P0101
CIRCUIT DESCRIPTIONThe Mass Air Flow (MAF) sensor is an air flow meter that measures the amount of air entering the engine. The Powertrain Control Module (PCM) uses the MAF sensor frequency signal in order to provide the correct fuel delivery for a wide range of engine speeds and loads. A small quantity of air entering the engine indicates deceleration or idle. A large quantity of air entering the engine indicates an acceleration or high load situation. The MAF sensor has an ignition 1 voltage circuit, a ground circuit and a signal circuit. The PCM applies a voltage to the sensor on the signal circuit. The sensor uses the voltage in order to produce a frequency based on inlet air flow through the sensor bore. The PCM uses the Manifold Absolute Pressure (MAP), the Intake Air Temperature (IAT), and the engine RPM in order to calculate a predicted MAF value. The PCM compares the actual MAF sensor frequency signal to the predicted MAF value in order to determine if the signal is stuck based on a lack of variation, or is too low or too high for a given operating condition. DTC P0101 will set if the actual MAF sensor frequency signal is not within a predetermined range of the calculated MAF value.
CONDITIONS FOR RUNNING THE DTC
^ DTCs P0102, P0103, P0106, P0107, P0108, P0112, P0113, P0335, P0336, P0401, P0440, P0442, P0443, P0446, P0449, P1111, P1112, P1114, P1115, P1120, P1220, P1221, or P1441 are not set.
^ The ignition 1 signal is between 11-18 volts.
^ The engine is running.
^ The Throttle Position (TP) indicated angle is steady within a range of 5 percent or less.
^ The TP indicated angle is less than 95 percent.
^ The MAP sensor is less than 80 kPa.
^ The MAP sensor is steady within a range of 3 kPa.
^ The above conditions exist for at least 2 seconds.
CONDITIONS FOR SETTING THE DTC
The actual MAF sensor frequency signal is not within a predetermined range of the calculated MAF value for more than 8 seconds.
ACTION TAKEN WHEN THE DTC SETS
^ The control module illuminates the Malfunction Indicator Lamp (MIL) on the second consecutive ignition cycle that the diagnostic runs and fails.
^ The control module records the operating conditions at the time the diagnostic fails. The first time the diagnostic fails, the control module stores this information in the Failure Records. If the diagnostic reports a failure on the second consecutive ignition cycle, the control module records the operating conditions at the time of the failure. The control module writes the operating conditions to the Freeze Frame and updates the Failure Records.
CONDITIONS FOR CLEARING THE MIL/DTC
^ The control module turns OFF the Malfunction Indicator Lamp (MIL) after 3 consecutive ignition cycles that the diagnostic runs and does not fail.
^ A current DTC, Last Test Failed, clears when the diagnostic runs and passes.
^ A history DTC clears after 40 consecutive warm-up cycles, if no failures are reported by this or any other emission related diagnostic.
^ Use a scan tool in order to clear the MIL and the DTC.
DIAGNOSTIC AIDS
^ Inspect for a misrouted harness. Verify that the MAF sensor harness is not routed too close to the following components:
- The secondary ignition wires or the coils
- The solenoids
- The relays
- The motors
^ Inspect for any unmetered air entering the engine that may cause this DTC to set. Ensure that the oil dipstick is fully seated and the oil fill cap is secure.
^ A Wide-open Throttle (WOT) acceleration from a stop should cause the MAF value displayed on a scan tool to increase from about 6-12 g/s at idle, to 230 g/s or more at the time of the 1-2 shift. If not, inspect for a restriction.
^ If the problem is intermittent, refer to Intermittent Conditions. Intermittent Conditions
TEST DESCRIPTION
Steps 1-5:
Steps 6-13:
Steps 14-23:
The numbers below refer to the step numbers on the diagnostic table.
2. Diagnose any MAF, MAP, or system voltage DTCs before using this table. If a misfire condition exists or a rough running condition is observed with or without DTC P0300, proceed to DTC P0300 first.
5. Any unmetered air entering the engine may cause this DTC to set. This step eliminates any conditions which can cause a DTC to set with a normally operating MAF sensor.
9. This step verifies the signal circuit from the MAF sensor electrical connector to the PCM. A voltage reading of less than 4 volts or more than 6 volts indicates a malfunction in the wiring or a poor connection.