorrect radiator | Refer to the radiator usage chart in a parts catalog. If needed, replace with the correct radiator. |
| Loss of system pressure | Pressure check the system and the surge tank cap Ensure that the correct cap is being used |
| Damaged or missing air seals or deflector | Repair or replace as required. |
| Malfunctioning coolant pump | Replace the coolant pump. Refer to Water Pump Removal . |
| Air trapped in cooling system | Refill the cooling system. |
Engine Overheating
Loss of Coolant
| Step | Action | Yes | No |
|---|---|---|---|
| DEFINITION: The cooling system is losing coolant either internally or externally. | |||
| 1 | Were you sent here from Symptoms or another diagnostic table? | Go to Step 2 | Go to Symptoms - Engine Cooling |
| 2 | Repair any present DTCs. Refer to Diagnostic System Check - Vehicle . Is the action complete? | Go to Step 3 | |
| 3 | Inspect the coolant level. Is the coolant at the proper level? | Go to Step 6 | Go to Step 4 |
| 4 | Fill the cooling system to the proper level. Refer to Draining and Filling Cooling System (Static Fill) or Draining and Filling Cooling System (GE 47716 Fill) . Is the action complete? | Go to Step 5 | |
| 5 | If the engine is suspected to have a coolant leak into a cylinder, the coolant can hydraulically lock the engine. Does the engine crankshaft rotate? | Go to Step 6 | Go to Step 26 |
| 6 | Engine overheating can cause a loss of coolant. Is the engine overheating? | Go to Step 27 | Go to Step 7 |
| 7 | Extended operation with a low coolant level can cause engine internal component failure. Is the engine knocking? | Go to Step 29 | Go to Step 8 |
| 8 | Idle the engine at normal operating temperature. Inspect for heavy white smoke coming out of the exhaust pipe. Is a heavy white smoke present from the exhaust pipe? | Go to Step 9 | Go to Step 10 |
| 9 | Coolant in the exhaust system creates a distinctive, burning coolant odor in the exhaust. Condensation in the exhaust system can cause an odorless white smoke during engine warm up. Does the white smoke have a burning coolant type odor? | Go to Step 28 | Go to Step 10 |
| 10 | With the engine idling, inspect the coolant recovery system. Does the coolant recovery system discharge coolant while the engine is idling? | Go to Step 15 | Go to Step 11 |
| 11 | Visually inspect the hoses, pipes and hose clamps at the following locations: Coolant surge tank Heater core Radiator Are any of the hoses, clamps or pipes leaking? | Go to Step 20 | Go to Step 12 |
| 12 | Visually inspect the following components: The coolant pressure cap The core plugs The cylinder head gaskets The engine block The intake manifold The radiator The thermostat housing The water pump Are any of the listed components leaking? | Go to Step 20 | Go to Step 13 |
| 13 | Pressure test the cooling system. Refer to Cooling System Leak Testing . With the cooling system pressurized, visually inspect the components listed in steps 11 and 12. Are any leaks present? | Go to Step 20 | Go to Step 14 |
| 14 | Pressure test the coolant pressure cap. Refer to Pressure Cap Testing . Does the coolant pressure cap hold pressure? | Go to Step 16 | Go to Step 21 |
| 15 | Pressure test the coolant pressure cap. Refer to Pressure Cap Testing . Does the coolant pressure cap hold pressure? | Go to Step 30 | Go to Step 21 |
| 16 | Inspect for the following conditions: A coolant smell inside of the vehicle Coolant in the HVAC module drain tube Coolant on the vehicle floor covering near the HVAC module Is coolant present? | Go to Step 22 | Go to Step 17 |
| 17 | Inspect the underside of the engine oil fill cap for a gray/white milky substance. Is there a milky substance on under the oil fill cap? | Go to Step 18 | Go to Step 19 |
| 18 | Inspect the engine oil fluid level indicator for a gray/white milky substance. Is there a milky substance on the engine oil fluid level indicator? | Go to Step 28 | Go to Step 19 |
