Sunday, February 2, 2020

2010 Cadillac Truck SRX AWD V6-2.8L Turbo Page 1544

2010 Cadillac Truck SRX AWD V6-2.8L Turbo Page 1544



DTC P0480



- Cooling Fan Speed Output Circuit



DTC P0691



- Cooling Fan Speed Output Circuit Low Voltage



DTC P0692



- Cooling Fan Speed Output Circuit High Voltage



Diagnostic Fault Information



Circuit/System Description



The engine control module (ECM) commands the cooling fan depending on cooling requirements. The ECM controls the cooling fan speed by



commanding the cooling fan control module. The cooling fan control module supplies the power and ground circuits for the cooling fan. The ECM



sends a pulse width modulated (PWM) signal to the cooling fan control module. The cooling fan control module interprets the signal and operates



the cooling fan at the commanded speed.



Conditions for Running the DTC



* The engine speed is greater than 0 RPM.



* The ignition voltage is between 10-18 volts.



* The DTCs run continuously once the above conditions are met.



Conditions for Setting the DTC



The ECM detects that the commanded state of the driver and the actual state of the control circuit do not match for greater than 1 second.



Action Taken When the DTC Sets



DTCs P0480, P0691, and P0692 are Type B DTCs.



Conditions for Clearing the MIL/DTC



DTCs P0480, P0691, and P0692 are Type B DTCs.



Diagnostic Aids



The ECM has the capability of providing command to the fan module even when a scan tool output control is being used. Always refer to the fan



control command parameters on the scan tool to know when the fan is being commanded ON by the ECM.



Reference Information



Schematic Reference



Engine Cooling Schematics (See: Engine, Cooling and Exhaust/Cooling System/Diagrams)



Connector End View Reference



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



Description and Operation



Cooling Fan Description and Operation (LAU) (See: Engine, Cooling and Exhaust/Cooling System/Description and Operation/Cooling Fan



Description and Operation)Cooling Fan Description and Operation (LF1) (See: Engine, Cooling and Exhaust/Cooling System/Description and



Operation/Cooling Fan 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

2010 Cadillac Truck SRX AWD V6-2.8L Turbo Technical Service Bulletin # 08-03-10-004A Date: 090724

2010 Cadillac Truck SRX AWD V6-2.8L Turbo Technical Service Bulletin # 08-03-10-004A Date: 090724



Wheels/Tires - Accessory Wheel And Tire Information



INFORMATION



Bulletin No.: 08-03-10-004A



Date: July 24, 2009



Subject: Mounting, Balancing and Installation of Accessory Wheels and Tires Available Through GM Accessories



Models:



2010 and Prior GM Passenger Cars and Light Duty Trucks (Including Saturn, EXCLUDING Astra)



2003-2010 HUMMER H2



2006-2010 HUMMER H3



Supercede:



This bulletin is being revised to add the 2010 model year. Please discard Corporate Bulletin Number 08-03-10-004 (Section 03 - Suspension).



This bulletin is intended to offer comprehensive instructions to GM Dealers and authorized GM Accessory Distributor/Installers as to the proper



methods for mounting, balancing, and installing accessory wheels and tires. Adherence to these methods will ensure that the vehicle delivered to the



customer is of the highest quality.



Tire Pressure Monitor (TPM) Sensor Installation



1. Clean any dirt or debris from the grommet sealing area.



2. Insert the sensor in the wheel hole with the air passage facing away from the wheel



3. Install the sensor nut and position the sensor body parallel to the inside wheel surface while tightening the nut.



Tighten



Tighten the sensor nut to 7 Nm (62 lb in).



Tire Mounting



Important



When mounting the tires, use the approved tire mounting lubricant. DO NOT use silicon or corrosive base compounds to lubricate the tire



bead and the wheel rim. A silicon base compound can allow the tire to slip on the rim resulting in imbalance or braking failure. A corrosive



type compound can cause tire or rim deterioration.



1. Verify that the tire is at least 15掳C (60掳F) prior to mounting and inflating.



2. Apply GM Vehicle Care Rubber Lubricant, P/N 12345884 (Canadian P/N 5728223), to both of the tire beads and both of the wheel bead



hump areas for full circumference.



Important



Mounting operation and wheel assembly must be completed within 15 minutes of applying lubricant to ensure proper assembly and



inflation. Excess lubricant (drips and runs) in the tire must be avoided as it affects balance and may cause tire slippage on wheels



during vehicle operation.



