![INFINITI FX35 2006 Service Manual DTC P0420, P0430 THREE WAY CATALYST FUNCTION EC-379
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Revision: 2006 December 2006 FX35/FX45
Diagnostic ProcedureNBS003QR
1. CHECK EXHAUST SYSTEM
Visuall INFINITI FX35 2006 Service Manual DTC P0420, P0430 THREE WAY CATALYST FUNCTION EC-379
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Revision: 2006 December 2006 FX35/FX45
Diagnostic ProcedureNBS003QR
1. CHECK EXHAUST SYSTEM
Visuall](/manual-img/42/57019/w960_57019-1762.png)
DTC P0420, P0430 THREE WAY CATALYST FUNCTION EC-379
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Revision: 2006 December 2006 FX35/FX45
Diagnostic ProcedureNBS003QR
1. CHECK EXHAUST SYSTEM
Visually check exhaust tubes and muffler for dent.
OK or NG
OK >> GO TO 2.
NG >> Repair or replace.
2. CHECK EXHAUST GAS LEAK
1. Start engine and run it at idle.
2. Listen for an exhaust gas leak before the three way catalyst 1.
OK or NG
OK >> GO TO 3.
NG >> Repair or replace.
3. CHECK INTAKE AIR LEAK
Listen for an intake air leak after the mass air flow sensor.
OK or NG
OK >> GO TO 4.
NG >> Repair or replace.
4. CHECK IGNITION TIMING
Check the following items. Refer to EC-77, "
Basic Inspection" .
OK or NG
OK >> GO TO 5.
NG >> Follow the EC-77, "
Basic Inspection" .
PBIB1922E
Items Specifications
Target idle speed 650 ± 50 rpm (in P or N position)
Ignition timing 15 ± 5 ° BTDC (in P or N position)
![INFINITI FX35 2006 Service Manual DTC P0441 EVAP CONTROL SYSTEM EC-383
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Revision: 2006 December 2006 FX35/FX45
DTC P0441 EVAP CONTROL SYSTEMPFP:14950
System DescriptionNBS003QS
NOTE:
If INFINITI FX35 2006 Service Manual DTC P0441 EVAP CONTROL SYSTEM EC-383
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Revision: 2006 December 2006 FX35/FX45
DTC P0441 EVAP CONTROL SYSTEMPFP:14950
System DescriptionNBS003QS
NOTE:
If](/manual-img/42/57019/w960_57019-1766.png)
DTC P0441 EVAP CONTROL SYSTEM EC-383
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Revision: 2006 December 2006 FX35/FX45
DTC P0441 EVAP CONTROL SYSTEMPFP:14950
System DescriptionNBS003QS
NOTE:
If DTC P0441 is displayed with other DTC such as P2122, P2123, P2127, P2128 or P2138, first perform
trouble diagnosis for other DTC.
In this evaporative emission (EVAP) control system, purge flow occurs during non-closed throttle conditions.
Purge volume is related to air intake volume. Under normal purge conditions (non-closed throttle), the EVAP
canister purge volume control solenoid valve is open to admit purge flow. Purge flow exposes the EVAP con-
trol system pressure sensor to intake manifold vacuum.
On Board Diagnosis LogicNBS003QT
Under normal conditions (non-closed throttle), sensor output voltage indicates if pressure drop and purge flow
are adequate. If not, a malfunction is determined.
DTC Confirmation ProcedureNBS003QU
CAUTION:
Always drive vehicle at a safe speed.
NOTE:
If DTC Confirmation Procedure has been previously conducted, always turn ignition switch OFF and wait at
least 10 seconds before conducting the next test.
TESTING CONDITION:
PBIB1026E
DTC No. Trouble diagnosis name DTC detecting condition Possible cause
P0441
0441 EVAP control system
incorrect purge flow EVAP control system does not operate prop-
erly, EVAP control system has a leak between
intake manifold and EVAP control system pres-
sure sensor.
