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Home >> Lexus >> 2007 >> GX 470 >> Repair and Diagnosis >> Engine Performance >> Testing & Diagnosis >> Engine Control System - DTC P0010 - P0333 >> DTC P0300, P0301, P0302, P0303, P0304, P0305, P0306, P0307, P0308: Random/Multiple Cylinder Misfire Detected; Cylinder 1 Misfire Detected; Cylinder 2 Misfire Detected; Cylinder 3 Misfire Detected; Cylinder 4 Misfire Detected; Cylinder 5 Misfire Detected; Cylinder 6 Misfire Detected; Cylinder 7 Misfire Detected; Cylinder 8 Misfire Detected >> Inspection Procedure

Inspection Procedure

HINT:

  1. CHECK OTHER DTC OUTPUT (IN ADDITION TO MISFIRE DTCS) 
    1. Connect the intelligent tester to the DLC3 with CAN VIM.
    2. Turn the ignition switch ON and turn the intelligent tester ON.
    3. Enter the following menus: DIAGNOSIS / ENHANCED OBD II / DTC INFO / CURRENT CODES.
    4. Read the CURRENT CODES.

      Result 

      RESULT REFERENCE

      Display (DTC Output) Proceed to
      P0300, P0301, P0302, P0303, P0304, P0305, P0306, P0307 or P0308 A
      P0300, P0301, P0302, P0303, P0304, P0305, P0306, P0307 or P0308 and other DTCs B

      HINT:

      If any DTCs other than P0300, P0301, P0302, P0303, P0304, P0305, P0306, P0307 and P0308 are output, troubleshoot those DTCs first.

    B: GO TO  DIAGNOSTIC TROUBLE CODE TABLE 

    A: Go to next step 

  2. READ VALUE OF INTELLIGENT TESTER (MISFIRE RPM AND MISFIRE LOAD) 
    1. Connect the intelligent tester to the DLC3 with CAN VIM.
    2. Turn the ignition switch ON and turn the intelligent tester ON.
    3. Enter the following menus: DIAGNOSIS / ENHANCED OBD II / DATA LIST / MISFIRE / MISFIRE RPM and MISFIRE LOAD.
    4. Read and note the MISFIRE RPM and the MISFIRE LOAD (engine load) with the DATA LIST.

      HINT:

      The MISFIRE RPM and MISFIRE LOAD displays have vehicle data that can help lead to successful repairs of any misfiring cylinders.

  3. CHECK CONNECTION OF VENTILATION HOSE 

    OK: 

    PCV hose is connected correctly and is not damaged. 

    NG: REPAIR OR REPLACE VENTILATION HOSE 

    OK: Go to next step 

  4. CHECK MISFIRE COUNT (CYL #1, #2, #3, #4, #5, #6, #7, #8) 
    1. Connect the intelligent tester to the DLC3 with CAN VIM.
    2. Turn the ignition switch ON and turn the intelligent tester ON.
    3. Clear the DTCs.
    4. Enter the following menus: DIAGNOSIS / ENHANCED OBD II / DATA LIST / ALL / CYL#1 to CYL#8.
    5. Allow the engine to idle.
    6. Read the misfire count of the cylinders #1 to #8.

      If no misfire is counted for all of the cylinders, move the shift lever into the D position and repeat the 2 previous steps.

      If misfires are still not counted, perform the next 2 steps.

    7. Drive the vehicle with MISFIRE RPM and MISFIRE LOAD selected in the DATA LIST.
    8. Read the misfire count of cylinders #1 to #8, or check for any output DTCs.

