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

8ZR-FXE ENGINE CONTROL  SFI SYSTEM  P042000  Catalyst System Efficiency Below Threshold Bank 1  


MONITOR DESCRIPTION

The ECM uses sensors mounted in front of and behind the Three-Way Catalytic Converter (TWC) to monitor its efficiency.

The first sensor, the air fuel ratio sensor, sends pre-catalyst information to the ECM. The second sensor, the heated oxygen sensor, sends post-catalyst information to the ECM.

In order to detect any deterioration in the three-way catalytic converter, the ECM calculates the oxygen storage capacity of the three-way catalytic converter. This calculation is based on the output voltage of the heated oxygen sensor while performing active air fuel ratio control.

The oxygen storage capacity value is an indication of the oxygen storage capacity of the three-way catalytic converter. When the vehicle is being driven with a warm engine, active air fuel ratio control is performed for approximately 30 seconds. When it is performed, the ECM deliberately sets the air fuel ratio to lean or rich levels. If the cycle of the waveform for the heated oxygen sensor is long, the oxygen storage capacity is great. There is a direct correlation between the heated oxygen sensor and the oxygen storage capacity of the three-way catalytic converter.

The ECM uses the oxygen storage capacity value to determine the state of the three-way catalytic converter. If any deterioration has occurred, the ECM will illuminate the MIL and store a DTC.

This system determines the deterioration of the entire catalyst system (including the front and rear catalysts), by using the oxygen storage capacity value of the front catalyst, that is more sensitive than the rear catalyst, as the representative value. Therefore, be sure to replace the front and rear catalysts together when catalyst replacement is necessary.

DTC No. Detection Item DTC Detection Condition Trouble Area MIL Memory Note
P042000 Catalyst System Efficiency Below Threshold Bank 1 The oxygen storage capacity value is less than the standard value under active air fuel ratio control (1 trip detection logic).
·

Gas leak from exhaust system

·

Air fuel ratio sensor (sensor 1)

·

Heated oxygen sensor (sensor 2)

·

Exhaust manifold (TWC: Front catalyst)

·

Front exhaust pipe assembly (TWC: Rear catalyst)

·

EGR valve assembly


Comes on DTC stored SAE Code: P0420

CATALYST LOCATION

A446326C01
0.417,2.25 1.833,3.333 1.417,1.083 2,2.917 4.917,3.75 2.917,0.833 0.75,3.167 1,3.167 1,3.167 1.25,2.917 true 1.75,1.833 2,1.583 2,1.583 2.25,1.583 true 0.833,3.583 1.083,3.583 1.083,3.583 1.333,3.333 true 4.167,4.167 4.417,4.167 4.417,4.167 4.583,3.75 true 2.417,4.25 2.75,4.25 2.75,4.25 3.167,3.833 true 4.917,2.167 5.167,2.167 5.167,2.167 5.333,1.75 true 2.75,3.417 3,3.083 3,3.083 3.25,3.083 true 2.313,1.5 2.625,1.698 0.313,0.198 10 false *1 2.229,4.177 2.542,4.375 0.313,0.198 10 false *2 0.667,3.5 0.979,3.698 0.313,0.198 10 false *3 4,4.094 4.313,4.292 0.313,0.198 10 false *4 4.74,2.083 5.052,2.281 0.313,0.198 10 false *5 0.573,3.083 0.885,3.281 0.313,0.198 10 false *6 3.313,3 3.625,3.198 0.313,0.198 10 false *7
*1 Air Fuel Ratio Sensor (Sensor 1) *2 Heated Oxygen Sensor (Sensor 2)
*3 Exhaust Manifold *4 Front Exhaust Pipe Assembly
*5 Tail Exhaust Pipe Assembly *6 TWC: Front Catalyst
*7 TWC: Rear Catalyst - -


NOTICE:

When replacing the exhaust manifold (*3) and the front exhaust pipe assembly (*4) in order to replace the three-way catalytic converter, it is not necessary to replace the air fuel ratio sensor (*1) and the heated oxygen sensor (*2).