| 19 | Inspect the automatic transmission oil fluid level indicator, if equipped, for a gray/white milky substance. Is there a milky substance on the automatic transmission fluid level indicator? | Go to Step 23 | Go to Step 31 |
| 20 | Repair or replace the leaking component. Refer to the appropriate repair. Is the repair complete? | Go to Step 31 | |
| 21 | Replace the coolant pressure cap. Is the repair complete? | Go to Step 31 | |
| 22 | Replace the heater core. Refer to Heater Core Replacement . Is the repair complete? | Go to Step 31 | |
| 23 | Remove the transmission oil cooler lines from the radiator. Pressure test the cooling system. Refer to Cooling System Leak Testing . Inspect the transmission oil cooler for coolant. Is coolant present? | Go to Step 24 | Go to Step 25 |
| 24 | Replace the radiator. Refer to Radiator Replacement (L61) or Radiator Replacement (L66) or Radiator Replacement (LAT) . Service the automatic transmission. Refer to Engine Coolant/Water in Transmission for the 5AT transmission or Engine Coolant/Water in Transmission for the 4T45-E transmission. Is the repair complete? | Go to Step 31 | |
| 25 | Install the cooler lines to the radiator. Is the action complete? | Go to Step 31 | |
| 26 | Repair the engine no crank condition. Refer to: Engine Will Not Crank - Crankshaft Will Not Rotate for the 2.2L (L61) engine Engine Will Not Crank - Crankshaft Will Not Rotate for the 2.4L engine Engine Will Not Crank - Crankshaft Will Not Rotate for the 3.5L (L66) engine Is the repair complete? | Go to Step 31 | |
| 27 | Repair the engine overheating condition. Refer to Engine Overheating . Is the repair complete? | Go to Step 31 | |
| 28 | Repair the engine internal coolant leak. Refer to: Coolant in Combustion Chamber for the 2.2L (L61) engine Coolant in Combustion Chamber for the 2.4L engine Coolant in Combustion Chamber for the 3.5L (L66) engine Is the repair complete? | Go to Step 31 | |
| 29 | Repair the engine knock. Refer to: Lower Engine Noise, Regardless of Engine Speed for the 2.2L (L61) engine Lower Engine Noise, Regardless of Engine Speed for the 2.4L engine Lower Engine Noise, Regardless of Engine Speed for the 3.5L (L66) engine Is the repair complete? | Go to Step 31 | |
| 30 | Repair the combustion pressure in the cooling system problem. Refer to Cylinder Leakage Test . Is the repair complete? | Go to Step 31 | |
| 31 | Operate the system in order to verify the repair. Did you find and correct the condition? | System OK | Go to Step 2 |
Loss of Coolant
Engine Fails To Reach Normal Operating Temperature
- Verify that the cooling system is properly filled. Refer to «Draining and Filling Cooling System (Static Fill)»(ref-269357-S09852178832007103000000) or «Draining and Filling Cooling System (GE 47716 Fill)»(ref-269357-S10244015792007103000000) .
- If the complaint is a low temperature reading, check the temperature gage for proper operation. Connect a scan tool to the vehicle and read the system temperature. Compare this reading to the temperature. Replace the gauge or switch if necessary.
- Refer to «Heating Performance Diagnostic»(ref-269380-S30636053682007103000000) if the complaint is no heat from the HVAC system.
- Verify proper thermostat operation. Refer to «Thermostat Diagnosis»(ref-269357-S21289534462007103000000) .
Tools Required
- SA9141E Cooling System Pressure Test Kit. See «Special Tools»(ref-269357-S31048431392007103000000) .
- J 42401 Radiator Cap/Surge Tank Test Adapter. See «Special Tools»(ref-269357-S31048431392007103000000) .
- Remove the pressure cap.
- Wash the pressure cap sealing surface with water.
- Use the SA9141E (1) with J 42401 (2) in order to test the pressure cap. See «Special Tools»(ref-269357-S31048431392007103000000) .
- Test the pressure cap for the following conditions: Pressure release when the SA9141E exceeds the pressure rating of the pressure cap. See «Special Tools»(ref-269357-S31048431392007103000000) . 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.
