Showing posts with label * Diagnostic Procedure Instructions (See: Testing and Inspection/Initial Inspection and Diagnostic Overview/Diagnostic Procedure. Show all posts
Showing posts with label * Diagnostic Procedure Instructions (See: Testing and Inspection/Initial Inspection and Diagnostic Overview/Diagnostic Procedure. Show all posts

Monday, April 6, 2020

2010 Cadillac Truck SRX AWD V6-2.8L Turbo Page 269

2010 Cadillac Truck SRX AWD V6-2.8L Turbo Page 269



* 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 B251A 01



- All Door Unlatch Circuit Short to Battery



DTC B251A 02



- All Door Unlatch Circuit Short to Ground



DTC B251B 02



- Driver Door Unlatch High Control Circuit Short to Ground



DTC B251B 04



- Driver Door Unlatch High Control Circuit Open



DTC B251C 04



- Passenger Door Unlatch High Control Circuit Open



DTC B251D 04



- Left Rear Door Unlatch High Control Circuit Open



DTC B251E 04



- Right Rear Door Unlatch High Control Circuit Open



Diagnostic Fault Information



Circuit/System Description



The system is designed so that when the operator approaches a locked vehicle with the keyless entry transmitter, the keyless entry control module



will detect the keyless entry transmitter and when an exterior door handle is pulled the keyless entry control module will command all doors to



unlock and the door to unlatch allowing the door to be pulled open.



Conditions for Running the DTC



The system voltage is 9-16 V.



Conditions for Setting the DTC



B251A 01



The keyless entry control module detects a short to voltage on the passenger or left rear or right rear door latch motor unlatch low control circuit.



B251A 02



The keyless entry control module detects a short to ground on the passenger or left rear or right rear door latch motor unlatch low control circuit.

Thursday, March 19, 2020

2010 Cadillac Truck SRX AWD V6-2.8L Turbo Page 361

2010 Cadillac Truck SRX AWD V6-2.8L Turbo Page 361



* 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 B396C 08



- Liftgate Mode Switch Circuit Performance Signal Invalid



DTC B396D 02



- Front Liftgate Actuator Switch Circuit Short To Ground



Diagnostic Fault Information



Circuit/System Description



The interior liftgate rotary control switch contains 3 resistors which are in series for the liftgate mode, depending upon which position is selected



will determine which combination of resistors are used. The liftgate module monitors the voltage level in the liftgate mode signal circuit, as each



mode is selected, the voltage within the signal circuit incrementally drops. It is this method the liftgate module will determine if mode switch is in



the manual mode, garage mode or the maximum open mode.



The interior liftgate control switch has of a push button switch to command the liftgate to open and close. The liftgate module monitors the voltage



level on the open/close signal circuit, when the switch is not being pressed the voltage level is at the system voltage. When the switch is pressed a



contact within the interior liftgate control switch closes providing a ground path for the signal circuit causing the voltage level to drop to near zero



volts. The liftgate module will detect the voltage drop and will then command the liftgate to open or close depending upon the current state of the



liftgate at the time the switch is pressed.



Conditions for Running the DTC



The system voltage is 9-16 V.



Conditions for Setting the DTC



B396C 08



The liftgate control module detects an out of range condition in the mode switch signal circuit.



B396D 02



The liftgate control module detects a short to ground in the rear liftgate open/close switch signal circuit for greater than 60 seconds.



Action Taken When the DTC Sets



B396C 08



The manual mode function and the garage mode function will be inoperative.



B396D 02



The liftgate module will ignore the switch input from the interior liftgate control switch and the liftgate operations will only be available from the



liftgate switches located on the liftgate panel or by an open or close request from the remote control keyless entry module.



Conditions for Clearing the DTC



* The DTC will be current for as long as the fault is present.



* When the fault is no longer present, the DTC will be a history DTC.



* A history DTC will clear after 50 ignition cycles.



Diagnostic Aids



* If the liftgate will not release from the closed position, refer to Opening the Liftgate Without Electrical Power (See: Body and Frame/Doors,



Hood and Trunk/Trunk / Liftgate/Service and Repair/Procedures) for the appropriate procedure

Monday, February 24, 2020

2010 Cadillac Truck SRX AWD V6-2.8L Turbo Page 210

2010 Cadillac Truck SRX AWD V6-2.8L Turbo Page 210



* 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 B125A 02



- Antenna Signal Circuit Short to Ground



DTC B125A 04



- Antenna Signal Circuit Open Circuit



Diagnostic Fault Information



Circuit/System Description



The multi-band antenna is located on the roof of the vehicle. The radio antenna is enabled when the radio is turned on. The radio provides battery



voltage to the antenna using the center conductor of the antenna coaxial cable. When a 12 V signal is seen on the center conductor of the antenna



coax, both AM and FM signals are amplified.