EVAP canister purge volume control
solenoid valve stuck closed
EVAP control system pressure sensor
and the circuit
Loose, disconnected or improper con-
nection of rubber tube
Blocked rubber tube
Cracked EVAP canister
EVAP canister purge volume control
solenoid valve circuit
Accelerator pedal position sensor
Blocked purge port
EVAP canister vent control valve
![INFINITI FX35 2006 Service Manual DTC P0443 EVAP CANISTER PURGE VOLUME CONTROL SOLENOID VALVE EC-397
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Revision: 2006 December 2006 FX35/FX45
DTC P0443 EVAP CANISTER PURGE VOLUME CONTROL S INFINITI FX35 2006 Service Manual DTC P0443 EVAP CANISTER PURGE VOLUME CONTROL SOLENOID VALVE EC-397
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Revision: 2006 December 2006 FX35/FX45
DTC P0443 EVAP CANISTER PURGE VOLUME CONTROL S](/manual-img/42/57019/w960_57019-1780.png)
DTC P0443 EVAP CANISTER PURGE VOLUME CONTROL SOLENOID VALVE EC-397
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Revision: 2006 December 2006 FX35/FX45
DTC P0443 EVAP CANISTER PURGE VOLUME CONTROL SOLENOID VALVE
PFP:14920
DescriptionNBS003WH
SYSTEM DESCRIPTION
*1: ECM determines the start signal status by the signals of engine speed and battery voltage.
*2: This signal is sent to the ECM through CAN communication line.
This system controls flow rate of fuel vapor from the EVAP canister. The opening of the vapor by-pass pas-
sage in the EVAP canister purge volume control solenoid valve changes to control the flow rate. The EVAP
canister purge volume control solenoid valve repeats ON/OFF operation according to the signal sent from the
ECM. The opening of the valve varies for optimum engine control. The optimum value stored in the ECM is
determined by considering various engine conditions. When the engine is operating, the flow rate of fuel vapor
from the EVAP canister is regulated as the air flow changes.
COMPONENT DESCRIPTION
The EVAP canister purge volume control solenoid valve uses a ON/
OFF duty to control the flow rate of fuel vapor from the EVAP canis-
ter. The EVAP canister purge volume control solenoid valve is
moved by ON/OFF pulses from the ECM. The longer the ON pulse,
the greater the amount of fuel vapor that will flow through the valve.
CONSULT-II Reference Value in Data Monitor ModeNBS003WI
Specification data are reference values.
Sensor Input Signal to ECM ECM function Actuator
Crankshaft position sensor (POS)
Camshaft position sensor (PHASE) Engine speed*
1
EVAP canister
purge flow control EVAP canister purge vol-
ume control solenoid valve
Mass air flow sensor Amount of intake air
Engine coolant temperature sensor Engine coolant temperature
Battery Battery voltage*
1
Throttle position sensor Throttle position
Accelerator pedal position sensor Accelerator pedal position
Air fuel ratio (A/F) sensor 1 Density of oxygen in exhaust gas
(Mixture ratio feedback signal)
Fuel tank temperature sensor Fuel temperature in fuel tank
Wheel sensor Vehicle speed*
2
SEF337U
MONITOR ITEM CONDITION SPECIFICATION
PURG VOL C/V
Engine: After warming up
Selector lever: P or N
Air conditioner switch: OFF
No load Idle
(Accelerator pedal is not depressed
even slightly, after engine starting) 0%
2,000 rpm —
![INFINITI FX35 2006 Service Manual DTC P0444, P0445 EVAP CANISTER PURGE VOLUME CONTROL SOLENOID VALVE
EC-405
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Revision: 2006 December 2006 FX35/FX45
DTC P0444, P0445 EVAP CANISTER PURGE INFINITI FX35 2006 Service Manual DTC P0444, P0445 EVAP CANISTER PURGE VOLUME CONTROL SOLENOID VALVE
EC-405
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Revision: 2006 December 2006 FX35/FX45
DTC P0444, P0445 EVAP CANISTER PURGE](/manual-img/42/57019/w960_57019-1788.png)
DTC P0444, P0445 EVAP CANISTER PURGE VOLUME CONTROL SOLENOID VALVE
EC-405
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Revision: 2006 December 2006 FX35/FX45
DTC P0444, P0445 EVAP CANISTER PURGE VOLUME CONTROL SOLENOID
VA LV E
PFP:14920
DescriptionNBS003R0
SYSTEM DESCRIPTION
*1: ECM determines the start signal status by the signals of engine speed and battery voltage.
