Engine Controls and Fuel - 3.0L LM2 Diesel | Diagnostic Information and Procedures | Document ID: 5471111
Diagnostic Instructions
Perform the Diagnostic System Check prior to using this diagnostic procedure: Diagnostic
System Check - Vehicle
Review the description of Strategy Based Diagnosis: Strategy Based Diagnosis
An overview of each diagnostic category can be found here: Diagnostic Procedure
Instructions
DTC Descriptor
DTC P0405
Exhaust Gas Recirculation Valve Position Sensor Circuit Low
DTC P0406
Exhaust Gas Recirculation Valve Position Sensor Circuit High
DTC U0651
Lost Communication with Exhaust Gas Recirculation Valve Position Sensor
Diagnostic Fault Information
| Circuit |
Short to Ground |
Open/High Resistance |
Short to Voltage |
Signal Performanc |
| 5 V Reference |
P0641, U0651* |
U0651* |
P0641, U0651* |
— |
| Signal |
U0651* |
U0651* |
U0651* |
— |
| Low Reference |
— |
U0651* |
— |
— |
| * Additional DTCs may set |
|
|
|
|
Circuit/System Description
For an overview of the component/system, refer to: Exhaust Gas Recirculation (EGR) System
Description
| Circuit |
Description |
| 5 V Reference |
Regulated voltage supplied by the control module. |
| Signal |
The control module input circuit has an internal resistance connected to ground. |
| Low Reference |
Grounded through the control module. |
|
Component |
Description |
|
|
Q14A Exhaust Gas Recirculation |
The assembly has several functions: |
|
|
Valve 1 © 2023 Gener |
al Motors. All rights reserved. |
|
| Component |
Description |
|
Exhaust Gas Recirculation Valve — A solenoid valve is an electro-mechanically operated valve. The valve is controlled by an electric current through the solenoid. EGR Position Sensor — The component contains 1 potentiometer(s) that varies its resistance proportionally with the position of the component/system: EGR Valve |
| K20 Engine Control Module |
The control module contains a microprocessor used to process input data to control outputs. The control module controls a series of actuators to ensure optimal engine performance. The control module does this by reading values from a variety of sensors, interprets the data and adjusts the engine actuators accordingly. |
Redirecting the exhaust gas back into the intake system aids in reducing the amount of oxygen
that enters the cylinders. This reduces the amount of nitrogen oxide (NOx) that is produced
during combustion. The component is actuated by a bidirectional DC motor.
Conditions for Running the DTC
P0405, P0406
DTC U0651 = Not set
Engine = Running
Ignition Voltage = Greater than 11 V
Frequency the DTC runs = Continuously — After the running conditions are met
U0651
Engine = Running
Ignition Voltage = Greater than 11 V
Frequency the DTC runs = Continuously — After the running conditions are met
Conditions for Setting the DTC
P0405
Exhaust Gas Recirculation Valve Position Sensor = Short to Ground — For greater than 4 s
P0406
Exhaust Gas Recirculation Valve Position Sensor = Short to Voltage — For greater than 4 s
U0651
Engine Control Module = Lost Communication with Exhaust Gas Recirculation Valve Position
Sensor — For greater than 4 s
Actions Taken When the DTC Sets
DTCs listed in the DTC Descriptor category = Type A DTC
Conditions for Clearing the DTC
DTCs listed in the DTC Descriptor category = Type A DTC
Reference Information
Schematic Reference
Engine Controls Schematics
Connector End View Reference
Master Electrical Component List
Electrical Information Reference
Circuit Testing
Connector Repairs
Testing for Intermittent Conditions and Poor Connections
Wiring Repairs
DTC Type Reference
Powertrain Diagnostic Trouble Code (DTC) Type Definitions
Scan Tool Reference
Control Module References
Circuit/System Verification
- Ignition » On / Vehicle » In Service Mode
- Verify the scan tool parameter: Exhaust Gas Recirculation Valve = 1 to 99%
⇒ If not between 1 and 99%
Refer to: Circuit/System Testing
⇓ If between 1 and 99%
- Operate the vehicle within the Conditions for Running the DTC. You may also operate the
vehicle within the conditions that you observed from the Freeze Frame/Failure Records data.
