Showing posts with label Circuit/System Verification. Show all posts
Showing posts with label Circuit/System Verification. Show all posts

Wednesday, January 27, 2021

2010 Cadillac Truck SRX AWD V6-3.0L Page 1411

2010 Cadillac Truck SRX AWD V6-3.0L Page 1411



Circuit/System Verification



1. Engine at operating temperature, all accessories OFF, and engine speed greater than 2,000 RPM, observe the Knock Retard and Total Knock



Retard parameters. The parameters should be 0掳.



2. Engine idling, move the related harnesses and connectors for the KS circuits while observing the scan tool Knock Retard and Total Knock



Retard parameters. The parameters should remain steady with no abrupt changes.



3. Operate the vehicle within the Conditions for Running the DTC to verify the DTC does not reset. You may also operate the vehicle within the



conditions that you observed from the Freeze Frame/Failure Records data.



Circuit/System Testing



Note:



* Perform the Diagnostic System Check - Vehicle (See: Testing and Inspection/Initial Inspection and Diagnostic Overview/Diagnostic System



Check - Vehicle) prior to using these diagnostic procedures.



* If an engine mechanical noise can be heard, repair the condition before proceeding with this diagnostic. Refer to Symptoms - Engine



Mechanical (See: Engine, Cooling and Exhaust/Engine/Testing and Inspection/Symptom Related Diagnostic Procedures/Symptoms -



Engine Mechanical).



P0324, P0326 and P0331



1. Using a scan tool, verify DTCs P0335 or P0336 are not set.



瀚慖f any of the DTCs are set, diagnose them first. Refer to Diagnostic Trouble Code (DTC) List - Vehicle (See: Diagnostic Trouble Code



Descriptions/Diagnostic Trouble Code (DTC) List - Vehicle).



2. Verify the following conditions do not exist.



* A loose or broken vehicle accessory



* A loose or broken accessory bracket



* Excessive engine mechanical noise



瀚慖f any of the conditions exist, repair as necessary.



3. Replace the K20 ECM if no external knock sensor circuit issues exist.



P0325, P0327, P0328, P0330, P0332, and P0333



1. Ignition OFF, disconnect the affected B68 KS.



2. Verify the affected B68 KS is properly tightened, refer to Fastener Tightening Specifications (See: Powertrain Management/Specifications).



3. Ignition OFF, with appropriate length jumper wires, connect the B68A KS1 harness to the B68B KS2 sensor and the B68B KS2 harness to



the B68A KS1 sensor.



4. Monitor the DTCs using a scan tool. Operate the vehicle within the conditions for running the DTC. Verify the fault does not follow the



sensor in question.



瀚慖f the fault follows the sensor in question, replace the appropriate B68 KS.



5. Ignition OFF, remove the jumper wires from the previous step.



6. Ignition ON, measure for 1-4 V between each of the following circuits and ground on the K20 ECM side of the harness connector:



* The B68 KS signal circuit, terminal A or 1



* The B68 KS signal circuit, terminal B or 2



瀚慖f less than the specified range, test the circuits for a short to ground or an open/high resistance. If the circuits test normal, replace the



K20 ECM.



瀚慖f greater than the specified range, test the circuits for a short to voltage. If the circuits test normal, replace the K20 ECM.



7. Test for intermittent or poor connections at the ECM, B68 KS, and in-line connectors where present.



8. If all circuits test normal, replace the K20 ECM.



P06B6 or P06B7



1. Using a scan tool, verify the following DTCs are not set: P0325, P0327, P0328, P0330, P0332, and P0333.



瀚慖f any of the DTCs are set, diagnose them first.



2. DTCs P06B6 and P06B7 indicate an internal ECM circuitry failure. Verify the external knock sensor circuits and connectors for proper



condition.



瀚慖f no external knock sensor circuit issues exist, replace the K20 ECM.

Tuesday, January 26, 2021

2010 Cadillac Truck SRX AWD V6-3.0L Page 1073

2010 Cadillac Truck SRX AWD V6-3.0L Page 1073



Circuit/System Verification



Note: The engine oil level and the oil pressure are critical to the correct operation of the camshaft position actuator system. Verify that the



engine has the correct oil level and the correct oil pressure before continuing with this diagnostic.



1. Ignition ON, observe the scan tool DTC information. Verify that none of the following DTCs are set. DTC P0016, P0017, P0018, P0019,



P0335, P0336, P0338, P0341, P0342, P0343, P0346, P0347, P0348, P0366, P0367, P0368, P0391, P0392, P0393, P0521, P0522, P0523,



P0638, P2100, P2101, P2102, P2103, or P2119.



瀚慖f any of the DTCs are set, refer to Diagnostic Trouble Code (DTC) List - Vehicle (See: Diagnostic Trouble Code



Descriptions/Diagnostic Trouble Code (DTC) List - Vehicle) for further diagnosis.



2. Engine idling, command the appropriate Camshaft Position Actuator from 0 degrees to 40 degrees and back to zero while observing the



appropriate scan tool Camshaft Position Variance parameters. The Camshaft Position Variance should be less than 2 degrees in each of the



commanded states.



3. Operate the vehicle within the Conditions for Running the DTC to verify the DTC does not reset. You may also operate the vehicle within the



conditions that you observed from the Freeze Frame/Failure Records data.



Circuit/System Testing



1. Ignition OFF, disconnect the harness connector at the appropriate Q6 Camshaft Position Actuator Solenoid Valve.



2. Ignition ON, load test for B+ between the ignition circuit terminal 1 and ground.



瀚慖f less than the specified range, test the ignition voltage circuit for a short to ground or an open/high resistance. If the circuit tests normal



and the ignition circuit fuse is open, test all the components connected to the ignition circuit and replace as necessary.



Note: Use the J 35616-200 - Test Lamp Kit for this test. If the J 35616-200 - Test Lamp Kit is not available, use a test lamp that measures



greater than 20 ohm.



3. Connect a test lamp between the control circuit terminal 2 and B+.



Note: The voltage must be measured at the control side of the circuit.



4. Command the appropriate Camshaft Position Actuator Solenoid Valve ON with a scan tool. Load test for less than 1 V between the control



circuit terminal 2 and ground.



瀚慖f greater than the specified range, test the control circuit for an open/high resistance. If the circuit/connections test normal, replace the



K20 Engine Control Module.



5. Remove the Camshaft Position Actuator Solenoid Valve. Inspect the Camshaft Position Actuator Solenoid Valve and mounting area for the



following conditions:



* For a torn, restricted, mis-positioned, or missing screens at the Camshaft Position Actuator Solenoid Valve



* For engine oil leaks between the oil sealing lands of the Camshaft Position Actuator Solenoid Valve. Inspect the lands of the Camshaft



Position Actuator Solenoid Valve for nicks



* For oil seepage at the Camshaft Position Actuator Solenoid Valve connector



瀚慖f a condition is found, replace Q6 Camshaft Position Actuator Solenoid Valve.



