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2010 Cadillac Truck SRX FWD V6-3.0L Page 2120
2010 Cadillac Truck SRX FWD V6-3.0L Page 2120
P2728
* DTC P2728 has not set this ignition cycle.
* The engine speed is 400 RPM or greater for 5 seconds.
* The ignition voltage is 8.6 volts or greater.
P2729
* DTC P2729 has not set this ignition cycle.
* The engine speed is 400 RPM or greater for 5 seconds.
* The ignition voltage is 8.6 volts or greater.
P2730
* DTC P2730 has not set this ignition cycle.
* The engine speed is 400 RPM or greater for 5 seconds.
* The ignition voltage is 8.6 volts or greater.
Conditions for Setting the DTC
P2728
The TCM detects an internal electrical performance malfunction of the clutch PC solenoid 5 control circuit where the measured clutch PC solenoid
5 current does not equal the commanded clutch PC solenoid 5 current for 5 seconds.
P2729
The TCM detects a short to ground on the clutch PC solenoid 5 control circuit for 1 second.
P2730
The TCM detects an open or short to voltage on the clutch PC solenoid 5 control circuit for 1 second.
Action Taken When the DTC Sets
P2728
* DTC P2728 is a Type C DTC.
* The TCM freezes transmission adaptive functions on the 1-2-3-4 clutch.
P2729
* DTC P2729 is a Type A DTC.
* The TCM commands maximum line pressure.
* The TCM freezes transmission adaptive functions.
* The TCM inhibits Tap Up/Down function.
* The TCM inhibits manual shifting of forward gears.
* The TCM limits then the transmission to reverse, 1st and 3rd gear.
P2730
* DTC P2730 is a Type A DTC.
* The TCM inhibits the TCC.
* The TCM forces High Side Driver 1 OFF.
* The TCM commands maximum line pressure.
* The TCM inhibits Tap Up/Down function.
* The TCM inhibits manual shifting of forward gears.
* The TCM limits then the transmission to reverse and 5th gear.
Conditions for Clearing the DTC
* DTC P2728 is a Type C DTC.
* DTCs P2729 and P2730 are Type A DTCs.
Reference Information
Connector End View Reference
* Component Connector End Views (See: Diagrams/Connector Views/Connector End Views By Name)
* Inline Harness Connector End Views (See: Diagrams/Connector Views/Multiple Junction Connector/Connector End Views By Number)
Description and Operation
Transmission General Description (See: Transmission and Drivetrain/Automatic Transmission/Transaxle/Description and Operation/6T70/6T75 -
Automatic Transmission/Transmission General Description)
Electrical Information Reference
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2010 Cadillac Truck SRX FWD V6-3.0L Page 1324
2010 Cadillac Truck SRX FWD V6-3.0L Page 1324
Circuit/System Testing
1. Verify the integrity of the entire air induction system including all turbocharger components by inspecting for the following conditions:
* Any damaged components
* Intake air pressure and temperature sensor damage
* A buildup of contamination, snow or ice at the BARO port on the ECM
* Loose or improper installation
* An air flow restriction
* Any vacuum leak
* Any type of air leak between the turbocharger and the throttle body
* An exhaust leak
瀚慖f a condition is found, repair as necessary.
2. Ignition OFF, disconnect the harness connector at the B65 intake air pressure and temperature sensor.
3. Ignition OFF and all vehicle systems OFF. It may take up to 2 minutes for all vehicle systems to power down. Test for less than 5 ohm
between the low reference circuit terminal 1 and ground.
瀚慖f greater than the specified range, test the low reference circuit for an open/high resistance. If the circuit tests normal, replace the K20
ECM.
4. Ignition ON, test for 4.8-5.2 V between the 5 V reference circuit terminal 3 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.
5. Verify the scan tool Boost Pressure Sensor parameter is greater than 250 kPa (36.3 psi).
瀚慖f less than the specified range, test the signal circuit terminal 4 for a short to ground. If the circuit tests normal, replace the K20 ECM.
