RM3660EC _51 Engine / Hybrid System _080778 8ZR-FXE ENGINE CONTROL _0393982 SFI SYSTEM C

8ZR-FXE ENGINE CONTROL  SFI SYSTEM  P223700  A/F (O2) Sensor Positive Current Control Circuit / Open Bank 1 Sensor 1  P223711  A/F (O2) Sensor Positive Current Control Bank 1 Sensor 1 Circuit Short to Ground  P223712  A/F (O2) Sensor Positive Current Control Bank 1 Sensor 1 Circuit Short to Battery  P223713  A/F (O2) Sensor Positive Current Control Bank 1 Sensor 1 Circuit Open  P22371B  A/F (O2) Sensor Positive Current Control Bank 1 Sensor 1 Circuit Resistance Above Threshold  P225111  O2 Sensor Negative Current Control Bank 1 Sensor 1 Circuit Short to Ground  P225112  O2 Sensor Negative Current Control Bank 1 Sensor 1 Circuit Short to Battery  


DESCRIPTION

HINT:

Although the DTC titles say oxygen sensor, these DTCs relate to the air fuel ratio sensor.


Refer to DTC P003012.

Click hereEngine / Hybrid System>8ZR-FXE (ENGINE CONTROL)>SFI SYSTEM>P003012

DTC No. Detection Item DTC Detection Condition Trouble Area MIL Memory Note
P223700 A/F (O2) Sensor Positive Current Control Circuit / Open Bank 1 Sensor 1 Air fuel artio sensor impedance is less than 10 Ω for 5 seconds or more (2 trip detection logic).
·

Open or short in air fuel ratio sensor (sensor 1) circuit

·

Air fuel ratio sensor (sensor 1)

·

ECM


Comes on DTC stored SAE Code: P2237
P223711 A/F (O2) Sensor Positive Current Control Bank 1 Sensor 1 Circuit Short to Ground The A1A+ voltage is less than 1.89 V for 5 seconds or more (2 trip detection logic).
·

Open or short in air fuel ratio sensor (sensor 1) circuit

·

Air fuel ratio sensor (sensor 1)

·

ECM


Comes on DTC stored SAE Code: P2238
P223712 A/F (O2) Sensor Positive Current Control Bank 1 Sensor 1 Circuit Short to Battery The A1A+ voltage is higher than 2.67 V for 5 seconds or more (2 trip detection logic).
·

Open or short in air fuel ratio sensor (sensor 1) circuit

·

Air fuel ratio sensor (sensor 1)

·

ECM


Comes on DTC stored SAE Code: P2239
P223713 A/F (O2) Sensor Positive Current Control Bank 1 Sensor 1 Circuit Open An open or ground short in the circuit between terminals A1A+ and A1A- of the air fuel ratio sensor while the engine is running (2 trip detection logic).
·

Open or short in air fuel ratio sensor (sensor 1) circuit

·

Air fuel ratio sensor (sensor 1)

·

ECM


Comes on DTC stored SAE Code: P2237
P22371B A/F (O2) Sensor Positive Current Control Bank 1 Sensor 1 Circuit Resistance Above Threshold The air fuel ratio sensor impedance is higher than 67 Ω (2 trip detection logic).
·

Open or short in air fuel ratio sensor (sensor 1) circuit

·

Air fuel ratio sensor (sensor 1)

·

ECM


Comes on DTC stored SAE Code: P2238
P225111 O2 Sensor Negative Current Control Bank 1 Sensor 1 Circuit Short to Ground The A1A- voltage is less than 1.52 V for 5 seconds or more (2 trip detection logic).
·

Open or short in air fuel ratio sensor (sensor 1) circuit

·

Air fuel ratio sensor (sensor 1)

·

ECM


Comes on DTC stored SAE Code: P2252
P225112 O2 Sensor Negative Current Control Bank 1 Sensor 1 Circuit Short to Battery The A1A- voltage is higher than 4.37 V for 5 seconds or more (2 trip detection logic).
·

Open or short in air fuel ratio sensor (sensor 1) circuit

·

Air fuel ratio sensor (sensor 1)

·

ECM


Comes on DTC stored SAE Code: P2253

MONITOR DESCRIPTION

These DTCs are stored when there is an open or short in the air fuel ratio sensor (sensor 1) circuit, or theair fuel ratio sensor (sensor 1) output value is abnormal. The voltage of the air fuel ratio sensor (sensor1) is monitored while the ignition switch is ON, and the impedance (impedance is an electrical term thatindicates the difficulty of flow of current) is checked while engine running. If the voltage of the air fuel ratio sensor (sensor 1) is outside the normal range, or the impedance is outside the normal range, the ECM illuminates the MIL and stores a DTC.

MONITOR STRATEGY

Required Sensors/Components Air fuel ratio sensor
Frequency of Operation Continuous

CONFIRMATION DRIVING PATTERN

HINT:
·

After repair has been completed, clear the DTC and then check that the vehicle has returned to normal by performing the following All Readiness check procedure.

Click hereEngine / Hybrid System>8ZR-FXE (ENGINE CONTROL)>SFI SYSTEM>DTC CHECK / CLEAR

·

When clearing the permanent DTCs, refer to the "CLEAR PERMANENT DTC" procedure.

Click hereEngine / Hybrid System>8ZR-FXE (ENGINE CONTROL)>SFI SYSTEM>DTC CHECK / CLEAR



1.

Connect the GTS to the DLC3.

2.

Turn the power switch on (IG).

3.

Turn the GTS on.

4.

Clear the DTCs (even if no DTCs are stored, perform the clear DTC procedure).

5.

Turn the power switch off and wait for at least 30 seconds.

6.

Turn the power switch on (IG).

7.

Turn the GTS on.

9.