6. Ignition OFF, swap the appropriate Camshaft Position Actuator Solenoid Valve with a Camshaft Position Actuator Solenoid Valve that is



operating correctly.



7. Engine idling. Command the appropriate Camshaft Position Actuator from 0 degrees to 40 degrees and back to zero while observing the



appropriate scan tool Camshaft Position Variance parameters. The Camshaft Position Variance should be less than 2 degrees in each of the



commanded states.



瀚慖f greater than the specified value, replace the mechanical camshaft position actuator.



8. If all circuits/connections test normal, test or replace the Q6 Camshaft Position Actuator Solenoid Valve.



Component Testing



1. Ignition OFF, disconnect the harness connector at the appropriate Q6 Camshaft Position Actuator Solenoid Valve.



2. Test for 7-12 ohm between the control terminal 2 and the ignition terminal 1 of the Q6 Camshaft Position Actuator Solenoid Valve.



瀚慖f not within the specified range, replace the Q6 Camshaft Position Actuator Solenoid Valve.



3. Test for infinite resistance between each terminal and the Q6 Camshaft Position Actuator Solenoid Valve housing.



瀚慖f not the specified value, replace the Q6 Camshaft Position Actuator Solenoid Valve.

Saturday, January 23, 2021

2010 Cadillac Truck SRX AWD V6-3.0L Page 360

2010 Cadillac Truck SRX AWD V6-3.0L Page 360



Circuit/System Verification



1. Using either the power door lock switches or the remote keyless transmitter, LOCK all doors then UNLOCK all doors. This will set the



liftgate module door lock status to unlock.



2. With the liftgate closed, select either the 3/4 or Max position on the S45B liftgate control switch-interior and activate the power open. The



liftgate should power open



3. With the liftgate open, activate the power close. The liftgate should power close



Circuit/System Testing



1. Ignition OFF, disconnect the X2 harness connector at the K39 liftgate control module.



2. Ignition ON, verify that a test lamp illuminates between the B+ circuit terminal 3 and ground.



瀚慖f the test lamp does not illuminate, test the B+ circuit for a short to ground or an open/high resistance. If the circuit tests normal and the



B+ fuse is open, test each of the circuits listed below for a short to ground or a faulty motor.



* Control circuit terminal 1 X1 - A23C liftgate latch assembly



* Control circuit terminal 2 X1 - A23C liftgate latch assembly



* Control circuit terminal 1 X3 - M17 liftgate motor



* Control circuit terminal 2 X3 - M17 liftgate motor



3. Ignition OFF, connect the X2 harness connector at the K39 liftgate control module and disconnect the harness connector at the M17 liftgate



motor assembly.



4. Test for less than 30k ohm between the control circuit terminal A and ground.



瀚慖f greater than the specified range, test the control circuit for a short to voltage or an open/high resistance. If the circuit tests normal,



replace the K39 liftgate control module.



5. Test for less than 30k ohm between the control circuit terminal B and ground.



瀚慖f greater than the specified range, test the control circuit for a short to voltage or an open/high resistance. If the circuit tests normal,



replace the K39 liftgate control module.



Note: Verify that the interior liftgate control switch is in the 3/4 or MAX position



6. Connect a test lamp between the control circuit terminal A and control circuit terminal B.



7. Ignition ON, with the liftgate in the open position, command the liftgate to CLOSE by pressing the B70 liftgate close switch. The test lamp



should illuminate during the CLOSE command.



瀚慖f the test lamp does not illuminate, test control circuit terminal A for a short to ground. If the circuit tests normal, replace the K39 liftgate



control module.



8. With the liftgate in the closed position, command the liftgate to OPEN by pressing the S46 liftgate handle switch. The test lamp should



illuminate during the OPEN command.



瀚慖f the test lamp does not illuminate, test control circuit terminal B for a short to ground. If the circuit tests normal, replace the K39 liftgate



control module.



9. If all circuits test normal, test or replace the M17 liftgate motor assembly.



Repair Instructions



Perform the Diagnostic Repair Verification (See: Verification Tests) after completing the diagnostic repair.



* Liftgate Hydraulic Pump Replacement (See: Body and Frame/Doors, Hood and Trunk/Trunk / Liftgate/Trunk / Liftgate Hydraulic



Pump/Service and Repair/Liftgate Hydraulic Pump Replacement)



* Control Module References (See: Testing and Inspection/Programming and Relearning) for liftgate control module replacement,



programming and setup



B396C



Liftgate Interior Release Open/Close Switch Malfunction - DTC B396C or B396D



Diagnostic Instructions



* Perform the Diagnostic System Check - Vehicle (See: Testing and Inspection/Initial Inspection and Diagnostic Overview/Diagnostic System



Check - Vehicle) prior to using this diagnostic procedure.



* Review Strategy Based Diagnosis (See: Testing and Inspection/Initial Inspection and Diagnostic Overview/Strategy Based Diagnosis) for an



overview of the diagnostic approach.

Sunday, January 17, 2021

2010 Cadillac Truck SRX AWD V6-3.0L Page 1293

2010 Cadillac Truck SRX AWD V6-3.0L Page 1293



Circuit/System Verification



1. Observe the DTC information with a scan tool. DTC P0685 or P1682 should not set.



瀚慖f a DTC is set, refer to Diagnostic Trouble Code (DTC) List - Vehicle (See: Diagnostic Trouble Code Descriptions/Diagnostic Trouble



Code (DTC) List - Vehicle).



2. Engine operating, observe the DTC information with a scan tool. DTC P2147, P2148, P2150, P2151, P2153, P2154, P2156, P2157, P216B,



P216C, P216E, or P216F should not set.



3. Observe the scan tool Current Misfire Counter parameters. The Current Misfire Counters should not increment.



4. Ignition ON, observe the scan tool Cylinder 1-6 Injector Control Circuit Status parameters. Verify the Injector Control Circuit Status



parameters display OK.



5. Operate the vehicle within the Conditions for Running the DTC to verify the DTC does not reset. You may also operate the vehicle within the



conditions that you observed from the Freeze Frame/Failure Records data.



Circuit/System Testing



1. Ignition OFF, disconnect the appropriate multi-way harness connector X198 or X199, at the rear of the intake manifold.



2. Ignition ON, observe the appropriate scan tool Cylinder 1-6 Injector Control Circuit Status. The parameter should display Open.