6. Install a 3 A fused jumper wire between the signal circuit terminal 4 and the low reference circuit terminal 1. Verify the scan tool Boost
Pressure Sensor parameter is less than 1 kPa (0.15 psi).
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 K20 ECM.
7. If the circuits test normal, test or replace the B65 intake air pressure and temperature sensor.
Repair Instructions
Perform the Diagnostic Repair Verification (See: Verification Tests) after completing the diagnostic procedure.
* Turbocharger Pressure Sensor Replacement () for intake air pressure and temperature sensor replacement
* Control Module References (See: Testing and Inspection/Programming and Relearning) for engine control module replacement, setup, and
programming
P0237
DTC P0236, P0237, or P0238
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 P0236
- Turbocharger Boost System Performance
DTC P0237
- Turbocharger Boost Sensor Circuit Low Voltage
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2010 Cadillac Truck SRX FWD V6-3.0L Page 846
2010 Cadillac Truck SRX FWD V6-3.0L Page 846
Connector End View Reference
Component Connector End Views (See: Diagrams/Connector Views/Connector End Views By Name)
Description and Operation
Electronic Suspension Control Description and Operation (See: Steering and Suspension/Suspension/Suspension Control ( Automatic - Electronic
)/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, with a scan tool, command the Damper Actuator Increase and Decrease while observing the Damper Actuator Command parameter.
The parameter should vary between 0-1000 mA. Listen/feel the Q37 shock absorber actuator. The component should activate when changing
between the commanded states.
Circuit/System Testing
1. Ignition OFF, disconnect the harness connector at the appropriate Q37 shock absorber actuator.
2. Perform this setup step in the following order:
1. Connect a test lamp and ammeter in series between both Q37 shock absorber actuator harness connector control circuit terminals.
2. Ignition ON, with a scan tool, attempt to clear all K19 suspension control module DTC's (codes may not clear).
3. With a scan tool, command the Damper Actuator to Increase the amperage to approximately 400 mA and Decrease to 0 mA while comparing
the ammeter displayed values and scan tool Damper Actuator Command parameter displayed values. Verify the following:
* The test lamp is illuminated.
* The ammeter displayed values and scan tool Damper Actuator Command parameter displayed values change and are simultaneously
within 15 mA of each other.
瀚慖f the test lamp is not illuminated and/or the values are not within the specified range, test both control circuits for a short to voltage, short
to ground, or open/high resistance. If all circuits test normal, replace the K19 suspension control module.
4. If all circuits test normal, test or replace the Q37 shock absorber actuator.
Component Testing
Static Test
1. Ignition OFF, disconnect the harness connector at the appropriate Q37 shock absorber actuator.
2. Test for 2-3 ohm between the Q37 shock absorber actuator control terminals.
瀚慖f not within the specified range, replace the Q37 shock absorber actuator.
Repair Instructions
Perform the Diagnostic Repair Verification (See: Verification Tests) after completing the diagnostic procedure.
* Strut, Strut Component, or Spring Replacement (See: Steering and Suspension/Suspension/Suspension Spring ( Coil / Leaf )/Service and
Repair/Front Suspension Coil Spring)
* Shock Absorber Replacement (See: Steering and Suspension/Suspension/Suspension Strut / Shock Absorber/Service and Repair/Rear
Suspension Shock Absorber)
* Control Module References (See: Testing and Inspection/Programming and Relearning) for suspension control module replacement, setup,
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2010 Cadillac Truck SRX FWD V6-3.0L Page 933
2010 Cadillac Truck SRX FWD V6-3.0L Page 933
Typical Scan Tool Data
Circuit/System Description
The heated oxygen sensors (HO2S) are used for fuel control and catalyst monitoring. Each HO2S compares the oxygen content of the surrounding
air with the oxygen content of the exhaust stream. When the engine is started, the control module operates in an Open Loop mode, ignoring the
HO2S signal voltage while calculating the air-to-fuel ratio. While the engine runs, the HO2S heats up and begins to generate a voltage within a
range of 0-1,275 mV. Once sufficient HO2S voltage fluctuation is observed by the control module, Closed Loop is entered. The control module
uses the HO2S voltage to determine the air-to-fuel ratio. An HO2S voltage that increases toward 1,000 mV indicates a rich fuel mixture. An HO2S
voltage that decreases toward 0 mV indicates a lean fuel mixture.