*2: This signal is sent to the ECM through CAN communication line.
This system controls flow rate of fuel vapor from the EVAP canister. The opening of the vapor by-pass pas-
sage in the EVAP canister purge volume control solenoid valve changes to control the flow rate. The EVAP
canister purge volume control solenoid valve repeats ON/OFF operation according to the signal sent from the
ECM. The opening of the valve varies for optimum engine control. The optimum value stored in the ECM is
determined by considering various engine conditions. When the engine is operating, the flow rate of fuel vapor
from the EVAP canister is regulated as the air flow changes.
COMPONENT DESCRIPTION
The EVAP canister purge volume control solenoid valve uses a ON/
OFF duty to control the flow rate of fuel vapor from the EVAP canis-
ter. The EVAP canister purge volume control solenoid valve is
moved by ON/OFF pulses from the ECM. The longer the ON pulse,
the greater the amount of fuel vapor that will flow through the valve.
CONSULT-II Reference Value in Data Monitor ModeNBS003R1
Specification data are reference values.
Sensor Input signal to ECM ECM function Actuator
Crankshaft position sensor (POS)
Camshaft position sensor (PHASE) Engine speed*
1
EVAP canister
purge flow control EVAP canister purge vol-
ume control solenoid valve
Mass air flow sensor Amount of intake air
Engine coolant temperature sensor Engine coolant temperature
Battery Battery voltage*
1
Throttle position sensor Throttle position
Accelerator pedal position sensor Accelerator pedal position
Air fuel ratio (A/F) sensor 1 Density of oxygen in exhaust gas
(Mixture ratio feedback signal)
Fuel tank temperature sensor Fuel temperature in fuel tank
Wheel sensor Vehicle speed*
2
SEF337U
MONITOR ITEM CONDITION SPECIFICATION
PURG VOL C/V
Engine: After warming up
Selector lever: P or N
Air conditioner switch: OFF
No load Idle
(Accelerator pedal is not depressed
even slightly, after engine starting) 0%
2,000 rpm —
![INFINITI FX35 2006 Service Manual EC-468
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DTC P0506 ISC SYSTEM
Revision: 2006 December 2006 FX35/FX45
DTC P0506 ISC SYSTEMPFP:23781
DescriptionNBS003SQ
NOTE:
If DTC P0506 is displayed with other DTC, first perform the trouble INFINITI FX35 2006 Service Manual EC-468
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DTC P0506 ISC SYSTEM
Revision: 2006 December 2006 FX35/FX45
DTC P0506 ISC SYSTEMPFP:23781
DescriptionNBS003SQ
NOTE:
If DTC P0506 is displayed with other DTC, first perform the trouble](/manual-img/42/57019/w960_57019-1851.png)
EC-468
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DTC P0506 ISC SYSTEM
Revision: 2006 December 2006 FX35/FX45
DTC P0506 ISC SYSTEMPFP:23781
DescriptionNBS003SQ
NOTE:
If DTC P0506 is displayed with other DTC, first perform the trouble diagnosis for the other DTC.
The ECM controls the engine idle speed to a specified level through the fine adjustment of the air, which is let
into the intake manifold, by operating the electric throttle control actuator. The operating of the throttle valve is
varied to allow for optimum control of the engine idling speed. The crankshaft position sensor (POS) detects
the actual engine speed and sends a signal to the ECM.
The ECM controls the electric throttle control actuator so that the engine speed coincides with the target value
memorized in the ECM. The target engine speed is the lowest speed at which the engine can operate steadily.