瀚慖f not the specified value, test the appropriate high voltage supply circuit, ECM side, for a short to ground or the appropriate high voltage



control circuit, ECM side, for a short to voltage. If the circuits test normal, replace the K20 ECM.



3. Ignition ON, connect a test lamp between the appropriate high voltage supply circuit and the high voltage control circuit. The Injector



Control Circuit Status should transition from Open to OK.



瀚慖f not the specified value, test for the following conditions in the ECM side of the harness:



* An open/high resistance in the high voltage supply circuit



* An open/high resistance in the high voltage control circuit



* A short to ground in the high voltage control circuit



* A short to voltage in the high voltage supply circuit



瀚慖f the circuits test normal, replace the K20 ECM.



Note: Testing for the following steps is performed on the fuel injector side of the multi-way harness connector. It may be necessary to



remove the intake manifold to isolate the condition.



4. Ignition OFF, measure the resistance between the appropriate high voltage supply circuit and ground. The DMM should display OL ohm.



瀚慖f less than the specified range, test the high voltage supply circuit and the high voltage control circuit for a short to ground. If the



circuits/connections test normal, test or replace the appropriate Q17 fuel injector(s).



5. Test for 2-3 ohm between the appropriate high voltage supply circuit and high voltage control circuit.



瀚慖f less than the specified range, test for a short between the high voltage supply circuit and high voltage control circuit. If the



circuits/connections test normal, test or replace the appropriate Q17 fuel injector(s).



瀚慖f greater than the specified range, test the high voltage supply circuit and high voltage control circuit for an open/high resistance. If the



circuits/connections test normal, test or replace the appropriate Q17 fuel injector.



Component Testing



* Fuel Injector Solenoid Coil Test (LAU) (See: Powertrain Management/Fuel Delivery and Air Induction/Fuel Injector/Testing and Inspection



)Fuel Injector Solenoid Coil Test (LF1, LFW) (See: Powertrain Management/Fuel Delivery and Air Induction/Fuel Injector/Testing and



Inspection)



* Fuel Injector Balance Test (LAU) (See: Powertrain Management/Computers and Control Systems/Testing and Inspection/Component Tests



and General Diagnostics/Fuel Injector Balance Test)Fuel Injector Balance Test (LF1, LFW) (See: Powertrain Management/Computers and



Control Systems/Testing and Inspection/Component Tests and General Diagnostics/Fuel Injector Balance Test)



Repair Instructions



Perform the Diagnostic Repair Verification (See: Verification Tests) after completing the diagnostic procedure.



* Fuel Injection Fuel Rail Assembly Replacement - Bank 1 (LF1) (See: Powertrain Management/Fuel Delivery and Air Induction/Fuel



Rail/Service and Repair/Fuel Injection Fuel Rail Assembly Replacement - Bank 1)



* Fuel Injection Fuel Rail Assembly Replacement - Bank 2 (LF1) (See: Powertrain Management/Fuel Delivery and Air Induction/Fuel



Rail/Service and Repair/Fuel Injection Fuel Rail Assembly Replacement - Bank 2)



* Control Module References (See: Testing and Inspection/Programming and Relearning) for ECM replacement, setup, and programming

Friday, January 15, 2021

2010 Cadillac Truck SRX AWD V6-3.0L Page 1138

2010 Cadillac Truck SRX AWD V6-3.0L Page 1138



Circuit/System Verification



1. Verify that DTC P0117, P0118, or P0119 is not set.



瀚慖f any of the DTCs are set, refer to Diagnostic Trouble Code (DTC) List - Vehicle (See: Diagnostic Trouble Code



Descriptions/Diagnostic Trouble Code (DTC) List - Vehicle).



2. Inspect the engine coolant level. Verify that the cooling system is operating correctly.



瀚慖f you suspect a condition with engine cooling system, refer to Loss of Coolant (See: Engine, Cooling and Exhaust/Cooling



System/Testing and Inspection/Symptom Related Diagnostic Procedures/Loss of Coolant).



3. Ignition ON, verify the P0116 Freeze Frame Start Up ECT and the Start Up IAT parameters are within 14掳C (25掳F).



4. Operate the vehicle within the Conditions for Running the DTC to verify the DTC does not reset. You may also operate the vehicle within the



conditions that you observed from the Freeze Frame/Failure Records data.



Circuit/System Testing



1. Ignition OFF, disconnect the harness connector at the B34 ECT sensor.



Caution: Do NOT use a test lamp to test the continuity of the circuit. Damage to the control module may occur due to excessive current



draw.



Note: The control module or the sensor may be damaged if the circuit is shorted to battery positive voltage.



2. Test for less than 5 ohm between the low reference circuit terminal A and ground.



瀚慖f greater than the specified range, test the low reference circuit for an open/high resistance, or for a short to voltage. If the circuit tests



normal, replace the K20 ECM.



3. Ignition ON, verify that the scan tool ECT sensor parameter is at -40掳C (-40掳F).



瀚慖f warmer than the specified value, test the signal circuit for a short to ground. If the circuit tests normal, replace the K20 ECM.



Note: If the fuse in the jumper wire opens, the signal circuit is shorted to a voltage and the sensor may be damaged.



4. Ignition ON, install a 3 A fused jumper wire between the signal circuit terminal A and the low reference circuit terminal B. Verify the ECT



sensor parameter is warmer than 142掳C (288掳F).



瀚慖f colder than the specified value, test the signal circuit for a short to voltage or an open/high resistance. If the circuit tests normal, replace



the K20 ECM.



5. If all circuits test normal, test or replace the B34 ECT sensor.



Component Testing



1. Ignition OFF, disconnect the harness connector at the B34 engine coolant temperature (ECT) sensor.



Note: A thermometer can be used to test the sensor off the vehicle.



2. Test the ECT sensor by varying the sensor temperature while monitoring the sensor resistance. Compare the readings with the Temperature



Versus Resistance - Engine Coolant Temperature Sensor (See: Powertrain Management/Computers and Control



Systems/Specifications/Temperature Versus Resistance - Engine Coolant Temperature Sensor) table and verify that the resistance is within 5



% of the specification.



瀚慖f not within the specified range, replace the B34 ECT sensor.



Repair Instructions



Perform the Diagnostic Repair Verification (See: Verification Tests) after completing the diagnostic procedure.



