Showing posts with label 3. Ignition ON. Show all posts
Showing posts with label 3. Ignition ON. Show all posts

Saturday, February 26, 2022

2010 Cadillac Truck SRX FWD V6-3.0L Page 804

2010 Cadillac Truck SRX FWD V6-3.0L Page 804



3. Ignition ON, verify that DTC C0280 54 is not set as a present DTC.



瀚慖f DTC C0280 54 is present, replace the K17 Electronic Brake Control Module (EBCM) and verify DTC does not reset. If the DTC



resets, replace the Q5 brake pressure modulator valve assembly.



Repair Instructions



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



* Brake Pressure Modulator Valve Replacement (See: Brakes and Traction Control/Antilock Brakes / Traction Control Systems/Hydraulic



Control Assembly - Antilock Brakes/Service and Repair/Brake Pressure Modulator Valve Replacement)



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



C0287



DTC C0186, C0196, C019B, or C0287



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 C0186 5A



- Lateral Acceleration Sensor Circuit Not Plausible



DTC C0186 71



- Lateral Acceleration Sensor Circuit Invalid Data



DTC C0196 00



- Yaw Rate Circuit Malfunction



DTC C0196 5A



- Yaw Rate Signal Not Plausible



DTC C019B 5A



- Yaw Rate Signal Not Plausible



DTC C0287 4B



- Longitudinal Acceleration Sensor Circuit Calibration Not Learned



DTC C0287 5A



- Longitudinal Acceleration Sensor Circuit Not Plausible



DTC C0287 71



- Longitudinal Acceleration Sensor Circuit Invalid Data



Diagnostic Fault Information



Circuit/System Description



The yaw rate, lateral acceleration and longitudinal acceleration sensors are combined into one multi-axis acceleration sensor, external to the



electronic brake control module (EBCM). The EBCM supplies a 12 V reference voltage to the multi-axis acceleration sensor. The multi-axis



acceleration sensor communicates with the EBCM via the high speed controller area network (CAN) serial data circuit. The EBCM activates the

Wednesday, November 3, 2021

2010 Cadillac Truck SRX FWD V6-3.0L Page 2021

2010 Cadillac Truck SRX FWD V6-3.0L Page 2021



3. Ignition ON, test for 4.8-5.2 V between the 5 V reference circuit terminal 1 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.



4. Verify the scan tool BARO parameter is less than 1 kPa (0.2 psi).



瀚慖f greater than the specified range, test the signal circuit terminal 3 for a short to voltage. If the circuit tests normal, replace the K20 ECM.



5. Install a 3 A fused jumper wire between the signal circuit terminal 3 and the 5 V reference circuit terminal 1. Verify the scan tool BARO



parameter is greater than 127 kPa (18.4 psi).



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.



6. If the circuits test normal, replace the B17 BARO sensor.



Repair Instructions



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



* Throttle Inlet Absolute Pressure Sensor Replacement (LF1) (See: Powertrain Management/Computers and Control Systems/Absolute



Pressure Sensor/Service and Repair) for BARO sensor replacement



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



programming



P2257



DTC P0418, P2257, or P2258



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 P0418



- Secondary Air Injection Pump Control Circuit



DTC P2257



- Secondary Air Injection Pump Relay Control Circuit Low Voltage



DTC P2258



- Secondary Air Injection Pump Relay Control Circuit High Voltage



Diagnostic Fault Information



Circuit/System Description



The secondary air injection system aids in the reduction of hydrocarbon emissions during a cold start. The electric air pump forces fresh air into the



exhaust stream in order to accelerate the catalyst operation. Ignition voltage is supplied directly to the secondary air injection pump relay. The



engine control module (ECM) controls the relay by grounding the control circuit with a solid state device called a driver. The driver is equipped



with a feedback circuit that is pulled-up to a voltage. The ECM can determine if the control circuit is open, shorted to ground, or shorted to a



voltage by monitoring the feedback voltage.

Monday, April 26, 2021

2010 Cadillac CTS Sedan AWD V6-3.6L Page 699

2010 Cadillac CTS Sedan AWD V6-3.6L Page 699



3. Ignition ON, test for 4.8-5.2 V between the 5 V reference circuit terminals listed below and ground:



* Terminal C (LHD)



* Terminal A (RHD)



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 BCM.



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 BCM.



4. Verify the scan tool BPP Sensor parameter is less than 100 counts.



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



5. Install a 3 A fused jumper wire between the signal circuit terminal B and the 5 V reference circuit terminals listed below. Verify the scan tool



BPP Sensor parameter is greater than 400 counts.



* Terminal C (LHD)



* Terminal A (RHD)



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



BCM.



6. If all circuits test normal, replace the brake pedal position sensor.



C0277 09



1. Replace the brake pedal position sensor.



2. Perform the brake pedal position sensor recalibration procedure. Refer to Brake Pedal Position Sensor Calibration ().



3. Operate the vehicle within the Conditions for Running and Setting the DTC and verify the DTC does not reset.



瀚慖f the DTC resets, replace the BCM.



