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

8ZR-FXE ENGINE CONTROL  SFI SYSTEM  P14CE12  EVAP System Switching Valve Control Circuit "B" High Circuit Short to Battery  P14CE14  EVAP System Switching Valve Control Circuit "B" Low Circuit Short to Ground or Open  P241812  EVAP System Switching Valve Control Circuit High Circuit Short to Battery  P241814  EVAP System Switching Valve Control Circuit Low Circuit Short to Ground or Open  


DESCRIPTION

Refer to EVAP (Evaporative Emission) System.

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

DTC No. Detection Item DTC Detection Condition Trouble Area MIL Note
P14CE12 EVAP System Switching Valve Control Circuit "B" High Circuit Short to Battery Short in CCV B circuit for 0.5 seconds or more (1 trip detection logic).
·

Short in fuel vapor-containment valve circuit

·

Fuel vapor-containment valve

·

ECM


Comes on SAE Code: P14D1
P14CE14 EVAP System Switching Valve Control Circuit "B" Low Circuit Short to Ground or Open Open or short in CCV B circuit for 0.5 seconds or more (1 trip detection logic).
·

Open or short in fuel vapor-containment valve circuit

·

Fuel vapor-containment valve

·

ECM


Comes on SAE Code: P14D0
P241812 EVAP System Switching Valve Control Circuit High Circuit Short to Battery Short in CCV A circuit for 0.5 seconds or more (1 trip detection logic).
·

Short in fuel vapor-containment valve circuit

·

Fuel vapor-containment valve

·

ECM


Comes on SAE Code: P2420
P241814 EVAP System Switching Valve Control Circuit Low Circuit Short to Ground or Open Open or short in CCV A circuit for 0.5 seconds or more (1 trip detection logic).
·

Open or short in fuel vapor-containment valve circuit

·

Fuel vapor-containment valve

·

ECM


Comes on SAE Code: P2419

DTC No. Monitoring Item Detection Timing Detection Logic SAE Code
P14CE12 CCV B circuit range check (high current) Always 1 trip P14D1
P14CE14 CCV B circuit range check (low voltage) P14D0
P241812 CCV A circuit range check (high current) P2420
P241814 CCV A circuit range check (low voltage) P2419

MONITOR DESCRIPTION

These DTCs are stored if an open or short in the fuel vapor-containment valve circuit is detected.

Example:

·

If the CCA+, CCA-, CCB+ or CCB- operation signal is off, but the step motor output signal is on, the ECM determines that there is a short in the fuel vapor-containment valve circuit, and stores a DTC P14CE12 or P241812.

·

If the CCA+, CCA-, CCB+ or CCB- operation signal is on, and the step motor output signal is off, the ECM determines that there is an open or short in the fuel vapor-containment valve circuit, and stores a DTC P14CE14 or P241814.


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 ignition switch to ON.

3.

Turn the GTS on.

4.

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

5.

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

6.

Turn the ignition switch to ON.

7.

Turn the GTS on.

8.

Wait 5 seconds or more [A].

9.

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

10.

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.



11.

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

12.

Input the DTC: P14CE12, P14CE14, P241812 or P241814.

13.

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 is malfunctioning.

·

If the judgment result is INCOMPLETE, perform the steps [B] through [D] 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.




WIRING DIAGRAM

A531664E01
0.698,4.552 2.573,4.75 1.875,0.198 10 false O179*1, O195*2 0.698,4.729 2.729,5.083 2.031,0.354 10 false Fuel Vapor-containment Valve 5.229,4.708 5.688,4.906 0.458,0.198 10 false A46 5.688,4.708 6.146,4.906 0.458,0.198 10 false ECM 2,1.177 2.458,1.375 0.458,0.198 10 false +UL 1.948,2.073 2.406,2.271 0.458,0.198 10 false +UM 1.969,2.854 2.427,3.052 0.458,0.198 10 false +UP 4.948,3.75 5.406,3.948 0.458,0.198 10 false CCB- 2.417,1.177 2.875,1.375 0.458,0.198 10 false 1 2.448,2.073 2.906,2.271 0.458,0.198 10 false 2 4.688,2.073 5.146,2.271 0.458,0.198 10 false 8 4.698,1.177 5.156,1.375 0.458,0.198 10 false 7 4.958,1.177 5.417,1.375 0.458,0.198 10 false CCA+ 4.948,2.073 5.406,2.271 0.458,0.198 10 false CCA- 4.948,2.854 5.406,3.052 0.458,0.198 10 false CCB+ 2.438,3.75 2.896,3.948 0.458,0.198 10 false 3 2.469,2.854 2.927,3.052 0.458,0.198 10 false 4 4.635,2.854 5.094,3.052 0.458,0.198 10 false 20 4.635,3.75 5.094,3.948 0.458,0.198 10 false 21 1.969,3.75 2.427,3.948 0.458,0.198 10 false +UN 5.792,2.594 6.25,2.792 0.458,0.198 10 false IC 2.208,5.229 4.813,5.427 2.604,0.198 10 false *1: for TFTM made 2.208,5.458 4.813,5.656 2.604,0.198 10 false *2: for GTMC made

CAUTION / NOTICE / HINT

NOTICE:
·

Vehicle Control History may be stored in the hybrid vehicle control ECU 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, 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)



HINT:
·

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.

·

If the cable is disconnected from the battery terminal, the fuel vapor containment valve cannot close completely and an EVAP SYSTEM DTC will be stored. If the DTC is output, drive the vehicle at a speed of 10 km/h (6 mph) or more and then leave the vehicle for 30 seconds or more. Then perform the Evaporative System Check again.



PROCEDURE

1.CLEAR DTC
a.

Clear the DTC after recording the Freeze Frame Data and DTC.

Powertrain > Engine > Clear DTCs
50002 372

b.

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


Result:
Proceed to
NEXT



NEXT

2.READ OUTPUT DTC (IN ADDITION TO DTC P14CE12, P14CE14, P241812 OR P241814)
2.READ OUTPUT DTC (IN ADDITION TO DTC P14CE12, P14CE14, P241812 OR P241814)
a.

Read the DTCs.

Powertrain > Engine > Trouble Codes
50001 372
Result:
Result Proceed to
DTC P14CE12, P14CE14, P241812 or P241814 is output A
DTCs are not output B


HINT:

If any DTCs other than P14CE12, P14CE14, P241812 or P241814 are output, troubleshoot those DTCs first.




A

3.CHECK HARNESS AND CONNECTOR

B

3.CHECK HARNESS AND CONNECTOR
a.

Disconnect the ECM connector.


b.

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

Standard Resistance:
Tester Connection Condition Specified Condition
A46-7 (CCA+) - A46-8 (CCA-) 20°C (68°F) 29 to 33 Ω
A46-20 (CCB+) - A46-21 (CCB-) 20°C (68°F) 29 to 33 Ω
A46-7 (CCA+) or A46-8 (CCA-) - Body ground and other terminals Always 10 kΩ or higher
A46-20 (CCB+) or A46-21 (CCB-) - Body ground and other terminals Always 10 kΩ or higher


HINT:

The standard values shown are fuel vapor-containment valve resistance values.



Result:
Proceed to
OK
NG



OK

NG

4.INSPECT FUEL VAPOR-CONTAINMENT VALVE
4.INSPECT FUEL VAPOR-CONTAINMENT VALVE

OK

REPAIR OR REPLACE HARNESS OR CONNECTOR (FUEL VAPOR-CONTAINMENT VALVE - ECM)

NG