Conditions for Running the DTC



* Ignition ON.



* Battery voltage must be between 9-16 V.



Conditions for Setting the DTC



B125A 02



The radio detects a short to ground in the antenna signal circuit center conductor.



B125A 04



The radio detects an open in the antenna signal circuit center conductor.



Action Taken When the DTC Sets



Radio reception may be poor or not available.



Conditions for Clearing the DTC



* The condition responsible for setting the DTC no longer exists.



* A history DTC will clears after 50 consecutive malfunction-free ignition cycles have occurred.



Reference Information



Schematic Reference



Radio/Navigation System Schematics (See: Accessories and Optional Equipment/Diagrams/Electrical Diagrams/Radio/Navigation System



Schematics)



Connector End View Reference



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



Description and Operation



Radio/Audio System Description and Operation (See: Accessories and Optional Equipment/Description and Operation/Radio/Audio System)



Electrical Information Reference



* Circuit Testing (See: Testing and Inspection/Component Tests and General Diagnostics/General Electrical Diagnostic Procedures/Circuit



Testing/Circuit Testing)



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



Procedures/Connector Repairs/Connector Repairs)



* Testing for Intermittent Conditions and Poor Connections (See: Testing and Inspection/Component Tests and General Diagnostics/General



Electrical Diagnostic Procedures/Circuit Testing/Testing for Intermittent Conditions and Poor Connections)



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



Repairs/Wiring Repairs)

Monday, February 10, 2020

2010 Cadillac Truck SRX AWD V6-2.8L Turbo Page 427

2010 Cadillac Truck SRX AWD V6-2.8L Turbo Page 427



* 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 B1019 00



- System Configuration Error



Circuit/System Description



When calibrating the liftgate position, the liftgate control module is placed in a functional state to learn the liftgate travel limits. DTC B1019 00 will



set automatically as an indicator that the system is in learn mode and not as a fault indicator. Once the travel limits are learned by the liftgate control



module, the liftgate control module will exit calibration mode and DTC B1019 00 become a history code.



Conditions for Running the DTC



The system voltage is 9-18 V.



Conditions for Setting the DTC



Whenever the liftgate control module is replaced or in learn mode.



Action Taken When the DTC Sets



The power liftgate system will be disabled.



Conditions for Clearing the DTC



* The DTC will be current until the liftgate calibration procedure has been completed.



* When the calibration procedure has been completed the DTC will be a history DTC.



Diagnostic Aids



Setting B1019 00 is normal after flashing the liftgate control module. This DTC will be current after flashing and the DTC will go to history after



learning. This is a normal behavior by design and is not necessary to replace the liftgate control module.



Reference Information



Schematic Reference



Liftgate Schematics (See: Body and Frame/Locks/Diagrams/Electrical Diagrams/Liftgate Schematics)



Connector End View Reference



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



Description and Operation



Liftgate Description and Operation (See: Body and Frame/Doors, Hood and Trunk/Trunk / Liftgate/Description and Operation/Liftgate)



Electrical Information Reference



* Circuit Testing (See: Testing and Inspection/Component Tests and General Diagnostics/General Electrical Diagnostic Procedures/Circuit



Testing/Circuit Testing)



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



Procedures/Connector Repairs/Connector Repairs)



* Testing for Intermittent Conditions and Poor Connections (See: Testing and Inspection/Component Tests and General Diagnostics/General



Electrical Diagnostic Procedures/Circuit Testing/Testing for Intermittent Conditions and Poor Connections)



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



Repairs/Wiring Repairs)



Scan Tool Reference



Control Module References (See: Testing and Inspection/Programming and Relearning) for scan tool information



Circuit/System Testing



Perform the Liftgate Calibration (See: Body and Frame/Doors, Hood and Trunk/Trunk / Liftgate/Testing and Inspection/Programming and



Relearning). The K39 liftgate control module should learn the travel limits, exit the calibration mode, and B1019 00 will become a history code.



Repair Instructions



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

Wednesday, January 15, 2020

2010 Cadillac Truck SRX AWD V6-2.8L Turbo Page 692

2010 Cadillac Truck SRX AWD V6-2.8L Turbo Page 692



* 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 B3797 02



- All Door Dead Lock Circuit Short to Ground



Diagnostic Fault Information



Circuit/System Description



When the body control module (BCM) receives a command to activate the door dead locks, the BCM will apply voltage to the DOOR LK SEC pcb



relay. This will energize the relay closing the contacts and enable the BCM to supply voltage to the dead locks in each of the doors.



Conditions for Running the DTC



The system voltage must be between 9-16 V.



Conditions for Setting the DTC



The BCM detects a short to ground in the DOOR LK SEC pcb relay control circuit.



Action Taken When the DTC Sets



The dead locks will be inoperative



Conditions for Clearing the DTC



* This DTC will change from current to history when the fault is no longer present.