Verify the DTC does not set.
⇒ If the DTC sets
Refer to: Circuit/System Testing
⇓ If the DTC is not set
- All OK.
Circuit/System Testing
- Ignition/Vehicle & All vehicle systems » Off
- Disconnect the electrical connector: Q14A Exhaust Gas Recirculation Valve 1
- Test for less than 10 Ω between the test points: Low Reference circuit terminal 3 & Ground
⇒ If 10 Ω or greater
3.1. Disconnect the electrical connector: K20 Engine Control Module
3.2. Test for less than 2 Ω between the test points: Low Reference circuit terminal 3 @
Component harness & The other end of the circuit @ Control module harness
⇒ If 2 Ω or greater » Repair the open/high resistance in the circuit.
⇒ If less than 2 Ω » Replace the component: K20 Engine Control Module
⇓ If less than 10 Ω
- Ignition » On / Vehicle » In Service Mode
- Test for 4.8 to 5.2 V between the test points: 5 V Reference circuit terminal 1 & Low Reference
circuit terminal 3
⇒ If less than 4.8 V
5.1. Ignition/Vehicle » Off
5.2. Disconnect the electrical connector: K20 Engine Control Module
5.3. Test for infinite resistance between the test points: 5 V Reference circuit terminal 1 @
Component harness & Ground
⇒ If less than infinite resistance » Repair the short to ground on the circuit.
⇓ If infinite resistance
5.4. Test for less than 2 Ω between the test points: 5 V Reference circuit terminal 1 @
Component harness & The other end of the circuit @ Control module harness
⇒ If 2 Ω or greater » Repair the open/high resistance in the circuit.
⇒ If less than 2 Ω » Replace the component: K20 Engine Control Module
⇒ If greater than 5.2 V
5.1. Ignition/Vehicle » Off
5.2. Disconnect the electrical connector: K20 Engine Control Module
5.3. Ignition » On / Vehicle » In Service Mode
5.4. Test for less than 1 V between the test points: 5 V Reference circuit terminal 1 @
Component harness & Ground
⇒ If 1 V or greater » Repair the short to voltage on the circuit.
⇒ If less than 1 V » Replace the component: K20 Engine Control Module
⇓ If between 4.8 and 5.2 V
- Test for 4.9 to 5.3 V between the test points: Serial Data circuit terminal 2 & Ground
⇒ If less than 4.9 V
6.1. Ignition/Vehicle » Off
6.2. Disconnect the electrical connector: K20 Engine Control Module
6.3. Test for infinite resistance between the test points: Serial Data circuit terminal 2 @
Component harness & Ground
⇒ If less than infinite resistance » Repair the short to ground on the circuit.
⇓ If infinite resistance
6.4. Test for infinite resistance between the test points: Serial Data circuit terminal 2 @
Component harness & Low Reference circuit terminal 3 @ Component harness
⇒ If less than infinite resistance » Repair the short to ground on the circuit.
⇓ If infinite resistance
6.5. Test for less than 2 Ω between the test points: Serial Data circuit terminal 2 @
Component harness & The other end of the circuit @ Control module harness
⇒ If 2 Ω or greater » Repair the open/high resistance in the circuit.
⇒ If less than 2 Ω » Replace the component: K20 Engine Control Module
⇓ If greater than 5.3 V
6.1. Ignition/Vehicle » Off
6.2. Disconnect the electrical connector: K20 Engine Control Module
6.3. Ignition » On / Vehicle » In Service Mode
6.4. Test for less than 1 V between the test points: Serial Data circuit terminal 2 @ Component
harness & Ground
⇒ If 1 V or greater » Repair the short to voltage on the circuit.
⇒ If less than 1 V » Replace the component: K20 Engine Control Module
⇓ If between 4.9 and 5.3 V
- Test or replace the component: Q14A Exhaust Gas Recirculation Valve 1
Repair Instructions
Perform the Diagnostic Repair Verification after completing the repair: Diagnostic Repair
Verification
Exhaust Gas Recirculation Valve Replacement - Exhaust Manifold
For control module replacement, programming, and setup refer to: Control Module
References
Additional Procedures