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Last Modified: 7-3-2017 |
6.8:8.0.40 |
Doc ID: RM000000SWF01XX |
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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: P0441; Evaporative Emission Control System Incorrect Purge Flow; 2007 MY LX470 [08/2006 - ] |
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DTC
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P0441
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Evaporative Emission Control System Incorrect Purge Flow
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DTC SUMMARY
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DTC No.
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Monitoring Item
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Malfunction Detection Condition
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Trouble Area
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Detection Timing
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Detection Logic
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P0441
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Purge Vacuum Switching Valve (VSV) stuck open
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Leak detection pump creates negative pressure (vacuum) in EVAP system and EVAP system pressure measured.
Reference pressure measured at start and at end of leak check.
If stabilized pressure higher than [second reference pressure x 0.2], ECM determines that purge VSV stuck open
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Connector/wire harness (purge VSV - ECM)
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While ignition switch OFF
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2 trip
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P0441
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Purge VSV stuck closed
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After EVAP leak check performed, purge VSV turned ON (open), and atmospheric air introduced into EVAP system.
Reference pressure measured at start and at end of check.
If pressure does not return to near atmospheric pressure, ECM determines that purge VSV stuck closed
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Connector/wire harness (purge VSV - ECM)
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While ignition switch OFF
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2 trip
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P0441
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Purge flow
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While engine running, following conditions successively met:
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Negative pressure not created in EVAP system when purge VSV turned ON (open)
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EVAP system pressure change less than 0.5 kPa-g (3.75 mmHg-g) when vent valve turned ON (closed)
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Atmospheric pressure change before and after purge flow monitor less than 0.1 kPa-g (0.75 mmHg-g)
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Connector/wire harness (purge VSV - ECM)
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Leakage from EVAP line (purge VSV - Intake manifold)
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While engine running
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2 trip
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DESCRIPTION
The circuit description can be found in the Evaporative Emission (EVAP) system
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INSPECTION PROCEDURE
Refer to the EVAP system
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MONITOR DESCRIPTION
The 2 monitors, key-off and purge flow, are used to detect malfunctions relating to DTC P0441. The key-off monitor is initiated by the ECM internal timer, known as the soak timer, 5 hours* after the ignition switch is turned OFF. The purge flow monitor runs while the engine is running.
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Key-off monitor
5 hours* after the ignition switch is turned OFF, the leak detection pump creates negative pressure(vacuum) in the EVAP system. The ECM monitors for leaks and actuator malfunctions 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.
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Sequence
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Operation
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Description
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Duration
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ECM activation
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Activated by soak timer 5, 7 or 9.5 hours after ignition switch OFF.
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-
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A
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Atmospheric pressure measurement
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Vent valve turned OFF (vent) and EVAP system pressure measured by ECM in order to register atmospheric pressure.
If pressure in EVAP system not between 76 kPa-a and 110 kPa-a (570 mmHg-a and 825 mmHg-a), ECM cancels EVAP system monitor.
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10 seconds
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B
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First reference pressure measurement
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In order to determine reference pressure, leak detection pump creates negative pressure (vacuum) through reference orifice and then ECM checks if leak detection pump and vent valve operate normally.
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60 seconds
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C
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EVAP system pressure measurement
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Vent valve turned ON (closed) to shut EVAP system.
Negative pressure (vacuum) created in EVAP system, and EVAP system pressure then measured.
Write down measured value as it will be used in leak check.
If EVAP pressure does not stabilize within 15 minutes, ECM cancels EVAP system monitor.
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15 minutes*
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D
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Purge VSV monitor
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Purge VSV opened and then EVAP system pressure measured by ECM.
Large increase indicates normal.
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10 seconds
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E
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Second reference pressure measurement
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After second reference pressure measurement, leak check performed by comparing first and second reference pressure.
If stabilized system pressure higher than second reference pressure, ECM determines that EVAP system leaking.
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60 seconds
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F
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Final check
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Atmospheric pressure measured and then monitoring result recorded by ECM.
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-
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*: If only a small amount of fuel is in the fuel tank, it takes longer for the EVAP pressure to stabilize.
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Purge VSV stuck open
In operation C, the leak detection pump creates negative pressure (vacuum) in the EVAP system. The EVAP system pressure is then measured by the ECM using the canister pressure sensor. If the stabilized system pressure is higher than [second reference pressure x 0.2], the ECM interprets this as the purge VSV (Vacuum Switching Valve) being stuck open. The ECM illuminates the MIL and sets the DTC (2 trip detection logic).
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Purge VSV stuck closed
In operation D, the canister pressure sensor measures the EVAP system pressure. The pressure measurement for purge VSV monitor is begun when the purge VSV is turned ON (open) after the EVAP leak check. When the measured pressure indicates an increase of 0.3 kPa-g (2.25 mmHg-g) or more, the purge VSV is functioning normally. If the pressure does not increase, the ECM interprets this as the purge VSV being stuck closed. The ECM illuminates the MIL and sets the DTC (2 trip detection logic).
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Purge flow monitor
The purge flow monitor consists of the 2 step monitors. The 1st monitor is conducted every time and the 2nd monitor is activated if necessary.
