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Last Modified: 7-3-2017 |
6.8:8.0.40 |
Doc ID: RM000000YEQ01UX |
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Model Year Start: 2007 |
Model: LX470 |
Prod Date Range: [08/2006 -
] |
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Title: 2UZ-FE ENGINE CONTROL SYSTEM: SFI SYSTEM: EVAP System; 2007 MY LX470 [08/2006 - ] |
RELATED DTCS
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DTC No.
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Monitoring Item
|
See procedure
|
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P043E
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Reference orifice clogged (built into canister pump module)
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P043F
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Reference orifice high-flow (built into canister pump module)
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P0441
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-
Purge VSV stuck closed
-
Purge VSV stuck open
-
Purge flow
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P0450
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Canister pressure sensor (built into canister pump module) voltage abnormal fluctuation
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P0451
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-
Canister pressure sensor (built into canister pump module) noising
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Canister pressure sensor (built into canister pump module) signal becomes fixed/flat
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P0452
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Canister pressure sensor (built into canister pump module) voltage low
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P0453
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Canister pressure sensor (built into canister pump module) voltage high
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P0455
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EVAP gross leak
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P0456
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EVAP small leak
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P2401
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Leak detection pump stuck OFF (built into canister pump module)
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P2402
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Leak detection pump stuck ON (built into canister pump module)
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P2419
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Vent valve stuck closed (built into canister pump module)
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P2420
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Vent valve stuck open (vent) (built into canister pump module)
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P2610
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Soak timer (built into ECM)
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If any EVAP system DTCs are set, the malfunctioning area can be determined using the table below.
NOTICE:
If the reference pressure difference between the first and second checks is greater than the specification, the DTCs corresponding to the reference pressure (P043E, P043F, P2401, P2402 and P2419) will all be stored.
DESCRIPTION
NOTICE:
In this vehicle's EVAP system, turning ON the vent valve does not seal off the EVAP system. To check for leaks in the EVAP system, disconnect the air inlet vent hose and apply pressure from the atmospheric side of the canister.
While the engine is running, if a predetermined condition (closed-loop etc.) is met, the purge VSV is opened by the ECM and stored fuel vapors in the canister are purged to the intake manifold. The ECM changes the duty cycle ratio of the purge VSV to control purge flow volume.
The purge flow volume is also determined by the intake manifold pressure. Atmospheric pressure is allowed into the canister through the vent valve to ensure that the purge flow is maintained when the negative pressure (vacuum) is applied to the canister.
The following two monitors run to confirm appropriate EVAP system operation.
1. Key-off monitor
This monitor checks for Evaporative Emission (EVAP) system leaks and canister pump module malfunctions. The monitor starts 5 hours* after the ignition switch is turned OFF. More than 5 hours are required to allow the fuel to cool down to stabilize the Fuel Tank Pressure (FTP), thus making the EVAP system monitor more accurate.
The leak detection pump creates negative pressure (vacuum) in the EVAP system and the pressure is measured. Finally, the ECM monitors for leaks from the EVAP system and malfunctions in both the canister pump module and purge VSV, based on the EVAP pressure.
HINT:
*: If the engine coolant temperature is not below 35°C (95°F) 5 hours after the ignition switch is turned OFF, the monitor check starts 2 hours later. If it is still not below 35°C (95°F) 7 hours after the ignition switch is turned OFF, the monitor check starts 2.5 hours later.
2. Purge flow monitor
The purge flow monitor consists of the two monitors. The 1st monitor is conducted every time and the 2nd monitor is conducted if necessary.
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The 1st monitor
While the engine is running and the purge Vacuum Switching Valve (VSV) is ON (open), the ECM monitors the purge flow by measuring the EVAP pressure change. If negative pressure is not created, the ECM begins the 2nd monitor.
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The 2nd monitor
The vent valve turned OFF (open) and the EVAP pressure is then measured. If the variation in the pressure is less than 0.5 kPa-g (3.75 mmHg-g), the ECM interprets this as the purge VSV being stuck closed, and illuminates the MIL and sets DTC P0441 (2 trip detection logic).