Filling Procedure
- Slowly add a mixture of 50/50 DEX-COOL antifreeze and clean water to the coolant surge tank. Fill the cooling system as indicated below: For L61/LAT vehicles when the engine block is not drained, add 3.5 liters (3.7 qts) For L61/LAT vehicles when the engine block is drained, add 6 liters (6.3 qts) For L66 vehicles, add 5 liters (5.3 qts)
- Start the engine and check for leaks.
- Run the engine and cycle the vehicle from idle to 3,000 RPM in 30 second intervals until the engine cooling fan comes ON, the engine cooling fan turns ON at approximately 102°C (216°F). Repeat this process twice before the engine is turned OFF.
- Return the engine to idle, and idle for 30 seconds, then turn the engine OFF.
- Allow the vehicle to cool, before adding additional coolant.
- Add additional coolant to the surge tank until the level is approximately 13 mm (0.5 in) above the surge tank seam.
- Install the coolant surge tank cap.
J 43651 Water Pump Holding Tool. See Special Tools .
J 43651 Water Pump Holding Tool. See Special Tools .
Cooling Fan Control
The engine cooling fan system consists of one cooling fan and two relays with the 2.2L and the 2.4L 4 cylinder engines and 2 cooling fans and 3 relays with the 3.5L V6 engine. The relays are powered by the battery positive voltage circuit and controlled by a switched ground from the engine control module (ECM) or powertrain control module (PCM).
During operation, the ECM/PCM supplies the ground path for the low speed relay, which is relay 1, and the high speed relay, which is relay 2, through the cooling fan relay control circuit. This energizes the cooling fan relay coil, closes the relay contacts, and supplies battery positive voltage from the cooling fan fuse through the cooling fan motor supply voltage circuit to the cooling fan. The cooling fan motor is grounded through its own ground circuit.
The ECM/PCM commands the fan on under the following conditions
- Engine coolant temperature exceeds approximately 114°C (237°F) - 2.2L and 2.4L.
- Engine coolant temperature exceeds approximately 98°C (208°F) Low Fan Speed - L66/3.5L.
- Engine coolant temperature exceeds approximately 102°C (216°F) High Fan Speed - L66/3.5L.
- A/C refrigerant pressure exceeds 2,945 kPa (427 psi) -2.2L and 2.4L.
- A/C refrigerant pressure exceeds 361 kPa (52 psi) Low Fan Speed - L66/3.5L.
- A/C refrigerant pressure exceeds 2100 kPa (300 psi) High Fan Speed - L66/3.5L.
- With the L66 V6 engine, when the engine coolant temperature exceeds 112°C (234°F) at key off, the fan high speed will run for up to 300 seconds. If within that time frame 102°C (216°F) is reached then fan speed will change from high to low speed. If within that time frame 99°C (210°F) is reached then fan speed will change from low to off.
The ECM/PCM commands the fan off under the following conditions
- A/C is requested and engine speed exceeds 6,250 RPM - 2.2L and 2.4L.
- A/C is requested and engine speed exceeds 6,240 RPM - L66/3.5L.
- Engine coolant temperature exceeds approximately 99°C (210°F) turns the cooling fans from low to off - L66/3.5L
When the request for fan activation is withdrawn, the fan may not turn OFF until the ignition switch is moved to the OFF position or the vehicle speed exceeds approximately 10 mph. This is to prevent a fan from cycling ON and OFF excessively at idle.
The engine cooling fan system consists of one cooling fan and two relays with the L61 4 cylinder engine and two cooling fans and three relays with the L66 V6 engine. The relays are powered by the battery positive voltage circuit and controlled by a switched ground from the engine control module (ECM) or powertrain control module (PCM).
During operation, the ECM/PCM supplies the ground path for the cooling fan relays through the cooling fan relay control circuit. This energizes the cooling fan relay coil, closes the relay contacts, and supplies battery positive voltage from the cooling fan fuse through the cooling fan motor supply voltage circuit to the cooling fan. The cooling fan motor is grounded through its own ground circuit.
The ECM/PCM commands the fan on under the following conditions
- Engine coolant temperature exceeds approximately 114°C (237°F) - L61/2.2L.
- Engine coolant temperature exceeds approximately 98°C (208°F) Low Fan Speed - L66/3.5L.
- Engine coolant temperature exceeds approximately 102°C (216°F) High Fan Speed - L66/3.5L.
