Engine Hybrid System. Land Cruiser. Urj200, 202 Grj200 Vdj200
1Ur-Fe Engine Control. Land Cruiser. Urj200, 202 Grj200 Vdj200
CHECK HARNESS AND CONNECTOR (AIR FUEL RATIO SENSOR - ECM)
CHECK WHETHER DTC OUTPUT RECURS
DTC P2237 Oxygen (A/F) Sensor Pumping Current Circuit / Open (Bank 1 Sensor 1) |
DTC P2238 Oxygen (A/F) Sensor Pumping Current Circuit Low (Bank 1 Sensor 1) |
DTC P2239 Oxygen (A/F) Sensor Pumping Current Circuit High (Bank 1 Sensor 1) |
DTC P2240 Oxygen (A/F) Sensor Pumping Current Circuit / Open (Bank 2 Sensor 1) |
DTC P2241 Oxygen (A/F) Sensor Pumping Current Circuit Low (Bank 2 Sensor 1) |
DTC P2242 Oxygen (A/F) Sensor Pumping Current Circuit High (Bank 2 Sensor 1) |
DTC P2252 Oxygen (A/F) Sensor Reference Ground Circuit Low (Bank 1 Sensor 1) |
DTC P2253 Oxygen (A/F) Sensor Reference Ground Circuit High (Bank 1 Sensor 1) |
DTC P2255 Oxygen (A/F) Sensor Reference Ground Circuit Low (Bank 2 Sensor 1) |
DTC P2256 Oxygen (A/F) Sensor Reference Ground Circuit High (Bank 2 Sensor 1) |
DESCRIPTION
Refer to DTC P2195 (Click here).DTC No. | DTC Detection Condition | Trouble Area |
P2237 P2240 | Open in the circuit between terminals AF+ and AF- of the air fuel ratio sensor while the engine is running (2 trip detection logic). |
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P2238 P2241 |
(a) AF+ voltage is 0.5 V or less. (b) (AF+) - (AF-) is 0.1 V or less.
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P2239 P2242 | AF+ voltage is higher than 4.5 V for 5.0 seconds or more (2 trip detection logic). |
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P2252 P2255 | AF- voltage is 0.5 V or less for 5.0 seconds or more (2 trip detection logic). |
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P2253 P2256 | AF- voltage is higher than 4.5 V for 5.0 seconds or more (2 trip detection logic). |
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- HINT:
- DTCs P2237, P2238, P2239, P2252 and P2253 indicate malfunctions related to the bank 1 air fuel ratio sensor circuit.
- DTCs P2240, P2241, P2242, P2255 and P2256 indicate malfunctions related to the bank 2 air fuel ratio sensor circuit.
MONITOR DESCRIPTION
These DTCs are output when there is an open or short in the air fuel ratio sensor circuit, or if air fuel ratio sensor output drops.To detect these problems, the voltage of the air fuel ratio sensor is monitored when turning the engine switch on (IG), and the admittance (admittance is an electrical term that indicates the ease of flow of current) is checked while driving. If the voltage of the air fuel ratio sensor is between 0.6 V and 4.5 V, it is considered normal. If the voltage is outside of the specified range, or the admittance is below the standard value, the ECM will determine that there is a malfunction in the air fuel ratio sensor. If the same malfunction is detected in the next driving cycle, the MIL is illuminated and a DTC is stored.
The air fuel ratio sensor varies its output voltage in proportion to the air-fuel ratio. If the air fuel ratio sensor impedance (alternating current resistance) or output voltage deviates greatly from the standard range, the ECM determines that there is an open or short in the air fuel ratio sensor circuit.
CONFIRMATION DRIVING PATTERN
- Start the engine and wait for 5 minutes or more.
WIRING DIAGRAM
Refer to DTC P2195 (Click here).INSPECTION PROCEDURE
- HINT:
- Refer to "Data List / Active Test" [AFS Voltage B1S1 and AFS Voltage B2S1] (Click here).
- Read freeze frame data using the GTS. Freeze frame data records the engine condition 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.
- Bank 1 refers to the bank that includes the No. 1 cylinder*.
*: The No. 1 cylinder is the cylinder which is farthest from the transmission. - Bank 2 refers to the bank that does not include the No. 1 cylinder.
- Sensor 1 refers to the sensor closest to the engine assembly.
- Sensor 2 refers to the sensor farthest away from the engine assembly.
1.CHECK HARNESS AND CONNECTOR (AIR FUEL RATIO SENSOR - ECM) |
Disconnect the air fuel ratio sensor connector.
Disconnect the ECM connector.
Measure the resistance according to the value(s) in the table below.
- Standard Resistance:
for RHD Tester Connection Condition Specified Condition C22-1 (HA1A) - C46-22 (HA1A) Always Below 1 Ω C22-3 (A1A+) - C46-126 (A1A+) Always Below 1 Ω C22-4 (A1A-) - C46-125 (A1A-) Always Below 1 Ω C23-1 (HA2A) - C46-20 (HA2A) Always Below 1 Ω C23-3 (A2A+) - C46-103 (A2A+) Always Below 1 Ω C23-4 (A2A-) - C46-102 (A2A-) Always Below 1 Ω C22-1 (HA1A) or C46-22 (HA1A) - Body ground Always 10 kΩ or higher C22-3 (A1A+) or C46-126 (A1A+) - Body ground Always 10 kΩ or higher C22-4 (A1A-) or C46-125 (A1A-) - Body ground Always 10 kΩ or higher C23-1 (HA2A) or C46-20 (HA2A) - Body ground Always 10 kΩ or higher C23-3 (A2A+) or C46-103 (A2A+) - Body ground Always 10 kΩ or higher C23-4 (A2A-) or C46-102 (A2A-) - Body ground Always 10 kΩ or higher for LHD Tester Connection Condition Specified Condition C22-1 (HA1A) - C45-22 (HA1A) Always Below 1 Ω C22-3 (A1A+) - C45-126 (A1A+) Always Below 1 Ω C22-4 (A1A-) - C45-125 (A1A-) Always Below 1 Ω C23-1 (HA2A) - C45-20 (HA2A) Always Below 1 Ω C23-3 (A2A+) - C45-103 (A2A+) Always Below 1 Ω C23-4 (A2A-) - C45-102 (A2A-) Always Below 1 Ω C22-1 (HA1A) or C45-22 (HA1A) - Body ground Always 10 kΩ or higher C22-3 (A1A+) or C45-126 (A1A+) - Body ground Always 10 kΩ or higher C22-4 (A1A-) or C45-125 (A1A-) - Body ground Always 10 kΩ or higher C23-1 (HA2A) or C45-20 (HA2A) - Body ground Always 10 kΩ or higher C23-3 (A2A+) or C45-103 (A2A+) - Body ground Always 10 kΩ or higher C23-4 (A2A-) or C45-102 (A2A-) - Body ground Always 10 kΩ or higher
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OK | |
2.REPLACE AIR FUEL RATIO SENSOR |
Replace the air fuel ratio sensor (Click here).
NEXT | |
3.CHECK WHETHER DTC OUTPUT RECURS |
Connect the GTS to the DLC3.
Turn the engine switch on (IG).
Turn the GTS on.
Clear DTCs (Click here).
Start the engine.
Allow the engine to idle for 5 minutes or more.
Enter the following menus: Powertrain / Engine and ECT / Trouble Codes / Pending.
Read the pending DTCs.
Result Result Proceed to No DTC is output A P2237, P2238, P2239, P2240, P2241, P2242, P2252, P2253, P2255 or P2256 is output B
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A | ||
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