MONITOR STRATEGY

Required Sensors/Components (Main) Air fuel ratio sensor
Heated oxygen sensor
Required Sensors/Components (Related) Intake air temperature sensor
Mass air flow meter sub-assembly
Crankshaft position sensor
Engine coolant temperature sensor
Frequency of Operation Once per driving cycle

TYPICAL ENABLING CONDITIONS

Auxiliary battery voltage 11 V or higher
Intake air temperature -10°C (14°F) or higher
Engine coolant temperature 75°C (167°F) or higher
Atmospheric pressure 76 kPa(abs) [11 psi(abs)] or higher
Engine speed Less than 4500 rpm
Air fuel ratio sensor status Activated
Fuel system status Closed loop
Engine load 10% or higher, and less than 80%
All of the following conditions are met -
Mass air flow rate 2.5 gm/sec or more, and less than 50 gm/sec
Front catalyst temperature (estimated) 450°C (842°F) or higher, and less than 770°C (1418°F)
Rear catalyst temperature (estimated) 450°C (842°F) or higher, and less than 700°C (1292°F)

CONFIRMATION DRIVING PATTERN

HINT:
·

It is necessary for the response of the heated oxygen sensor to be normal in order to confirm DTC P042000. Therefore, perform the confirmation driving pattern for the heated oxygen sensor monitor before performing the confirmation driving pattern for the catalyst efficiency monitor.

·

Performing this confirmation driving pattern will activate the catalyst efficiency monitor. This is very useful for verifying the completion of a repair.

·

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



A337217E14
0.198,0.25 3.229,0.531 3.031,0.281 10 false Heated Oxygen Sensor monitor Driving Pattern 0.323,0.729 1.406,1.052 1.083,0.323 10 false Vehicle Speed 0.188,1.156 1.229,1.625 1.042,0.469 10 false 75 km/h [Engine running] 0.865,2.208 1.948,2.531 1.083,0.323 10 false Idling 0.156,2.479 1.604,2.76 1.448,0.281 10 false Power Switch off 1.573,2.698 2.51,3.094 0.938,0.396 10 false Warming up 2.646,2.729 3.958,3.063 1.313,0.333 10 false 10 minutes or more 1.833,2.125 2.125,2.427 0.292,0.302 10 false [A] 3.115,1.052 3.406,1.354 0.292,0.302 10 false [B]* 4.281,1.042 4.573,1.344 0.292,0.302 10 false [C] 5.26,1.052 5.552,1.354 0.292,0.302 10 false [C] 6.25,1.063 6.542,1.365 0.292,0.302 10 false [C] 6.948,2.229 7.146,2.531 0.198,0.302 10 false [D] 0.25,3.563 3.281,3.844 3.031,0.281 10 false Catalyst Efficiency Monitor Driving Pattern 0.854,6.031 1.938,6.354 1.083,0.323 10 false Idling 1.417,6.083 1.667,6.396 0.25,0.313 10 false [D] 0.146,6.292 1.594,6.573 1.448,0.281 10 false Power Switch off 1.708,6.969 2,7.271 0.292,0.302 10 false [E] 1.927,6.552 2.865,6.948 0.938,0.396 10 false Warming up 2.927,6.573 4.24,6.906 1.313,0.333 10 false 10 minutes or more 2.177,5.969 2.427,6.281 0.25,0.313 10 false [F] 3.385,4.875 3.677,5.177 0.292,0.302 10 false [G]* 4.344,6.99 4.635,7.292 0.292,0.302 10 false [H] 5.5,6.594 6.813,6.927 1.313,0.333 10 false 10 minutes or more 5.948,4.51 6.24,4.813 0.292,0.302 10 false [I]* 6.74,6.969 7.031,7.271 0.292,0.302 10 false [J] 0.115,7.5 4.823,7.75 4.708,0.25 10 false *: Drive the vehicle while keeping the engine load as constant as possible. 0.135,4.24 1.229,4.719 1.094,0.479 10 false 100 km/h [Engine running] 0.198,4.979 1.219,5.448 1.021,0.469 10 false 75 km/h [Engine running] 0.323,3.979 1.406,4.302 1.083,0.323 10 false Vehicle Speed

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 warm it up until the engine coolant temperature is 75°C (167°F) or higher with park (P) selected [A].

HINT:

In order to keep the idle stable, turn the A/C and all other electric loads off and do not perform any shift operations.


10.

With the engine running, drive the vehicle at approximately 75 km/h (47 mph) for 10 minutes or more [B].