C0277 4B



1. Verify that the DTC sets under the Conditions for Running and Setting.



2. Perform the brake pedal position sensor recalibration procedure. Refer to Brake Pedal Position Sensor Calibration ().



3. Operate the vehicle within the conditions that the customer experienced and verify the DTC does not reset.



瀚慖f the DTC resets, replace the brake pedal position sensor.



Repair Instructions



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



* Brake Pedal Position Sensor Replacement (See: Lighting and Horns/Brake Light Switch/Service and Repair)



* Brake Pedal Position Sensor Calibration ()



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



C0287



DTC C0186, C0196, or C0287



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 C0186 09



- Lateral Accelerometer Circuit Rate of Change Above Threshold



DTC C0186 0F



- Lateral Accelerometer Circuit Erratic



DTC C0186 55



- Lateral Accelerometer Circuit Expected Number of Events Not Reached

Saturday, March 6, 2021

2010 Cadillac CTS Sedan AWD V6-3.6L Page 369

2010 Cadillac CTS Sedan AWD V6-3.6L Page 369



3. Ignition ON, test for B+ between the voltage reference circuit terminal 5 and ground.



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



normal, replace the BCM.



4. Install a 3 A fused jumper wire between the signal circuit terminal 9 and the voltage reference circuit terminal 5. Verify the scan tool



Dimming Control Signal parameter is greater than 2.5 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 BCM.



5. If all circuits test normal, replace the I/P dimmer switch.



Repair Instructions



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



* Instrument Panel Lamp Dimmer Switch Replacement (See: Instrument Panel, Gauges and Warning Indicators/Dimmer Switch/Service and



Repair)



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



Power Seats



DTC B1395



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 B1395 02



- Device Voltage Reference Output Circuit Short to Ground



DTC B1395 05



- Device Voltage Reference Output Circuit Short to Battery or Open



Diagnostic Fault Information

Saturday, February 13, 2021

2010 Cadillac CTS Sedan AWD V6-3.6L Page 1129

2010 Cadillac CTS Sedan AWD V6-3.6L Page 1129



3. Ignition ON, observe the manifold absolute pressure (MAP) sensor parameter. The MAP sensor pressure should be within the range specified



for your altitude. Refer to Altitude Versus Barometric Pressure (See: Powertrain Management/Computers and Control



Systems/Specifications).



瀚慖f not the specified range, refer to DTC P0106 (w/LF1) (See: P Code Charts/P0106).



Note: EVAP purge enablement may cause the FT to be momentarily outside the normal range.



4. Allow the engine to reach operating temperature. With the engine running, observe the affected Long Term FT parameter with a scan tool.



The value should be between -20 % and +20 %.



瀚慖f not the specified range, inspect for the following:



P0171 or P0174



* A mass air flow (MAF) sensor signal that is skewed-If the Short Term FT parameters for both banks changes greater than 20 % when the



MAF sensor is disconnected, refer to DTC P0101 (w/LLT) (See: P Code Charts/P0101)DTC P0101 (LF1) (See: P Code Charts/P0101).



* Fuel contamination-Refer to Alcohol/Contaminants-in-Fuel Diagnosis (with Special Tool) (See: Powertrain Management/Computers



and Control Systems/Testing and Inspection/Component Tests and General Diagnostics/Alcohol/Contaminants-in-Fuel Diagnosis (with



Special Tool))Alcohol/Contaminants-in-Fuel Diagnosis (without Special Tool) (See: Powertrain Management/Computers and Control



Systems/Testing and Inspection/Component Tests and General Diagnostics/Alcohol/Contaminants-in-Fuel Diagnosis (without Special



Tool)).



* Missing, restricted, or leaking exhaust components-Refer to Symptoms - Engine Exhaust (See: Engine, Cooling and Exhaust/Exhaust



System/Testing and Inspection/Symptoms - Engine Exhaust).



* Malfunctioning fuel injectors-Refer to Fuel Injector Solenoid Coil Test (w/LLT) (See: Powertrain Management/Computers and Control



Systems/Testing and Inspection/Component Tests and General Diagnostics/Fuel Injector Solenoid Coil Test)Fuel Injector Solenoid Coil



Test (w/LF1) (See: Powertrain Management/Fuel Delivery and Air Induction/Fuel Injector/Testing and Inspection).



* Vacuum hoses for splits, kinks, and improper connections



* Insufficient fuel in the tank



* Low fuel pressure-Refer to Fuel System Diagnosis (See: Powertrain Management/Computers and Control Systems/Testing and



Inspection/Component Tests and General Diagnostics/Fuel System Diagnosis).



* Vacuum leaks at the intake manifold, the throttle body, and the injector O-rings.



* The air induction system and the air intake ducts for leaks, or for a missing air filter element



* A cracked EVAP canister



* Evaporative pipes obstructed or leaking



* The crankcase ventilation system for leaks



* A mass air flow (MAF) sensor signal that is skewed-If the Short Term FT parameters for both banks changes greater than 20 % when the



MAF sensor is disconnected, refer to DTC P0101 (w/LLT) (See: P Code Charts/P0101)DTC P0101 (LF1) (See: P Code Charts/P0101).