2010 Cadillac Truck SRX AWD V6-2.8L Turbo Page 194



3. Position the rim so the TPM valve stem (1) is situated at the 3 o'clock position relative to the head (2). This will protect the TPM sensor body



by ensuring that the bead is under the least amount of tension when it passes over it.



Important



Some GM Accessory wheels have a "reverse-rim" design and will be marked as such. "Reverse-rim" wheels should be positioned



face-down for tire mounting, taking care not to damage the face of the wheel.



4. Using the tire changer, rotate the tire/wheel assembly clockwise when transferring the tire bead to the inside of the wheel rim.



5. After the bottom bead is on the wheel, reposition the wheel and tire so that the TPM valve stem is again situated at the 3 o'clock position



relative to the head. This will protect the sensor while mounting the tire bead to the outside of the wheel.



6. Using the tire changer, rotate the tire/wheel assembly clockwise when transferring the tire bead to the inside of the wheel rim.



Danger



To avoid serious personal injury, do not stand over the tire when inflating. The bead may break when the bead snaps over the safety



hump. Do not exceed 40 psi (275 kPa) pressure when inflating any tire if beads are not seated. If 40 psi (275 kPa) pressure will not



seat the beads, deflate, relubricate the beads and reinflate. If greater than 40 psi (275 kPa) is required to install the tire on the wheel,



a safety cage must be used. Overinflation may cause the bead to break and cause serious personal injury.



7. Inflate the tire until it passes the bead humps. Be sure that the valve core is not installed at this time.



2010 Cadillac Truck SRX AWD V6-2.8L Turbo Page 195



8. Install the valve core to the TPM's valve stem.



9. Set the inflation pressure to 40 psi (275 kPa). It will be readjusted to the proper placard pressure when it is installed on the vehicle. This



higher pressure allows for losses due to temperature change or any leakage that may occur prior to installation on the vehicle.



Important



Aggressive accelerating and braking should be avoided for the first 24 hours after the tires have been mounted to avoid the tire slipping on



the rim.



Calibration of Tire/Wheel Balancer



Tire/wheel balancing equipment should be checked for proper calibration every two weeks. Check the calibration of the tire and wheel assembly



balancer according to the manufacturer's recommendations or perform the following test:



Important



If the balancer fails any of the steps in this calibration test, the balancer should be calibrated according to the manufacturer's



instructions. If the balancer cannot be calibrated, contact the manufacturer for assistance.



1. Spin the balancer without a wheel or any of the adapters on the shaft.



2. Inspect the balancer readings.



Specification



Zero within 0.25 oz (7 g).



3. If the balancer is within the specification range, balance a tire and wheel assembly - that is within radial and lateral runout tolerances - to



ZERO, using the same balancer.



4. After the tire and wheel assembly has been balanced, add a 3 oz (85 g) test weight to the wheel at any location.



5. Spin the tire and wheel assembly again. Note the readings.



- In the static and dynamic modes, the balancer should call for 3 oz (85 g) of weight, 180 degrees opposite the test weight.



- In the dynamic mode, the weight should be called for on the flange of the wheel opposite the test weight.



6. With the assembly imbalanced to 3 oz (85 g), cycle the balancer five times.



7. Inspect the balancer readings:



Specification



Maximum variation: 0.25 oz (7 g).



8. Index the tire and wheel assembly on the balancer shaft 90 degrees from the previous location.



9. Cycle the balancer with the assembly at the new location.



10. Inspect the balancer readings:



Specification



Maximum variation: 0.25 oz (7 g).



11. Repeat Steps 8 through 10 until the tire and wheel assembly has been cycled and checked at each of the 4 locations on the balancer shaft.



Tire and Wheel Balancing



1. Follow the balancer manufacturer's instructions to mount the wheel and tire assembly on the balancer.



2. Perform a dynamic balance on the tire and wheel per the manufacturer's instructions (dynamic balance is sometimes referred to as "couple"



balance). This will indicate the correct amount of balance weight to add at two positions on the wheel.



2010 Cadillac Truck SRX AWD V6-2.8L Turbo Page 196



Adhesive Weight



Clip-On Weight



3. Install a clip-on balance weight on the inboard wheel flange per the weight indications on the balancer.



- Use only MC-series polyester-coated weights at this location. GM Accessory wheels have an MC-rim contour at the inboard location.