CAUTION:

When performing the confirmation driving pattern, obey all speed limits and traffic laws.


HINT:
·

Drive the vehicle while keeping the engine load as constant as possible.

·

If the engine stops, further depress the accelerator pedal to restart the engine.



11.

With shift state B selected and the engine running, drive the vehicle at 75 km/h (47 mph), and then decelerate the vehicle by releasing the accelerator pedal for 5 seconds or more to perform the fuel-cut [C].

CAUTION:

When performing the confirmation driving pattern, obey all speed limits and traffic laws.


HINT:

If the engine stops, further depress the accelerator pedal to restart the engine.


12.

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

13.

Turn the power switch on (IG).

14.

Turn the GTS on.

15.

Start the engine and warm it up until the engine coolant temperature is 75°C (167°F) or higher [F].

16.

With the engine running, drive the vehicle at approximately 75 km/h (47 mph) for 10 minutes or more [G].

CAUTION:

When performing the confirmation driving pattern, obey all speed limits and traffic laws.


HINT:
·

Drive the vehicle while keeping the engine load as constant as possible.

·

If the engine stops, further depress the accelerator pedal to restart the engine.



17.

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

18.

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.



19.

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

20.

Input the DTC: P042000.

21.

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 and no pending DTC is output, perform the following procedure.

·

[A] to [H]: 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.



22.

Drive the vehicle at a speed between 75 and 100 km/h (47 and 63 mph) for 10 minutes or more [I].

CAUTION:

When performing the confirmation driving pattern, obey all speed limits and traffic laws.


HINT:
·

Drive the vehicle while keeping the engine load as constant as possible.

·

If the engine stops, further depress the accelerator pedal to restart the engine.



23.

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

24.

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.



25.

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

26.

Input the DTC: P042000.

27.

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 steps [I] through [J] again.

·

[A] to [J]: 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.





CONDITIONING FOR SENSOR TESTING

HINT:

Perform the operation with the engine speeds and time durations described below prior to checking the waveforms of the air fuel ratio and heated oxygen sensors. This is to activate the sensors sufficiently to obtain appropriate inspection results.


A270243E06
4.865,3.094 5.01,3.427 5.01,3.427 5.167,3.083 false 3.615,0.875 3.844,1.073 0.229,0.198 10 false [B] 0.615,0.563 1.698,0.76 1.083,0.198 10 false Engine Speed 0.813,0.979 1.615,1.177 0.802,0.198 10 false 2500 rpm 0.813,1.51 1.615,1.708 0.802,0.198 10 false 1500 rpm 1.115,2.531 1.563,2.729 0.448,0.198 10 false Idling 0.354,2.76 1.531,2.958 1.177,0.198 10 false Power Switch off 2.073,2.385 2.302,2.583 0.229,0.198 10 false [A] 4.792,0.875 5.021,1.073 0.229,0.198 10 false [C] 5.094,1.396 5.323,1.594 0.229,0.198 10 false [C] 2.104,3.125 3.021,3.323 0.917,0.198 10 false Warming up 3.365,3.125 4.542,3.323 1.177,0.198 10 false At least 3 minutes 4.698,3.479 5.51,3.677 0.813,0.198 10 false 2 seconds 6.635,2.76 7.031,2.958 0.396,0.198 10 false Time

1.

Connect the GTS to the DLC3.

2.

Turn the power switch on (IG).

3.

Turn the GTS on.

5.

Start the engine and warm it up with the A/C switch and all accessories off until the engine coolant temperature stabilizes [A].

6.

Enter the following menus: Powertrain / Engine / Data List / Engine Speed, AFS Voltage B1S1 and O2S B1S2.

7.

Run the engine at an engine speed of 2500 rpm for at least 3 minutes [B].

HINT:

During charge control, the engine speed is set at idle. Therefore, the engine speed will not increase when the accelerator pedal is depressed. In this case, perform step [B] after charge control has completed.


8.

While running the engine at 2500 rpm and 1500 rpm for 2 seconds, check the waveform of the air fuel ratio sensor and heated oxygen sensor using the GTS [C].


HINT:
·

If either of the voltage outputs of the air fuel ratio or heated oxygen sensor does not fluctuate, or there is noise in the waveform of either sensor, the sensor may be malfunctioning.