Atmospheric pressure check:
In order to ensure reliable malfunction detection, the variation between the atmospheric pressures, before and after conduction of the purge flow monitor, is measured by the ECM.
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Component
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Operation
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Canister
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Contains activated charcoal to absorb EVAP generated in fuel tank.
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Cut-off valve
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Located in fuel tank. Valve floats and closes when fuel tank 100% full.
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Purge Vacuum Switching Valve (VSV)
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Opens or closes line between canister and intake manifold. ECM uses purge VSV to control EVAP purge flow. In order to discharge EVAP absorbed by canister to intake manifold, ECM opens purge VSV. EVAP discharge volume to intake manifold controlled by purge VSV duty cycle ratio (current-carrying time) (open: ON, closed: OFF).
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Refueling valve
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Controls EVAP pressure from fuel tank to canister. Valve consists of diaphragm, spring and restrictor (diameter: 0.08 inch). When fuel vapor and pressure inside fuel tank increase, valve opens. While EVAP purged, valve closes and restrictor prevents large amount of vacuum from affecting pressure in fuel tank. Valve opens while refueling.
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Roll-over valve
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Located in fuel tank. Valve closes by its own weight when vehicle overturns to prevent fuel from spilling out.
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Soak timer
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Built into ECM. To ensure accurate EVAP monitor, measures 5 hours (+-15 min) after ignition switch OFF. This allows fuel to cool down, stabilizing Fuel Tank Pressure (FTP). When approximately 5 hours elapsed, ECM activates.
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Canister pump module
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Consists of (a) to (d) below. canister pump module cannot be disassembled.
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(a) Vent valve
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Vents and closes EVAP system. When ECM turns valve ON, EVAP system closed. When, ECM turns valve OFF, EVAP system vented. Negative pressure (vacuum) created in EVAP system to check for EVAP leaks by closing purge VSV, turning vent valve ON (closed) and operating leak detection pump (refer to fig. 1).
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(b) Canister pressure sensor
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Indicates pressure as voltage. ECM supplies regulated 5 V to canister pressure sensor, and uses feedback from sensor to monitor EVAP system pressure (refer to fig. 2).
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(c) Leak detection pump
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Creates negative pressure (vacuum) in EVAP system for leak check.
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(d) Reference orifice
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Has opening with 0.02 inch diameter. Vacuum produced through orifice by closing purge VSV, turning vent valve OFF and operating leak detection pump, to monitor reference pressure. Reference pressure indicates small leak of EVAP.
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WIRING DIAGRAM
INSPECTION PROCEDURE
NOTICE:
The intelligent tester is required to conduct the following diagnostic troubleshooting procedure.
HINT:
-
Using the intelligent tester monitor results enable the EVAP system to be confirmed.
-
Read freeze frame data using the intelligent tester. Freeze frame data records the engine conditions when malfunctions are detected. When troubleshooting, freeze frame data can help determine if the vehicle was moving or stationary, if the engine was warmed up or not, if the air fuel ratio was lean or rich, and other data from the time the malfunction occurred.
PROCEDURE
(a) Turn the ignition switch OFF and wait for 10 seconds.
(b) Turn the ignition switch ON.
(c) Turn the ignition switch OFF and wait for 10 seconds.
(d) Connect the intelligent tester to the CAN VIM. Then connect the CAN VIM to the DLC3.
(e) Turn the ignition switch ON.
(f) Enter the following menus: DIAGNOSIS / ENHANCED OBD II / DTC INFO / CURRENT CODES.
(g) Confirm DTCs and freeze frame data.
If any EVAP system DTCs are set, the malfunctioning area can be determined using the table below.
NOTICE:
If the reference pressure difference between the first and second checks is greater than the specification, the DTCs corresponding to the reference pressure (P043E, P043F, P2401, P2402 and P2419) will all be stored.
| NEXT |
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2.