* A history DTC will clear after 100 consecutive ignition cycles if the condition for the malfunction is no longer present.



Reference Information



Schematic Reference



Door Lock/Indicator Schematics (See: Body and Frame/Locks/Diagrams/Electrical Diagrams/Door Lock/Indicator Schematics)



Connector End View Reference



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



Description and Operation



Power Door Locks Description and Operation (See: Body and Frame/Locks/Power Locks/Description and Operation)



Electrical Information Reference



* Circuit Testing (See: Testing and Inspection/Component Tests and General Diagnostics/General Electrical Diagnostic Procedures/Circuit



Testing/Circuit Testing)



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



Procedures/Connector Repairs/Connector Repairs)



* Testing for Intermittent Conditions and Poor Connections (See: Testing and Inspection/Component Tests and General Diagnostics/General



Electrical Diagnostic Procedures/Circuit Testing/Testing for Intermittent Conditions and Poor Connections)



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



Repairs/Wiring Repairs)



Scan Tool Reference



Control Module References (See: Testing and Inspection/Programming and Relearning) for scan tool information



Circuit/System Verification



Ignition ON, command the Door Deadlock Lock/Unlock to LOCK and UNLOCK with a scan tool. Listen or feel for the operation of the deadlock



actuators performing the LOCK and UNLOCK functions.



Circuit/System Testing



1. Ignition OFF, disconnect the X2 harness connector at the rear fuse block

Monday, January 6, 2020

2010 Cadillac Truck SRX AWD V6-2.8L Turbo Page 205

2010 Cadillac Truck SRX AWD V6-2.8L Turbo Page 205



* 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 B0978 01



- Power Mode Accessory Indicator Control Circuit Short to Battery



DTC B0978 02



- Power Mode Accessory Indicator Control Circuit Short to Ground



DTC B0978 04



- Power Mode Accessory Indicator Control Circuit Open



DTC B097B 00



- Power Mode Start Switch Circuit Malfunction



DTC B097B 02



- Power Mode Start Switch Circuit Short to Ground



DTC B097B 04



- Power Mode Start Switch Circuit Open



DTC B097B 08



- Power Mode Start Switch Circuit Performance - Signal Invalid



DTC B097B 61



- Power Mode Start Switch Circuit - Stuck



DTC B097C 01



- Power Mode Run/Start Circuit Indicator Short to Battery



DTC B097C 02



- Power Mode Run/Start Circuit Indicator Short to Ground



DTC B097C 04



- Power Mode Run/Start Indicator Circuit Open



Circuit/System Description



The ignition mode switch has 2 LED's that indicate the vehicle power mode. When the vehicle is in the off mode, both LED's will be off. Pressing



the ignition mode switch button once (without the brake pedal applied), the vehicle enters the accessory mode and the amber LED (ACC) will



illuminate. Pressing the ignition mode switch button a second time (without the brake pedal applied), the vehicle enters the run/start mode (without



the engine running) and the green LED (Run/Start) will illuminate. With the ignition off (with the brake pedal applied), pressing the ignition mode



switch button once, the vehicle will enter run/start mode and the green LED (run/start) will illuminate. This will start the engine. Both LED's have



the voltage supplied from the body control module (BCM). The ignition mode switch sends the ignition mode switch status to the passive entry



passive start module (PEPS) and to the BCM. The PEPS module sends a redundant signal to the BCM with the ignition mode switch status.



Conditions for Running the DTC



Voltage supplied to the module is in the normal operating voltage range of 9-16 V.



Conditions for Setting the DTC



B0978, B097C 01



* The BCM detects a short to battery in the respective indicator control circuit, when the output is active.



* The above condition exists for more than 1 second.



B0978, B097B, B097C 02



* The BCM detects a short to ground in the respective circuit, when the output is inactive.



* The above condition exists for more than 1 second.



B0978, B097B, B097C 04



* The BCM detects an open in the respective circuit, when the output is inactive.



* The above condition exists for more than 1 second.



B097B 00



* The BCM detects a difference between the ignition mode switch voltages to the BCM and PEPS module.



* The above condition exists for more than 1 second.

Monday, December 23, 2019

2010 Cadillac Truck SRX AWD V6-2.8L Turbo Page 1014

2010 Cadillac Truck SRX AWD V6-2.8L Turbo Page 1014



* 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 P0116



- Engine Coolant Temperature (ECT) Sensor Performance



DTC P050C



- Cold Start Engine Coolant Temperature (ECT) Performance



Diagnostic Fault Information



Typical Scan Tool Data



Circuit Description



The engine coolant temperature (ECT) sensor is a variable resistor that measures the temperature of the engine coolant. The engine control module



(ECM) supplies 5 V to the ECT signal circuit and supplies a ground to the low reference circuit. The ECM monitors the mutual performance of the



ECT and the intake air temperature (IAT) signals. The ECM monitors the warm up and cool down behavior of the sensors, after a vehicle driven at



operating temperature is shut down. If the ECM detects that the ECT is not with in a predetermined range of IAT after a long soak, or the ECT and



IAT are not within a range of each other, as compared to a previous cold start, this DTC sets.