* Fuel contamination-Refer to Alcohol/Contaminants-in-Fuel Diagnosis (with Special Tool) (See: Powertrain Management/Computers



and Control Systems/Testing and Inspection/Component Tests and General Diagnostics/Alcohol/Contaminants-in-Fuel Diagnosis (with



Special Tool))Alcohol/Contaminants-in-Fuel Diagnosis (without Special Tool) (See: Powertrain Management/Computers and Control



Systems/Testing and Inspection/Component Tests and General Diagnostics/Alcohol/Contaminants-in-Fuel Diagnosis (without Special



Tool)).



* Missing, restricted, or leaking exhaust components-Refer to Symptoms - Engine Exhaust (See: Engine, Cooling and Exhaust/Exhaust



System/Testing and Inspection/Symptoms - Engine Exhaust).



* Malfunctioning fuel injectors-Refer to Fuel Injector Solenoid Coil Test (w/LLT) (See: Powertrain Management/Computers and Control



Systems/Testing and Inspection/Component Tests and General Diagnostics/Fuel Injector Solenoid Coil Test)Fuel Injector Solenoid Coil



Test (w/LF1) (See: Powertrain Management/Fuel Delivery and Air Induction/Fuel Injector/Testing and Inspection) ,



* The air intake duct for being collapsed or restricted



* The air filter for being dirty or restricted



* Objects blocking the throttle body



* The evaporative emissions control system for improper operation



* Excessive fuel in the crankcase-Change the oil as necessary.



5. If all conditions test normal, test the engine for a mechanical condition. Refer to Symptoms - Engine Mechanical (See: Engine, Cooling and



Exhaust/Engine/Testing and Inspection/Symptom Related Diagnostic Procedures/Symptoms - Engine Mechanical).



6. 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.



Repair Instructions



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



P182E



DTC P182E or P1915



Diagnostic Instructions

Sunday, February 7, 2021

2010 Cadillac CTS Sedan AWD V6-3.6L Page 194

2010 Cadillac CTS Sedan AWD V6-3.6L Page 194



3. Ignition ON, test for 4.8-5.2 volts between the ground circuit terminal C and the appropriate signal circuit terminal listed below:



* Left solar load sensor circuit terminal A.



* Right solar load sensor circuit terminal B.



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



HVAC control module.



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



module.



4. If all circuits test normal, test or replace the sunload sensor.



Repair Instructions



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



* Headlamp Automatic Control Ambient Light Sensor Replacement (See: Lighting and Horns/Headlamp/Headlamp Dimmer Sensor/Service



and Repair)



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



programming



B0188



DTC B0183 or B0188



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 B0183 06



- Solar Load Sensor 1 Circuit Short to Ground or Open



DTC B0188 06



- Solar Load Sensor 2 Circuit Short to Ground or Open



Diagnostic Fault Information



Circuit Description



The vehicle uses left and right sunload sensors that are integrated into one sensor assembly along with the ambient light sensor. Low reference and



signal circuits enable the sensor to operate. The sensor signal varies between 0 and 5 volts. The HVAC control module converts the signal to a



range between 0 and 255 counts. The sunload sensor provides the HVAC control module with a measurement of the amount of light shining on the



vehicle. Bright or high intensity light causes the vehicles interior temperature to increase. The HVAC system compensates for the increased



temperature by diverting additional cool air into the vehicle.



The following DTCs are for the left and right sunload sensors.



* B0183 is for the left sunload sensor.



* B0188 is for the right sunload sensor.



Conditions for Running the DTC



Ignition ON.



Conditions for Setting the DTC

Wednesday, February 3, 2021

2010 Cadillac Truck SRX AWD V6-3.0L Page 66

2010 Cadillac Truck SRX AWD V6-3.0L Page 66



3. Ignition ON, verify the scan tool Deployment Loop Resistance parameter is greater than 5.12 ohm.



瀚慖f less than the specified range, test control circuit terminals for a short to ground. If the circuit tests normal, replace the K36 SDM.



4. Install a 3 A fused jumper wire between the following control circuit terminals. Verify the scan tool Deployment Loop Resistance parameter



is less than 1.8 ohm.



* circuit terminal 1 X1 and terminal 2 X1



* circuit terminal 4 X1 and terminal 3 X1



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



replace the K36 SDM.



