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Inspection Procedure

NOTE: The intelligent tester is required to conduct the following diagnostic troubleshooting procedure.

HINT:

  1. CONFIRM DTC 
    1. Turn the ignition switch OFF and wait for 10 seconds.
    2. Turn the ignition switch ON.
    3. Turn the ignition switch OFF and wait for 10 seconds.
    4. Connect the intelligent tester to the DLC3.
    5. Turn the ignition switch ON.
    6. Enter the following menus: DIAGNOSIS / ENHANCED OBD II / DTC INFO / CURRENT CODES.
    7. Confirm DTCs and freeze frame data.

      If any EVAP system DTCs are set, the malfunctioning area can be determined using the table below.

      NOTE: If the 0.02 inch reference pressure difference between the first and second checks is greater than the specification, the DTCs corresponding to the reference pressure (P043E, P043F, P0441, P0455, P0456, P2401 and P2420) will all be stored.
      Fig 1: Identifying DTC Chart
      G04225648Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002

    NEXT 

  2. PERFORM EVAP SYSTEM CHECK (AUTO OPERATION) 
    NOTE:
    • The EVAP SYSTEM CHECK (AUTO OPERATION) consists of five steps performed automatically by the intelligent tester. It takes a maximum of approximately 18 minutes.
    • Do not perform the EVAP SYSTEM CHECK when the fuel tank is more than 90% full because the cut-off valve may be closed, making the leak check of the fuel tank not possible.
    • Do not run the engine in this step.
    • When the temperature of the fuel is 35°C (95°F) or more, a large amount of vapor forms and any check results become inaccurate. When performing the EVAP SYSTEM CHECK, keep the temperature below 35°C (95°F).
    1. Clear the DTCs (see DTC CHECK / CLEAR  ).
    2. Enter the following menus: DIAGNOSIS / ENHANCED OBD II / SYSTEM CHECK / EVAP SYS CHECK / AUTO OPERATION.
    3. After the EVAP SYSTEM CHECK is completed, check for pending DTCs by entering the following menus: DIAGNOSIS / ENHANCED OBD II / DTC INFO / PENDING CODES.

      HINT:

      If no pending DTC is displayed, perform the CONFIRMATION DRIVING PATTERN (see "Diagnostic Help" menu ). After this confirmation check for pending DTCs. If no DTC is displayed, the EVAP system is normal.

    NEXT 

  3. PERFORM EVAP SYSTEM CHECK (MANUAL OPERATION) 
    Fig 2: Identifying Perform EVAP System
    G04225649Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002
    NOTE:
    • In the EVAP SYSTEM CHECK (MANUAL OPERATION), the series of 5 EVAP SYSTEM CHECK steps are performed manually by the intelligent tester.
    • Do not perform the EVAP SYSTEM CHECK when the fuel tank is more than 90% full because the cut-off valve may be closed, making the leak check of the fuel tank not possible.
    • Do not run the engine in this step.
    • When the temperature of the fuel is 35°C (95°F) or more, a large amount of vapor forms and any check results become inaccurate. When performing the EVAP SYSTEM CHECK, keep the temperature below 35°C (95°F).
    1. Clear the DTCs (see DTC CHECK / CLEAR  ).
    2. Enter the following menus: DIAGNOSIS / ENHANCED OBD II / SYSTEM CHECK / EVAP SYS CHECK / MANUAL OPERATION.

    NEXT 

  4. PERFORM EVAP SYSTEM CHECK (STEP 1/5) 
    Fig 3: Checking EVAP System
    G04225650Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002
    1. Check the EVAP pressure in step 1/5.

    Result 

    RESULT

    DTC No.(1) Test Results Suspected Trouble Areas Proceed to
    - Virtually no variation in EVAP pressure Not yet determined A
    P0451 EVAP pressure fluctuates by +- 0.3 kPa (2.25 mmHg) or more Canister pressure sensor noising B
    (1) These DTCs are already present in the ECM when the vehicle arrives and are confirmed in step  1.

    B: Go to step   30 

    A: Go to next step 

  5. PERFORM EVAP SYSTEM CHECK (STEP 1/5 TO 2/5) 
    Fig 4: Identifying EVAP System Graph
    G04225651Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002
    1. Check the EVAP pressure in step 1/5 and 2/5.