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The 1st monitor
While the engine is running and the purge 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 is turned ON (closed) 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 pressure, before and after conduction of the purge flow monitor, is measured by the ECM.
MONITOR STRATEGY
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Related DTCs
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P0441: Purge VSV stuck open
P0441: Purge VSV stuck closed
P0441: Purge flow
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Required Sensors/Components
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Purge VSV and canister pump module
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Frequency of Operation
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Once per driving cycle
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Duration
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Within 15 minutes (varies with fuel in tank)
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MIL Operation
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2 driving cycles
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Sequence of Operation
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None
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TYPICAL ENABLING CONDITIONS
Purge Flow Monitor:
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Monitor runs whenever following DTC not present
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Engine
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Running
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ECT
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4.4°C (40°F) or more
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IAT
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4.4°C (40°F) or more
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FTP sensor malfunction
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Not detected
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Purge VSV
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Not detected by scan tool
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EVAP system check
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Not detected by scan tool
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Battery voltage
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10 V or higher
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Purge duty cycle
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8% or more
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Purge VSV Stuck:
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Enable conditions of EVAP key-OFF monitor
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P043E (Reference orifice - low flow)
P043F (Reference orifice - high flow)
P0441 (Purge VSV - stuck open)
P0441 (Purge VSV - stuck close)
P0451 (Canister pressure sensor - noise)
P0455 (EVAP gross leak)
P0456 (EVAP small leak)
P2401 (Leak detection pump - stuck OFF)
P2402 (Leak detection pump - stuck ON)
P2419 (Vent valve - stuck ON)
P2420 (Vent valve - stuck OFF)
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Atmospheric pressure
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70 to 110 kPa-a (525 to 825 mmHg-a)
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Battery voltage
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10.5 V or higher
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Vehicle speed
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Less than 2.5 mph (4 km/h)
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Ignition switch
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OFF
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Time after key off
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5 or 7 or 9.5 hours
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Canister pressure sensor malfunction (P0450, P0452, P0453)
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Not detected
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Purge VSV
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Not operated by scan tool
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Vent valve
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Not operated by scan tool
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Leak detection pump
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Not operated by scan tool
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Both of the following conditions 1 and 2 are met before key off
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-
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1. Duration that vehicle has been driven
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5 minutes or more
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2. EVAP purge operation
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Performed
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ECT
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4.4 to 35°C (40 to 95°F)
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IAT
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4.4 to 35°C (40 to 95°F)
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1. Key-off monitor sequence 1 to 8
1. Atmospheric pressure measurement
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Next sequence is run if the following condition is met
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-
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Atmospheric pressure change
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Less than 0.3 kPa-g (2.25 mmHg-g) in 1 second
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2. First reference pressure measurement
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Next sequence is run if the following conditions are met
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-
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EVAP pressure just after reference pressure measurement start
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-1 kPa-g (-7.5 mmHg-g) or lower
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Reference pressure
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-4.85 to -1.05 kPa-g (-36.4 to -7.93 mmHg-g)
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Reference pressure
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Saturated within 60 seconds
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3. Vent valve stuck closed check
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Next sequence is run if the following condition is met
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-
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EVAP pressure change after vent valve is ON
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0.3 kPa-g (2.25 mmHg-g) or more
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4. Vacuum introduction
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Next sequence is run if the following condition is met
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-
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EVAP pressure
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Saturated within 15 minutes
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5. Purge VSV stuck closed check
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Next sequence is run if the following condition is met
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EVAP pressure change after purge valve is open
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0.3 kPa-g (2.25 mmHg-g) or more
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6. Second reference pressure measurement
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Next sequence is run if the following conditions are met
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-
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EVAP pressure just after reference pressure measurement start
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-1 kPa-g (-7.5 mmHg-g) or lower
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Reference pressure
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-4.85 to -1.05 kPa-g (-36.4 to -7.93 mmHg-g)
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Reference pressure
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Saturated within 60 seconds
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Difference between first reference pressure and second reference pressure
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Less than 0.7 kPa-g (5.25 mmHg-g)
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7. Leak check
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Next sequence is run if the following condition is met
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-
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EVAP pressure when vacuum introduction is complete
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Second reference pressure or lower
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8. Atmospheric pressure measurement
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EVAP monitor is complete if the following condition is met
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-
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Atmospheric pressure difference between sequence 1 and 8
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Within 0.3 kPa-g (2.25 mmHg-g)
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TYPICAL MALFUNCTION THRESHOLDS
Purge Flow Monitor:
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Both of the following conditions are met
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-
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EVAP pressure change when purge flow is started
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Lower than 0.1 kPa-g (0.75 mmHg-g)
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EVAP pressure change during purge flow when EVAP pressure switching valve is ON (closed)
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0.5 kPa-g (3.75 mmHg-g) or more
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Key-off Monitor: Purge VSV stuck open
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FTP when vacuum introduction complete
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Higher than reference pressure x 0.2
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Key-off Monitor: Purge VSV stuck closed
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FTP change after Purge VSV ON (open)
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Less than 0.3 kPa-g (2.25 mmHg-g)
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MONITOR RESULT
Refer to detailed information on MONITOR RESULT
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