5. If all circuits test normal, test or replace the F107 driver steering wheel air bag.



Repair Instructions



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



* Steering Wheel Inflatable Restraint Module Replacement (See: Restraints and Safety Systems/Air Bag Systems/Air Bag/Service and



Repair/Removal and Replacement/Steering Wheel Inflatable Restraint Module Replacement)



* SIR/SRS Wiring Repairs (See: Testing and Inspection/Component Tests and General Diagnostics/General Electrical Diagnostic



Procedures/Wiring Repairs/SIR/SRS Wiring Repairs)



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



B0013



DTC B0012 or B0013



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 B0012 01



- Driver Steering Wheel Air Bag Deployment Loop Stage 1 Short to Battery



DTC B0012 02



- Driver Steering Wheel Air Bag Deployment Loop Stage 1 Short to Ground



DTC B0012 04



- Driver Steering Wheel Air Bag Deployment Loop Stage 1 Open



DTC B0012 0D



- Driver Steering Wheel Air Bag Deployment Loop Stage 1 High Resistance



DTC B0012 0E



- Driver Steering Wheel Air Bag Deployment Loop Stage 1 Low Resistance



DTC B0013 01



- Driver Steering Wheel Air Bag Deployment Loop Stage 2 Short to Battery



DTC B0013 02



- Driver Steering Wheel Air Bag Deployment Loop Stage 2 Short to Ground



DTC B0013 04



- Driver Steering Wheel Air Bag Deployment Loop Stage 2 Open



DTC B0013 0D



- Driver Steering Wheel Air Bag Deployment Loop Stage 2 High Resistance



DTC B0013 0E



- Driver Steering Wheel Air Bag Deployment Loop Stage 2 Low Resistance

Saturday, January 2, 2021

2010 Cadillac Truck SRX AWD V6-3.0L Page 804

2010 Cadillac Truck SRX AWD V6-3.0L Page 804



3. Ignition ON, verify that DTC C0280 54 is not set as a present DTC.



瀚慖f DTC C0280 54 is present, replace the K17 Electronic Brake Control Module (EBCM) and verify DTC does not reset. If the DTC



resets, replace the Q5 brake pressure modulator valve assembly.



Repair Instructions



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



* Brake Pressure Modulator Valve Replacement (See: Brakes and Traction Control/Antilock Brakes / Traction Control Systems/Hydraulic



Control Assembly - Antilock Brakes/Service and Repair/Brake Pressure Modulator Valve Replacement)



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



C0287



DTC C0186, C0196, C019B, or C0287



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 C0186 5A



- Lateral Acceleration Sensor Circuit Not Plausible



DTC C0186 71



- Lateral Acceleration Sensor Circuit Invalid Data



DTC C0196 00



- Yaw Rate Circuit Malfunction



DTC C0196 5A



- Yaw Rate Signal Not Plausible



DTC C019B 5A



- Yaw Rate Signal Not Plausible



DTC C0287 4B



- Longitudinal Acceleration Sensor Circuit Calibration Not Learned



DTC C0287 5A



- Longitudinal Acceleration Sensor Circuit Not Plausible



DTC C0287 71



- Longitudinal Acceleration Sensor Circuit Invalid Data



Diagnostic Fault Information



Circuit/System Description



The yaw rate, lateral acceleration and longitudinal acceleration sensors are combined into one multi-axis acceleration sensor, external to the



electronic brake control module (EBCM). The EBCM supplies a 12 V reference voltage to the multi-axis acceleration sensor. The multi-axis



acceleration sensor communicates with the EBCM via the high speed controller area network (CAN) serial data circuit. The EBCM activates the

Saturday, December 26, 2020

2010 Cadillac Truck SRX AWD V6-3.0L Page 1273

2010 Cadillac Truck SRX AWD V6-3.0L Page 1273



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



P0205



DTC P0201, P0202, P0203, P0204, P0205, P0206, P0261, P0262, P0264, P0265, P0267, P0268, P0270, P0271, P0273, P0274, P0276, or P0277



(LF1)



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 P0201



- Cylinder 1 Injector Control Circuit



DTC P0202



- Cylinder 2 Injector Control Circuit

Monday, December 21, 2020

2010 Cadillac Truck SRX AWD V6-3.0L Page 1359

2010 Cadillac Truck SRX AWD V6-3.0L Page 1359



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



P0270



DTC P0201, P0202, P0203, P0204, P0205, P0206, P0261, P0262, P0264, P0265, P0267, P0268, P0270, P0271, P0273, P0274, P0276, or P0277



(LF1)



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 P0201



- Cylinder 1 Injector Control Circuit



DTC P0202



- Cylinder 2 Injector Control Circuit

Wednesday, December 16, 2020

2010 Cadillac Truck Escalade/ESV RWD V8-6.2L Page 2858

2010 Cadillac Truck Escalade/ESV RWD V8-6.2L Page 2858

3. Ignition ON, verify that a test lamp illuminates between the following voltage circuit terminals of the PIM and ground.

* Terminal 6

* Terminal 7

* Terminal 20

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

4. Ignition ON, verify that a test lamp illuminates between the signal circuit terminal 19 and ground.

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

SDGM.

5. Ignition OFF, disconnect the harness connector X3 at the engine control module.

6. Test for less than 1.0 ohm on the high speed hybrid GMLAN serial data circuits between the following ECM and PIM circuit terminals.