The following table illustrates the difference between temperature, resistance, and voltage:



Conditions for Running the DTC



P0116



* Before the ECM can report DTC P0116 failed, DTC P0101 must run and pass.



* DTC P0100, P0101, P0102, P0103, P0117, P0118, P0119, P0335, P0336, or P0338 is not set.



* The engine speed is greater than 1,000 RPM.



* The engine coolant temperature is less than 93掳C (200掳F).



* The ignition was OFF for greater than 5 Hours after the previous engine shut down.



* The accumulated air mass of the previous ignition cycle was greater than 1,500 g.



* The DTC runs once an ignition cycle when the above conditions are met for greater than 35 s.



P050C



* The time after the engine started is greater than 5 s.



* The accumulated air mass of the previous ignition cycle was greater than 4,000 g.



* The engine run time of the previous ignition cycle was greater than 8 min.



* The ECT at the previous engine shut-down is greater than 85掳C (185掳F).



* The ignition was OFF for greater than 6 h after the previous engine shut-down.



* DTCs P0111, P0112, P0113, P0114, P0117 or P0118 are not set.



* The block heater is not detected.



* This DTC runs continuously.



Conditions for Setting the DTC



* The ECM determines the difference between the ECT and IAT at ignition ON is not within 10掳C (50掳F) of the difference recorded during a

Saturday, November 23, 2019

2010 Cadillac Truck Escalade/ESV RWD V8-6.2L Page 3018

2010 Cadillac Truck Escalade/ESV RWD V8-6.2L Page 3018



* 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 U2142 00



- Lost Communication With Yaw Rate Sensor (YRS)



Circuit/System Description



Modules connected to the CAN bus 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. 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.



The electronic brake control module (EBCM) activates the other modules connected to the CAN serial data circuits by applying voltage when the



ignition key is in ACC, ON or START. The EBCM, Yaw Rate and Lateral Acceleration Sensor are the only modules connected to the CAN bus



serial data circuits. For more information on CAN bus serial data refer to Data Link Communications Description and Operation (See: Powertrain



Management/Computers and Control Systems/Information Bus/Description and Operation).



Conditions for Running the DTC



* The system voltage is between 9-16 volts.



* The vehicle power mode master requires serial data communication to occur.



Conditions for Setting the DTC



A supervised periodic message that includes the transmitter module availability has not been received.



Action Taken When the DTC Sets



* The vehicle stability enhancement system (VSES), if equipped, and traction control system (TCS) will not function.



* System OFF lamps will illuminate for these systems.



Conditions for Clearing the DTC



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



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



Diagnostic Aids



* Sometimes, while diagnosing a specific customer concern or after a repair, you may notice a history U-code present. However, there is no



associated "current" or "active" status. Loss-of- communication U-codes such as these can set for a variety of reasons. Many times, they are



transparent to the vehicle operator and technician, and/or have no associated symptoms. Eventually, they will erase themselves automatically



after a number of fault-free ignition cycles. This condition would most likely be attributed to one of these scenarios:



- A control module on the data communication circuit was disconnected while the communication circuit is awake.



- Power to one or more modules was interrupted during diagnosis.



- A low battery condition was present, so some control modules stop communicating when battery voltage drops below a certain threshold.



- Battery power was restored to the vehicle and control modules on the communication circuit did not all re-initialize at the same time.



- If a loss-of-communication U-code appears in history for no apparent reason, it is most likely associated with one of the scenarios above.



These are all temporary conditions and should never be interpreted as an intermittent fault, causing you to replace a part.



* A control module may have a U-code stored in history that does not require any repairs. Issues with late or corrupted messages between



control modules can be temporary with no apparent symptom or complaint; this does not mean the control module is faulty. Do not replace a



control module based only on a history U-code.



* Do not replace a control module reporting a U-code. The U-code identifies which control module needs to be diagnosed for a communication



issue.



* Communication may be available between the BCM and the scan tool with either the low or high speed GMLAN serial data system



inoperative. This condition is due to the BCM using both the low and high speed GMLAN systems.



* Use to determine if the module uses high or low speed GMLAN serial data communications.



* Some control modules may not have internal protection for specific control circuits and may open a B+ or ignition fuse. If a fuse is open and



the B+ or ignition circuit is not shorted to ground, ensure none of the control circuits are shorted to ground before replacing the control



module.



* This diagnostic can be used for any control module that is not communicating, regardless of the type of serial data circuit it is connected to,



providing the vehicle is equipped with the control module.