The heating elements inside each HO2S heat the sensor to bring the sensor up to operating conditions faster. This allows the system to enter Closed
Loop earlier and the control module to calculate the air-to-fuel ratio sooner.
Conditions for Running the DTC
P0131, P0137, P0151, or P0157
* DTCs P0068, P0101, P0102, P0103, P0106, P0107, P0108, P0112, P0113, P0116, P0117, P0118, P0120, P0121, P0122, P0123, P0128,
P0201, P0202, P0203, P0204, P0205, P0206, P0207, P0208, P0220, P0222, P0223, P0442, P0443, P0446, P0449, P0455, P0496, P1516,
P2101, P2119, P2135, P2176 are not set.
* The engine is operating in Closed Loop.
* The Ignition 1 voltage is between 10-32 V.
* The fuel level is greater than 10 %.
* The throttle position (TP) is between 3-70 %.
* The DTCs run continuously when the above conditions are met for 2 s.
P0132, P0138, P0152, or P0158
* DTCs P0068, P0101, P0102, P0103, P0106, P0107, P0108, P0112, P0113, P0116, P0117, P0118, P0120, P0121, P0122, P0123, P0128,
P0201, P0202, P0203, P0204, P0205, P0206, P0207, P0208, P0220, P0222, P0223, P0442, P0443, P0446, P0449, P0455, P0496, P1516,
P2101, P2119, P2135, P2176 are not set.
* The engine is operating in Closed Loop.
* The Ignition 1 voltage is between 10-32 V.
* The fuel level is greater than 10 %.
* The throttle position (TP) is between 0-70 %.
* The DTCs run continuously when the above conditions are met for 3 s.
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2010 Cadillac Truck SRX FWD V6-3.0L Page 1426
2010 Cadillac Truck SRX FWD V6-3.0L Page 1426
condition.
瀚慖f no external knock sensor circuit issues exist, replace the K20 ECM.
Repair Instructions
* Knock Sensor Replacement - Bank 1 (See: Powertrain Management/Computers and Control Systems/Knock Sensor/Service and
Repair/Knock Sensor Replacement - Bank 1)
* Knock Sensor Replacement - Bank 2 (See: Powertrain Management/Computers and Control Systems/Knock Sensor/Service and
Repair/Knock Sensor Replacement - Bank 2)
* Control Module References (See: Testing and Inspection/Programming and Relearning) for ECM replacement, setup, and programming
Repair Verification
Perform the Diagnostic Repair Verification (See: Verification Tests) after completing the diagnostic procedure.
P0330
DTC P0324-P0328, P0330-P0333, P06B6, or P06B7 (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 P0324
- Knock Sensor System Performance
DTC P0325
- Knock Sensor Circuit Bank 1
DTC P0326
- Knock Sensor Performance Bank 1
DTC P0327
- Knock Sensor Circuit Low Voltage Bank 1
DTC P0328
- Knock Sensor Circuit High Voltage Bank 1
DTC P0330
- Knock Sensor Circuit Bank 2
DTC P0331
- Knock Sensor Performance Bank 2
DTC P0332
- Knock Sensor Circuit Low Voltage Bank 2
DTC P0333
- Knock Sensor Circuit High Voltage Bank 2
DTC P06B6
- Control Module Knock Sensor Processor 1 Performance
DTC P06B7
- Control Module Knock Sensor Processor 2 Performance
Diagnostic Fault Information
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2010 Cadillac Truck SRX FWD V6-3.0L Page 1936
2010 Cadillac Truck SRX FWD V6-3.0L Page 1936
瀚慖f not the specified value, replace the Q6 Camshaft Position Actuator Solenoid Valve.