* ECM X 3 terminal 53 and PIM X 1 terminal 11

* ECM X 3 terminal 33 and PIM X 1 terminal 10

瀚慖f greater than the specified range, test the circuit for open/high resistance

7. If all circuits test normal, replace the PIM.

Repair Instructions

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

* GMLAN Wiring Repairs (See: Testing and Inspection/Component Tests and General Diagnostics/General Electrical Diagnostic

Procedures/Wiring Repairs/GMLAN Wiring Repairs)

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

U1817

DTC U1817

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 U1817 00

- Lost Communication With Hybrid Powertrain Control Module on Bus "B"

Diagnostic Fault Information

Circuit/System Description

Modules connected to the PTLAN serial data circuits monitor for serial data communications during normal vehicle operation. Operating

information and commands are exchanged among the modules. The modules have prerecorded information about what messages are needed to be

exchanged on the serial data circuits, for each virtual network. The messages are supervised and also, some periodic messages are used by the

receiver module as an availability indication of the transmitter module. Each message contains the identification number of the transmitter module.

Conditions for Running the DTC

* The system voltage is between 9-16 volts.

Tuesday, November 3, 2020

2010 Cadillac Truck Escalade/ESV RWD V8-6.2L Page 1836

2010 Cadillac Truck Escalade/ESV RWD V8-6.2L Page 1836

3. Ignition ON, verify the appropriate scan tool B52 HO2S parameter is approximately 450 mV.

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

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

4. Ignition ON, install a 3 A fused jumper wire between the signal circuit terminal B and ground. Verify the appropriate scan tool B52 HO2S

parameter is less than 60 mV.

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

5. If all circuits test normal, replace the appropriate B52 HO2S.

Repair Instructions

Caution: Refer to Heated Oxygen Sensor Resistance Learn Reset Caution (See: Powertrain Management/Computers and Control

Systems/Oxygen Sensor/Service Precautions/Heated Oxygen Sensor Resistance Learn Reset Caution).

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

* Heated Oxygen Sensor Replacement - Bank 1 Sensor 1 (1500 Series) (See: Powertrain Management/Computers and Control

Systems/Oxygen Sensor/Service and Repair)Heated Oxygen Sensor Replacement - Bank 1 Sensor 1 (2500 Series) (See: Powertrain

Management/Computers and Control Systems/Oxygen Sensor/Service and Repair)

* Heated Oxygen Sensor Replacement - Bank 1 Sensor 2 (1500 Series) (See: Powertrain Management/Computers and Control

Systems/Oxygen Sensor/Service and Repair)Heated Oxygen Sensor Replacement - Bank 1 Sensor 2 (2500 Series) (See: Powertrain

Management/Computers and Control Systems/Oxygen Sensor/Service and Repair)

* Heated Oxygen Sensor Replacement - Bank 2 Sensor 1 (1500 Series) (See: Powertrain Management/Computers and Control

Systems/Oxygen Sensor/Service and Repair)Heated Oxygen Sensor Replacement - Bank 2 Sensor 1 (2500 Series) (See: Powertrain

Management/Computers and Control Systems/Oxygen Sensor/Service and Repair)

* Heated Oxygen Sensor Replacement - Bank 2 Sensor 2 (1500 Series) (See: Powertrain Management/Computers and Control

Systems/Oxygen Sensor/Service and Repair)Heated Oxygen Sensor Replacement - Bank 2 Sensor 2 (2500 Series) (See: Powertrain

Management/Computers and Control Systems/Oxygen Sensor/Service and Repair)

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

P0161

DTC P0030, P0036, P0050, P0053, P0054, P0056, P0059, P0060, P0135, P0141, P0155, or P0161

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 P0030

- HO2S Heater Control Circuit Bank 1 Sensor 1

DTC P0036

- HO2S Heater Control Circuit Bank 1 Sensor 2

DTC P0050

- HO2S Heater Control Circuit Bank 2 Sensor 1

DTC P0053

- HO2S Heater Resistance Bank 1 Sensor 1

DTC P0054

- HO2S Heater Resistance Bank 1 Sensor 2

DTC P0056

- HO2S Heater Control Circuit Bank 2 Sensor 2

DTC P0059

- HO2S Heater Resistance Bank 2 Sensor 1

Monday, November 2, 2020

2010 Cadillac Truck Escalade/ESV RWD V8-6.2L Page 1815

2010 Cadillac Truck Escalade/ESV RWD V8-6.2L Page 1815

3. Ignition ON, verify the appropriate scan tool B52 HO2S parameter is approximately 450 mV.

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

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

4. Ignition ON, install a 3 A fused jumper wire between the signal circuit terminal B and ground. Verify the appropriate scan tool B52 HO2S

parameter is less than 60 mV.

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

5. If all circuits test normal, replace the appropriate B52 HO2S.

Repair Instructions

Caution: Refer to Heated Oxygen Sensor Resistance Learn Reset Caution (See: Powertrain Management/Computers and Control

Systems/Oxygen Sensor/Service Precautions/Heated Oxygen Sensor Resistance Learn Reset Caution).