- Use only a nylon or plastic tipped hammer to avoid damaging the weight coating or the wheel finish.



- Never strike a wheel weight more than twice. If it doesn't seat properly after two hits, discard it and try a new weight.



Wheel Rim Profile with Adhesive Weight Locations Shown



Important



Some older GM Accessory wheels may be MC style rims both inboard and outboard and should, therefore, use clip-on MC weights



in both positions. Some GM Accessory wheels may be flangeless on the inboard side. In this case, follow the instructions for applying



adhesive balanced weights. Place the adhesive weight on the face of the rim inner surface, as far inboard as possible (2).



4. Install adhesive balance weights at the outboard location (1) on the wheel per the weight indications on the balancer.



- Both the wheel and the weights must be at least 15掳C (60掳F).



- The area where the weights will be applied must be clean and dry. Wipe the area with a 50/50 mixture, by volume, of isopropyl alcohol



and clean water using a clean cloth. Allow to dry completely.



- Install adhesive weights just inboard of the wheel face on the rim inner surface.



- Apply a force of 21 lb (90 N) to the weights to achieve proper adhesion. This is very important to achieve proper adhesion.



Balance Weight Limits



When dynamically balancing a wheel and tire assembly, the maximum amount of balance weight that should be used at any one location on a wheel



is 5 oz (141 g). This means a maximum of 5 oz (141 g) on the outboard flange (or behind the wheel face, if adhesive weight is used), and maximum



of 5 oz (141 g) on the inboard flange (or on the inner rim surface).



If the balancer calls for greater than 5 oz (141 g) n either position, perform the following steps to reduce the weight:



1. Mark the valve stem location on the tire.



2. Deflate the tire/wheel assembly.



3. Remove any existing balance weights.



4. Rotate tire 180 degrees on the wheel.



5. Re-inflate tire/wheel assembly and rebalance.



6. If the tire/wheel assembly still requires more than 5 oz (141 g) per plane, repeat Steps 1-4, rotating the tire 90 degrees from its original



2010 Cadillac Truck SRX AWD V6-2.8L Turbo Page 197



position.



7. If the tire/wheel assembly still requires more than 5 oz (141 g) per plane, repeat Steps 1-4, rotating the tire 270 degrees from its original



position.



8. If tire/wheel assembly still requires more than 5 oz (141 g) per plane, remove the tire from the wheel, remove all wheel weights and TPM



sensor, and check static balance of the wheel.



Important



This is a static balance check only. The operating mode of the balancer must be changed from "dynamic or couple" to "static". The



balancer should feed back only a single weight value when in static mode.



- If static balance of wheel is 4 oz (113 g) or less, re-use wheel and reject the tire for excessive imbalance.



- If static balance of the wheel is greater than 4 oz (113 g), re-use the tire and reject the wheel for excessive imbalance.



Tire Pressure Monitor Sensor Learn



When installing GM Accessory wheels and tires on a vehicle that have new TPM sensors installed in them, it is necessary to learn the new sensor



identification codes/locations into the vehicle's module. If the relearn procedure is not performed properly, the module will continue to try to



communicate with the original sensors that were removed from the vehicle. This will result in the vehicle displaying a TPM system malfunction



message once the vehicle is removed from the proximity of the original sensors for an extended period of time. Please see the Tire Pressure Sensor



Learn procedure in SI for the vehicle specific instructions.



Tire Inflation Pressure and Placards



Tire Placard



When installing GM Accessory wheels and tires on a vehicle, the new tire pressure placard (supplied with the GM Accessory wheel kit) must be



installed over the existing placard inside the driver's side door frame. This is required when the size of the GM Accessory tires is different than



those being removed from the vehicle.



The new tire placard should be located within the red box, over the top of the original tire label found on the door jamb. To locate the placard



within the red box use the upper left hand edge of the red line as a guide. When properly placed, the new tire placard will obscure the original tire



information. Be sure that the surface is clean and dry, and the surface temperature is not less than 21掳C (65掳F).



Tire Inflation Pressure



Note the front, rear, and spare (where applicable) tire inflation pressures shown on the new tire placard. The inflation pressure of new tires on the



vehicle must be adjusted to the values shown on the placard. Even if the tire size was not changed on the vehicle and the tire pressure placard was



not replaced, all of the tires must have their inflation pressures adjusted to match those shown on tire pressure placard.



