• | Perform the Diagnostic System Check - Vehicle prior to using this diagnostic procedure. |
• | Review Strategy Based Diagnosis for an overview of the diagnostic approach. |
• | Diagnostic Procedure Instructions provide an overview of each diagnostic category. |
Circuit | Short to Ground | Open/High Resistance | Short to Voltage |
---|---|---|---|
AIR Pump Control Voltage Supply | P0411 | P0411 | P2444 |
AIR Pump Ground | -- | P0411 | -- |
AIR Pump Relay Coil Ignition Supply | P0102, P0412, P0418 | P0418 | P0690 |
AIR Pump Coil Relay Control | P0418 | P0418 | P0411, P0418, P0690, P2431 |
AIR Pump Relay Switch B+ Supply | P0411 | P0411 | -- |
AIR Solenoid Control Voltage Supply | P0411 | P0411 | P2440 |
AIR Solenoid Ground | -- | P0411 | -- |
AIR Solenoid Relay Coil Ignition Supply | P0412 | P0411, P0412 | P0690 |
AIR Solenoid Relay coil Control | P0412 | P0412 | P0411, P0412, P0690 |
AIR Solenoid Relay Switch B+ Supply | P0411 | P0411 | -- |
The secondary air injection (AIR) system aids in the reduction of hydrocarbon emissions during a cold start. The system forces fresh filtered air into the exhaust stream in order to accelerate the catalyst operation. The secondary AIR injection pump provides filtered air on demand to the AIR solenoid check valve assembly. The AIR solenoid valve assembly controls the flow of air from the AIR pump to the exhaust manifold. The AIR pump relay supplies the current needed to operate the AIR pump. The AIR solenoid valve assembly has an integral check valve, pressure sensor, and solenoid valve. The pressure sensor monitors the air flow pressure from the AIR pump. The engine control module (ECM) supplies the internal pressure sensor with a 5-volt reference, a low reference, and a signal circuit. The signal circuit provides the control module with a voltage relative to internal air pressure changes.
The AIR diagnostic uses 3 phases to test the AIR system:
• | DTCs P0411 and P2430 run during Phase 1 |
• | DTCs P2430 and P2440 run during Phase 2 |
• | DTC P2444 runs during Phase 3 |
During phase 1, both the AIR pump and the solenoid valve are activated. Normal secondary air function occurs. Expected system pressure is 8-15 kPa above BARO.
During phase 2, only the AIR pump is activated. The solenoid valve is closed. Pressure sensor performance and solenoid valve deactivation are tested. Expected system pressure is 15-22 kPa above BARO.
During phase 3, neither the AIR pump nor the solenoid valve is activated. AIR pump deactivation is tested. Expected system pressure equals BARO.
In all 3 phases, testing is accomplished by comparing the measured pressure against the expected pressure. The control module can detect faults in the AIR pump, AIR solenoid, pressure sensor, and the exhaust check valve. The pressure sensor can also detect leaks and restrictions in the secondary AIR system plumbing.
• | DTCs P0068, P0101, P0102, P0103, P0106, P0107, P0108, P0112, P0113, P0116, P0117, P0118, P0128, P0201-P0208, P0300, P0301-P0308, P0351-P0358, P0412, P0418, P0420, P0606, P0641, P0651, P2430, P2431, P2432, P2433, P2440, 2444 are not set. |
• | The system voltage is between 11-18 volts. |
• | The start-up intake air temperature (IAT) is greater than 5°C (41°F). |
• | The start-up engine coolant temperature (ECT) is between 5-80°C (41-176°F). |
• | The AIR system is commanded ON. |
• | The conditions are stable for greater than 5 seconds. |
• | DTC P0411 runs once per trip start-up when the above conditions are met and the AIR pump operation is requested. |
• | The ECM determines that the difference between the predicted system pressure and the actual system pressure is greater than 5 kPa. |
OR |
The ECM determines that the difference between the predicted system pressure and the actual system pressure is less than -5 kPa. |
• | DTC P0411 sets during phase 1 and within 22 seconds when the above conditions are met. |
DTC P0411 is a Type B DTC.
DTC P0411 is a Type B DTC.
Secondary Air Injection System Description
J 36169-HD Heavy Duty Fused Jumper
⇒ | If any of the DTCs are set, refer to Diagnostic Trouble Code (DTC) List - Vehicle. |
⇒ | If the air pump does not turn ON or OFF, refer to Secondary Air injection Pump Malfunction. |
⇒ | If the AIR solenoid valve does operate as specified, refer to Secondary Air Injection Solenoid Valve Malfunction. |
⇒ | If less than the specified range, refer to Secondary Air Injection System Pressure Low. |
⇒ | If greater than the specified range, refer to Secondary Air Injection System Pressure High. |
⇒ | If less than the specified range, refer to Secondary Air Injection System Pressure Low |
⇒ | If greater than the specified range, refer to Secondary Air Injection System Pressure High. |
⇒ | If the test lamp illuminates, test the controlled output circuit terminal for a short to voltage. |
⇒ | If the test lamp does not illuminate, test the ignition circuit for a short to ground or an open/high resistance. If the circuit tests normal and the ignition circuit fuse is open, test or replace both the AIR pump relay and the AIR solenoid relay. |
⇒ | If the test lamp does not illuminate, test the B+ circuit for a short to ground or an open/high resistance. If the circuit tests normal and the B+ circuit fuse is open, test the controlled output circuit for a short to ground. |
⇒ | If greater than the specified range, test the ground circuit for an open/high resistance. |
⇒ | If the AIR pump does not activate, test the controlled output circuit for an open/high resistance. If the circuit tests normal, test or replace the AIR pump |
⇒ | If the test lamp is always ON, test the AIR pump relay control circuit for a short to ground. If the circuit tests normal, replace the ECM. |
⇒ | If the test lamp is always OFF, test the AIR pump relay control circuit for a short to voltage or an open/high resistance. If the circuit tests normal, replace the ECM. |
⇒ | If the test lamp illuminates, test the controlled output circuit for a short to voltage. |
⇒ | If the test lamp does not illuminate, test the ignition circuit for a short to ground or an open/high resistance. |
⇒ | If the test lamp does not illuminate, test the B+ circuit for a short to ground or an open/high resistance. If the circuit tests normal and the B+ circuit fuse is open, test the controlled output circuit for a short to ground. |
⇒ | If greater than the specified range, test the ground circuit for an open/high resistance. |
⇒ | If the AIR solenoid valve does not activate, test the controlled output circuit for an open/high resistance. If the circuit tests normal, test or replace the AIR solenoid valve. |
⇒ | If the test lamp is always ON, test the control circuit for a short to ground. If the circuit tests normal, replace the ECM. |
⇒ | If the test lamp is always OFF, test the control circuit for a short to voltage or an open/high resistance. If the circuit tests normal, replace the ECM. |
⇒ | If an exhaust leak is detected repair as necessary. |
⇒ | If more than the specified range above BARO, replace the AIR pump relay. |
⇒ | If more than the specified range above BARO, the AIR pump inlet hoses/pipes are restricted. Remove the restriction or replace the inlet hose/pipe. |
⇒ | If more than the specified range above BARO , test or inspect the AIR pump outlet hoses/pipes for leaks or restrictions. |
⇒ | If greater than the specified value, replace the AIR solenoid valve. |
• | Control Module References for ECM replacement, setup, and programming |