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

* Heated Oxygen Sensor Replacement - Bank 1 Sensor 1 (1500 Series) (See: Powertrain Management/Computers and Control

Systems/Oxygen Sensor/Service and Repair)Heated Oxygen Sensor Replacement - Bank 1 Sensor 1 (2500 Series) (See: Powertrain

Management/Computers and Control Systems/Oxygen Sensor/Service and Repair)

* Heated Oxygen Sensor Replacement - Bank 1 Sensor 2 (1500 Series) (See: Powertrain Management/Computers and Control

Systems/Oxygen Sensor/Service and Repair)Heated Oxygen Sensor Replacement - Bank 1 Sensor 2 (2500 Series) (See: Powertrain

Management/Computers and Control Systems/Oxygen Sensor/Service and Repair)

* Heated Oxygen Sensor Replacement - Bank 2 Sensor 1 (1500 Series) (See: Powertrain Management/Computers and Control

Systems/Oxygen Sensor/Service and Repair)Heated Oxygen Sensor Replacement - Bank 2 Sensor 1 (2500 Series) (See: Powertrain

Management/Computers and Control Systems/Oxygen Sensor/Service and Repair)

* Heated Oxygen Sensor Replacement - Bank 2 Sensor 2 (1500 Series) (See: Powertrain Management/Computers and Control

Systems/Oxygen Sensor/Service and Repair)Heated Oxygen Sensor Replacement - Bank 2 Sensor 2 (2500 Series) (See: Powertrain

Management/Computers and Control Systems/Oxygen Sensor/Service and Repair)

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

P0152

DTC P0131, P0132, P0137, P0138, P0151, P0152, P0157, or P0158

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 P0131

- HO2S Circuit Low Voltage Bank 1 Sensor 1

DTC P0132

- HO2S Circuit High Voltage Bank 1 Sensor 1

DTC P0137

- HO2S Circuit Low Voltage Bank 1 Sensor 2

DTC P0138

- HO2S Circuit High Voltage Bank 1 Sensor 2

DTC P0151

- HO2S Circuit Low Voltage Bank 2 Sensor 1

DTC P0152

- HO2S Circuit High Voltage Bank 2 Sensor 1

DTC P0157

- HO2S Circuit Low Voltage Bank 2 Sensor 2

Saturday, October 31, 2020

2010 Cadillac Truck SRX AWD V6-3.0L Page 1348

2010 Cadillac Truck SRX AWD V6-3.0L Page 1348



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



P0265



DTC P0201, P0202, P0203, P0204, P0205, P0206, P0261, P0262, P0264, P0265, P0267, P0268, P0270, P0271, P0273, P0274, P0276, or P0277



(LF1)



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 P0201



- Cylinder 1 Injector Control Circuit



DTC P0202



- Cylinder 2 Injector Control Circuit

Wednesday, September 9, 2020

2010 Cadillac Truck Escalade/ESV RWD V8-6.2L Page 85

2010 Cadillac Truck Escalade/ESV RWD V8-6.2L Page 85

3. Ignition ON, transmission in PARK, verify the test lamp does not illuminate.

瀚慖f the test lamp illuminates, test for a short to ground on the park enable signal circuit. If the circuit tests normal and the DTC is current,

replace the BCM.

4. If the circuit tests normal and the DTC is current, test or replace the park enable PCB relay.

Repair Instructions

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

* Instrument Panel Electrical Center or Junction Block Replacement - Left Side (See: Maintenance/Fuses and Circuit Breakers/Fuse

Block/Service and Repair/Removal and Replacement/Instrument Panel Electrical Center or Junction Block Replacement - Left Side)

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

B008A

DTC B008A or B008B

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 B008A 00

- High Voltage Crash Impact Detection Sensor 2

DTC B008B 00

- High Voltage Crash Impact Detection Sensor 3

Circuit/System Description

The high voltage circuit impact detector sensor utilizes a unidirectional 2-wire circuit. The high voltage circuit impact detector sensor modulates

current on the circuit interface to send ID, state of health, and deployment commands to the serial data gateway module. The serial data gateway

module serves as a power source and a ground for the high voltage circuit impact detector sensor. When the ignition is turned ON and input power

from the serial data gateway module is first detected, the high voltage circuit impact detector sensor responds by performing internal diagnostics

and sending an ID to the serial data gateway module. The high voltage circuit impact detector sensor continually communicates status messages to

the serial data gateway module. Some applications use multiple high voltage circuit impact detector sensors.

This vehicle does not use crash sensor 2 or 3. These DTCs can only set if the incorrect software is installed in the serial data gateway module.

Conditions for Running the DTC

* The ignition is ON.

* The battery voltage is 7.5-18 V.

Conditions for Setting the DTC

B008A 00 or B008B 00

Sensor 2 or 3 is reporting a state-of-health message, but the serial data gateway module is not calibrated to use sensor 2 or 3.

Action Taken When the DTC Sets

The driver information center (DIC) displays the SERVICE HYBRID SYSTEM message.

Conditions for Clearing the DTC

* A current DTC clears when the malfunction is no longer present.

* The DIC message turns OFF when the DTC passes.

* A history DTC clears when the module ignition cycle counter reaches the reset threshold of 50, without a repeat of the malfunction.