* Engine Coolant Temperature Sensor Replacement (LF1) (See: Engine, Cooling and Exhaust/Cooling System/Engine - Coolant Temperature



Sensor/Switch/Coolant Temperature Sensor/Switch (For Computer)/Service and Repair)Engine Coolant Temperature Sensor Replacement



(LAU) (See: Engine, Cooling and Exhaust/Cooling System/Engine - Coolant Temperature Sensor/Switch/Coolant Temperature



Sensor/Switch (For Computer)/Service and Repair)



* Control Module References (See: Testing and Inspection/Programming and Relearning) for ECM replacement, setup, and programming

Friday, January 1, 2021

2010 Cadillac Truck SRX AWD V6-3.0L Page 1476

2010 Cadillac Truck SRX AWD V6-3.0L Page 1476



Circuit/System Verification



1. If DTC P0340, P0345, P0365, or P0390 are also set, diagnose those DTCs first



2. With the ignition OFF, inspect the engine wiring harnesses carrying the B23 camshaft position sensor circuits for the following conditions:



* Close routing of aftermarket electrical equipment



* Close to solenoids, motors, and relays



瀚慍orrect any wire harness routing or component placement conditions if it is determined to be a possible source of electrical interference.



3. Observe the following scan tool parameters are all incrementing:



* Exhaust Camshaft Position Active Counter Bank 1



* Intake Camshaft Position Active Counter Bank 1



* Exhaust Camshaft Position Active Counter Bank 2



* Intake Camshaft Position Active Counter Bank 2



4. Operate the vehicle within the Conditions for Running the DTC to verify the DTC does not reset. You may also operate the vehicle within the



conditions that you observed from the Freeze Frame/Failure Records data.



Circuit/System Testing



1. Engine idling, move the related harnesses/connectors of the B23 camshaft position sensor while monitoring the scan tool Camshaft Position



Variance parameter. The Camshaft Position Variance parameter should not change when moving the harness/connectors.



瀚慖f the above condition exists, repair the harness/connectors as necessary.



2. Ignition OFF, inspect the B23 camshaft position sensor for correct installation.



瀚慖f the B23 camshaft position sensor is loose, inspect the sensor and the O-ring for damage and replace as necessary.



3. Disconnect the harness connector at the B23 camshaft position sensor.



4. Ignition OFF, all vehicle systems OFF, this may take 2 minutes, test for less than 5 ohm between the low reference circuit terminal B and



ground.



瀚慖f greater than the specified range, test the low reference circuit for an open/high resistance. If the circuit tests normal, replace the K20



ECM.



5. Ignition ON, test for 4.8-5.2 V between the 5 V reference circuit terminal A and ground.



瀚慖f less than the specified range, test the 5 V reference circuit for a short to ground, or an open/high resistance. If the circuit tests normal,



replace the K20 ECM.



瀚慖f greater than the specified range, test the 5 V reference circuit for a short to voltage. If the circuit tests normal, replace the K20 ECM.



6. Test for 4.8-5.2 V between the signal circuit terminal C and ground.



瀚慖f less than the specified range, test the signal circuit for a short to ground or an open/high resistance. If the circuit tests normal, replace



the K20 ECM.



瀚慖f greater than the specified range, test the signal circuit for a short to voltage. If the circuit tests normal, replace the K20 ECM.



7. Ignition OFF, connect a 3 A fused jumper wire to the camshaft position signal circuit terminal C.



8. Ignition ON, momentarily touch the end of the fused jumper wire to ground while monitoring the scan tool camshaft position active counter.



The camshaft position active counter should increment.



瀚慖f the camshaft position active counter does not increment, replace the K20 ECM.



9. If all circuits test normal, replace the B23 camshaft position sensor.



Component Testing



Note: You must perform the Circuit/System Testing before proceeding with Component Testing.



1. Inspect the B23 camshaft position sensor for looseness and correct installation. Remove the camshaft position sensor from the engine and



inspect the sensor and the O-ring for damage.



瀚慖f the sensor is loose, incorrectly installed, or damaged, repair or replace the B23 crankshaft position sensor.



2. Connect the camshaft position sensor connector to the camshaft position sensor. Turn ON the ignition, with the engine OFF.



3. Ignition ON, observe the applicable camshaft position active counter parameter with a scan tool. Pass a steel object by the tip of the sensor

Wednesday, December 30, 2020

2010 Cadillac Truck SRX AWD V6-3.0L Page 625

2010 Cadillac Truck SRX AWD V6-3.0L Page 625



Circuit/System Verification



Verify DTC B3122, B3123, or B3124 is not set.



If any of the DTCs are set, refer to Diagnostic Trouble Code (DTC) List - Vehicle (See: Diagnostic Trouble Code Descriptions/Diagnostic



Trouble Code (DTC) List - Vehicle).



Circuit/System Testing



Note: The A24P passenger exterior door handle assembly has two harness connectors. Of these two harness connectors, make sure that only



the T10N passenger door handle keyless entry antenna harness connector is disconnected. Disconnecting both harness connectors will result



in the inability to activate the antenna and cause an improper diagnosis.



1. Ignition OFF, disconnect the harness connector at the T10N passenger door handle keyless entry antenna.



2. Ignition ON, test for less than 1 V between the signal circuit terminal 1 and ground.



瀚慖f greater than the specified range, test the signal circuit for a short to voltage. If the circuit tests normal, replace the K84 keyless entry



control module.



3. Ignition OFF, install a DMM between the signal circuit terminal 1 and ground. Set the DMM to capture DC voltage using the MIN MAX



function.



4. Lock the vehicle doors using the keyless entry transmitter.



5. Activate the antenna by pulling the passenger exterior door handle. Verify the MAX voltage captured by the DMM is greater than.5 V.



瀚慖f less than the specified range, test the signal circuit for a short to ground or an open/high resistance. If the circuit tests normal, replace



the K84 keyless entry control module.



6. Install a DMM between the signal circuit terminal 1 and the low reference circuit terminal 2. Set the DMM to capture DC voltage using the



MIN MAX function.



7. Lock the vehicle doors using the keyless entry transmitter.



8. Activate the antenna by pulling the passenger exterior door handle. Verify the MAX voltage captured by the DMM is greater than.5 V.



瀚慖f less than the specified range, test the low reference circuit for an open/high resistance. If the circuit tests normal, replace the K84



keyless entry control module.



Note: Install the A24P passenger exterior door handle assembly and verify correct system operation BEFORE painting the assembly. If the



assembly does not correct the concern, return the unpainted part.



9. If all circuits test normal, replace the A24P passenger exterior door handle assembly. Verify DTC B3120 is not set.



瀚慖f the DTC is set, replace the K84 keyless entry control module.



Repair Instructions



Perform the Diagnostic Repair Verification (See: Verification Tests) after completing the diagnostic procedure.



* Front Side Door Outside Handle Replacement (See: Body and Frame/Doors, Hood and Trunk/Doors/Front Door/Front Door Handle/Front



Door Exterior Handle/Service and Repair)



* Control Module References (See: Testing and Inspection/Programming and Relearning)for keyless entry control module replacement, setup,



and programming



B3121



DTC B3121



Diagnostic Instructions



* Perform the Diagnostic System Check - Vehicle (See: Testing and Inspection/Initial Inspection and Diagnostic Overview/Diagnostic System



Check - Vehicle) prior to using this diagnostic procedure.