    Result 

    RESULT

    DTC No.(1) Test Results Suspected Trouble Areas Proceed to
    - Virtually no variation in EVAP pressure during step 1/5. Then decreases to 0.02 inch leak criterion Not yet determined A
    P2402 Small difference between EVAP pressures during steps 1/5 and 2/5 Leak detection pump stuck ON B
    (1) These DTCs are already present in the ECM when the vehicle arrives and are confirmed in step  1.

    HINT:

    The first 0.02 inch leak criterion is the value determined in step 2/5.

    B: Go to step   23 

    A: Go to next step 

  6. PERFORM EVAP SYSTEM CHECK (STEP 2/5) 
    Fig 5: Identifying EVAP System Graph
    G04225652Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002

    HINT:

    Make a note of the pressures checked in the steps below.

    1. Check the EVAP pressure 4 seconds after the leak detection pump is activated*.

      *: The leak detection pump begins to operate as step 1/5 proceeds to step 2/5.

    2. Check the EVAP pressure again when it has stabilized.

      This pressure is the 0.02 inch leak criterion.

    Result 

    RESULT

    DTC No.(1) Test Results Suspected Trouble Areas Proceed to
    - EVAP pressure in step (b) between -4.85 kPa and -1.06 kPa (-36.38 mmHg and -7.95 mmHg) Not yet determined A
    P043F and P2401 EVAP pressure in step (b) -1.06 kPa (-7.95 mmHg) or more
    • Reference orifice high-flow
    • Leak detection pump stuck OFF
    B
    P043E EVAP pressure in step (b) below -4.85 kPa (-36.38 mmHg) Reference orifice clogged C
    P2419 EVAP pressure in step (a) more than -1.06 kPa (-7.95 mmHg) Vent valve stuck closed D
    (1) These DTCs are already present in the ECM when the vehicle arrives and are confirmed in step  1.

    B: Go to step   11 

    C: Go to step   30 

    D: Go to step   19 

    A: Go to next step 

  7. PERFORM EVAP SYSTEM CHECK (STEP 2/5 TO 3/5) 
    Fig 6: Identifying EVAP System Graph
    G04225653Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002
    1. Check the EVAP pressure in step 3/5.

    Result 

    RESULT

    DTC No.(1) Test Results Suspected Trouble Areas Proceed to
    - EVAP pressure increases by 0.3 kPa (2.25 mmHg) or more within 10 seconds of proceeding from step 2/5 to step 3/5 Not yet determined A
    P2420 No variation in EVAP pressure despite proceeding from step 2/5 to step 3/5 Vent valve stuck open (vent) B
    P0451 No variation in EVAP pressure during steps 1/5 through 3/5 Canister pressure sensor malfunction (stuck) C
    (1) These DTCs are already present in the ECM when the vehicle arrives and are confirmed in step  1.

    B: Go to step   20 

    C: Go to step   30 

    A: Go to next step 

  8. PERFORM EVAP SYSTEM CHECK (STEP 3/5) 
    Fig 7: Identifying EVAP System Graph
    G04225654Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002
    1. Wait until the EVAP pressure change is less than 0.1 kPa (0.75 mmHg) for 30 seconds.
    2. Measure the EVAP pressure and record it.

      HINT:

      A few minutes are required for the EVAP pressure to become saturated. When there is little fuel in the fuel tank, it takes up to 15 minutes.

    NEXT 

  9. PERFORM EVAP SYSTEM CHECK (STEP 4/5) 
    Fig 8: Identifying EVAP System Graph
    G04225655Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002
    1. Check the EVAP pressure in step 4/5.

    Result 

    RESULT

    DTC No.(1) Test Results Suspected Trouble Areas Proceed to
    - EVAP pressure increases by 0.3 kPa (2.25 mmHg) or more within 10 seconds of proceeding from step 3/5 to step 4/5 Not yet determined A
    P0441 EVAP pressure increases by 0.3 kPa (2.25 mmHg) or more within 10 seconds of proceeding from step 3/5 to step 4/5 Problems in EVAP hose between purge VSV and intake manifold B
    P0441 Variation in EVAP pressure less than 0.3 kPa (2.25 mmHg) for 10 seconds, after proceeding from step 3/5 to step 4/5 Purge VSV stuck closed C
    (1) These DTCs are already present in the ECM when the vehicle arrives and are confirmed in step  1.

    B: Go to step   15 

    C: Go to step   12 

    A: Go to next step 

  10. PERFORM EVAP SYSTEM CHECK (STEP 5/5) 
    Fig 9: Identifying EVAP System Graph
    G04225656Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002
    1. Check the EVAP pressure in step 5/5.
    2. Compare the EVAP pressure in step 3/5 and the second 0.02 inch leak criterion (step 5/5).