Electronic Module Reprogramming for Proper Tire Inflation Pressure



When GM Accessory wheels and tires are installed on a vehicle that requires a different tire inflation pressure according to the Tire Inflation



Placard, the vehicle must be updated with the new pressure and tire type (P or LT). If this is not done the vehicle will incorrectly report low or high



tire pressure conditions incorrectly. Please see the Corporate Bulletin specific to the vehicle and wheel/tire application for detailed information on



updating of the tire type/pressure.



Other Electronic Module Reprogramming



For proper vehicle operation and to ensure coverage under the provisions of the new vehicle warranty, the vehicle may require that certain control



modules be reprogrammed with the correct calibrations as soon as the GM Accessory wheels and tires are installed. Examples of the modules that



may be affected are Electronic Brake Control Module (for proper anti-lock brake and stability control performance) and Engine Control Module



(for proper speedometer/odometer function).



Please see the Corporate Bulletin specific to the vehicle and wheel/tire application for detailed information on module reprogramming.

2010 Cadillac Truck SRX AWD V6-2.8L Turbo Page 1999

2010 Cadillac Truck SRX AWD V6-2.8L Turbo Page 1999



Reference Information



Schematic Reference



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



Diagrams)



Connector End View Reference



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



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)



Description and Operation



Transmission Component and System Description (See: Transmission and Drivetrain/Automatic Transmission/Transaxle/Description and



Operation/AF40-6 - Automatic Transmission/Transmission Component and System Description)



DTC Type Reference



Powertrain Diagnostic Trouble Code (DTC) Type Definitions (See: Diagnostic Trouble Code Descriptions/Powertrain Diagnostic Trouble Code



(DTC) Type Definitions)



Scan Tool Reference



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



Circuit/System Verification



1. Ensure the transmission fluid temperature is between 50-80掳C (122-176掳F).



2. Operate the vehicle in 2nd gear long enough to ensure at least a 3掳C (5掳F) rise in transmission fluid temperature, then operate the vehicle in



Park for 5 s.



3. Observe the scan tool data TCC Pressure Control Solenoid Valve Current parameter. The reading should be between 0.1-1.1 A.



Circuit/System Testing



Command the TCC Solenoid Valve increase and decrease with a scan tool. The value should rise from 0.1-1.1 A and return to 0.1 A.



If the value does not change, turn ignition OFF, remove the K71 Transmission Control Module. Connect a test lamp between the low reference



circuit terminal 4 X2 at the K71 Transmission Control Module and the voltage supply component circuit terminal 9 X2 at the K71 Transmission



Control Module. Command the TCC Solenoid Valve increase and decrease with a scan tool. The test lamp has to illuminate brighter with increasing



current.



If the test lamp always illuminates or always does not illuminate, replace the K71 Transmission Control Module.



Component Testing



Static Test



1. Ignition OFF, remove the K71 Transmission Control Module.



2. Test for 5-5.6 ohm at 20掳C (68掳F) between the low reference circuit terminal 4 X2 and the voltage supply circuit terminal 9 X2.



瀚慖f less than the specified range, test the wiring harness for internal short. If the circuit test normal, replace the Q27D Pressure Control



Solenoid Valve 4.



3. Test for infinite resistance between each terminal and the low reference circuit terminal 4 X2 and also to the voltage supply circuit terminal 9



X2.



瀚慖f less than the specified range, replace the wiring harness.



4. If all circuit test normal, perform the control solenoid valve inspection. Refer to Control Solenoid Valve Inspection (M36 and MXE) (See:



Transmission and Drivetrain/Automatic Transmission/Transaxle/Testing and Inspection/Component Tests and General Diagnostics/AF40-6 -



Automatic Transmission).



瀚慖f the inspection test normal, replace the control valve body.

2010 Cadillac Truck SRX AWD V6-2.8L Turbo Page 1229

2010 Cadillac Truck SRX AWD V6-2.8L Turbo Page 1229



* Injector 5 terminal 5



* Injector 6 terminal 8



瀚慖f the test lamp remains OFF, test the control circuit for a high resistance. If the circuit/connections test normal, replace the K20 Engine



Control Module.



Note: Testing for steps 5 and 6 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.