Repair Instructions
Perform the Diagnostic Repair Verification (See: Verification Tests) after completing the diagnostic procedure.
* Camshaft Position Actuator Solenoid Valve Solenoid Replacement - Bank 1 (Right Side) Intake (See: Engine, Cooling and
Exhaust/Engine/Actuators and Solenoids - Engine/Variable Valve Timing Solenoid/Service and Repair/Camshaft Position Actuator Solenoid
Valve Solenoid Replacement - Bank 1 (Right Side) Intake)
* Camshaft Position Actuator Solenoid Valve Solenoid Replacement - Bank 1 (Right Side) Exhaust (See: Engine, Cooling and
Exhaust/Engine/Actuators and Solenoids - Engine/Variable Valve Timing Solenoid/Service and Repair/Camshaft Position Actuator Solenoid
Valve Solenoid Replacement - Bank 1 (Right Side) Exhaust)
* Camshaft Position Actuator Solenoid Valve Solenoid Replacement - Bank 2 (Left Side) Intake (See: Engine, Cooling and
Exhaust/Engine/Actuators and Solenoids - Engine/Variable Valve Timing Solenoid/Service and Repair/Camshaft Position Actuator Solenoid
Valve Solenoid Replacement - Bank 2 (Left Side) Intake)
* Camshaft Position Actuator Solenoid Valve Solenoid Replacement - Bank 2 (Left Side) Exhaust (See: Engine, Cooling and
Exhaust/Engine/Actuators and Solenoids - Engine/Variable Valve Timing Solenoid/Service and Repair/Camshaft Position Actuator Solenoid
Valve Solenoid Replacement - Bank 2 (Left Side) Exhaust)
* Control Module References (See: Testing and Inspection/Programming and Relearning) for Engine Control Module replacement, setup, and
programming
P2096
DTC P2096
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 P2096
- Post Catalyst Fuel Trim System Low Limit
Circuit Description
Fuel trim bias is used by the engine control module (ECM) to keep the post catalyst HO2S voltage within a range of 580-665 mV. This allows
optimal catalyst efficiency under light load conditions, such as at idle or a steady cruise. The ECM constantly monitors how lean or rich the fuel
trim bias is commanded, to determine if the fuel trim bias is greater than a calibrated amount.
Conditions for Running the DTC
* Before the ECM can report DTC P2096, DTCs P0030, P0031, P0032, P0130, P0131, P0132, P0133, P0135, P0137, P0138, P0140, P0141,
P2232, P2235, P2270, P2271, P2272, and P2273 must run and pass.
* DTC P0100, P0101, P0102, P0103, P0111, P0112, P0113, P0116, P0117, P0118, P0119, P0420, P0443, P0458, or P0459 is not set.
* The engine speed is 1,080-3,480 RPM.
* The engine load is 17-20 % and steady.
* The Closed Loop fuel control is active for greater than 1 s.
* The front and rear HO2S are in Closed Loop.
* The calculated exhaust gas temperature is greater than 250掳C (482掳F).
* DTC P2096 runs continuously when the conditions above have been met for greater than 200 s.
Conditions for Setting the DTC
The lean correction limit for a condition causing a rich air/fuel mixture has been exceeded for a predetermined amount of time. The condition exists
for greater than 4 s or for a cumulative of 30 s.
Action Taken when the DTC Sets
DTC P2096 is a Type B DTC.