    Result 

    RESULT

    DTC No.(1) Test Results Suspected Trouble Areas Proceed to
    - EVAP pressure (step 3/5) lower than second 0.02 inch leak criterion (step 5/5) Not yet determined A
    P0441 and P0455 EVAP pressure (step 3/5) higher than [second 0.02 inch leak criterion (step 5/5) x 0.2]
    • Purge VSV stuck open
    • EVAP gross leak
    B
    P0456 EVAP pressure (step 3/5) higher than second 0.02 inch leak criterion (step 5/5) EVAP small leak B
    (1) These DTCs are already present in the ECM when the vehicle arrives and are confirmed in step  1.

    A: Go to step   36 

    B: Go to step   12 

  11. PERFORM EVAP SYSTEM CHECK (STEP 3/5) 
    Fig 10: Identifying EVAP System Graph
    G04225657Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002
    1. Check the EVAP pressure in step 3/5.

    Result 

    RESULT

    DTC No.(1) Test Results Suspected Trouble Areas Proceed to
    P043F EVAP pressure less than [0.02 inch leak criterion] measured at 2/5 Reference orifice high-flow A
    P2401 EVAP pressure almost same as [0.02 inch leak criterion] measured at 2/5 Leak detection pump stuck OFF B
    (1) These DTCs are already present in the ECM when the vehicle arrives and are confirmed in step  1.

    HINT:

    The first 0.02 inch leak criterion is the value determined in step 2/5.

    A: Go to step   30 

    B: Go to step   23 

  12. PERFORM ACTIVE TEST BY INTELLIGENT TESTER (PURGE VSV) 
    1. Enter the following menus: DIAGNOSIS / ENHANCED OBD II / ACTIVE TEST / EVAP VSV.
    2. Disconnect the hose (connected to the canister) from the purge VSV.
    3. Turn the ignition switch ON.
    4. Using the tester, turn the purge VSV OFF.
    5. Use your finger to confirm that the purge VSV has no suction.
    6. Using the tester, turn the purge VSV ON.
    7. Use your finger to confirm that the purge VSV has suction.
      Fig 11: Disconnecting Hose (Connected To Canister) From Purge VSV
      G04225658Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002

    Result 

    RESULT

    Test Results Suspected Trouble Areas Proceed to
    No suction when purge VSV turned OFF, and suction applied when turned ON Purge VSV normal A
    Suction applied when purge VSV turned OFF Purge VSV stuck open B
    No suction when purge VSV turned ON
    • Purge VSV stuck closed
    • Problems with EVAP hose between purge VSV and intake manifold
    C

    B: Go to step   14 

    C: Go to step   15 

    A: Go to next step 

  13. CHECK FUEL TANK CAP 
    1. Check that the fuel tank cap is correctly installed and confirm the fuel cup meets OEM specification.
      1. Tighten the fuel tank cap until a few click sounds are heard.

        HINT:

        If an EVAP tester is available, use the tester to check the fuel tank cap.

    2. Remove the fuel tank cap and install it onto the fuel tank cap adaptor.
    3. Connect an EVAP tester pump hose to the adaptor, and pressurize the cap to 3.2 to 3.7 kPa (24 to 28 mmHg) using an EVAP tester pump.
    4. Seal the adaptor and wait for 2 minutes.
    5. Check the pressure. If the pressure is 2 kPa (15 mmHg) or more, the fuel tank cap is normal.

    Result 

    RESULT

    Test Results Suspected Trouble Areas Proceed to
    Fuel tank cap correctly installed - A
    Fuel tank cap loose
    • Fuel tank cap improperly installed
    • Defective fuel tank cap
    • Fuel tank cap does not meet OEM specifications
    B
    No fuel tank cap - C

    A: Go to step   29 

    B: Go to step   27 

    C: Go to step   28 

  14. INSPECT PURGE VSV 
    1. Turn the ignition switch OFF.
    2. Disconnect the V1 purge VSV connector.
    3. Disconnect the hose (connected to the canister) from the purge VSV.
    4. Turn the ignition switch ON.
    5. Start the engine.
    6. Use your finger to confirm that the purge VSV has no suction.
      Fig 12: Disconnecting V1 Purge VSV Connector
      G04225659Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002