      Result 

      RESULT REFERENCE

      Misfire count in each cylinder Proceed to
      1 or 2 cylinders have some misfire counts A
      3 cylinders or more have some misfire counts B

    B:  Go to step  14

    A: Go to next step 

  5. PERFORM ACTIVE TEST BY INTELLIGENT TESTER (FUEL CUT #1 TO #8) 
    1. Connect the intelligent tester to the CAN VIM. Then connect the CAN VIM to the DLC3.
    2. Turn the ignition switch ON and turn the intelligent tester ON.
    3. Allow the engine to idle.
    4. Enter the following menus: DIAGNOSIS / ENHANCED OBD II / ACTIVE TEST / FUEL CUT #1 (to #8).
    5. If a cylinder has a high misfire count, cut fuel to the cylinder. Compare the misfire count of the cylinder before fuel cut and after fuel cut.

      Result 

      RESULT REFERENCE

      Misfire count in each cylinder Proceed to
      Misfire count of the cylinder before fuel cut and after fuel cut are roughly the same A
      Misfire count of the cylinder before fuel cut is lower than after fuel cut B

      HINT:

      If the misfire count of the cylinder before fuel cut and after fuel cut are roughly the same, the cylinder is misfiring.

      If the misfire count of the cylinder before fuel cut is lower than after fuel cut, the cylinder misfires sometimes.

      NOTE: This ACTIVE TEST cannot be performed while the vehicle is being driven.

    B:  Go to step  12

    A: Go to next step 

  6. INSPECT SPARK PLUG 
    1. Remove the engine cover.
    2. Remove the ignition coil and the spark plug of the misfire cylinder.
    3. Fig 1: Identifying Electrode Gap
      G04967891Courtesy of TOYOTA MOTOR SALES, U.S.A., INC.
    4. Measure the spark plug electrode gap.

      Standard: 

      The electrode gap is 1.3 mm (0.051 in.) 

    5. Check the electrode for carbon deposits.

      Recommended spark plug 

      RECOMMENDED SPARK PLUG SPECIFICATION

      Manufacturer Spark Plug Type
      DENSO SK20R11
      NGK IFR6A11
      NOTE: If the electrode gap is larger than the standard, replace the spark plug. Do not adjust the electrode gap.

    NG: REPLACE SPARK PLUG 

    OK: Go to next step 

  7. CHECK SPARK AND IGNITION 
    Fig 2: Identifying Spark & Ignition
    G04967892Courtesy of TOYOTA MOTOR SALES, U.S.A., INC.
    1. Disconnect the fuel injector connectors to prevent the engine from starting.
    2. Install the spark plug to the ignition coil.
    3. Attach the spark plug to the cylinder head cover.
    4. Crank the engine for 2 seconds or less and check if a spark occurs.

      OK: 

      Spark occurs 

    NG:  Go to step  9

    OK: Go to next step 

  8. CHECK CYLINDER COMPRESSION PRESSURE ON MISFIRING CYLINDER 
    1. Measure the cylinder compression pressure of the misfiring cylinder.

    OK:  Go to step  10

    NG: CHECK ENGINE TO DETERMINE CAUSE OF LOW COMPRESSION 

  9. CHANGE NORMAL SPARK PLUG AND CHECK SPARK OF MISFIRING CYLINDER 
    1. For inspection purposes, remove the current spark plug and install a normally functioning spark plug.
    2. Perform a spark test.
      CAUTION: Always disconnect each injector connector.
      NOTE: Do not crank the engine for more than 5 to 10 seconds.
      1. Install the spark plug to the ignition coil and connect the ignition coil connector.
      2. Disconnect the injector connector.
      3. Ground the spark plug.
      4. Check if a spark occurs while the engine is being cranked.

        OK: 

        Spark jumps across electrode gap. 

    OK: REPLACE SPARK PLUG 

    NG: REPLACE IGNITION COIL (THEN CONFIRM THAT THERE IS NO MISFIRE) 

  10. CHECK ECM (#1, #2, #3, #4, #5, #6, #7, #8 VOLTAGE) 
    Fig 3: Identifying ECM Connector Terminal
    G05264049Courtesy of TOYOTA MOTOR SALES, U.S.A., INC.
    1. Turn the ignition switch ON.
    2. Measure the voltage of the ECM connectors.