- A/C refrigerant pressure exceeds 2,945 kPa (427 psi) - L61/2.2L.
- A/C refrigerant pressure exceeds 361 kPa (52 psi) Low Fan Speed - L66/3.5L.
- A/C refrigerant pressure exceeds 2100 kPa (300 psi) High Fan Speed - L66/3.5L.
- With the L66 V6 engine, when the engine coolant temperature exceeds 112°C (234°F) at key off, the fan high speed will run for up to 300 seconds. If within that time frame 102°C (216°F) is reached then fan speed will change from high to low speed. If within that time frame 99°C (210°F) is reached then fan speed will change from low to off.
The ECM/PCM commands the fan off under the following conditions
- A/C is requested and engine speed exceeds 6,250 RPM - L61/2.2L.
- A/C is requested and engine speed exceeds 6,240 RPM - L66/3.5L.
- Engine coolant temperature exceeds approximately 99°C (210°F) turns the cooling fans from low to off - L66/3.5L
LOW COOLANT LEVEL
The IPC illuminates the low coolant warning indicator when any of the following occur
- The BCM detects a low coolant level condition for at least 30 seconds. The IPC receives a class 2 message from the BCM requesting illumination.
- The IPC performs the displays test at the start of each ignition cycle. The indicator illuminates for approximately 3 seconds.
Coolant Heater
The optional engine coolant heater (RPO K05) operates using 110-volt AC external power and is designed to warm the coolant in the engine block area for improved starting in very cold weather -29°C (-20°F). The coolant heater helps reduce fuel consumption when a cold engine is warming up. The unit is equipped with a detachable AC power cord. A weather shield on the cord is provided to protect the plug when not in use.
The cooling system's function is to maintain an efficient engine operating temperature during all engine speeds and operating conditions. The cooling system is designed to remove approximately one-third of the heat produced by the burning of the air-fuel mixture. When the engine is cold, the coolant does not flow to the radiator until the thermostat opens. This allows the engine to warm quickly.
Charge Air Cooling System (LSJ Only)
The charge air cooling systems function is to reduce the temperature of the air charge that is heated during the supercharging process which improves the efficiency of the supercharging system. The charge air cooling system is a water-to-air system that uses a dedicated electric coolant pump, a modified intake manifold, and a separate charge air cooling radiator located between the condenser and the radiator to cool the air charge.
Cooling Cycle
Coolant flows from the radiator outlet and into the water pump inlet. Some coolant flows from the water pump, to the heater core, then back to the water pump. This provides the passenger compartment with heat and defrost capability as the coolant warms up.
Coolant also flows from the water pump outlet and into the engine block. In the engine block, the coolant circulates through the water jackets surrounding the cylinders where it absorbs heat.
The coolant then flows through the cylinder head gasket openings and into the cylinder heads. In the cylinder heads, the coolant flows through the water jackets surrounding the combustion chambers and valve seats, where it absorbs additional heat.
From the cylinder heads, the coolant flows to the thermostat. The flow of coolant will either be stopped at the thermostat until the engine reaches normal operating temperature, or it will flow through the thermostat and into the radiator where it is cooled. At this point, the coolant flow cycle is completed.
Efficient operation of the cooling system requires proper functioning of all cooling system components. The cooling system consists of the following components
Coolant
The engine coolant is a solution made up of a 50-50 mixture of DEX-COOL and suitable drinking water. The coolant solution carries excess heat away from the engine to the radiator, where the heat is dissipated to the atmosphere.
Radiator
The radiator is a heat exchanger. It consists of a core and two tanks. The aluminum core is a tube and fin crossflow design that extends from the inlet tank to the outlet tank. Fins are placed around the outside of the tubes to improve heat transfer to the atmosphere.
The inlet and outlet tanks are a molded, high temperature, nylon reinforced plastic material. A high temperature rubber gasket seals the tank flange edge to the aluminum core. The tanks are clamped to the core with clinch tabs. The tabs are part of the aluminum header at each end of the core.
The radiator also has a drain cock located in the bottom of the right hand tank. The drain cock unit includes the drain cock and drain cock seal.
