2012 Jeep Wrangler JK Factory Service Manual 28 - DTC-Based Diagnostics

P0057-O2 SENSOR 2/2 HEATER CIRCUIT LOW

P0057-O2 SENSOR 2/2 HEATER CIRCUIT LOW



For a complete wiring diagram, refer to the Wiring Information.


Theory of operation

The Oxygen sensors (O2 Sensor) are used for fuel control and catalyst monitoring. Each O2 Sensor compares the oxygen content of the surrounding air with the oxygen content of the exhaust stream. When the engine is started, the Powertrain Control Module (PCM) operates in an Open Loop mode, ignoring the O2 Sensor signal voltage while calculating the air-to-fuel ratio. The heating elements inside each O2 Sensor heat the sensor to bring the sensor up to operating conditions faster. This allows the system to enter Closed Loop earlier and the PCM to calculate the air-to-fuel ratio sooner. While the engine runs, the O2 Sensor heats up and begins to generate a voltage within a range of 0-1,275 mV. Once sufficient O2 Sensor voltage fluctuation is observed by the PCM, Closed Loop is entered. The PCM uses the O2 Sensor voltage to determine the air-to-fuel ratio. An O2 Sensor voltage that increases toward 1,000 mV indicates a rich fuel mixture. An O2 Sensor voltage that decreases toward 0 mV indicates a lean fuel mixture.


Possible Causes

(K399) O2 SENSOR 2/2 HEATER CONTROL CIRCUIT SHORTED TO GROUND
EXCESSIVE RESISTANCE IN THE (K399) O2 SENSOR 2/2 HEATER CONTROL CIRCUIT
O2 SENSOR 2/2
POWERTRAIN CONTROL MODULE (PCM)

Always perform the Pre-Diagnostic Troubleshooting procedure before proceeding. (Refer to 28 - DTC-Based Diagnostics/MODULE, Powertrain Control (PCM) - Standard Procedure).


1. ACTIVE DTC


1. Start the engine and allow it to idle for at least 60 seconds.

WARNING:

When the engine is operating, do not stand in direct line with the fan. Do not put your hands near the pulleys, belts or fan. Do not wear loose clothing. Failure to follow these instructions may result in possible serious or fatal injury.

2. With a scan tool, read the active DTCs.


Is the DTC Active at this time?

Yes


No


2. O2 SENSOR 2/2 HEATER ELEMENT


1. Turn the ignition off.


NOTE: Allow the O2 Sensor to cool down to room temperature.
2. Disconnect the O2 Sensor 2/2 harness connector.
3. Measure the resistance across the O2 Sensor 2/2 Heater element, between the O2 Heater Control terminal and the O2 Heater ground terminal in the component connector.

NOTE: O2 Sensor 2/2 Heater Element resistance values should be measured at 21.1°C (70°F). The resistance value will vary with different temperature values.


Is the O2 Sensor Heater Element resistance between 2.0 and 30.0 Ohms?

Yes


No


3. (K399) O2 SENSOR 2/2 HEATER CONTROL CIRCUIT SHORTED TO GROUND



1. Disconnect the PCM C2 harness connector.
2. Measure the resistance between ground and the (K399) O2 Sensor 2/2 Heater Control circuit in the O2 Sensor 2/2 harness connector.


Is the resistance below 5.0 Ohms?

Yes


No


4. EXCESSIVE RESISTANCE IN THE (K399) O2 SENSOR 2/2 HEATER CONTROL CIRCUIT



1. Measure the resistance of the (K399) O2 Sensor 2/2 Heater Control circuit between the O2 Sensor 2/2 harness connector and the PCM C2 harness connector.


Is the resistance below 0.5 Ohm?

Yes


No


5. POWERTRAIN CONTROL MODULE (PCM)


1. Using the wiring diagram/schematic as a guide, inspect the wiring and connectors between the Oxygen Sensor 2/2 and the Powertrain Control Module (PCM).
2. Look for any chafed, pierced, pinched, or partially broken wires.
3. Look for broken, bent, pushed out or corroded terminals. Verify that there is good pin to terminal contact in the Oxygen Sensor 2/2 and Powertrain Control Module connectors.
4. Perform any Technical Service Bulletins that may apply.


Were there any problems found?

Yes


No