5. Ignition OFF, test for infinite resistance between the ignition voltage circuit terminal listed below and ground.



* Injector 1 terminal 3



* Injector 2 terminal 6



* Injector 3 terminal 4



* Injector 4 terminal 7



* Injector 5 terminal 5



* Injector 6 terminal 8



瀚慖f not the specified value, repair the ignition voltage, or control circuit, for a short to ground. If the circuits/connections test normal, test



or replace the appropriate Q17 fuel injector.



6. Test for 12-16 ohm between the appropriate ignition voltage circuit terminal 1 or 2 and each fuel injector control circuit listed below.



* Injector 1 terminal 3



* Injector 2 terminal 6



* Injector 3 terminal 4



* Injector 4 terminal 7



* Injector 5 terminal 5



* Injector 6 terminal 8



瀚慖f less than the specified range, test for a short between the control circuit and the ignition voltage circuit. If the circuits/connections test



normal, test or replace the appropriate Q17 fuel injector.



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



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



Repair Instructions



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



* Fuel Injector Replacement (See: Powertrain Management/Fuel Delivery and Air Induction/Fuel Injector/Service and Repair)



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



programming



P0277



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



(LAU)



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



DTC P0203



- Cylinder 3 Injector Control Circuit

Saturday, February 1, 2020

2010 Cadillac Truck SRX AWD V6-2.8L Turbo Page 1537

2010 Cadillac Truck SRX AWD V6-2.8L Turbo Page 1537



Note: Depending on the application, the relay coil resistance will be within one of the following ranges.



1. Test for one of the following resistance specifications between terminals 85 and 86 of the KR75 powertrain relay:



* 70-110 ohm



* 200-250 ohm



瀚慖f not within the specified range, replace the KR75 powertrain relay.



2. Measure for infinite resistance between the following terminals of the KR75 powertrain relay:



* 30 and 86



* 30 and 87



* 30 and 85



* 85 and 87



瀚慖f continuity is detected, replace the KR75 powertrain relay.



3. Connect a 15 A fused jumper wire from the positive terminal of the battery to relay terminal 85. Connect a jumper wire from the negative



terminal of the battery to relay terminal 86. Measure for less than 2 Ohms between terminals 30 and 87 of the relay.



瀚慖f greater than the specified value, replace the KR75 powertrain relay.



Repair Instructions



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



* Relay Replacement (Attached to Wire Harness) (See: Power and Ground Distribution/Power Distribution Relay/Service and Repair/Relay



Replacement (Attached to Wire Harness))Relay Replacement (Within an Electrical Center) (See: Power and Ground Distribution/Power



Distribution Relay/Service and Repair/Relay Replacement (Within an Electrical Center))



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



programming



P0689



DTC P0685, P0686, P0687, P0689, or P0690 (LAU)



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 P0685



- Engine Controls Ignition Relay Control Circuit



DTC P0686



- Engine Controls Ignition Relay Control Circuit Low Voltage



DTC P0687



- Engine Controls Ignition Relay Control Circuit High Voltage



DTC P0689



- Engine Controls Ignition Relay Feedback Circuit Low Voltage



DTC P0690



- Engine Controls Ignition Relay Feedback Circuit High Voltage



Diagnostic Fault Information

2010 Cadillac Truck SRX AWD V6-2.8L Turbo Page 1342

2010 Cadillac Truck SRX AWD V6-2.8L Turbo Page 1342



Distribution Relay/Service and Repair/Relay Replacement (Within an Electrical Center))



* Secondary Air Injection Pump Replacement (See: Powertrain Management/Emission Control Systems/Air Injection/Air Injection



Pump/Service and Repair)



P0418



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.



Conditions for Running the DTC



* The engine speed is greater than 80 RPM.



* The ignition voltage is between 10-18 V.



* The ECM has commanded the air pump relay ON and OFF at least once during the ignition cycle.



* The DTCs run continuously when the above conditions are met.



Conditions for Setting the DTC



P0418



The ECM detects the secondary air injection pump relay control circuit is open.



P2257



The ECM detects the secondary air injection pump relay control circuit is shorted to ground.



P2258



The ECM detects the secondary air injection pump relay control circuit is shorted to voltage.



Action Taken When the DTC Sets



DTC P0418, P2257, and P2258 are Type B DTCs.