      Standard voltage 

      VOLTAGE SPECIFICATION

      Tester Connection Specified Condition
      #1 (E7-2) - E01 (E5-7) 9 to 14 V
      #2 (E7-3) - E01 (E5-7)
      #3 (E7-4) - E01 (E5-7)
      #4 (E7-5) - E01 (E5-7)
      #5 (E7-6) - E01 (E5-7)
      #6 (E7-7) - E01 (E5-7)
      #7 (E5-3) - E01 (E5-7)
      #8 (E5-2) - E01 (E5-7)

    OK: CHECK FUEL INJECTOR OF MISFIRING CYLINDER 

    NG: Go to next step 

  11. CHECK HARNESS AND CONNECTOR (FUEL INJECTOR - ECM) 
    1. Check the harness and connector between the ignition coil and ECM (IGF terminal).
      1. Disconnect the I1, I2, I3, I4, I5, I6, I7 or I8 ignition coil connector.
      2. Disconnect the E5 ECM connector.
      3. Check the resistance between the wire harness side connectors.

        Standard resistance (Check for open) 

        RESISTANCE SPECIFICATION

        Tester Connection Specified Condition
        I1-2 - IGF1 (E5-24) Below 1 Ω
        I2-2 - IGF2 (E5-25)
        I3-2 - IGF2 (E5-25)
        I4-2 - IGF1 (E5-24)
        I5-2 - IGF2 (E5-25)
        I6-2 - IGF1 (E5-24)
        I7-2 - IGF1 (E5-24)
        I8-2 - IGF2 (E5-25)

        Standard resistance (Check for short) 

        RESISTANCE SPECIFICATION

        Tester Connection Specified Condition
        I1-2 or IGF1 (E5-24) - Body ground 10 kΩ or higher
        I2-2 or IGF2 (E5-25) - Body ground
        I3-2 or IGF2 (E5-25) - Body ground
        I4-2 or IGF1 (E5-24) - Body ground
        I5-2 or IGF2 (E5-25) - Body ground
        I6-2 or IGF1 (E5-24) - Body ground
        I7-2 or IGF1 (E5-24) - Body ground
        IGF (I8-2) or IGF2 (E5-25) - Body ground
        Fig 4: Identifying Ignition Coil Connector Terminal & ECM Connector Terminals (1 Of 2)
        G05264050Courtesy of TOYOTA MOTOR SALES, U.S.A., INC.
      4. Reconnect the ignition coil connector.
      5. Reconnect the ECM connector.
    2. Check the harness and connector between the ignition coil and ECM (IGT terminals).
      1. Disconnect the I1, I2, I3, I4, I5, I6, I7 or I8 ignition coil connector.
      2. Disconnect the E5 ECM connector.
      3. Check the resistance between the wire harness side connectors.

        Standard resistance (Check for open) 

        RESISTANCE SPECIFICATION

        Tester Connection Specified Condition
        I1-3 - IGT1 (E5-8) Below 1 Ω
        I2-3 - IGT2 (E5-15)
        I3-3 - IGT3 (E5-11)
        I4-3 - IGT4 (E5-10)
        I5-3 - IGT5 (E5-13)
        I6-3 - IGT6 (E5-12)
        I7-3 - IGT7 (E5-14)
        I8-3 - IGT8 (E5-9)

        Standard resistance (Check for short) 

        RESISTANCE SPECIFICATION

        Tester Connection Specified Condition
        I1-3 or IGT1 (E5-8) - Body ground 10 kΩ or higher
        I2-3 or IGT2 (E5-15) - Body ground
        I3-3 or IGT3 (E5-11) - Body ground
        I4-3 or IGT4 (E5-10) - Body ground
        I5-3 or IGT5 (E5-13) - Body ground
        I6-3 or IGT6 (E5-12) - Body ground
        I7-3 or IGT7 (E5-14) - Body ground
        I8-3 or IGT8 (E5-9) - Body ground
      4. Fig 5: Identifying Ignition Coil Connector Terminal & ECM Connector Terminals (2 Of 2)
        G05264051Courtesy of TOYOTA MOTOR SALES, U.S.A., INC.
      5. Reconnect the ignition coil connector.
      6. Reconnect the ECM connector.