·

If the voltage outputs of both the sensors remain lean or rich, the air fuel ratio may be extremely lean or rich. In such cases, perform the Control the Injection Volume for A/F Sensor Active Test using the GTS.

·

If the three-way catalytic converter has deteriorated, the heated oxygen sensor (located behind the three-way catalytic converter) voltage output fluctuates up and down frequently, even under normal driving conditions (active air fuel ratio control is not performed).


A201081E30
0.104,0.135 4.417,0.375 4.313,0.24 10 false Output Voltage When Active Air Fuel Ratio Control Not Performed: 2.719,0.74 3.76,0.948 1.042,0.208 10 false Normal Catalyst 5.083,0.74 6.573,0.969 1.49,0.229 10 false Deteriorated Catalyst 2.833,3.26 3.646,3.448 0.813,0.188 10 false 10 seconds 5.406,3.271 6.198,3.5 0.792,0.229 10 false 10 seconds 1.667,1.083 2.042,1.24 0.375,0.156 10 false 3.4 V 1.667,1.427 2.042,1.604 0.375,0.177 10 false 3.1 V 1.667,2.365 2.042,2.542 0.375,0.177 10 false 1.0 V 1.76,3.052 2.031,3.229 0.271,0.177 10 false 0 V 0.135,1.25 1.5,1.958 1.365,0.708 10 false Waveform of Air Fuel Ratio Sensor in Front of Three-Way Catalytic Converter 0.177,2.49 1.448,3.229 1.271,0.74 10 false Waveform of Heated Oxygen Sensor Behind Three-Way Catalytic Converter


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 NICKEL METAL HYDRIDE BATTERY)>VEHICLE CONTROL HISTORY

(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 NICKEL METAL HYDRIDE BATTERY)>VEHICLE CONTROL HISTORY



HINT:
·

If a malfunction cannot be found when troubleshooting DTC P042000, a lean or rich abnormality may be the cause. Perform troubleshooting by following the inspection procedure for P017100 (System Too Lean) and P017200 (System Too Rich).

·

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 ANY OTHER DTCS OUTPUT (IN ADDITION TO DTC P042000)
a.

Connect the GTS to the DLC3.


b.

Turn the power switch on (IG).


c.

Turn the GTS on.


d.

Enter the following menus: Powertrain / Engine / Trouble Codes.


e.

Read the DTCs.

Powertrain > Engine > Trouble Codes
50001 372
Result:
Result Proceed to
DTC P042000 is output A
DTC P042000 and other DTCs are output B


HINT:

If any DTCs other than P042000 are output, troubleshoot those DTCs first.




A

2.PERFORM ACTIVE TEST USING GTS (CONTROL THE INJECTION VOLUME FOR A/F SENSOR)

B

2.PERFORM ACTIVE TEST USING GTS (CONTROL THE INJECTION VOLUME FOR A/F SENSOR)
a.

Connect the GTS to the DLC3.


b.

Turn the power switch on (IG).


c.

Turn the GTS on.


d.

Put the engine in Inspection Mode (Maintenance Mode).

Powertrain > Hybrid Control > Utility
Tester Display
Inspection Mode
50005 397 2103

e.

Start the engine and warm it up until the engine coolant temperature is 75°C (167°F) or higher.


f.

Idle the engine for 5 minutes or more with park (P) selected.


g.

Enter the following menus: Powertrain / Engine / Active Test / Control the Injection Volume for A/F Sensor / Data List / Coolant Temperature, A/F (O2) Sensor Voltage B1S1 and O2 Sensor Voltage B1S2.

Powertrain > Engine > Active Test
Active Test Display
Control the Injection Volume for A/F Sensor
Data List Display
Coolant Temperature
A/F (O2) Sensor Voltage B1S1
O2 Sensor Voltage B1S2
50004 372 8 205,225,218

h.

Change the fuel injection volume using the GTS, and monitor the output voltage of the air fuel ratio sensor (A/F (O2) Sensor Voltage B1S1) and heated oxygen sensor (O2 Sensor Voltage B1S2) displayed on the GTS.

HINT:
·

The Active Test [Control the Injection Volume for A/F Sensor] can be used to lower the fuel injection volume by 12.5% or increase the injection volume by 12.5%.

·

The air fuel ratio sensor is displayed as A/F (O2) Sensor Voltage B1S1, and the heated oxygen sensor is displayed as O2 Sensor Voltage B1S2 on the GTS.