* Review Strategy Based Diagnosis (See: Testing and Inspection/Initial Inspection and Diagnostic Overview/Strategy Based Diagnosis) for an



overview of the diagnostic approach.



* Diagnostic Procedure Instructions (See: Testing and Inspection/Initial Inspection and Diagnostic Overview/Diagnostic Procedure



Instructions)provides an overview of each diagnostic category.



DTC Descriptors



DTC B3121 02



- Keyless Entry Antenna 3 Short to Ground

Sunday, December 20, 2020

2010 Cadillac Truck SRX AWD V6-3.0L Page 577

2010 Cadillac Truck SRX AWD V6-3.0L Page 577



Circuit/System Verification



Ignition ON, command the High Beams ON and OFF with a scan tool. The high beam headlamps should turn ON and OFF when changing between



the commanded states.



Circuit/System Testing



1. Ignition OFF, disconnect the X5 harness connector at the K9 BCM.



2. Ignition ON, test for greater than 10V between the control circuit terminal 18 and ground.



瀚慖f less than the specified range, test the control circuit for a short to ground or an open/high resistance. If the circuit tests normal, replace



the X50A underhood fuse block.



3. If all circuits test normal, replace the K9 BCM.



Repair Instructions



Perform the Diagnostic Repair Verification (See: Verification Tests) after completing the diagnostic procedure.



* Fuse Block Replacement (See: Maintenance/Fuses and Circuit Breakers/Fuse Block/Service and Repair/Removal and Replacement/Fuse



Block Replacement)



* Control Module References (See: Testing and Inspection/Programming and Relearning) for BCM, replacement, programming and setup



B2585



DTC B2585 or B3867



Diagnostic Instructions



* Perform the Diagnostic System Check - Vehicle (See: Testing and Inspection/Initial Inspection and Diagnostic Overview/Diagnostic System



Check - Vehicle) prior to using this diagnostic procedure.



* Review Strategy Based Diagnosis (See: Testing and Inspection/Initial Inspection and Diagnostic Overview/Strategy Based Diagnosis) for an



overview of the diagnostic approach.



* Diagnostic Procedure Instructions (See: Testing and Inspection/Initial Inspection and Diagnostic Overview/Diagnostic Procedure



Instructions) provides an overview of each diagnostic category.



DTC Descriptors



DTC B2585 02



- Park Lamps Control Circuit Short to Ground



DTC B3867 02



- Right Park Lamp Control Circuit Short to Ground



Diagnostic Fault Information



Circuit/System Description



The body control module (BCM) energizes the park lamps by applying voltage to the park lamp control circuit. When the park lamp control circuit



is energized, the park lamps are illuminated.



Conditions for Running the DTC



Headlamp switch in park or low beam position.



Conditions for Setting the DTC



B2585 02



The BCM detects a short to ground on the left side park lamp control circuit.

Tuesday, December 15, 2020

2010 Cadillac Truck SRX AWD V6-3.0L Page 702

2010 Cadillac Truck SRX AWD V6-3.0L Page 702



Circuit/System Verification



Ignition ON, observe the scan tool Exterior Driver Door Handle Switch parameter while pulling and releasing the B27A door handle switch - driver



exterior. The parameter should change between Active and Inactive.



Circuit/System Testing



1. Ignition OFF, disconnect the harness connector at the B27A door handle switch - driver exterior.



2. Ignition ON, verify the scan tool Exterior Driver Door Handle Switch parameter is Inactive.



瀚慖f not the specified value, test the signal circuit terminal 2 for a short to ground. If the circuit tests normal, replace the K84 keyless entry



control module.



3. Connect the a 3 A jumper harness between the signal circuit terminal 2 and ground. Verify the scan tool Exterior Driver Door Handle Switch



parameter is Active.



瀚慖f not the specified value, test the signal circuit terminal 2 for a open/high resistance. If the circuit tests normal, replace the K84 keyless



entry control module.



4. If all circuits test normal, test or replace the B27A door handle switch - driver exterior.



Component Testing



Static Test



1. Ignition OFF, disconnect the harness connector at the B27A door handle switch - driver exterior.



2. With the switch in the open position, test for infinite resistance between the signal terminal 2 and the ground terminal 1.



瀚慖f not the specified value, replace the B27A door handle switch - driver exterior.



3. With the switch in the closed position, test for less than 5 ohm between the signal terminal 2 and the ground terminal 1



瀚慖f greater than the specified range, replace the B27A door handle switch - driver exterior.



Repair Instructions



Perform the Diagnostic Repair Verification (See: Verification Tests) after completing the diagnostic procedure.



* Front Side Door Outside Handle Replacement (See: Body and Frame/Doors, Hood and Trunk/Doors/Front Door/Front Door Handle/Front



Door Exterior Handle/Service and Repair)



* Control Module References (See: Testing and Inspection/Programming and Relearning) for keyless entry control module replacement,



setup, and programming



B3867



DTC B2585 or B3867



Diagnostic Instructions



* Perform the Diagnostic System Check - Vehicle (See: Testing and Inspection/Initial Inspection and Diagnostic Overview/Diagnostic System



Check - Vehicle) prior to using this diagnostic procedure.



* Review Strategy Based Diagnosis (See: Testing and Inspection/Initial Inspection and Diagnostic Overview/Strategy Based Diagnosis) for an



overview of the diagnostic approach.



* Diagnostic Procedure Instructions (See: Testing and Inspection/Initial Inspection and Diagnostic Overview/Diagnostic Procedure



Instructions) provides an overview of each diagnostic category.



DTC Descriptors



DTC B2585 02



- Park Lamps Control Circuit Short to Ground



DTC B3867 02



- Right Park Lamp Control Circuit Short to Ground



Diagnostic Fault Information

Monday, December 14, 2020

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2010 Cadillac Truck SRX AWD V6-3.0L Page 136



Circuit/System Verification



1. Verify that DTC B023A 02 is not present.



瀚慖f DTC is present, refer to Actuator Power Supply Malfunction.



2. Verify that DTC B0223, B022A, B0233, B0408 or B0418 is not set.



瀚慖f DTC is present, refer to Actuator Malfunction.



Circuit/System Testing



Actuator Power Supply Malfunction



1. Ignition OFF, disconnect the harness connector at the appropriate actuator.



2. Ignition ON, verify that a test lamp illuminates between the 12 volt referance circuit terminal 2 and ground.



瀚慖f the test lamp does not illuminate, test the 12 volt referance circuit for a short to ground or an open/high resistance. If the circuit tests



normal test or replace the K33 HVAC control module.