Circuit/System Verification

Sunday, September 6, 2020

2010 Cadillac Truck Escalade/ESV RWD V8-6.2L Page 503

2010 Cadillac Truck Escalade/ESV RWD V8-6.2L Page 503

3. Ignition ON, test for 4.8-5.2 volts between the 5-volt reference circuit terminal 6 and ground.

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

replace the MSM.

瀚慖f greater than the specified range, test the 5-volt reference circuit for a short to voltage. If the circuit tests normal, replace the MSM.

4. Verify the appropriate scan tool driver seat sensor parameter is less than 1 volt.

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

the MSM.

* Seat front vertical position sensor terminal 1

* Seat rear vertical position sensor terminal 5

* Seat horizontal position sensor terminal 3

5. Install a 3A fused jumper wire between the appropriate signal circuit listed below and the 5-volt reference circuit terminal 6. Verify the

appropriate scan tool driver seat position sensor parameter is greater than 4.75 volts.

* Seat horizontal position sensor terminal 3

* Seat front vertical position sensor terminal 1

* Seat rear vertical position sensor terminal 5

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

MSM.

6. If all circuits test normal, test or replace the seat position sensor.

B1850 01, B1850 06, B1860 01 or B1860 06

1. Ignition OFF, disconnect the X2 harness connector at the lumbar adjuster assembly.

2. Test for less than 2 ohms between the low reference circuit terminal C and ground.

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

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

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

replace the MSM.

瀚慖f greater than the specified range, test the 5-volt reference circuit for a short to voltage. If the circuit tests normal, replace the MSM.

4. Verify the appropriate scan tool lumbar sensor parameter is less than 1 volt.

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

the MSM.

* Lumbar vertical position sensor terminal B

* Lumbar horizontal position sensor terminal D

5. Install a 3A fused jumper wire between the appropriate signal circuit listed below and the 5-volt reference circuit terminal A. Verify the

appropriate scan tool lumbar sensor parameter is greater than 4.75 volts.

* Lumbar vertical position sensor terminal B

* Lumbar horizontal position sensor terminal D

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

MSM.

6. If all circuits test normal, test or replace the lumbar position sensor.

Repair Instructions

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

* Front Seat Adjuster Replacement (with HP2) ()Front Seat Adjuster Replacement (without HP2) ()

* Seat Lumbar Sub System Replacement ()

* Front Seat Recliner Actuator Motor Replacement ()

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

Sunday, August 30, 2020

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2010 Cadillac Truck Escalade/ESV RWD V8-6.2L Page 337

3. Ignition ON, transmission in REVERSE, test for 8.0-9.0 V between the voltage reference circuit terminal 1 and ground.

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

alarm module.

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

normal, replace the object alarm module.

4. Ignition OFF, remove the malfunctioning object alarm sensor and swap locations with another properly functioning object alarm sensor.

Connect the harness connector at both sensors.

5. Ignition ON, verify the DTC is set for the new location in which the malfunctioning object alarm sensor is installed.

瀚慖f the DTC does not set for the new location, test the signal circuit terminal 3 for a short to voltage, short to ground, or an open/high

resistance. If the circuit tests normal, replace the object alarm module.

6. If the DTC sets for the new location in which the malfunctioning object alarm sensor is installed, replace the appropriate object alarm sensor.

Multiple Object Alarm Sensor DTCs Set

1. Ignition OFF, disconnect the harness connector at each of the object alarm sensors.

2. Ignition OFF for 30 seconds, test for less than 20 Ohms between the low reference circuit terminal 2 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 object

alarm module.

3. Ignition ON, transmission in REVERSE, test for 8.0-9.0 V between the voltage reference circuit terminal 1 and ground.

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

alarm module.

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

normal, replace the object alarm module.

Repair Instructions

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

* Rear Object Sensor Replacement (See: Accessories and Optional Equipment/Collision Avoidance and Parking Assist Systems/Parking

Assist Distance Sensor/Service and Repair/Rear Object Sensor Replacement)

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

programming

B0961

DTC B0958, B0959, B0960, or B0961

Diagnostic Instructions

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

Check - Vehicle) prior to using the 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 B0958 01

- Parking Aid Rear Sensor 1 Circuit Short to Battery

DTC B0958 06

- Parking Aid Rear Sensor 1 Circuit Short to Ground or Open

DTC B0958 08

- Parking Aid Rear Sensor 1 Circuit Signal Invalid

DTC B0958 21

- Parking Aid Rear Sensor 1 Circuit Incorrect Period

DTC B0958 3A

- Parking Aid Rear Sensor 1 Circuit Incorrect Component Installed

2010 Cadillac Truck Escalade/ESV RWD V8-6.2L Page 334

2010 Cadillac Truck Escalade/ESV RWD V8-6.2L Page 334

3. Ignition ON, transmission in REVERSE, test for 8.0-9.0 V between the voltage reference circuit terminal 1 and ground.

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

alarm module.

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

normal, replace the object alarm module.