·

The air fuel ratio sensor has an output delay of a few seconds and the heated oxygen sensor has a maximum output delay of approximately 20 seconds.

·

If the sensor output voltage does not change (almost no reaction) while performing the Active Test, the sensor may be malfunctioning.



Standard:
GTS Display
(Sensor)
Injection Volume Status Voltage
A/F (O2) Sensor Voltage B1S1
(Air fuel ratio)
12.5% Rich Below 3.1 V
-12.5% Lean Higher than 3.4 V
O2 Sensor Voltage B1S2
(Heated oxygen)
12.5% Rich Higher than 0.55 V
-12.5% Lean Below 0.4 V


Result:
Status A/F (O2) Sensor Voltage B1S1 Status O2 Sensor Voltage B1S2 Actual air fuel ratio, air fuel ratio sensor and heated oxygen sensor condition Main Suspected Trouble Area Proceed to
Lean/Rich Lean/Rich Normal
·

Three-way catalytic converter

·

Gas leak from exhaust system

·

EGR valve assembly


A
Lean Lean/Rich Air fuel ratio sensor malfunction
·

Air fuel ratio sensor


B
Rich Lean/Rich Air fuel ratio sensor malfunction
·

Air fuel ratio sensor


Lean/Rich Lean Heated oxygen sensor malfunction
·

Heated oxygen sensor

·

Gas leak from exhaust system


C
Lean/Rich Rich Heated oxygen sensor malfunction
·

Heated oxygen sensor

·

Gas leak from exhaust system


Lean Lean Actual air fuel ratio lean
·

Extremely lean actual air fuel ratio

·

Gas leak from exhaust system

·

EGR valve assembly


D
Rich Rich Actual air fuel ratio rich
·

Extremely rich actual air fuel ratio

·

Gas leak from exhaust system

·

EGR valve assembly




Lean: While performing the Active Test [Control the Injection Volume for A/F Sensor], the air fuel ratio sensor output voltage (A/F (O2) Sensor Voltage B1S1) is consistently higher than 3.4 V, and the heated oxygen sensor output voltage (O2 Sensor Voltage B1S2) is consistently below 0.4 V.

Rich: While performing the Active Test [Control the Injection Volume for A/F Sensor], the air fuel ratio sensor output voltage (A/F (O2) Sensor Voltage B1S1) is consistently below 3.1 V, and the heated oxygen sensor output voltage (O2 Sensor Voltage B1S2) is consistently higher than 0.55 V.

Lean/Rich: While performing the Active Test [Control the Injection Volume for A/F Sensor], the output voltage of the fuel ratio sensor (A/F (O2) Sensor Voltage B1S1) or heated oxygen sensor (O2 Sensor Voltage B1S2) alternates correctly.


HINT:

Refer to "Data List / Active Test" [A/F (O2) Sensor Voltage B1S1 and O2 Sensor Voltage B1S2].

Click hereEngine / Hybrid System>8ZR-FXE (ENGINE CONTROL)>SFI SYSTEM>DATA LIST / ACTIVE TEST




A

3.CHECK FOR EXHAUST GAS LEAK

B

6.REPLACE AIR FUEL RATIO SENSOR

C

7.CHECK FOR EXHAUST GAS LEAK

D

9.CHECK FOR EXHAUST GAS LEAK
3.CHECK FOR EXHAUST GAS LEAK
a.

Check for exhaust gas leaks.

OK:

No gas leaks in exhaust system.



Result:
Proceed to
OK
NG



OK

4.PERFORM ACTIVE TEST USING GTS (CONTROL THE EGR STEP POSITION)

NG

13.REPAIR OR REPLACE EXHAUST SYSTEM
4.PERFORM ACTIVE TEST USING GTS (CONTROL THE EGR STEP POSITION)
a.

Connect the GTS to the DLC3.


b.

Turn the power switch on (IG).


c.

Turn the GTS on.


d.

Put the engine in Inspection Mode (Maintenance Mode).

Powertrain > Hybrid Control > Utility
Tester Display
Inspection Mode
50005 397 2103

e.

Start the engine and warm it up until the engine coolant temperature is 75°C (167°F) or higher.

HINT:

The A/C switch and all accessories should be off.



f.