Start the engine and wait 5 minutes or more [A].

10.

Enter the following menus: Powertrain / Engine / Trouble Codes [B].

11.

Read the pending DTCs.

HINT:
·

If a pending DTC is output, the system is malfunctioning.

·

If a pending DTC is not output, perform the following procedure.



12.

Enter the following menus: Powertrain / Engine / Utility / All Readiness.

13.

Input the DTC: P223700, P223711, P223712, P223713, P22371B, P225111 or P225112.

14.

Check the DTC judgment result.

GTS Display Description
NORMAL
·

DTC judgment completed

·

System normal


ABNORMAL
·

DTC judgment completed

·

System abnormal


INCOMPLETE
·

DTC judgment not completed

·

Perform driving pattern after confirming DTC enabling conditions



HINT:
·

If the judgment result is NORMAL, the system is normal.

·

If the judgment result is ABNORMAL, the system has a malfunction.

·

If the judgment result is INCOMPLETE, idle the engine for 5 minutes and check the DTC judgment result again.

·

[A] to [B]: Normal judgment procedure.

The normal judgment procedure is used to complete DTC judgment and also used when clearing permanent DTCs.

·

When clearing the permanent DTCs, do not disconnect the cable from the auxiliary battery terminal or attempt to clear the DTCs during this procedure, as doing so will clear the universal trip and normal judgment histories.




CAUTION / NOTICE / HINT

NOTICE:
·

Vehicle Control History may be stored in the hybrid vehicle control ECU assembly if the engine is malfunctioning. Certain vehicle condition information is recorded when Vehicle Control History is stored. Reading the vehicle conditions recorded in both the Freeze Frame Data and Vehicle Control History can be useful for troubleshooting.

Click hereEngine / Hybrid System>HYBRID / BATTERY CONTROL>HYBRID CONTROL SYSTEM (for LITHIUM-ION BATTERY)>VEHICLE CONTROL HISTORY (RoB)

(Select Powertrain in Health Check and then check the time stamp data.)

Click hereEngine / Hybrid System>8ZR-FXE (ENGINE CONTROL)>SFI SYSTEM>DTC CHECK / CLEAR

·

If any "Engine Malfunction" Vehicle Control History item has been stored in the hybrid vehicle control ECU assembly, make sure to clear it. However, as all Vehicle Control History items are cleared simultaneously, if any Vehicle Control History items other than "Engine Malfunction" are stored, make sure to perform any troubleshooting for them before clearing Vehicle Control History.

Click hereEngine / Hybrid System>HYBRID / BATTERY CONTROL>HYBRID CONTROL SYSTEM (for LITHIUM-ION BATTERY)>VEHICLE CONTROL HISTORY (RoB)

·

Inspect the fuses for circuits related to this system before performing the following procedure.



HINT:
·

Sensor 1 refers to the sensor closest to the engine assembly.

·

Sensor 2 refers to the sensor farthest away from the engine assembly.

·

Read Freeze Frame Data using the GTS. The ECM records vehicle and driving condition information as Freeze Frame Data the moment a DTC is stored. 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

1.CHECK TERMINAL VOLTAGE (AIR FUEL RATIO SENSOR VOLTAGE)
A431338C02
0.479,0.979 0.844,1.271 0.365,0.292 1.031,1.74 1.448,1.323 true 2.292,1.76 1.854,1.354 true 0.135,0.125 0.448,0.323 0.313,0.198 10 false *a 0.531,1.031 0.99,1.229 0.458,0.198 10 false C55 0.76,1.792 1.375,1.99 0.615,0.198 10 false A1A+ 2.167,1.823 2.781,2.021 0.615,0.198 10 false A1A-
*a Front view of wire harness connector
(to Air Fuel Ratio Sensor)


HINT:

Make sure that the connector is properly connected. If it is not, securely connect it and check for DTCs again.


a.

Disconnect the air fuel ratio sensor connector.


b.

Turn the power switch on (IG).


c.

Measure the voltage according to the value(s) in the table below.

Standard Voltage:
Tester Connection Condition Specified Condition
C55-3 (A1A+) - Body ground Power switch on (IG) 3.2 to 3.4 V
C55-4 (A1A-) - Body ground Power switch on (IG) 2.8 to 3.0 V
C55-3 (A1A+) - C55-4 (A1A-) Power switch on (IG) 0.2 to 0.6 V



HINT:

Perform "Inspection After Repair" after replacing the air fuel ratio sensor.

Click hereEngine / Hybrid System>8ZR-FXE (ENGINE CONTROL)>SFI SYSTEM>INITIALIZATION


Result:
Proceed to
OK
NG



OK

NG

2.CHECK HARNESS AND CONNECTOR (AIR FUEL RATIO SENSOR - ECM)
2.CHECK HARNESS AND CONNECTOR (AIR FUEL RATIO SENSOR - ECM)
a.

Disconnect the air fuel ratio sensor connector.


b.

Disconnect the ECM connector.


c.

Measure the resistance according to the value(s) in the table below.

Standard Resistance:
Tester Connection Condition Specified Condition
C55-1 (HA1A) - C155-28 (HA1A) Always Below 1 Ω
C55-3 (A1A+) - C155-132 (A1A+) Always Below 1 Ω
C55-4 (A1A-) - C155-131 (A1A-) Always Below 1 Ω
C55-1 (HA1A) or C155-28 (HA1A) - Body ground and other terminals Always 10 kΩ or higher
C55-3 (A1A+) or C155-132 (A1A+) - Body ground and other terminals Always 10 kΩ or higher
C55-4 (A1A-) or C155-131 (A1A-) - Body ground and other terminals Always 10 kΩ or higher



Result:
Proceed to
OK
NG



OK

NG

REPAIR OR REPLACE HARNESS OR CONNECTOR