    NG: REPAIR OR REPLACE HARNESS OR CONNECTOR 

    OK: Go to next step 

  12. CHECK FUEL INJECTOR OF MISFIRING CYLINDER 
    1. Check the injector injection (whether fuel volume is high or low, and whether injection pattern is poor).

    NG: REPLACE FUEL INJECTOR ASSEMBLY 

    OK: Go to next step 

  13. CHECK VALVE CLEARANCE OF MISFIRING CYLINDER 

    NG: ADJUST VALVE CLEARANCE 

    OK: Go to next step 

  14. CHECK AIR INDUCTION SYSTEM 
    1. Check the air induction system for vacuum leakage.

      OK: 

      No leakage from air induction system 

    NG: REPAIR OR REPLACE AIR INDUCTION SYSTEM 

    OK: Go to next step 

  15. CHECK VALVE TIMING 
    1. Remove the engine cover.
    2. Remove the drive belt.
    3. Remove the timing belt cover LH and RH.
    4. Turn the crankshaft to align the matchmarks of the crankshaft.
    5. Align the notch of the crankshaft pulley with the "0" position.
    6. Confirm whether the matchmarks of the camshaft pulley and cylinder head cover are facing each other.
    7. If the matchmarks are not facing each other, turn the crankshaft clockwise by 360°. Confirm again if the matchmarks are facing each other.

      OK: 

      The matchmarks of the camshaft pulley and the cylinder head cover face each other when the notch of the crankshaft pulley is in the "0" position. 

    NG: ADJUST VALVE TIMING 

    OK: Go to next step 

  16. CHECK FUEL PRESSURE 
    1. Check the fuel pressure (See ON-VEHICLE INSPECTION ).

    NG: CHECK AND REPLACE FUEL PUMP, FUEL PRESSURE REGULATOR, FUEL PIPE LINE AND FILTER 

    OK: Go to next step 

  17. READ VALUE OF INTELLIGENT TESTER (COOLANT TEMP) 
    1. Connect the intelligent tester to the DLC3 with CAN VIM.
    2. Turn the ignition switch ON and turn the intelligent tester ON.
    3. Enter the following menus: DIAGNOSIS / ENHANCED OBD II / DATA LIST / PRIMARY / COOLANT TEMP.
    4. Read the COOLANT TEMP value when the engine is cold and warmed-up.

      Standard: 

      ECT when the engine is cold: Same as ambient temperature 

      ECT when the engine is warmed-up: 75 to 95°C (167 to 203°F) 

    NG: REPLACE ENGINE COOLANT TEMPERATURE SENSOR 

    OK: Go to next step 

  18. READ VALUE OF INTELLIGENT TESTER (MAF) 
    1. Connect the intelligent tester to the DLC3 with CAN VIM.
    2. Turn the ignition switch ON and turn the intelligent tester ON.
    3. Enter the following menus: DIAGNOSIS / ENHANCED OBD II / DATA LIST / PRIMARY / MAF and COOLANT TEMP.
    4. Allow the engine to idle until the COOLANT TEMP reaches 75°C (167°F) or more.
    5. Read the MAF with the engine in an idling condition and at an engine speed of 2,500 rpm.

      Standard: 

      MAF at idle rpm: 4.0 to 8.0 g/sec. (shift lever is in N position and A/C is OFF) 

      MAF at 2,500 rpm: 10.0 to 20.0 g/sec. (shift lever is in N position and A/C is OFF) 

    NG: REPLACE MASS AIR FLOW METER 

    OK: CHECK FOR INTERMITTENT PROBLEMS