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PERFORM EVAP SYSTEM CHECK (AUTO OPERATION)
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NOTICE:
-
In the EVAP SYSTEM CHECK (AUTO OPERATION), the series of 5 EVAP SYSTEM CHECK steps are performed automatically. It takes a maximum of approximately 18 minutes.
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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.
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Do not run the engine during this operation.
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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).
(a)
Clear the DTCs
.
(b) Enter the following menus: DIAGNOSIS / ENHANCED OBD II / SYSTEM CHECK / EVAP SYS CHECK / AUTO OPERATION.
(c) 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 DTCs are displayed, perform the MONITOR CONFIRMATION (see "Diagnostic Help" menu). After this confirmation, check for pending DTCs. If no DTCs are displayed, the EVAP system is normal.
| NEXT |
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3.
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PERFORM EVAP SYSTEM CHECK (MANUAL OPERATION)
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NOTICE:
-
In the EVAP SYSTEM CHECK (MANUAL OPERATION), the series of 5 EVAP SYSTEM CHECK steps are performed manually.
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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 during this operation.
-
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).
(a)
Clear the DTCs
.
(b) Enter the following menus: DIAGNOSIS / ENHANCED OBD II / SYSTEM CHECK / EVAP SYS CHECK / MANUAL OPERATION.
| NEXT |
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4.
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PERFORM EVAP SYSTEM CHECK (STEP 1/5)
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(a) Check the EVAP pressure in step 1/5.
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DTC No. *
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Test Result
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Suspected Trouble Area
|
Proceed to
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-
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Virtually no variation in EVAP pressure
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Not yet determined
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A
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P0451
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EVAP pressure fluctuates by +-0.3 kPa-g (2.25 mmHg-g) or more
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Canister pressure sensor noising
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B
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*: These DTCs are already present in the ECM when the vehicle arrives and are confirmed in step 1.
| A |
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5.
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PERFORM EVAP SYSTEM CHECK (STEP 1/5 TO 2/5)
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(a) Check the EVAP pressure in step 1/5 and 2/5.
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DTC No. *
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Test Result
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Suspected Trouble Area
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Proceed to
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-
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Virtually no variation in EVAP pressure during step 1/5. Then decreases to reference pressure
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Not yet determined
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A
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P2402
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Small difference between EVAP pressures during steps 1/5 and 2/5
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Leak detection pump stuck ON
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B
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*: These DTCs are already present in the ECM when the vehicle arrives and are confirmed in step 1.
HINT:
The first reference pressure is the value determined in step 2/5.
| A |
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6.
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PERFORM EVAP SYSTEM CHECK (STEP 2/5)
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HINT:
Make a note of the pressures checked in the steps below.
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(a) 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.
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(b) Check the EVAP pressure again when it has stabilized. This pressure is the reference pressure.
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DTC No. *
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Test Result
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Suspected Trouble Area
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Proceed to
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|
-
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EVAP pressure in step (b) between -4.85 kPa-g and -1.057 kPa-g (-36.4 mmHg-g and -7.93 mmHg-g)
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Not yet determined
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A
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P043F and P2401
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EVAP pressure in step (b) -1.057 kPa-g (-7.93 mmHg-g) or more
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-
Reference orifice high-flow
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Leak detection pump stuck OFF
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B
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P043E
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EVAP pressure in step (b) below -4.85 kPa-g (- 36.4 mmHg-g)
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Reference orifice clogged
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C
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P2419
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EVAP pressure in step (a) more than -1.057 kPa-g (-7.93 mmHg-g)
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Vent valve stuck closed
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D
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*: These DTCs are already present in the ECM when the vehicle arrives and are confirmed in step 1.
| A |
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7.
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PERFORM EVAP SYSTEM CHECK (STEP 2/5 TO 3/5)
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(a) Check the EVAP pressure in step 3/5.