2010 Cadillac Truck SRX AWD V6-2.8L Turbo Technical Service Bulletin # 01-07-30-042G Date: 110922

2010 Cadillac Truck SRX AWD V6-2.8L Turbo Technical Service Bulletin # 01-07-30-042G Date: 110922



A/T - 2-3 Upshift or 3-2 Downshift Clunk Noise



INFORMATION



Bulletin No.: 01-07-30-042G



Date: September 22, 2011



Subject: Information on 2-3 Upshift or 3-2 Downshift Clunk Noise



Models:



2012 and Prior GM Passenger Cars and Light Duty Trucks



Equipped with 4L60-E, 4L65-E or 4L70-E Automatic Transmission (RPOs M30, M32, M70)



Supercede:



This bulletin is being revised to add model years. Please discard Corporate Bulletin Number 01-07-30-042F (Section 07 - Transmission/Transaxle).



2010 Cadillac Truck SRX AWD V6-2.8L Turbo Page 130



Important



For 2005 model year fullsize utilities and pickups, refer to Corporate Bulletin Number 05-07-30-012.



Some vehicles may exhibit a clunk noise that can be heard on a 2-3 upshift or a 3-2 downshift.



During a 2-3 upshift, the 2-4 band is released and the 3-4 clutch is applied. The timing of this shift can cause a momentary torque reversal of the



output shaft that results in a clunk noise. This same torque reversal can also occur on a 3-2 downshift when the 3-4 clutch is released and the 2-4



band applied. This condition may be worse on a 4-wheel drive vehicle due to the additional tolerances in the transfer case.



This is a normal condition. No repairs should be attempted.

2010 Cadillac Truck SRX AWD V6-2.8L Turbo Page 1147

2010 Cadillac Truck SRX AWD V6-2.8L Turbo Page 1147



* Injector 3 terminal 4



* Injector 4 terminal 7



* Injector 5 terminal 5



* Injector 6 terminal 8



瀚慖f less than the specified range, test for a short between the control circuit and the ignition voltage circuit. If the circuits/connections test



normal, test or replace the appropriate Q17 fuel injector.



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



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



Repair Instructions



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



* Fuel Injector Replacement (See: Powertrain Management/Fuel Delivery and Air Induction/Fuel Injector/Service and Repair)



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



programming



P0206



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



(LAU)



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



DTC P0203



- Cylinder 3 Injector Control Circuit



DTC P0204



- Cylinder 4 Injector Control Circuit



DTC P0205



- Cylinder 5 Injector Control Circuit



DTC P0206



- Cylinder 6 Injector Control Circuit



DTC P0261



- Cylinder 1 Injector Control Circuit Low Voltage



DTC P0262



- Cylinder 1 Injector Control Circuit High Voltage



DTC P0264



- Cylinder 2 Injector Control Circuit Low Voltage



DTC P0265



- Cylinder 2 Injector Control Circuit High Voltage



DTC P0267



- Cylinder 3 Injector Control Circuit Low Voltage



DTC P0268



- Cylinder 3 Injector Control Circuit High Voltage

2010 Cadillac Truck SRX AWD V6-2.8L Turbo Page 1637

2010 Cadillac Truck SRX AWD V6-2.8L Turbo Page 1637



1. Engine idling in Park, with parking brake applied and drive wheels chocked.



2. Perform the Transmission Fluid Level and Condition Check (See: Transmission and Drivetrain/Automatic Transmission/Transaxle/Testing



and Inspection/Component Tests and General Diagnostics/6T70/6T75 - Automatic Transmission/Transmission Fluid Level and Condition



Check) to verify correct fluid level and condition.



3. Monitor the Transmission Fluid Pressure (TFP) Switch 1 with a scan tool. Place the gear select lever in Park, Reverse, and Neutral range.



Verify the TFP Switch 1 parameter states are correct for Park, Reverse, and Neutral. Refer to Transmission Fluid Pressure Switch Logic (



See: Specifications/Mechanical Specifications/Automatic Transmission/Transaxle/System Specifications/6T70/6T75 - Automatic



Transmission/Transmission Fluid Pressure Switch Logic).



4. Place the gear select lever in Drive range. Command the shift transmission with a scan tool through all forward ranges. Verify the TFP



Switch 1 parameter states are correct for all forward ranges. Refer to Transmission Fluid Pressure Switch Logic (See:



Specifications/Mechanical Specifications/Automatic Transmission/Transaxle/System Specifications/6T70/6T75 - Automatic



Transmission/Transmission Fluid Pressure Switch Logic).



5. Engine idling in Park, verify with a scan tool the Transmission ISS/OSS Supply Voltage parameter displays OK.



6. Engine idling in Park. Observe the Transmission ISS parameter on the scan tool, while varying the engine speed. The Transmission ISS



parameter should vary with engine speed and not drop out.