The optimum value stored in the ECM is determined by taking into consideration various engine conditions,
such as during warming up, deceleration, and engine load (air conditioner, power steering and cooling fan
operation, etc.).
On Board Diagnosis LogicNBS003SR
DTC Confirmation ProcedureNBS003SS
NOTE:
If DTC Confirmation Procedure has been previously conducted, always turn ignition switch OFF and wait
at least 10 seconds before conducting the next test.
If the target idle speed is out of the specified value, perform, EC-84, "Idle Air Volume Learning" ,
before conducting DTC Confirmation Procedure. For the target idle speed, refer to the EC-674,
"SERVICE DATA AND SPECIFICATIONS (SDS)" .
TESTING CONDITION:
Before performing the following procedure, confirm that battery voltage is more than 11V at idle.
Always perform the test at a temperature above −10 °C (14 °F).
WITH CONSULT-II
1. Open engine hood.
2. Start engine and warm it up to normal operating temperature.
3. Turn ignition switch OFF and wait at least 10 seconds.
4. Turn ignition switch ON again and select “DATA MONITOR” mode with CONSULT-II.
5. Start engine and run it for at least 1 minute at idle speed.
6. If 1st trip DTC is detected, go to EC-469, "
Diagnostic Procedure"
.
WITH GST
Follow the procedure “WITH CONSULT-II” above.
DTC No. Trouble diagnosis name DTC detecting condition Possible cause
P0506
0506 Idle speed control sys-
tem (ISC) RPM lower
than expected The idle speed is less than the target idle
speed by 100 rpm or more.
Electric throttle control actuator
Intake air leak
SEF174Y
![INFINITI FX35 2006 Service Manual DTC P0506 ISC SYSTEM EC-469
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Revision: 2006 December 2006 FX35/FX45
Diagnostic ProcedureNBS003ST
1. CHECK INTAKE AIR LEAK
1. Start engine and let it idl INFINITI FX35 2006 Service Manual DTC P0506 ISC SYSTEM EC-469
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Revision: 2006 December 2006 FX35/FX45
Diagnostic ProcedureNBS003ST
1. CHECK INTAKE AIR LEAK
1. Start engine and let it idl](/manual-img/42/57019/w960_57019-1852.png)
DTC P0506 ISC SYSTEM EC-469
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Revision: 2006 December 2006 FX35/FX45
Diagnostic ProcedureNBS003ST
1. CHECK INTAKE AIR LEAK
1. Start engine and let it idle.
2. Listen for an intake air leak after the mass air flow sensor.
OK or NG
OK >> GO TO 2.
NG >> Discover air leak location and repair.
2. REPLACE ECM
1. Stop engine.
2. Replace ECM.
3. Perform initialization of IVIS(NATS) system and registration of all IVIS(NATS) ignition key IDs. Refer to BL-207, "
ECM Re-Communicating Function" .
4. Perform EC-83, "
VIN Registration" .
5. Perform EC-84, "
Accelerator Pedal Released Position Learning" .
6. Perform EC-84, "
Throttle Valve Closed Position Learning" .
7. Perform EC-84, "
Idle Air Volume Learning" .
>> INSPECTION END
![INFINITI FX35 2006 Service Manual EC-470
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DTC P0507 ISC SYSTEM
Revision: 2006 December 2006 FX35/FX45
DTC P0507 ISC SYSTEMPFP:23781
DescriptionNBS003SU
NOTE:
If DTC P0507 is displayed with other DTC, first perform the trouble INFINITI FX35 2006 Service Manual EC-470
[VQ35DE]
DTC P0507 ISC SYSTEM
Revision: 2006 December 2006 FX35/FX45
DTC P0507 ISC SYSTEMPFP:23781
DescriptionNBS003SU
NOTE:
If DTC P0507 is displayed with other DTC, first perform the trouble](/manual-img/42/57019/w960_57019-1853.png)
EC-470
[VQ35DE]
DTC P0507 ISC SYSTEM
Revision: 2006 December 2006 FX35/FX45
DTC P0507 ISC SYSTEMPFP:23781
DescriptionNBS003SU
NOTE:
If DTC P0507 is displayed with other DTC, first perform the trouble diagnosis for the other DTC.