Conditions for Clearing the MIL/DTC
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Sunday, February 27, 2022
Disclaimer2010 Cadillac Truck SRX AWD V6-3.0L Technical Service Bulletin # 09-06-05-001 Date: 090130
Disclaimer2010 Cadillac Truck SRX AWD V6-3.0L Technical Service Bulletin # 09-06-05-001 Date: 090130
Exhaust System - Sulfur Odor Explanation
2010 Cadillac Truck SRX AWD V6-3.0L Page 162
INFORMATION
Bulletin No.: 09-06-05-001
Date: January 30, 2009
Subject:
Information on Sulfur Odor from Exhaust
Models:
2007-2010 GM Passenger Cars and Light Duty Trucks (Including Saturn)
2007-2010 HUMMER H2, H3
2007-2010 Saab 9-7X
with Gasoline-Powered Engines
Important:
This bulletin is not applicable to vehicles operating in Canada on Canadian sourced fuels. Canadian regulations limit the amount of sulfur in
gasoline to 80 PPM or less for all gasoline marketed in Canada with no exemptions.
Federal regulations limit the amount of sulfur in gasoline to 80 PPM (some states have lower limits; for example, California's limit is 30
PPM). The federal exception to this rule is an allowance for qualifying small refineries that permits up to 450 PPM until January 1, 2011. Sulfur
odor in exhaust from vehicles equipped with gasoline engines is caused by excess sulfur in the gasoline and it cannot be eliminated unless the
source of the sulfur is eliminated.
Important:
Replacement of catalytic converters for this condition is not an appropriate repair and will not correct the condition by itself.
Customers with vehicles that exhibit this condition should be advised of the information in this bulletin and be asked to switch the brand of gasoline
that they are using. In most cases, this will result in elimination of the sulfur odor by the time one tank full of gasoline is consumed if the gasoline
that was added is within the 80 PPM federal limit.
In order for the odor to be eliminated. two things must occur. First, the gasoline added to the vehicle must be at or below the federal 80 PPM limit.
Secondly, the vehicle must have run long enough to have consumed one tank of fuel containing a sulfur content of 80 PPM or less.
Although there is no way for a dealership to easily measure the amount of sulfur in gasoline, it's a good practice when asked for a recommended
brand of gasoline to recommend any of the Top Tier Detergent Gasoline Brands. Although Top Tier brands have not demonstrated that they contain
a lower sulfur content than other brands, their detergent additive package makes them a preferred choice when choosing a brand of gasoline for
your vehicle. A complete list of Top Tier Brands can be found in Corporate Bulletin Number 04-06-04-047H (in Canada, refer to Corporate
Bulletin Number 05-06-04-022E) or by accessing the website www.toptiergas.com.
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2010 Cadillac Truck SRX FWD V6-3.0L Page 826
2010 Cadillac Truck SRX FWD V6-3.0L Page 826
Scan Tool Reference
Control Module References (See: Testing and Inspection/Programming and Relearning)
Circuit/System Testing
Note: It is recommended that Component Testing is performed before Circuit/System Testing when diagnosing the actuator because the module
will default and does not supply voltage to the sensor when the DTC is set.
1. Ignition OFF, disconnect the harness connector at the M72 Variable Power Steering Solenoid Valve.
2. Ignition ON, verify that a test lamp illuminates between the control circuit terminal A and ground.
瀚慖f the test lamp does not illuminate, test the control circuit for a short to ground or an open/high resistance.
3. Ignition OFF, connect the test lamp between the control circuit terminal A and the control circuit terminal B.
4. Ignition ON, verify the test lamp briefly illuminates for approximately 1 second, then turns OFF.
瀚慖f the test lamp is always ON, test the control circuit terminal B for a short to ground. If the circuit tests normal, replace the K17
Electronic Brake Control Module (EBCM).
瀚慖f the test lamp is always OFF, test the control circuit terminal B for a short to voltage or an open/high resistance. If the circuit tests
normal, replace the K17 Electronic Brake Control Module (EBCM).
5. If all circuits test normal, test or replace the M72 Variable Power Steering Solenoid Valve.
Component Testing
Static Test
1. Ignition OFF, disconnect the harness connector at the M72 Variable Power Steering Solenoid Valve.
2. Test for 2.5-10 ohm between the control terminals A and B.
瀚慖f not within the specified range, replace the M72 Variable Power Steering Solenoid Valve.