Actuator Malfunction



1. Ignition OFF, disconnect the X3 and X4 harness connector at the K33 HVAC Control Module.



2. Ignition ON, test for 80-200 ohm between the 12 V reference voltage circuit terminal 15 X3 and each control circuit terminal of the



appropriate actuator.



瀚慖f less than the specified range, test for the 12 V reference voltage circuit and the control circuit for a short circuit. If the circuits test



normal, replace the appropriate actuator.



瀚慖f greater than the specified range, test the 12 V reference voltage circuit and the control circuit for an open/high resistance. If the circuits



test normal, replace the appropriate actuator.



3. If all circuits test normal, replace the K33 HVAC Control Module



Repair Instructions



Perform the Diagnostic Repair Verification (See: Verification Tests) after completing the diagnostic procedure.



* HVAC Component Replacement Reference (See: Heating and Air Conditioning/Service and Repair/Removal and Replacement)



* Control Module References (See: Testing and Inspection/Programming and Relearning) for HVAC control module replacement, setup, and



programming



B0033



DTC B0014-B0045



Diagnostic Instructions



* Perform the Diagnostic System Check - Vehicle (See: Testing and Inspection/Initial Inspection and Diagnostic Overview/Diagnostic System



Check - Vehicle) prior to using this diagnostic procedure.



* Review Strategy Based Diagnosis (See: Testing and Inspection/Initial Inspection and Diagnostic Overview/Strategy Based Diagnosis) for an



overview of the diagnostic approach.



* Diagnostic Procedure Instructions (See: Testing and Inspection/Initial Inspection and Diagnostic Overview/Diagnostic Procedure



Instructions) provides an overview of each diagnostic category.



DTC Descriptors



DTC B0014 01



- Driver Seat Side Air Bag Deployment Loop Short to Battery



DTC B0014 02



- Driver Seat Side Air Bag Deployment Loop Short to Ground



DTC B0014 04



- Driver Seat Side Air Bag Deployment Loop Open



DTC B0014 0D



- Driver Seat Side Air Bag Deployment Loop High Resistance



DTC B0014 0E



- Driver Seat Side Air Bag Deployment Loop Low Resistance

Monday, November 30, 2020

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2010 Cadillac Truck SRX AWD V6-3.0L Page 627



Circuit/System Verification



Verify DTC B3122, B3123, or B3124 is not set.



If any of the DTCs are set, refer to Diagnostic Trouble Code (DTC) List - Vehicle (See: Diagnostic Trouble Code Descriptions/Diagnostic



Trouble Code (DTC) List - Vehicle).



Circuit/System Testing



1. Ignition OFF, disconnect the harness connector at the T10G rear fascia keyless entry antenna.



2. Ignition ON, test for less than 1 V between the signal circuit terminal 1 and ground.



瀚慖f greater than the specified range, test the signal circuit for a short to voltage. If the circuit tests normal, replace the K84 keyless entry



control module.



3. Ignition OFF, install a DMM between the signal circuit terminal 1 and ground. Set the DMM to capture DC voltage using the MIN MAX



function.



4. Lock the vehicle using the keyless entry transmitter.



5. Activate the antenna by pressing the rear closure touch pad. Verify the MAX voltage captured by the DMM is greater than.5 V.



瀚慖f less than the specified range, test the signal circuit for a short to ground or an open/high resistance. If the circuit tests normal, replace



the K84 keyless entry control module.



6. Install a DMM between the signal circuit terminal 1 and the low reference circuit terminal 2. Set the DMM to capture DC voltage using the



MIN MAX function.



7. Lock the vehicle using the keyless entry transmitter.



8. Activate the antenna by pressing the rear closure touch pad. Verify the MAX voltage captured by the DMM is greater than.5 V.



瀚慖f less than the specified range, test the low reference circuit for an open/high resistance. If the circuit tests normal, replace the K84



keyless entry control module.



9. If all circuits test normal, replace the T10G rear fascia keyless entry antenna. Verify DTC B3121 is not set.



瀚慖f the DTC is set, replace the K84 keyless entry control module.



Repair Instructions



Perform the Diagnostic Repair Verification (See: Verification Tests) after completing the diagnostic procedure.



* Ignition Lock Key Transmitter Antenna Replacement - Rear Bumper Fascia (See: Accessories and Optional Equipment/Antitheft and Alarm



Systems/Keyless Entry/Antenna - Keyless Entry/Service and Repair/Ignition Lock Key Transmitter Antenna Replacement - Rear Bumper



Fascia)



* Control Module References (See: Testing and Inspection/Programming and Relearning)for keyless entry control module replacement, setup,



and programming



B3122



DTC B3122



Diagnostic Instructions



* Perform the Diagnostic System Check - Vehicle (See: Testing and Inspection/Initial Inspection and Diagnostic Overview/Diagnostic System



Check - Vehicle) prior to using this diagnostic procedure.



* Review Strategy Based Diagnosis (See: Testing and Inspection/Initial Inspection and Diagnostic Overview/Strategy Based Diagnosis) for an



overview of the diagnostic approach.



* Diagnostic Procedure Instructions (See: Testing and Inspection/Initial Inspection and Diagnostic Overview/Diagnostic Procedure



Instructions)provides an overview of each diagnostic category.



DTC Descriptors



DTC B3122 02



- Keyless Entry Antenna 4 Short to Ground



DTC B3122 05



- Keyless Entry Antenna 4 High Voltage/Open



Diagnostic Fault Information

Sunday, October 11, 2020

2010 Cadillac Truck SRX AWD V6-3.0L Page 623

2010 Cadillac Truck SRX AWD V6-3.0L Page 623



Circuit/System Verification



Verify DTC B3122, B3123, or B3124 is not set.



If any of the DTCs are set, refer to Diagnostic Trouble Code (DTC) List - Vehicle (See: Diagnostic Trouble Code Descriptions/Diagnostic



Trouble Code (DTC) List - Vehicle).



Circuit/System Testing



Note: The A24D driver exterior door handle assembly has two harness connectors. Of these two harness connectors, make sure that only the



T10M driver door handle keyless entry antenna harness connector is disconnected. Disconnecting both harness connectors will result in the



inability to activate the antenna and cause an improper diagnosis.



1. Ignition OFF, disconnect the harness connector at the T10M driver door handle keyless entry antenna.



2. Ignition ON, test for less than 1 V between the signal circuit terminal 1 and ground.



瀚慖f greater than the specified range, test the signal circuit for a short to voltage. If the circuit tests normal, replace the K84 keyless entry



control module.



