GM Service Manual Online
For 1990-2009 cars only

Object Number: 65576  Size: LF
Handling ESD Sensitive Parts Notice
Handling ESD Sensitive Parts Notice
Engine Controls Components
Sensors
OBD II Symbol Description Notice

Circuit Description

The Manifold Absolute Pressure (MAP) sensor responds to changes in the intake manifold pressure (vacuum). A 5 volt reference is applied to the sensor. A variable resistor moves in relation to the manifold pressure and a voltage signal is sent back to the VCM on the 5 volt reference circuit. This voltage signal varies from 1.0-1.5 volts at closed throttle to 4.0-4.5 volts at wide open throttle (low vacuum).

A substantial change in the throttle position and the engine speed must precede any substantial change in the MAP.

The VCM utilizes the MAP signal and the throttle position in order to determine the correct amount of fuel delivered to the engine. This DTC is a type B DTC.

Conditions for Setting the DTC

    • There are no TP sensor DTCs
    • The engine is running
    • The engine speed changes less than 100 RPM
    • The Throttle position changes less than 1.95%
    • The EGR flow changes less than 10%
    • The idle air count changes less than 100 counts
    • There is no change in brake switch status
    • There is no change in the clutch status (manual transmission)
    • There is no change in A/C status
    • There is no change in power steering switch status
    • The above conditions have stabilized for a period of 0.5 seconds
    • The above conditions are met for 20 tests in a 100 test sample
    • The change in MAP is greater than 0.68 volts within 12.5 ms (35 counts)

Action Taken When the DTC Sets

The VCM turns ON the MIL when 2 failures are reported after 2 consecutive trips. The VCM substitutes a calculated value for the MAP sensor value so an acceptable driving condition is maintained.

Conditions for Clearing the MIL or DTC

    • The control module turns OFF the MIL after 3 consecutive drive trips when the test has run and passed.
    • A history DTC will clear if no fault conditions have been detected for 40 warm-up cycles. A warm-up cycle occurs when the coolant temperature has risen 22°C (40°F) from the startup coolant temperature and the engine coolant reaches a temperature that is more than 70°C (158°F) during the same ignition cycle.
    • Use a scan tool in order to clear the DTCs.

Diagnostic Aids

Check the MAP sensor vacuum source for leaks, restrictions or poor connections.

Important: The electrical connector must remain securely fastened.

Important: After removing the MAP Sensor from the intake manifold, replace the MAP Sensor to intake manifold seal.

Disconnect the MAP Sensor from the intake manifold and gently twist the sensor in order to check for intermittent connections. Output changes greater than 0.1 volt indicate a bad connector or connection.

Test Description

The numbers below refer to the step numbers on the diagnostic table.

Check the MAP sensor output voltage to the VCM. Without the engine running, this voltage represents a barometric reading to the VCM.

Important: When comparing the scan tool readings to a known good vehicle, compare the vehicles which use a MAP sensor having the same color insert or the same Hot Stamped number.

  1. Applying 34 kPa (10 Hg) vacuum to the MAP sensor should cause the voltage to change. The voltage value obtained by subtracting the second reading from the first should be greater than 1.5 volts. When applying a vacuum to the sensor, the change should be instantaneous. A slow voltage change indicates a malfunctioning sensor.

Step

Action

Value(s)

Yes

No

1

Important: Before clearing the DTCs, use the scan tool in order to record the Freeze Frame and the Failure Records for reference. This data will be lost when the Clear DTC Information function is used.

Was the Powertrain On-Board Diagnostic (OBD) System Check performed?

--

Go to Step 2

Go to Powertrain On Board Diagnostic (OBD) System Check

2

  1. Connect the scan tool.
  2. Turn ON the ignition leaving the engine OFF.

Is the MAP sensor voltage within the typical scan tool data, plus or minus the specified value?

0.4V

Go to Step 3

Go to Step 6

3

  1. After disconnecting, plug the MAP sensor vacuum source.
  2. Connect a vacuum pump to the MAP sensor.
  3. Start the engine.
  4. Observe the MAP sensor voltage.
  5. Apply 34 kPa (10 Hg) of vacuum.
  6. Observe the MAP sensor voltage.
  7. Subtract the second reading from the first.

Is the difference greater than the specified value?

1.5V

Go to Diagnostic Aids

Go to Step 4

4

Check the MAP sensor connections.

Was a problem found?

--

Go to Step 5

Go to Step 6

5

Repair the connections as necessary. Refer to Wiring Repairs in Engine Electrical.

Is the action complete?

--

Go to Step 7

--

6

Replace the MAP sensor. Refer to Exhaust Gas Recirculation Valve Replacement .

Is the action complete?

--

Go to Step 7

--

7

  1. Use the scan tool in order to select DTC and the Clear DTC Information function.
  2. Start the Engine.
  3. Allow the engine to idle until the normal operating temperature is reached.
  4. Select DTC and the Specific DTC function.
  5. Enter the DTC number which was set.
  6. Operate the vehicle within the conditions for setting this DTC as specified in the supporting text.

Does the scan tool indicate that this diagnostic ran and passed?

--

Go to Step 8

Go to Step 2

8

Use the scan tool in order to display the Capture Info and the Review Info Capture function.

Are there any DTCs displayed that have not been diagnosed?

--

Go to The Applicable DTC Table

System OK