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DTC No. *
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Test Result
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Suspected Trouble Area
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Proceed to
|
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-
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EVAP pressure increases by 0.3 kPa-g (2.25 mmHg-g) or more within 10 seconds of proceeding from step 2/5 to step 3/5
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Not yet determined
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A
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P2420
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No variation in EVAP pressure despite proceeding from step 2/5 to step 3/5
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Vent valve stuck open (vent)
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B
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P0451
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No variation in EVAP pressure during steps 1/5 through 3/5
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Canister pressure sensor malfunction fixed
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C
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*: These DTCs are already present in the ECM when the vehicle arrives and are confirmed in step 1.
| A |
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8.
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PERFORM EVAP SYSTEM CHECK (STEP 3/5)
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(a) Wait until the EVAP pressure change is less than 0.1 kPa-g (0.75 mmHg-g) for 30 seconds.
(b) 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 |
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9.
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PERFORM EVAP SYSTEM CHECK (STEP 4/5)
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(a) Check the EVAP pressure in step 4/5.
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DTC No. *
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Test Result
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Suspected Trouble Area
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Proceed to
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-
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EVAP pressure increases by 0.3 kPa-g (2.25 mmHg-g) or more within 10 seconds of proceeding from step 3/5 to step 4/5
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Not yet determined (no leakage from EVAP system)
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A
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P0441
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EVAP pressure increases by 0.3 kPa-g (2.25 mmHg-g) or more within 10 seconds of proceeding from step 3/5 to step 4/5
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Problems in EVAP hose between purge VSV and intake manifold
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B
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P0441
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Variation in EVAP pressure less than 0.3 kPa-g (2.25 mmHg-g) for 10 seconds, after proceeding from step 3/5 to step 4/5
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Purge VSV stuck closed
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C
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*: These DTCs are already present in the ECM when the vehicle arrives and are confirmed in step 1.
| A |
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10.
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PERFORM EVAP SYSTEM CHECK (STEP 5/5)
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(a) Check the EVAP pressure in step 5/5.
(b) Compare the EVAP pressure in step 3/5 and the second reference pressure (step 5/5).
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DTC No. *
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Test Result
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Suspected Trouble Area
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Proceed to
|
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-
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EVAP pressure (step 3/5) lower than second reference pressure (step 5/5)
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Not yet determined
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A
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P0441 and P0455
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EVAP pressure (step 3/5) higher than [second reference pressure (step 5/5) x 0.2]
|
-
Purge VSV stuck open
-
EVAP gross leak
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B
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P0456
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EVAP pressure (step 3/5) higher than second reference pressure (step 5/5)
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EVAP small leak
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B
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*: These DTCs are already present in the ECM when the vehicle arrives and are confirmed in step 1.
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11.
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PERFORM EVAP SYSTEM CHECK (STEP 3/5)
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(a) Check the EVAP pressure in step 3/5.
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DTC No. *
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Test Result
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Suspected Trouble Area
|
Proceed to
|
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P043F
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EVAP pressure less than [reference pressure] measured at 2/5
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Reference orifice high-flow
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A
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P2401
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EVAP pressure almost same as [reference pressure] measured at 2/5
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Leak detection pump stuck OFF
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B
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*: These DTCs are already present in the ECM when the vehicle arrives and are confirmed in step 1.
HINT:
The first reference pressure is the value determined in step 2/5.
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12.
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PERFORM ACTIVE TEST USING INTELLIGENT TESTER (PURGE VSV)
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(a) On the intelligent tester, enter the following menus: DIAGNOSIS / ENHANCED OBD II / ACTIVE TEST / EVAP VSV.
(b) Disconnect the hose (connected to the canister) from the purge VSV.
(c) Start the engine.
(d) Using the tester, turn the purge VSV OFF.
(e) Use your finger to confirm that the purge VSV has no suction.
(f) Using the tester, turn the purge VSV ON.
(g) Use your finger to confirm that the purge VSV has suction.