3. Test for infinite resistance between each terminal and the M72 Variable Power Steering Solenoid Valve housing/case.
瀚慖f not the specified value, replace the M72 Variable Power Steering Solenoid Valve.
Repair Instructions
Perform the Diagnostic Repair Verification (See: Verification Tests)
* Steering Gear Valve Solenoid Replacement (See: Steering and Suspension/Steering/Steering Gear)
* Steering Gear Replacement (See: Steering and Suspension/Steering/Steering Gear)
* Control Module References (See: Testing and Inspection/Programming and Relearning)
C0460
DTC C0460 or C0710
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 C0460 71
- Steering Position Sensor Invalid Data
DTC C0710 42
- Steering Position Signal Calibration Not Programmed
DTC C0710 5A
- Steering Position Signal Not Plausible
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2010 Cadillac Truck SRX FWD V6-3.0L Page 1098
2010 Cadillac Truck SRX FWD V6-3.0L Page 1098
瀚慖f not the specified value, replace the Tow/Haul switch assembly.
3. Depress and hold the Tow/Haul switch.
4. Test for less than 1 ohm of resistance between the Tow/Haul switch signal circuit terminals B and A while the switch is depressed.
瀚慖f greater than the specified value, replace the Tow/Haul switch assembly.
Repair Instructions
Perform the Diagnostic Repair Verification (See: Verification Tests) after completing the repair.
* Control Module References (See: Testing and Inspection/Programming and Relearning) for BCM replacement, setup, and programming.
* Automatic Transmission Range Selector Lever Replacement (See: Transmission and Drivetrain/Automatic Transmission/Transaxle/Shifter
A/T/Service and Repair/6T70/6T75 - Automatic Transmission/Automatic Transmission Range Selector Lever Replacement)
P0089
DTC P0089, P00C6, P228C, or P228D (LF1, LFW)
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 P0089
- Fuel Pressure Regulator Performance
DTC P00C6
- Fuel Rail Pressure Low During Engine Cranking
DTC P228C
- Fuel Pressure Regulator 1 Control Performance - Low Pressure
DTC P228D
- Fuel Pressure Regulator 1 Control Performance - High Pressure
Circuit/System Description
The fuel rail pressure sensor detects fuel pressure within the fuel rail. The engine control module (ECM) provides a 5 V reference voltage on the 5
V reference circuit and ground on the low reference circuit. The ECM receives a varying signal voltage on the signal circuit.
High pressure fuel is regulated by the high pressure fuel pump actuator, which is a part of the high pressure fuel pump. The high pressure fuel pump
actuator is a solenoid valve. The ECM provides a voltage on the actuator high control circuit and ground on the actuator low control circuit. Both
circuits are controlled through output drivers within the ECM. When deactivated, both drivers are disabled. When activated, the high control circuit
driver energizes the high pressure fuel pump actuator and the low control circuit driver pulse-width modulates (PWM) the low control circuit to
ground.
The high pressure mechanical fuel pump is driven by three lobes on the camshaft. The ECM uses the camshaft and crankshaft position sensor inputs
to synchronize the high pressure fuel pump actuator with the position of each of the camshaft lobes. The ECM regulates fuel pressure by adjusting
the portion of each pump stroke that provides fuel to the rail.
The ECM monitors the fuel rail fuel pressure sensor and the high pressure fuel pump actuator to determine if the commanded and actual pressure
are within a predetermined range, or if the amount of fuel pressure correction exceeds a calibrated pressure.
Conditions for Running the DTC
P0089, P228C, or P228D
* DTC P0090, P0091, P0092, P0191, P0192, or P0193 is not set.
* The ignition voltage is less than 18 V.
* The deceleration fuel cut-off (DFCO) is inactive.
* The engine speed is greater than 25 RPM.
* The air bag is not deployed.
Does Tesla Model 3 have autopilot?
2022 porsche cayenne coupe gts
2022 porsche cayenne coupe
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