The ECM controls the engine idle speed to a specified level through the fine adjustment of the air, which is let
into the intake manifold, by operating the electric throttle control actuator. The operating of the throttle valve is
varied to allow for optimum control of the engine idling speed. The crankshaft position sensor (POS) detects
the actual engine speed and sends a signal to the ECM.
The ECM controls the electric throttle control actuator so that the engine speed coincides with the target value
memorized in the ECM. The target engine speed is the lowest speed at which the engine can operate steadily.
The optimum value stored in the ECM is determined by taking into consideration various engine conditions,
such as during warming up, deceleration, and engine load (air conditioner, power steering and cooling fan
operation, etc.).
On Board Diagnosis LogicNBS003SV
DTC Confirmation ProcedureNBS003SW
NOTE:
If DTC Confirmation Procedure has been previously conducted, always turn ignition switch OFF and wait
at least 10 seconds before conducting the next test.
If the target idle speed is out of the specified value, perform, EC-84, "Idle Air Volume Learning" ,
before conducting DTC Confirmation Procedure. For the target idle speed, refer to the EC-674,
"SERVICE DATA AND SPECIFICATIONS (SDS)" .
TESTING CONDITION:
Before performing the following procedure, confirm that battery voltage is more than 11V at idle.
Always perform the test at a temperature above −10 °C (14 °F).
WITH CONSULT-II
1. Open engine hood.
2. Start engine and warm it up to normal operating temperature.
3. Turn ignition switch OFF and wait at least 10 seconds.
4. Turn ignition switch ON again and select “DATA MONITOR” mode with CONSULT-II.
5. Start engine and run it for at least 1 minute at idle speed.
6. If 1st trip DTC is detected, go to EC-471, "
Diagnostic Procedure"
.
WITH GST
Follow the procedure “WITH CONSULT-II” above.
DTC No. Trouble diagnosis name DTC detecting condition Possible cause
P0507
0507 Idle speed control sys-
tem (ISC) RPM higher
than expected The idle speed is more than the target idle
speed by 200 rpm or more.
Electric throttle control actuator
Intake air leak
PCV system
SEF174Y
![INFINITI FX35 2006 Service Manual DTC P0507 ISC SYSTEM EC-471
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Revision: 2006 December 2006 FX35/FX45
Diagnostic ProcedureNBS003SX
1. CHECK PCV HOSE CONNECTION
Confirm that PCV hose is c INFINITI FX35 2006 Service Manual DTC P0507 ISC SYSTEM EC-471
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Revision: 2006 December 2006 FX35/FX45
Diagnostic ProcedureNBS003SX
1. CHECK PCV HOSE CONNECTION
Confirm that PCV hose is c](/manual-img/42/57019/w960_57019-1854.png)
DTC P0507 ISC SYSTEM EC-471
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Revision: 2006 December 2006 FX35/FX45
Diagnostic ProcedureNBS003SX
1. CHECK PCV HOSE CONNECTION
Confirm that PCV hose is connected correctly.
OK or NG
OK >> GO TO 2.
NG >> Repair or replace.
2. CHECK INTAKE AIR LEAK
1. Start engine and let it idle.
2. Listen for an intake air leak after the mass air flow sensor.
OK or NG
OK >> GO TO 3.
NG >> Discover air leak location and repair.
3. REPLACE ECM
1. Stop engine.
2. Replace ECM.
3. Perform initialization of IVIS(NATS) system and registration of all IVIS(NATS) ignition key IDs. Refer to BL-207, "
ECM Re-Communicating Function" .
4. Perform EC-83, "
VIN Registration" .
5. Perform EC-84, "
Accelerator Pedal Released Position Learning" .
6. Perform EC-84, "
Throttle Valve Closed Position Learning" .
7. Perform EC-84, "
Idle Air Volume Learning" .
>> INSPECTION END