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Test Result
|
Suspected Trouble Area
|
Proceed to
|
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No suction when purge VSV turned OFF, and suction applied when turned ON
|
Purge VSV normal
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A
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Suction applied when purge VSV turned OFF
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Purge VSV stuck open
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B
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No suction when purge VSV turned ON
|
-
Purge VSV stuck closed
-
Problems with EVAP hose between purge VSV and intake manifold
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C
|
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|
| A |
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(a) Check that the fuel cap is correctly installed and confirm the fuel cap meets OEM specifications.
(1) Tighten the fuel cap until a few click sounds are heard.
HINT:
If an EVAP tester is available, use the tester to check the fuel cap.
(b) Remove the fuel cap and install it onto the fuel cap adaptor.
(c) 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.
(d) Seal the adaptor and wait for 2 minutes.
(e) Check the pressure. If the pressure is 2 kPa (15 mmHg) or more, the fuel cap is normal.
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Test Result
|
Suspected Trouble Area
|
Proceed to
|
|
Fuel cap correctly installed
|
-
|
A
|
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Fuel cap loose
|
-
Fuel cap improperly installed
-
Defective fuel cap
-
Fuel cap does not meet OEM specifications
|
B
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No fuel cap
|
-
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C
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(a) Turn the ignition switch OFF.
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(b) Disconnect the V4 purge VSV connector.
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|
(c) Disconnect the hose (connected to the canister) from the purge VSV.
(d) Start the engine.
(e) Use your finger to confirm that the purge VSV has no suction.
|
Test Result
|
Suspected Trouble Area
|
Proceed to
|
|
No suction
|
ECM
|
A
|
|
Suction applied
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Purge VSV
|
B
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15.
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CHECK EVAP HOSE (PURGE VSV - INTAKE MANIFOLD)
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|
(a) Disconnect the hose (connected to the intake manifold) from the purge VSV.
|
|
(b) Start the engine.
(c) Use your finger to confirm that the hose has suction.
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Test Result
|
Suspected Trouble Area
|
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
|
| A |
|
|
|
16.
|
INSPECT DUTY PURGE VSV
|
(a) Remove the purge VSV connector.
|
(b) Apply battery voltage to the terminals of the purge VSV.
|
|
(c) Using an air gun, confirm that air flows from port A to port B.
|
Test Result
|
Suspected Trouble Area
|
Proceed to
|
|
Air flows
|
Purge VSV normal
|
A
|
|
No air flows
|
Purge VSV
|
B
|
| A |
|
|
|
17.
|
CHECK HARNESS AND CONNECTOR (POWER SOURCE OF PURGE VSV)
|
|
(a) Disconnect the V4 purge VSV connector.
|
|
(b) Turn the ignition switch ON.
(c) Measure the voltage between terminal 2 of the purge VSV connector and the body ground.
|
Test Result
|
Suspected Trouble Area
|
Proceed to
|
|
9 to 14 V
|
Normal
|
A
|
|
Other than result above
|
Wire harness or connectors between purge VSV and ECM
|
B
|
| A |
|
|
|
18.
|
CHECK HARNESS AND CONNECTOR (PURGE VSV - ECM)
|
|
(a) Disconnect the V4 purge VSV connector.
(b) Disconnect the E8 ECM connector.
(c) Measure the resistance of the wire harness side connectors.
Standard resistance:
|
Tester Connection
|
Specified Condition
|
|
V4-1 - E8-34 (PRG)
|
Below 1 Ω
|
|
V4-1 or E8-34 (PRG) - Body ground
|
10 kΩ or higher
|
|
|
|
19.
|
PERFORM ACTIVE TEST USING INTELLIGENT TESTER (FOR VENT VALVE)
|
(a) Turn the ignition switch ON.
(b) Enter the following menus: DIAGNOSIS / ENHANCED OBD II / ACTIVE TEST / VENT VALVE (ALONE).
|
(c) Measure the voltage between terminal VPMP (E10-5) of the ECM connector and the body ground when the vent valve is turned ON (close) and OFF (vent) using the tester.
|
Test Result
|
Suspected Trouble Area
|
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
|
|
|
|
20.
|
PERFORM ACTIVE TEST USING INTELLIGENT TESTER (FOR VENT VALVE)
|
(a) Turn the ignition switch ON.