The radiator removes heat from the coolant passing through it. The fins on the core transfer heat from the coolant passing through the tubes. As air passes between the fins, it absorbs heat and cools the coolant.
Pressure Cap
The pressure cap seals the cooling system. It contains a blow off or pressure valve and a vacuum or atmospheric valve. The pressure valve is held against its seat by a spring, which protects the radiator from excessive cooling system pressure. The vacuum valve is held against its seat by a spring, which permits opening of the valve to relieve vacuum created in the cooling system as it cools off. The vacuum, if not relieved, might cause the radiator and/or coolant hoses to collapse.
The pressure cap allows cooling system pressure to build up as the temperature increases. As the pressure builds, the boiling point of the coolant increases. Engine coolant can be safely run at a temperature much higher than the boiling point of the coolant at atmospheric pressure. The hotter the coolant is, the faster the heat transfers from the radiator to the cooler, passing air.
The pressure in the cooling system can get too high. When the cooling system pressure exceeds the rating of the pressure cap, it raises the pressure valve, venting the excess pressure.
As the engine cools down, the temperature of the coolant drops and a vacuum is created in the cooling system. This vacuum causes the vacuum valve to open, allowing outside air into the surge tank. This equalizes the pressure in the cooling system with atmospheric pressure, preventing the radiator and coolant hoses from collapsing.
Surge Tank
The surge tank is a plastic tank that the pressure cap mounts onto. The tank is mounted at a point higher than all other coolant passages. The surge tank provides an air space in the cooling system. The air space allows the coolant to expand and contract. The surge tank also provides a coolant fill point and a central air bleed location. During vehicle use, the coolant heats and expands. The coolant that is displaced by this expansion flows into the surge tank. As the coolant circulates, air is allowed to exit. This is an advantage to the cooling system. Coolant without bubbles absorbs heat much better than coolant with bubbles.
Air Baffles and Seals
The cooling system uses deflectors, air baffles and air seals to increase cooling system capability. Deflectors are installed under the vehicle to redirect airflow beneath the vehicle and through the radiator to increase engine cooling. Air baffles are also used to direct airflow through the radiator and increase cooling capability. Air seals prevent air from bypassing the radiator and A/C condenser, and prevent recirculation of hot air for better hot weather cooling and A/C condenser performance.
Water Pump
The water pump is a centrifugal vane impeller type pump. The pump consists of a housing with coolant inlet and outlet passages and an impeller. The impeller is mounted on the pump shaft and consists of a series of flat or curved blades or vanes on a flat plate. When the impeller rotates, the coolant between the vanes is thrown outward by centrifugal force.
The impeller shaft is supported by one or more sealed bearings. The sealed bearings never need to be lubricated. Grease cannot leak out, dirt and water cannot get in as long as the seal is not damaged or worn.
The purpose of the water pump is to circulate coolant throughout the cooling system. The water pump is driven by the crankshaft via the timing chain.
Thermostat
The thermostat is a coolant flow control component. It's purpose is to help regulate the operating temperature of the engine. It utilizes a temperature sensitive wax-pellet element. The element connects to a valve through a small piston. When the element is heated, it expands and exerts pressure against the small piston. This pressure forces the valve to open. As the element is cooled, it contracts. This contraction allows a spring to push the valve closed.
When the coolant temperature is below the rated thermostat opening temperature, the thermostat valve remains closed. This prevents circulation of the coolant to the radiator and allows the engine to warm up. After the coolant temperature reaches the rated thermostat opening temperature, the thermostat valve will open. The coolant is then allowed to circulate through the thermostat to the radiator where the engine heat is dissipated to the atmosphere. The thermostat also provides a restriction in the cooling system, after it has opened. This restriction creates a pressure difference which prevents cavitation at the water pump and forces coolant to circulate through the engine block.
Transmission Oil Cooler
The transmission oil cooler is a heat exchanger. It is located inside the left side end tank of the radiator. The transmission fluid temperature is regulated by the temperature of the engine coolant in the radiator.
The transmission oil pump, pumps the fluid through the transmission oil cooler line to the transmission oil cooler. The fluid then flows through the cooler where the engine coolant absorbs heat from the fluid. The fluid is then pumped through the transmission oil cooler return line, to the transmission.