Enter the following menus: Powertrain / Engine / Active Test / Control the EGR Step Position / Data List / Intake Manifold Absolute Pressure, Coolant Temperature and Engine Independent.

Powertrain > Engine > Active Test
Active Test Display
Control the EGR Step Position
Data List Display
Intake Manifold Absolute Pressure
Coolant Temperature
Engine Independent
50004 372 25 385,205,428

g.

Confirm that the value of Data List item Engine Independent is "Operate" then check the value of Intake Manifold Absolute Pressure while performing the Active Test.

NOTICE:
·

Do not leave the EGR valve open for 10 seconds or more during the Active Test.

·

Be sure to return the EGR valve to step 0 when the Active Test is completed.

·

Do not open the EGR valve 30 steps or more during the Active Test.



OK:

The value of Intake Manifold Absolute Pressure changes in response to the EGR step position when the value of Engine Independent is "Operate".


Standard:
- Control the EGR Step Position (Active Test)
0 Steps 0 to 30 Steps
Intake Manifold Absolute Pressure
(Data List)
(EGR valve is fully closed) Intake Manifold Absolute Pressure value is at least +10 kPa (1.45 psi) higher than when EGR valve is fully closed


HINT:
·

If the value of Data List item Engine Independent is "Not Opr" when the engine is idling, charge control is being performed. Perform the Active Test after charge control is complete ("Operate" is displayed).

·

While performing the Active Test, if the increase in the value of Intake Manifold Absolute Pressure is small, the EGR valve assembly may be malfunctioning.

·

Even if the EGR valve assembly is malfunctioning, rough idling or an increase in the value of Intake Manifold Absolute Pressure may occur while performing the Active Test. However, the amount that the value of Intake Manifold Absolute Pressure increases will be smaller than normal.




Result:
Proceed to
OK
NG



OK

16.REPLACE EXHAUST MANIFOLD (TWC: FRONT CATALYST) AND FRONT EXHAUST PIPE ASSEMBLY (TWC: REAR CATALYST)

NG

5.INSPECT EGR VALVE ASSEMBLY
5.INSPECT EGR VALVE ASSEMBLY

b.

Check if the EGR valve is stuck open.

OK:

EGR valve is tightly closed.


HINT:

Perform "Inspection After Repair" after replacing the EGR valve assembly.

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



Result:
Proceed to
OK
NG



OK

16.REPLACE EXHAUST MANIFOLD (TWC: FRONT CATALYST) AND FRONT EXHAUST PIPE ASSEMBLY (TWC: REAR CATALYST)

NG

7.CHECK FOR EXHAUST GAS LEAK
a.

Check for exhaust gas leaks.

OK:

No gas leaks in exhaust system.



Result:
Proceed to
OK
NG



OK

8.REPLACE HEATED OXYGEN SENSOR

NG

13.REPAIR OR REPLACE EXHAUST SYSTEM
9.CHECK FOR EXHAUST GAS LEAK
a.

Check for exhaust gas leaks.

OK:

No gas leaks in exhaust system.



Result:
Proceed to
OK
NG



OK

10.PERFORM ACTIVE TEST USING GTS (CONTROL THE EGR STEP POSITION)

NG

13.REPAIR OR REPLACE EXHAUST SYSTEM
10.PERFORM ACTIVE TEST USING GTS (CONTROL THE EGR STEP POSITION)
a.

Connect the GTS to the DLC3.


b.

Turn the power switch on (IG).


c.

Turn the GTS on.


d.

Put the engine in Inspection Mode (Maintenance Mode).

Powertrain > Hybrid Control > Utility
Tester Display
Inspection Mode
50005 397 2103

e.

Start the engine and warm it up until the engine coolant temperature is 75°C (167°F) or higher.

HINT:

The A/C switch and all accessories should be off.



f.

Enter the following menus: Powertrain / Engine / Active Test / Control the EGR Step Position / Data List / Intake Manifold Absolute Pressure, Coolant Temperature and Engine Independent.

Powertrain > Engine > Active Test
Active Test Display
Control the EGR Step Position
Data List Display
Intake Manifold Absolute Pressure
Coolant Temperature
Engine Independent
50004 372 25 385,205,428

g.