    Result 

    RESULT

    Test Results Suspected Trouble Areas Proceed to
    No suction ECM A
    Suction applied Purge VSV B

    A: Go to step   35 

    B: Go to step   31 

  15. CHECK EVAP HOSE (PURGE VSV - INTAKE MANIFOLD) 
    1. Disconnect the hose (connected to the intake manifold) from the purge VSV.
    2. Turn the ignition switch ON.
    3. Start the engine.
    4. Use your finger to confirm that the hose has suction.
      Fig 13: Disconnecting Hose (Connected To Intake Manifold) From Purge VSV
      G04225660Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002

    Result 

    RESULT

    Test Results Suspected Trouble Areas Proceed to
    Suction applied EVAP hose between purge VSV and intake manifold normal A
    No suction
    • Intake manifold port
    • EVAP hose between purge VSV and intake manifold
    B

    B: Go to step   26 

    A: Go to next step 

  16. INSPECT DUTY PURGE VSV 
    1. Remove the purge VSV connector.
    2. Apply battery voltage to the terminals of the purge VSV.
    3. Using an air gun, confirm that air flows from port A to port B.
      Fig 14: Applying Battery Voltage To Terminals Of Purge VSV
      G04225661Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002

    Result 

    RESULT

    Test Results Suspected Trouble Areas Proceed to
    Air flows Purge VSV normal A
    No air flows Purge VSV B

    B: Go to step   31 

    A: Go to next step 

  17. CHECK HARNESS AND CONNECTOR (POWER SOURCE OF PURGE VSV) 
    1. Disconnect the V1 purge VSV connector.
    2. Turn the ignition switch ON.
    3. Measure the voltage between terminal 1 of the purge VSV connector and the body ground.
      Fig 15: Measuring Voltage Between Terminal Of Purge VSV Connector
      G04225662Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002

    Result 

    RESULT

    Test Results Suspected Trouble Areas Proceed to
    11 to 14 V Normal A
    Other than result above Wire harness or connectors between purge VSV and ECM B

    B: Go to step   32 

    A: Go to next step 

  18. CHECK HARNESS AND CONNECTOR (PURGE VSV - ECM) 
    1. Disconnect the V1 purge VSV connector.
      Fig 16: Disconnecting V1 Purge VSV Connector
      G04225663Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002
    2. Disconnect the E6 ECM connector.
    3. Measure the resistance of the wire harness side connectors.

      Standard resistance 

      TESTER CONNECTION - SPECIFIED CONDITIONS

      Tester Connection Specified Condition
      V1-1 - PRG (E6-23) Below 1 Ω
      V1-1 or PRG (E6-23) - Body ground 10 kΩ or higher

    OK: Go to step   35 

    NG: Go to step   32 

    Fig 17: Measuring Resistance Of Wire Harness Side Connectors
    G04225664Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002
  19. PERFORM ACTIVE TEST BY INTELLIGENT TESTER (FOR VENT VALVE) 
    1. Turn the ignition switch ON.
    2. Enter the following menus: DIAGNOSIS / ENHANCED OBD II / ACTIVE TEST / VENT VALVE (ALONE).
    3. Measure the voltage between terminal VPMP (E3-5) of the ECM connector and the body ground when the vent valve is turned ON (closed) and OFF (vent) using the tester.
      Fig 18: Measuring Voltage Between Terminal Vpmp (E3-5) Of ECM Connector
      G04225665Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002

    Result 

    RESULT

    Test Results Suspected Trouble Areas Proceed to
    9 to 14 V when OFF
    Below 3 V when ON
    Vent valve A
    Below 3 V when OFF and ON ECM B

    A: Go to step   22 

    B: Go to step   35 

  20. PERFORM ACTIVE TEST BY INTELLIGENT TESTER (FOR VENT VALVE) 
    1. Turn the ignition switch ON.
    2. Enter the following menus: DIAGNOSIS / ENHANCED OBD II / ACTIVE TEST / VENT VALVE (ALONE).
    3. Measure the voltage between terminal VPMP (E3-5) of the ECM connector and the body ground when the vent valve is turned ON (closed) and OFF (vent) using the tester.
      Fig 19: Measuring Voltage Between Terminal Vpmp (E3-5) Of ECM Connector And Body Ground
      G04225666Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002

    Result 

    RESULT

    Test Results Suspected Trouble Areas Proceed to
    Below 3 V when OFF and ON Power source of vent valve A
    9 to 14 V when OFF
    Below 3 V when ON
    Vent valve B
    9 to 14 V when OFF and ON ECM C