(b) Enter the following menus: DIAGNOSIS / ENHANCED OBD II / ACTIVE TEST / VENT VALVE (ALONE).
|
(c) Measure the voltage between terminal VPMP (E10-5) of the ECM connector and the body ground when the vent valve is turned ON (close) and OFF (vent) using the tester.
|
Test Result
|
Suspected Trouble Area
|
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
|
|
|
| A |
|
|
|
21.
|
INSPECT CANISTER PUMP MODULE (POWER SOURCE FOR VENT VALVE)
|
(a) Turn the ignition switch OFF.
|
(b) Disconnect the L4 canister connector.
|
|
(c) Turn the ignition switch ON.
(d) Measure the voltage between +B terminal 9 of the canister connector and the body ground.
|
Test Result
|
Suspected Trouble Area
|
Proceed to
|
|
9 to 14 V
|
Normal
|
A
|
|
0 to 3 V
|
Power source wire harness of vent valve
|
B
|
| A |
|
|
|
22.
|
INSPECT CANISTER PUMP MODULE (VENT VALVE OPERATION)
|
(a) Turn the ignition switch OFF.
|
(b) Disconnect the L4 canister connector.
|
|
(c) Apply the battery voltage to terminals +B and GND of the canister pump module.
(d) Touch the canister pump module to confirm the vent valve operation.
|
Test Result
|
Suspected Trouble Area
|
Proceed to
|
|
Operating
|
Wire harness between vent valve and ECM
|
A
|
|
Not operating
|
Vent valve
|
B
|
|
23.
|
PERFORM ACTIVE TEST USING INTELLIGENT TESTER (FOR CANISTER PUMP MODULE [LEAK DETECTION PUMP])
|
(a) Enter the following menus: DIAGNOSIS / ENHANCED OBD II / ACTIVE TEST / VACUUM PUMP (ALONE).
|
(b) Measure the voltage between MPMP (E10-6) terminal of the ECM connector and the body ground when the leak detection pump is turned ON and OFF using the tester.
|
|
|
Test Result
|
Suspected Trouble Area
|
Proceed to
|
|
0 to 3 V when OFF
9 to 14 V when ON
|
ECM normal
|
A
|
|
9 to 14 V when OFF
0 to 3 V when ON
|
ECM
|
B
|
| A |
|
|
|
24.
|
CHECK HARNESS AND CONNECTOR (CANISTER PUMP MODULE - ECM)
|
(a) Turn the ignition switch OFF.
|
(b) Disconnect the L4 canister connector.
|
|
(c) Turn the ignition switch ON.
(d) Enter the following menus: DIAGNOSIS / ENHANCED OBD II / ACTIVE TEST / VACUUM PUMP (ALONE).
(e) Turn the leak detection pump ON.
(f) Measure the voltage between +B terminal 1 of the canister pump module connector and the body ground when the leak detection pump is turned ON and OFF using the tester.
|
Test Result
|
Suspected Trouble Area
|
Proceed to
|
|
9 to14 V
|
Normal
|
A
|
|
0 to 3 V
|
Wire harness between ECM and leak detection pump
|
B
|
| A |
|
|
|
25.
|
CHECK HARNESS AND CONNECTOR (CANISTER PUMP MODULE - GROUND)
|
(a) Turn the ignition switch OFF.
|
(b) Disconnect the L4 canister connector.
|
|
(c) Measure the resistance of the wire harness side connectors between GND terminal 6 of the canister connector and the body ground.
|
Test Result
|
Suspected Trouble Area
|
Proceed to
|
|
Below 1 Ω
|
Leak detection pump
|
A
|
|
10 kΩ or higher
|
Wire harness between leak detection pump and body ground
|
B
|
|
26.
|
INSPECT INTAKE MANIFOLD (EVAP PURGE PORT)
|
(a) Turn the ignition switch OFF.