3. Ignition OFF, install a DMM between the signal circuit terminal 1 and ground. Set the DMM to capture DC voltage using the MIN MAX



function.



4. Lock the vehicle doors using the keyless entry transmitter.



5. Activate the antenna by pulling the driver exterior door handle. Verify the MAX voltage captured by the DMM is greater than.5 V.



瀚慖f less than the specified range, test the signal circuit for a short to ground or an open/high resistance. If the circuit tests normal, replace



the K84 keyless entry control module.



6. Install a DMM between the signal circuit terminal 1 and the low reference circuit terminal 2. Set the DMM to capture DC voltage using the



MIN MAX function.



7. Lock the vehicle doors using the keyless entry transmitter.



8. Activate the antenna by pulling the driver exterior door handle. Verify the MAX voltage captured by the DMM is greater than.5 V.



瀚慖f less than the specified range, test the low reference circuit for an open/high resistance. If the circuit tests normal, replace the K84



keyless entry control module.



Note: Install the A24D driver exterior door handle assembly and verify correct system operation BEFORE painting the assembly. If the



assembly does not correct the concern, return the unpainted part.



9. If all circuits test normal, replace the A24D driver exterior door handle assembly. Verify DTC B3119 is not set.



瀚慖f the DTC is set, replace the K84 keyless entry control module.



Repair Instructions



Perform the Diagnostic Repair Verification (See: Verification Tests) after completing the diagnostic procedure.



* Front Side Door Outside Handle Bracket Replacement (See: Body and Frame/Doors, Hood and Trunk/Doors/Front Door/Front Door



Handle/Front Door Exterior Handle/Service and Repair)



* Control Module References (See: Testing and Inspection/Programming and Relearning)for keyless entry control module replacement, setup,



and programming



B3120



DTC B3120



Diagnostic Instructions



* Perform the Diagnostic System Check - Vehicle (See: Testing and Inspection/Initial Inspection and Diagnostic Overview/Diagnostic System



Check - Vehicle) prior to using this diagnostic procedure.



* Review Strategy Based Diagnosis (See: Testing and Inspection/Initial Inspection and Diagnostic Overview/Strategy Based Diagnosis) for an



overview of the diagnostic approach.



* Diagnostic Procedure Instructions (See: Testing and Inspection/Initial Inspection and Diagnostic Overview/Diagnostic Procedure



Instructions)provides an overview of each diagnostic category.



DTC Descriptors



DTC B3120 02



- Keyless Entry Antenna 2 Short to Ground

Sunday, September 13, 2020

2010 Cadillac Truck SRX AWD V6-3.0L Page 462

2010 Cadillac Truck SRX AWD V6-3.0L Page 462



Circuit/System Verification



1. Verify that DTC B1405 02 or B1405 05 is not set.



瀚慖f DTC is present, refer to Ambient Light/Sunload Sensor Power Supply Malfunction.



2. Verify that DTC B0163 02 or B0163 05 is not set.



瀚慖f DTC is present, refer to Passenger Compartment Temperature Sensor Circuit Malfunction.



3. Verify that DTC B0183 02 or B0183 05 is not set.



瀚慖f DTC is present, refer to Sunload Sensor Circuit Malfunction.



4. Measure actual inside air temperature using a thermometer. Compare this value to the scan tool Passenger Compartment Air Temperature



parameter. The measured temperature should be within 5掳C (9掳F) difference of parameter value.



瀚慖f not within the specified range, replace the B10B Ambient Light/Sunload Sensor.



Circuit/System Testing



Ambient Light/Sunload Sensor Power Supply Malfunction



1. Ignition OFF, disconnect the harness connector at the B10B Ambient Light/Sunload Sensor.



2. Test for less than 10 ohm between the B10B Ambient Light/Sunload Sensor ground circuit terminal 6 and ground.



瀚慖f greater than the specified range, test the ground circuit for an open/high resistance. If the circuit tests normal, replace the K33 HVAC



Control Module.



3. Ignition ON, test for battery voltage between the reference voltage circuit terminal 2 and ground.



瀚慖f greater than the specified range, test the reference voltage circuit for an open or short to ground. If the circuit tests normal, replace the



K33 HVAC Control Module.



4. If all circuits test normal, replace the B10B Ambient Light/Sunload Sensor.



Passenger Compartment Temperature Sensor Circuit Malfunction



1. Ignition OFF, disconnect the harness connector at the B10B Ambient Light/Sunload Sensor.



2. Ignition ON, test for 4.8-5.2 V between the signal circuit terminal 3 and ground.



瀚慖f less than the specified range, test the signal circuit terminal for a short to ground or open/high resistance. If the circuit tests normal,



replace the K33 HVAC Control Module.



瀚慖f greater than the specified range, test the signal circuit terminal for a short to battery. If the circuit tests normal, replace the K33 HVAC



Control Module.



3. If all circuits test normal, replace the B10B Ambient Light/Sunload Sensor.



Sunload Sensor Circuit Malfunction



1. Ignition OFF, disconnect the harness connector at the B10B Ambient Light/Sunload Sensor.



2. Ignition ON, test for 4.8-5.2 V between the signal circuit terminal 4 and ground.



瀚慖f less than the specified range, test the signal circuit terminal for a short to ground or open/high resistance. If the circuit tests normal,



replace the K33 HVAC Control Module.



瀚慖f greater than the specified range, test the signal circuit terminal for a short to battery. If the circuit tests normal, replace the K33 HVAC



Control Module.



3. If all circuits test normal, replace the B10B Ambient Light/Sunload Sensor.



Repair Instructions



Perform the Diagnostic Repair Verification (See: Verification Tests) after completing the diagnostic procedure.



* HVAC Component Replacement Reference (See: Heating and Air Conditioning/Service and Repair/Removal and Replacement)



* Control Module References (See: Testing and Inspection/Programming and Relearning) for HVAC control module replacement, setup, and

Friday, June 26, 2020

2010 Cadillac Truck SRX AWD V6-3.0L Page 788

2010 Cadillac Truck SRX AWD V6-3.0L Page 788



Circuit/System Verification



Verify that DTC C078A is not set.



If the DTC is set, replace the tire pressure sensor locator module.



Repair Instructions



Perform the Diagnostic Repair Verification (See: Verification Tests) after completing the repair.



Control Module References (See: Testing and Inspection/Programming and Relearning) for module replacement, setup, and programming



C0110



DTC C0110



Diagnostic Instructions



* Perform the Diagnostic System Check - Vehicle (See: Testing and Inspection/Initial Inspection and Diagnostic Overview/Diagnostic System



Check - Vehicle) prior to using this diagnostic procedure.