    B: Go to step   22 

    C: Go to step   35 

    A: Go to next step 

  21. INSPECT CANISTER PUMP MODULE (POWER SOURCE FOR VENT VALVE) 
    1. Turn the ignition switch OFF.
    2. Disconnect the C10 canister connector.
    3. Turn the ignition switch ON.
      Fig 20: Disconnecting C10 Canister Connector
      G04225667Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002
    4. Measure the voltage between +B terminal of the canister connector and the body ground.
      Fig 21: Measuring Voltage Between Terminal Of Canister Connector
      G04225668Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002

    Result 

    RESULT

    Test Results Suspected Trouble Areas Proceed to
    9 to 14 V Normal A
    0 to 3 V Power source wire harness of vent valve B

    B: Go to step   32 

    A: Go to next step 

  22. INSPECT CANISTER PUMP MODULE (VENT VALVE OPERATION) 
    1. Turn the ignition switch OFF.
    2. Disconnect the C10 canister connector.
    3. Apply battery voltage to +B and GND of the canister pump module.
    4. Touch the canister pump module to confirm the vent valve operation.
      Fig 22: Applying Battery Voltage To And Gnd Of Canister Pump Module
      G04225669Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002

    Result 

    RESULT

    Test Results Suspected Trouble Areas Proceed to
    Operating Wire harness between vent valve and ECM A
    Not operating Vent valve B

    A: Go to step   32 

    B: Go to step   30 

  23. PERFORM ACTIVE TEST BY INTELLIGENT TESTER (FOR CANISTER PUMP MODULE [LEAK DETECTION PUMP]) 
    1. Enter the following menus: DIAGNOSIS / ENHANCED OBD II / ACTIVE TEST / VACUUM PUMP (ALONE).
    2. Measure the voltage between the MPMP (E3-6) terminal of the ECM connector and the body ground when the leak detection pump is turned ON and OFF using the tester.
      Fig 23: Measuring Voltage Between Mpmp (E3-6) Terminal Of ECM Connector
      G04225670Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002

    Result 

    RESULT

    Test Results Suspected Trouble Areas Proceed to
    0 to 3 V when OFF
    9 to 14 V when ON
    ECM normal A
    9 to 14 V when OFF
    0 V to 3 V when ON
    ECM B

    B: Go to step   35 

    A: Go to next step 

  24. CHECK HARNESS AND CONNECTOR (CANISTER PUMP MODULE - ECM) 
    1. Turn the ignition switch OFF.
    2. Disconnect the C10 canister connector.
    3. Turn the ignition switch ON.
    4. Enter the following menus: DIAGNOSIS / ENHANCED OBD II / ACTIVE TEST / VACUUM PUMP (ALONE).
    5. Turn the leak detection pump ON.
      Fig 24: Disconnecting C10 Canister Connector
      G04225671Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002
    6. Measure the voltage between +B terminal of the canister connector and the body ground.
      Fig 25: Measuring Voltage Between +B Terminal Of Canister Connector
      G04225672Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002

    Result 

    RESULT

    Test Results Suspected Trouble Areas Proceed to
    9 to 14 V Normal A
    0 to 3 V Wire harness between ECM and leak detection pump B

    B: Go to step   32 

    A: Go to next step 

  25. CHECK HARNESS AND CONNECTOR (CANISTER PUMP MODULE - GROUND) 
    1. Disconnect the C10 canister connector.
    2. Turn the ignition switch OFF.
    3. Measure the resistance of the wire harness side connectors between GND terminal of the canister connector and the body ground.
      Fig 26: Measuring Resistance Of Wire Side Connectors Between GND Terminal Of Canister Connector And Body Ground
      G04225673Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002

    Result 

    RESULT

    Test Results Suspected Trouble Areas Proceed to
    Below 1 Ω Leak detection pump A
    10 kΩ or higher Wire harness between leak detection pump and body ground B

    A: Go to step   30 

    B: Go to step   32 

  26. INSPECT INTAKE MANIFOLD (EVAP PURGE PORT) 
    1. Turn the ignition switch OFF.
    2. Disconnect the EVAP hose from the intake manifold.
    3. Turn the ignition switch ON.
    4. Use your finger to confirm that the port of the intake manifold has suction.