Repair Instructions

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

* Rear Object Sensor Replacement (See: Accessories and Optional Equipment/Collision Avoidance and Parking Assist Systems/Parking

Assist Distance Sensor/Service and Repair/Rear Object Sensor Replacement)

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

programming

B0960

DTC B0958, B0959, B0960, or B0961

Diagnostic Instructions

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

Check - Vehicle) prior to using the 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 B0958 01

- Parking Aid Rear Sensor 1 Circuit Short to Battery

DTC B0958 06

- Parking Aid Rear Sensor 1 Circuit Short to Ground or Open

DTC B0958 08

- Parking Aid Rear Sensor 1 Circuit Signal Invalid

DTC B0958 21

- Parking Aid Rear Sensor 1 Circuit Incorrect Period

DTC B0958 3A

- Parking Aid Rear Sensor 1 Circuit Incorrect Component Installed

DTC B0959 01

- Parking Aid Rear Sensor 2 Circuit Short to Battery

DTC B0959 06

- Parking Aid Rear Sensor 2 Circuit Short to Ground or Open

DTC B0959 08

- Parking Aid Rear Sensor 2 Circuit Signal Invalid

DTC B0959 21

- Parking Aid Rear Sensor 2 Circuit Incorrect Period

DTC B0959 3A

- Parking Aid Rear Sensor 2 Circuit Incorrect Component Installed

DTC B0960 01

- Parking Aid Rear Sensor 3 Circuit Short to Battery

DTC B0960 06

- Parking Aid Rear Sensor 3 Circuit Short to Ground or Open

DTC B0960 08

- Parking Aid Rear Sensor 3 Circuit Signal Invalid

Sunday, August 23, 2020

2010 Cadillac Truck SRX AWD V6-3.0L Page 1381

2010 Cadillac Truck SRX AWD V6-3.0L Page 1381



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



P0299



DTC P0234 or P0299



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 P0234



- Engine Overboost



DTC P0299



- Engine Underboost



Diagnostic Fault Information

Wednesday, August 19, 2020

2010 Cadillac Truck Escalade/ESV RWD V8-6.2L Page 109

2010 Cadillac Truck Escalade/ESV RWD V8-6.2L Page 109

3. Ignition ON, test for less than 11 V between the control circuit terminals listed below and ground on the SDM side of the connector:

* Control circuit terminal 5 X1

* Control circuit terminal 6 X1

* Control circuit terminal 8 X1

* Control circuit terminal 7 X1

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

4. Ignition OFF, test for greater than 25 ohm between the control circuit terminals listed below and ground on the SDM side of the connector:

* Control circuit terminal 5 X1

* Control circuit terminal 6 X1

* Control circuit terminal 7 X1

* Control circuit terminal 8 X1

瀚慖f less than the specified range, test the control circuit for a short to ground. If the circuit tests normal, replace the SDM.

5. Install a 3 A fused jumper wire between the control circuit terminals listed below.

* Passenger instrument panel airbag stage 1 terminal 5 and 6 X1

* Passenger instrument panel airbag stage 2 terminal 8 and 7 X1

6. Verify the scan tool Deployment Loop Resistance parameter is less than 2 ohm.

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

SDM.

7. Disconnect the passenger instrument panel air bag harness connector.

8. With the appropriate load tool adaptor, connect special tool J 38715-A in place of the air bag.

9. Ignition ON, test for less than 11 V between the control circuit terminals listed below and ground:

* Control circuit terminal A1

* Control circuit terminal A2

* Control circuit terminal B1

* Control circuit terminal B2

瀚慖f greater than the specified range, test the control circuit for a short to voltage.

10. Ignition OFF, test for greater than 25 ohm between the control circuit terminals listed below and ground:

* Control circuit terminal A1

* Control circuit terminal A2

* Control circuit terminal B1

* Control circuit terminal B2

瀚慖f less than the specified range, test the control circuit for a short to ground.

11. Ignition OFF, test for less than 5 ohm between the control circuit terminals listed below:

* X200 control circuit terminal A1 and passenger instrument panel air bag harness connector control circuit terminal A1

* X200 control circuit terminal A2 and passenger instrument panel air bag harness connector control circuit terminal A2

* X200 control circuit terminal B1 and passenger instrument panel air bag harness connector control circuit terminal B1

* X200 control circuit terminal B2 andpassenger instrument panel air bag harness connector control circuit terminal B2

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

12. If all circuits test normal, replace the passenger instrument panel air bag.

Repair Instructions

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

* SIR/SRS Wiring Repairs (See: Testing and Inspection/Component Tests and General Diagnostics/General Electrical Diagnostic

Procedures/Wiring Repairs/SIR/SRS Wiring Repairs)

* Instrument Panel Inflatable Restraint Module Replacement (See: Restraints and Safety Systems/Air Bag Systems/Air Bag/Service and

Repair/Removal and Replacement/Instrument Panel Inflatable Restraint Module Replacement)

* Steering Wheel Inflatable Restraint Module Replacement (See: Restraints and Safety Systems/Air Bag Systems/Air Bag/Service and

Repair/Removal and Replacement/Steering Wheel Inflatable Restraint Module Replacement)