Confirm that the value of Data List item Engine Independent is "Operate" then check the value of Intake Manifold Absolute Pressure while performing the Active Test.

NOTICE:
·

Do not leave the EGR valve open for 10 seconds or more during the Active Test.

·

Be sure to return the EGR valve to step 0 when the Active Test is completed.

·

Do not open the EGR valve 30 steps or more during the Active Test.



OK:

The value of Intake Manifold Absolute Pressure changes in response to the EGR step position when the value of Engine Independent is "Operate".


Standard:
- Control the EGR Step Position (Active Test)
0 Steps 0 to 30 Steps
Intake Manifold Absolute Pressure
(Data List)
(EGR valve is fully closed) Intake Manifold Absolute Pressure value is at least +10 kPa (1.45 psi) higher than when EGR valve is fully closed


HINT:
·

If the value of Data List item Engine Independent is "Not Opr" when the engine is idling, charge control is being performed. Perform the Active Test after charge control is complete ("Operate" is displayed).

·

While performing the Active Test, if the increase in the value of Intake Manifold Absolute Pressure is small, the EGR valve assembly may be malfunctioning.

·

Even if the EGR valve assembly is malfunctioning, rough idling or an increase in the value of Intake Manifold Absolute Pressure may occur while performing the Active Test. However, the amount that the value of Intake Manifold Absolute Pressure increases will be smaller than normal.




Result:
Proceed to
OK
NG



OK

12.CHECK CAUSE OF EXTREMELY RICH OR LEAN ACTUAL AIR FUEL RATIO

NG

11.INSPECT EGR VALVE ASSEMBLY
11.INSPECT EGR VALVE ASSEMBLY

b.

Check if the EGR valve is stuck open.

OK:

EGR valve is tightly closed.


HINT:

Perform "Inspection After Repair" after replacing the EGR valve assembly.

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



Result:
Proceed to
OK
NG



OK

12.CHECK CAUSE OF EXTREMELY RICH OR LEAN ACTUAL AIR FUEL RATIO

NG

12.CHECK CAUSE OF EXTREMELY RICH OR LEAN ACTUAL AIR FUEL RATIO
a.

Check the cause of extremely rich or lean actual air fuel ratio, referring to the DTC P017100 and P017200 Inspection Procedure.

Click hereEngine / Hybrid System>8ZR-FXE (ENGINE CONTROL)>SFI SYSTEM>P017100


Result:
Proceed to
NEXT



NEXT

14.CLEAR DTC
13.REPAIR OR REPLACE EXHAUST SYSTEM
a.

Repair or replace exhaust system.

HINT:

Perform "Inspection After Repair" after repairing or replacing the exhaust system.

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



Result:
Proceed to
NEXT



NEXT

14.CLEAR DTC
14.CLEAR DTC
a.

Connect the GTS to the DLC3.


b.

Turn the power switch on (IG).


c.

Turn the GTS on.


d.

Clear the DTCs.

Powertrain > Engine > Clear DTCs
50002 372

e.

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


Result:
Proceed to
NEXT



NEXT

15.CONFIRM WHETHER MALFUNCTION HAS BEEN SUCCESSFULLY REPAIRED
15.CONFIRM WHETHER MALFUNCTION HAS BEEN SUCCESSFULLY REPAIRED
a.

Drive the vehicle in accordance with the driving pattern described in Confirmation Driving Pattern.


b.

Enter the following menus: Powertrain / Engine / Trouble Codes.


c.

Read the DTCs.

Powertrain > Engine > Trouble Codes
50001 372
Result:
Result Proceed to
DTCs are not output A
DTC P042000 is output B




A

END

B

16.REPLACE EXHAUST MANIFOLD (TWC: FRONT CATALYST) AND FRONT EXHAUST PIPE ASSEMBLY (TWC: REAR CATALYST)
16.REPLACE EXHAUST MANIFOLD (TWC: FRONT CATALYST) AND FRONT EXHAUST PIPE ASSEMBLY (TWC: REAR CATALYST)
NOTICE:

When replacing the exhaust manifold and front exhaust pipe assembly in order to replace the three-way catalytic converter, it is not necessary to replace the air fuel ratio sensor and the heated oxygen sensor.


HINT:

Confirm the replacement parts, referring to the illustration in the Catalyst Location.




Result:
Proceed to
NEXT



NEXT

END