* Review Strategy Based Diagnosis (See: Testing and Inspection/Initial Inspection and Diagnostic Overview/Strategy Based Diagnosis) for an



overview of the diagnostic approach.



* Diagnostic Procedure Instructions (See: Testing and Inspection/Initial Inspection and Diagnostic Overview/Diagnostic Procedure



Instructions) provides an overview of each diagnostic category.



DTC Descriptors



DTC C0110 00



- Pump Motor Circuit Malfunction



DTC C0110 04



- Pump Motor Circuit Open



DTC C0110 61



- Pump Motor Circuit Stuck



Diagnostic Fault Information



Circuit/System Description



The pump motor is an integral part of the brake pressure modulator valve assembly, while the pump motor relay is integral to the electronic brake



control module (EBCM). The pump motor relay is not engaged during normal system operation. When the ABS, traction control or stability control



operation is required, the EBCM activates the pump motor relay and turns the pump motor ON.



Conditions for Running the DTC



Ignition ON.



Conditions for Setting the DTC



C0110 00



* An unintentional pump motor activation is detected for 1.785 s.



* An open/high resistance is detected on the pump motor B+ circuit for 1.8 s.



C0110 04



An unintentional pump motor activation is detected for 1.785 s.

Sunday, June 21, 2020

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2010 Cadillac Truck SRX AWD V6-3.0L Page 160



Circuit/System Verification



1. Verify that DTC B0052 00 is not set.



瀚慖f DTC is set, clear the DTC.



2. Verify that DTC B0052 56 is not set.



瀚慖f DTC is set, replace the K36 SDM.



Repair Instructions



Perform the Diagnostic Repair Verification (See: Verification Tests) after completing the diagnostic procedure.



Control Module References (See: Testing and Inspection/Programming and Relearning) for SDM replacement, setup, and programming



B071F



DTC B071F



Diagnostic Instructions



* Perform the Diagnostic System Check - Vehicle (See: Testing and Inspection/Initial Inspection and Diagnostic Overview/Diagnostic System



Check - Vehicle) prior to using this diagnostic procedure.



* Review Strategy Based Diagnosis (See: Testing and Inspection/Initial Inspection and Diagnostic Overview/Strategy Based Diagnosis) for an



overview of the diagnostic approach.



* Diagnostic Procedure Instructions (See: Testing and Inspection/Initial Inspection and Diagnostic Overview/Diagnostic Procedure



Instructions) provides an overview of each diagnostic category.



DTC Descriptor



DTC B071F 39



- Transmission Range Indicator Internal Malfunction



Circuit/System Description



The body control module (BCM) receives LIN-Bus messages from the transmission range indicator module. If there is a checksum or memory



malfunction in the transmission range indicator module it broadcast this message to the BCM.



Conditions for Running the DTC



Ignition ON



Conditions for Setting the DTC



The BCM detects a checksum or memory fault in the transmission range indicator module.



Action Taken When the DTC Sets



The driver information center does not display the actual gear selector position.



Conditions for Clearing the DTC



The DTC becomes history when the condition for setting the DTC is no longer present.



Reference Information



Schematic Reference



Automatic Transmission Controls Schematics (See: Transmission and Drivetrain/Automatic Transmission/Transaxle/Diagrams)



Connector End View Reference



Component Connector End Views (See: Diagrams/Connector Views/Connector End Views By Name)



Description and Operation



Driver Information Center (DIC) Description and Operation (See: Instrument Panel, Gauges and Warning Indicators/Description and



Operation/Driver Information Center (DIC))



Electrical Information Reference

Thursday, June 11, 2020

2010 Cadillac Truck SRX AWD V6-3.0L Page 1515

2010 Cadillac Truck SRX AWD V6-3.0L Page 1515



Circuit/System Verification



1. Ignition ON, observe the scan tool ECM - Fuel Level Sensor parameters. The reading should be between 0.5-3.5 V and vary with fuel level.



2. Ignition ON, perform the Instrument Cluster Gauge Sweep test with the scan tool, verify that the fuel level gauge sweeps from its low to high



position



瀚慖f the fuel level gauge does not sweep, replace the P16 Instrument Cluster.



3. Command the All Indicators test ON and OFF with the scan tool, verify that the low fuel level indicator turns ON and OFF.



瀚慖f the low fuel level indicator always stays on or always off, replace the P16 Instrument Cluster.



Circuit/System Testing



1. Ignition OFF, disconnect the harness connector at the appropriate fuel level sensor.



2. Test for less than 30 ohm at the low reference circuit terminal C.



瀚慖f greater than the specified range, test the low reference circuit for an open/high resistance. If the circuit tests normal, replace the K20



Engine Control Module.



3. Ignition ON, test for 4.8-5.2 V between the signal circuit terminal D and ground.



瀚慖f greater than the specified range, test the signal circuit for a short to voltage. If the circuit tests normal, replace the K20 Engine Control



Module.



瀚慖f less than the specified range, test the signal circuit for a short to ground or an open/high resistance. If the circuit tests normal, replace



the K20 Engine Control Module.



4. If all circuits test normal, replace the appropriate fuel level sensor.



Repair Instructions



Perform the Diagnostic Repair Verification (See: Verification Tests) after completing the diagnostic procedure.



* Primary Fuel Level Sensor Replacement (See: Powertrain Management/Computers and Control Systems/Fuel Level Sensor/Service and



Repair)



* Secondary Fuel Tank Module Replacement (See: Powertrain Management/Fuel Delivery and Air Induction/Fuel Tank Unit/Service and



Repair/Secondary Fuel Tank Module Replacement)



* Control Module References (See: Testing and Inspection/Programming and Relearning) for the ECM replacement, programming and setup



P0462



DTC P0461-P0464, P2066, P2067, or P2068



Diagnostic Instructions



* Perform the Diagnostic System Check - Vehicle (See: Testing and Inspection/Initial Inspection and Diagnostic Overview/Diagnostic System



Check - Vehicle) prior to using this diagnostic procedure.



* Review Strategy Based Diagnosis (See: Testing and Inspection/Initial Inspection and Diagnostic Overview/Strategy Based Diagnosis) for an



overview of the diagnostic approach.



* Diagnostic Procedure Instructions (See: Testing and Inspection/Initial Inspection and Diagnostic Overview/Diagnostic Procedure



Instructions) provides an overview of each diagnostic category.



DTC Descriptors



DTC P0461



- Fuel Level Sensor 1 Performance



DTC P0462



- Fuel Level Sensor 1 Circuit Low Voltage



DTC P0463



- Fuel Level Sensor 1 Circuit High Voltage



DTC P0464



- Fuel Level Sensor Circuit Intermittent



DTC P2066



- Fuel Level Sensor 2 Performance