    Result 

    RESULT

    Test Results Suspected Trouble Areas Proceed to
    Suction applied EVAP hose between intake manifold and purge VSV A
    No suction Intake manifold B

    A: Go to step   33 

    B: Go to step   34 

  27. CORRECTLY REINSTALL OR REPLACE FUEL TANK CAP 

    HINT:

    • When reinstalling the fuel tank cap, tighten it until a few click sounds are heard.
    • When replacing the fuel tank cap, use a fuel tank cap that meets OEM specifications, and tighten it until a few click sounds are heard.

    NEXT: Go to step   37 

  28. REPLACE FUEL TANK CAP 

    HINT:

    When installing the fuel tank cap, tighten it until a few click sounds are heard.

    NEXT: Go to step   37 

  29. LOCATE EVAP LEAK 
    1. Disconnect the vent hose.
      Fig 27: Identifying Fuel Tank Hose
      G04225674Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002
    2. Connect the EVAP pressure tester tool to the canister with the adapter.
      Fig 28: Connecting EVAP Pressure Tester Tool To Canister
      G04225675Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002
    3. Pressurize the EVAP system by 3.2 to 3.7 kPa (24 to 28 mmHg).
    4. Apply soapy water to the piping and connecting parts of the EVAP system.
    5. Look for areas where bubbles appear. This indicates leak point.
    6. Repair or replace the leak point.

    HINT:

    Disconnect the hose between the canister and the fuel tank from the canister. Block the canister side and conduct an inspection. In this way, the fuel tank can be excluded as an area suspected of causing fuel leaks.

    NEXT: Go to step   37 

  30. REPLACE CANISTER ASSEMBLY 
    1. Replace the canister assembly (see REMOVAL ).
      NOTE: When replacing the canister, check the canister pump module interior and related pipes for water, fuel or other liquids. If liquids are present, check for disconnections and/or cracks in the following: 1) the pipe from the air inlet port to the canister pump module; 2) the canister filter; and 3) the fuel tank vent hose.
      Fig 29: Checking Canister Pump Module Interior And Related Pipes For Water
      G04225676Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002

    NEXT: Go to step   37 

  31. REPLACE PURGE VSV 
    1. Disconnect the connector and hoses from the purge VSV.
    2. Remove the purge VSV.
    3. Install a new purge VSV.
      Fig 30: Removing Purge VSV
      G04225677Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002

    NEXT: Go to step   37 

  32. REPAIR OR REPLACE HARNESS AND CONNECTOR 

    NEXT: Go to step   37 

  33. REPLACE EVAP HOSE (INTAKE MANIFOLD - PURGE VSV) 

    NEXT: Go to step   37 

  34. INSPECT INTAKE MANIFOLD (EVAP PURGE PORT) 
    1. Check that the EVAP purge port of the intake manifold is not clogged. If necessary, replace the intake manifold.

    NEXT: Go to step   37 

  35. REPLACE ECM 
    1. Replace the ECM (see ON-VEHICLE INSPECTION  ).

    NEXT: Go to step   37 

  36. REPAIR OR REPLACE PARTS AND COMPONENTS INDICATED BY OUTPUT DTCS 
    1. Repair the malfunctioning areas indicated by the DTCs that had been confirmed when the vehicle was brought in.

    NEXT: Go to step 37 

  37. PERFORM EVAP SYSTEM CHECK (AUTO OPERATION) 
    NOTE:
    • The EVAP SYSTEM CHECK (AUTO OPERATION) consists of five steps performed automatically by the intelligent tester. It takes a maximum of approximately 18 minutes.
    • Do not perform the EVAP SYSTEM CHECK when the fuel tank is more than 90% full because the cut-off valve may be closed, making the leak check of the fuel tank not possible.
    • Do not run the engine in this step.
    • When the temperature of the fuel is 35°C (95°F) or more, a large amount of vapor forms and any check results become inaccurate. When performing an EVAP SYSTEM CHECK, keep the temperature below 35°C (95°F).
    1. Clear the DTCs (see DTC CHECK / CLEAR  ).
    2. Enter the following menus: DIAGNOSIS / ENHANCED OBD II / SYSTEM CHECK / EVAP SYS CHECK / AUTO OPERATION.
    3. After the SYSTEM CHECK is completed, check for pending DTCs by entering the following menus: DIAGNOSIS / ENHANCED OBD II / DTC INFO / PENDING CODES.

      HINT:

      If no pending DTC is found, the repair has been successfully completed.

    NEXT: COMPLETED