Diagnostic Instructions
DTC Descriptor
DTC P2A01: HO2S Performance Sensor 2
Typical Scan Tool Data
HO2S 1 and 2
Circuit
| Short to Ground
| Open
| Short to Voltage
|
Operating Conditions:
Engine operating in Closed Loop
Parameter Normal Range:
Fluctuates above and below 350-500 mV
|
HO2S 1 and 2 Signal
| 0 mV
| 400-415 mV
| 1000 mV
|
Low Reference
| --
| 400-415 mV
| 1000 mV
|
Circuit 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. The control module supplies the HO2S with a reference, or bias voltage of about 450 mV. While the engine runs, the HO2S heats up and begins to generate a voltage
within a range of 0-1,000 mV. This voltage will fluctuate above and below the bias voltage. 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 above bias voltage toward 1,000 mV indicates a rich fuel mixture. An HO2S voltage that decreases below bias voltage 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.
The HO2S utilizes the following circuits:
• | A low reference circuit |
• | An ignition 1 voltage circuit |
• | A heater control circuit |
Conditions for Running the DTC
• | The engine has been running for greater than 60 seconds. |
• | The HO2S 2 is at operating temperature. |
• | The engine coolant temperature is greater than 60°C (140°F). |
• | The engine is in Decel Fuel Cut-Off (DFCO) mode. |
• | The DTC runs continuously when the above conditions are met. |
Conditions for Setting the DTC
• | The engine control module (ECM) detects that the HO2S 2 voltage does not decrease during DFCO mode. |
• | The condition exists for greater than 600 milliseconds |
Action Taken when the DTC Sets
DTC P2A01 is a Type A DTC.
Conditions for Clearing the MIL/DTC
DTC P2A01 is a Type A DTC.
Reference Information
Schematic Reference
Engine Controls Schematics
Electrical Information Reference
DTC Type Reference
Powertrain Diagnostic Trouble Code (DTC) Type Definitions
Scan Tool Reference
Control Module References for scan tool information
Circuit/System Verification
- Engine running, observe the scan tool HO2S 2 voltage parameter. The reading should fluctuate above and below the range of 350-550 mV.
- 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
- Ignition OFF, disconnect the harness connector at the HO2S 2.
- Ignition OFF, test for less than 5 ohms of resistance between the low reference circuit terminal and ground.
• | HO2S 2 (Euro IV) low reference circuit terminal 3 |
• | HO2S 2 (Non Euro IV) low reference circuit terminal 1 |
⇒ | If greater than the specified range, test the low reference circuit for a short to voltage or an open/high resistance. If the circuit tests normal, replace the ECM. |
- Engine running, verify the scan tool HO2S 2 parameter is between 350-500 mV.
⇒ | If greater than the specified range, test the signal circuit for a short to voltage. If the circuit tests normal, replace the ECM. |
- Verify none of the following conditions exist:
• | Water intrusion in the HO2S harness connector. |
• | Fuel saturation of the evaporative emission (EVAP) canister. |
• | Exhaust leaks near the HO2S. |
• | Contaminated HO2S--Silicon. |
⇒ | If you find any of the above conditions, repair as necessary. |
- If all circuits test normal, test or replace the HO2S.
Repair Instructions
Perform the
Diagnostic Repair Verification after completing the diagnostic procedure.