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Home >> Lexus >> 2006 >> IS 250 RWD, Standard >> Repair and Diagnosis >> External Pages >> Different car >> Section 3 (Engine Control System (2GR-FSE)) >> SFI System >> DTC P043E Evaporative Emission System Reference Orifice Clog Up; DTC P043F Evaporative Emission System Reference Orifice High Flow >> Monitor Description

Monitor Description

WARNING: This page is about a different car, the 2006 Lexus IS 350. However, it is still accessible from the selected car via links, so may be relevant.

5 hours* after the engine switch is turned off, the electric vacuum pump creates negative pressure (vacuum) in the EVAP (Evaporative Emission) 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 engine 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 engine switch is turned off, the monitor check starts 2.5 hours later.

OPERATION DESCRIPTION CHART

Sequence Operation Description Duration
- ECM activation Activated by soak timer, 5 hours (7 or 9.5 hours) after engine switch turned off. -
A Atmospheric pressure measurement 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 70 kPa and 110 kPa (525 mmHg and 825 mmHg), ECM cancels EVAP system monitor.
10 seconds
B First 0.02 inch leak pressure measurement In order to determine 0.02 inch leak pressure standard, vacuum pump creates negative pressure (vacuum) through 0.02 inch orifice and then ECM checks if vacuum pump and vent valve operate normally. 60 seconds
C EVAP system pressure measurement 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 they will be used in leak check.
If EVAP pressure does not stabilize within 15 minutes, ECM cancels EVAP system monitor.
15 minutes*
D EVAP VSV monitor EVAP VSV opened and then EVAP system pressure measured by ECM.
Large increase indicates normal.
10 seconds
E Second 0.02 inch leak pressure measurement After second 0.02 inch leak pressure measurement, leak check performed by comparing first and second 0.02 inch leak pressure standards.
If stabilized system pressure higher than second 0.02 inch leak pressure standard, ECM determines that EVAP system leaking.
60 seconds
F Final check Atmospheric pressure measured and then monitoring result recorded by ECM. -

HINT:

*: If only a small amount of fuel is in the fuel tank, it takes longer for the EVAP pressure to stabilize.

Fig 1: Evaporative Emission System Operation Chart
G04054709Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002
  1. P043E: 0.02 inch orifice clogged

    In operation B, the vacuum pump creates negative pressure (vacuum) through the 0.02 inch orifice. The EVAP system pressure is then measured by the ECM using the pressure sensor to determine the 0.02 inch leak pressure standard. If the pressure is lower than -4.85 kPa (-36.38 mmHg)*, the ECM interprets this as a clog malfunction in the 0.02 inch orifice, and stops the EVAP (Evaporative Emission) system monitor. The ECM then illuminates the MIL and sets the DTC (2 trip detection logic).

    HINT:

    *: The threshold varies according to the atmospheric pressure measured in operation A. The value described above is based on an atmospheric pressure of 100 kPa (750.1 mmHg): absolute pressure.

    Fig 2: EVAP Pressure Graph (0.02 Inch Orifice Clogged)
    G04054710Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002
  2. P043F: 0.02 inch orifice high-flow

    In operation B, the vacuum pump creates negative pressure (vacuum) through the 0.02 inch orifice. The EVAP system pressure is then measured by the ECM using the pressure sensor to determine the 0.02 inch leak pressure standard. If the pressure is lower than -1.06 kPa (-7.95 mmHg)*, the ECM interprets this as a high-flow malfunction in the 0.02 inch orifice, and stops the EVAP system monitor.

    The ECM then illuminates the MIL and sets the DTC (2 trip detection logic).

    HINT:

    *: The threshold varies according to the atmospheric pressure measured in operation A. The value described above is based on an atmospheric pressure of 100 kPa (750.1 mmHg): absolute pressure.

    Fig 3: EVAP Pressure Graph (0.02 Inch Orifice High-Flow)
    G04054711Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002