(b) Disconnect the EVAP hose from the intake manifold.
(c) Start the engine.
(d) Use your finger to confirm that the port of the intake manifold has suction.
|
Test Result
|
Suspected Trouble Area
|
Proceed to
|
|
Suction applied
|
EVAP hose between intake manifold and purge VSV
|
A
|
|
No suction
|
Intake manifold
|
B
|
|
27.
|
CORRECTLY REINSTALL OR REPLACE FUEL CAP
|
HINT:
-
When reinstalling the fuel cap, tighten it until a few click sounds are heard.
-
When replacing the fuel cap, use a fuel cap that meets OEM specifications, and tighten it until a few click sounds are heard.
HINT:
When installing the fuel cap, tighten it until a few click sounds are heard.
|
29.
|
LOCATE EVAP LEAK PART
|
(a) Disconnect the vent hose.
(b) Connect the EVAP pressure tester tool to the vent hose with the adapter.
(c) Pressurize the EVAP system to 3.2 to 3.7 kPa (24 to 28 mmHg).
(d) Apply soapy water to the piping and connecting parts of the EVAP system.
(e) Look for areas where bubbles appear. This indicates the leak point.
(f) 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.
|
30.
|
REPLACE CANISTER ASSEMBLY
|
(a)
Replace the canister assembly
.
NOTICE:
When replacing the canister, check the canister pump module interior and related pipes for water, fuel and 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.
|
31.
|
REPLACE DUTY PURGE VSV
|
(a) Disconnect the connector and hoses from the purge VSV.
(b) Remove the purge VSV.
|
(c) Install a new purge VSV.
|
|
(d) Reconnect the connector and hose.
|
32.
|
REPAIR OR REPLACE HARNESS AND CONNECTOR
|
|
33.
|
REPLACE EVAP HOSE (INTAKE MANIFOLD - PURGE VSV)
|
|
34.
|
INSPECT INTAKE MANIFOLD (EVAP PURGE PORT)
|
(a) Check that the EVAP purge port of the intake manifold is not clogged. If necessary, replace the intake manifold.
(a)
Replace ECM
.
|
36.
|
REPAIR OR REPLACE PARTS AND COMPONENTS INDICATED BY OUTPUT DTCS
|
(a) Repair the malfunctioning areas indicated by the DTCs that had been confirmed when the vehicle was brought in.
|
37.
|
PERFORM EVAP SYSTEM CHECK (AUTO OPERATION)
|
NOTICE:
-
In the EVAP SYSTEM CHECK (AUTO OPERATION), the series of 5 EVAP SYSTEM CHECK steps are performed automatically. 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).
(a)
Clear the DTCs
.
(b) On the intelligent tester, enter the following menus: DIAGNOSIS / ENHANCED OBD II / SYSTEM CHECK / EVAP SYS CHECK / AUTO OPERATION.
(c) 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
|
CONFIRMATION DRIVING PATTERN
HINT:
After a repair, check Monitor Status by performing the key-off monitor confirmation and purge flow monitor confirmation described below.
1. Key-off monitor confirmation
(a) Preconditions
The monitor will not run unless:
-
The vehicle has been driven for 10 minutes or more (in a city area or on a freeway)
-
The fuel tank is less than 90% full
-
The altitude is less than 8,000 ft (2,400 m)
-
The Engine Coolant Temperature (ECT) is between 4.4 to 35°C (40 to 95°F)
-
The Intake Air Temperature (IAT) is between 4.4 to 35°C (40 to 95°F)
-
The vehicle remains stationary (the vehicle speed is 0 mph [0 km/h])
(b) Monitor Conditions
-
Allow the engine to idle for at least 5 minutes.
-
Turn the ignition switch OFF and wait for 6 hours (8 or 10.5 hours).
HINT:
Do not start the engine until checking MONITOR STATUS. If the engine is started, the steps described above must be repeated.