7. Operate the vehicle at 16-32 km/h (10-20 mph) while observing the Transmission OSS parameter on the scan tool. The Transmission OSS



parameter should vary with the vehicle speed and not drop out.



Note: Perform a scan tool snapshot, during the road test.



8. Perform the Road Test (See: Transmission and Drivetrain/Automatic Transmission/Transaxle/Testing and Inspection/Initial Inspection and



Diagnostic Overview). Verify the transmission operation performs as indicated in the road test instructions.



9. Review the scan tool snapshot data. Verify the following transmission data parameters display the correct values for each gear range:



* Transmission ISS



* Transmission OSS



* PC Solenoid 2



* TFP Switch 1



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



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



Circuit/System Testing



Note: You must perform the Circuit/System Verification first.



1. Perform the Line Pressure Check (See: Transmission and Drivetrain/Automatic Transmission/Transaxle/Testing and Inspection/Component



Tests and General Diagnostics/6T70/6T75 - Automatic Transmission/Line Pressure Check). Verify the transmission line pressure gauge is



within the range specified in the Line PC Solenoid Valve Pressure table. Refer to Solenoid Valve Pressure (See: Specifications/Mechanical



Specifications/Automatic Transmission/Transaxle/System Specifications/6T70/6T75 - Automatic Transmission/Solenoid Valve Pressure).



瀚慖f not within the specified ranges, refer to Fluid Pressure High or Low (See: Transmission and Drivetrain/Automatic



Transmission/Transaxle/Testing and Inspection/Symptom Related Diagnostic Procedures/6T70/6T75 - Automatic Transmission/Fluid



Pressure High or Low).



2. Ignition OFF, remove the control solenoid valve assembly. Refer to Control Solenoid Valve and Transmission Control Module Assembly



Replacement (See: Powertrain Management/Transmission Control Systems/Actuators and Solenoids - Transmission and



Drivetrain/Actuators and Solenoids - A/T/Shift Solenoid/Service and Repair).



3. Perform the Control Solenoid Valve and Transmission Control Module Assembly Solenoid Performance Test (See: Transmission and



Drivetrain/Automatic Transmission/Transaxle/Testing and Inspection/Component Tests and General Diagnostics/6T70/6T75 - Automatic



Transmission/Control Solenoid Valve and Transmission Control Module Assembly Solenoid Performance Test). A pressure change should



occur for each solenoid valve.



瀚慖f the control solenoid valve assembly does not pass the performance test, replace the control solenoid valve assembly.



4. Listed in the table below, are conditions for each component that could set DTC P0776 or P0777. Carefully inspect each component for that



condition. Repair or replace as necessary.

2010 Cadillac Truck SRX AWD V6-2.8L Turbo Page 1423

2010 Cadillac Truck SRX AWD V6-2.8L Turbo Page 1423



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



Fuel Pump Control Module



1. Ignition OFF, disconnect the harness connectors at the K27 fuel pump control module.



2. Ignition OFF and scan tool disconnected, open and close the driver door, and wait 1 minute. Test for less than 5 Ohms between the ground



circuit terminal 25 and ground.



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



3. Verify that a test lamp illuminates between the IGN/B+ circuit terminals listed below and ground:



* Terminal 1



* Terminal 21



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



4. If all circuits test normal, replace the K27 fuel pump control module.



Transmission Control Module



1. Ignition OFF, disconnect the harness connectors at the T12 transmission.



2. Ignition OFF, and scan tool disconnected, open and close the driver door, and wait 1 minute. Test for less than 5 Ohms between the ground



circuit terminals listed below and ground:



* Terminal 1 (MH2 or MH4)



* Terminal 18 (MH2 or MH4)



* Terminal 9 (MXE)



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



3. Ignition ON, verify that a test lamp illuminates between the IGN/B+ circuit terminals listed below and ground:



* Terminal 10 (MH2 or MH4)



* Terminal 1 (MXE)



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



4. If all circuits test normal, replace the K71 transmission control module.



Repair Instructions



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



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



and programming



6T70/6T75 - Automatic Transmission



DTC P0562, P0563, or P2534



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 P0562



- System Voltage Low



DTC P0563



- System Voltage High



DTC P2534



- Ignition 1 Switch Circuit Low Voltage