(c) Monitor Status
-
Connect the intelligent tester to the CAN VIM. Then connect the CAN VIM to the DLC3.
-
Turn the ignition switch ON.
-
Enter the following menus: DIAGNOSIS / ENHANCED OBD II / MONITOR STATUS.
-
Check the Monitor Status displayed on the tester.
HINT:
If INCMP is displayed, the monitor is not completed. Make sure that the preconditions have been met, and perform the Monitor Conditions again.
2. Purge flow monitor confirmation (P0441)
HINT:
Perform this monitor confirmation after the key-off monitor confirmation shows COMPL (complete).
(a) Preconditions
The monitor will not run unless:
-
The vehicle has been driven for 10 minutes or more (in a city area or on a freeway)
-
The ECT is between 4.4 to 35°C (40 to 95°F)
-
The IAT is between 4.4 to 35°C (40 to 95°F)
(b) Monitor Conditions
-
Release the pressure from the fuel tank by removing and reinstalling the fuel cap.
-
Warm the engine up until the ECT reaches more than 75°C (167°F).
-
Increase the engine speed to 3,000 rpm once.
-
Allow the engine to idle and turn the A/C ON for 1 minute.
(c) Monitor Status
-
Turn the ignition switch OFF (where ON or the engine is running).
-
Connect the intelligent tester to the CAN VIM. Then connect the CAN VIM to the DLC3.
-
Turn the ignition switch ON.
-
Enter the following menus: DIAGNOSIS / ENHANCED OBD II / MONITOR STATUS.
-
Check the Monitor Status displayed on the tester.
HINT:
If INCMP is displayed, the monitor is not completed. Make sure that the preconditions have been met, and perform the "Monitor Conditions" procedures again.
MONITOR RESULT
Refer to detailed information
.
The test value and test limit information are described in the following table. This information is included under MONITOR RESULT in the emissions-related DTC sections:
-
Monitor Identification Data (MID) is assigned to each emissions-related component.
-
Test Identification Data (TID) is assigned to each test value.
-
Scaling is used to calculate the test value indicated on generic OBD II scan tools.
EVAP - Key-off Type
|
MID
|
TID
|
Scaling
|
Unit
|
Description
|
|
$3D
|
$C9
|
Multiply by 0.001
|
kPa
|
Test value for small leak (P0456)
Refer to pressure D
*
|
|
$3D
|
$CA
|
Multiply by 0.001
|
kPa
|
Test value for gross leak (P0455)
Refer to pressure E
*
|
|
$3D
|
$CB
|
Multiply by 0.001
|
kPa
|
Test value for leak detection pump stuck OFF (P2401)
Refer to pressure A
*
|
|
$3D
|
$CD
|
Multiply by 0.001
|
kPa
|
Test value for leak detection pump stuck ON (P2402)
Refer to pressure A
*
|
|
$3D
|
$CE
|
Multiply by 0.001
|
kPa
|
Test value for vent valve stuck OFF (vent) (P2420)
Refer to pressure C
*
|
|
$3D
|
$CF
|
Multiply by 0.001
|
kPa
|
Test value for vent valve stuck ON (P2419)
Refer to pressure A
*
|
|
$3D
|
$D0
|
Multiply by 0.001
|
kPa
|
Test value for reference orifice low flow (P043E)
Refer to pressure B
*
|
|
$3D
|
$D1
|
Multiply by 0.001
|
kPa
|
Test value for reference orifice high flow (P043F)
Refer to pressure A
*
|
|
$3D
|
$D4
|
Multiply by 0.001
|
kPa
|
Test value for purge VSV stuck closed (P0441)
Refer to pressure F
*
|
|
$3D
|
$D5
|
Multiply by 0.001
|
kPa
|
Test value for purge VSV stuck open (P0441)
Refer to pressure E
*
|
|
$3D
|
$D7
|
Multiply by 0.001
|
kPa
|
Test value for purge flow insufficient (P0441)
Refer to pressure G
*
|
*: Pressures A to G are indicated in the following diagram.
|