key INFINITI FX35 2004 Service Manual

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PRECAUTIONS
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Before starting repairs which do not require battery power:
Turn off ignition switch.
Disconnect the negative battery terminal.
If the battery terminals are disconnected, recorded memory of
radio and each control unit is erased.
To prevent serious burns:
Avoid contact with hot metal parts.
Do not remove the radiator cap when the engine is hot.
Dispose of drained oil or the solvent used for cleaning parts in
an appropriate manner.
Do not attempt to top off the fuel tank after the fuel pump nozzle
shuts off automatically.
Continued refueling may cause fuel overflow, resulting in fuel
spray and possibly a fire.
Clean all disassembled parts in the designated liquid or solvent
prior to inspection or assembly.
Replace oil seals, gaskets, packings, O-rings, locking washers, cotter pins, self-locking nuts, etc. with new
ones.
Replace inner and outer races of tapered roller bearings and needle bearings as a set.
Arrange the disassembled parts in accordance with their assembled locations and sequence.
Do not touch the terminals of electrical components which use microcomputers (such as ECM).
Static electricity may damage internal electronic components.
After disconnecting vacuum or air hoses, attach a tag to indicate the proper connection.
Use only the fluids and lubricants specified in this manual.
Use approved bonding agent, sealants or their equivalents when required.
Use hand tools, power tools (disassembly only) and recom-
mended special tools where specified for safe and efficient ser-
vice repairs.
When repairing the fuel, oil, water, vacuum or exhaust systems,
check all affected lines for leaks.
Before servicing the vehicle:
Protect fenders, upholstery and carpeting with appropriate cov-
ers.
Take caution that keys, buckles or buttons do not scratch paint.
SEF289H
SGI233
PBIC0190E
SGI234

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GI-12
HOW TO USE THIS MANUAL
Revision: 2004 November 2004 FX35/FX45
3.Symbol used in illustration
Symbols included in illustrations refer to measurements or procedures. Before diagnosing a problem,
familiarize yourself with each symbol. Refer to "Connector Symbols" in GI Section and "KEY TO SYM-
BOLS SIGNIFYING MEASUREMENTS OR PROCEDURES" below.
4.Action items
Next action for each test group is indicated based on result of each question. Test group number is shown
in the left upper portion of each test group.
HARNESS WIRE COLOR AND CONNECTOR NUMBER INDICATION
There are two types of harness wire color and connector number indication.
TYPE 1: Harness Wire Color and Connector Number are Shown in Illustration
Letter designations next to test meter probe indicate harness
wire color.
Connector numbers in a single circle (e.g. M33) indicate har-
ness connectors.
Connector numbers in a double circle (e.g. F211) indicate com-
ponent connectors.a. Battery voltage → 11 - 14V or approximately 12V
b. Voltage : Approximately 0V → Less than 1V
AGI070

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HOW TO USE THIS MANUAL
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TYPE 2: Harness Wire Color and Connector Number are Shown in Text
KEY TO SYMBOLS SIGNIFYING MEASUREMENTS OR PROCEDURES
SGI144A
Symbol Symbol explanation Symbol Symbol explanation
Check after disconnecting the connec-
tor to be measured.Procedure with Generic Scan Tool
(GST, OBD-II scan tool)
Check after connecting the connector
to be measured.Procedure without CONSULT, CON-
SULT-II or GST
Insert key into ignition switch. A/C switch is “OFF”.
Remove key from ignition switch. A/C switch is “ON”.
Turn ignition switch to “OFF” position. REC switch is “ON”.
Turn ignition switch to “ON” position. REC switch is “OFF”.
Turn ignition switch to “START” posi-
tion.Fan switch is “ON”. (At any position
except for “OFF” position)
Turn ignition switch from “OFF” to
“ACC” position.Fan switch is “OFF”.
Turn ignition switch from “ACC” to
“OFF” position.Apply positive voltage from battery
with fuse directly to components.

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SERVICE INFORMATION FOR ELECTRICAL INCIDENT
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How to Perform Efficient Diagnosis for an Electrical IncidentAAS000E5
WORK FLOW
INCIDENT SIMULATION TESTS
Introduction
Sometimes the symptom is not present when the vehicle is brought in for service. If possible, re-create the
conditions present at the time of the incident. Doing so may help avoid a No Trouble Found Diagnosis. The fol-
lowing section illustrates ways to simulate the conditions/environment under which the owner experiences an
electrical incident.
The section is broken into the six following topics:
Vehicle vibration
Heat sensitive
SGI838
STEP DESCRIPTION
STEP 1Get detailed information about the conditions and the environment when the incident occurred.
The following are key pieces of information required to make a good analysis:
WHATVehicle Model, Engine, Transmission/Transaxle and the System (i.e. Radio).
WHENDate, Time of Day, Weather Conditions, Frequency.
WHERERoad Conditions, Altitude and Traffic Situation.
HOWSystem Symptoms, Operating Conditions (Other Components Interaction).
Service History and if any After Market Accessories have been installed.
STEP 2Operate the system, road test if necessary.
Verify the parameter of the incident.
If the problem cannot be duplicated, refer to “Incident Simulation Tests”.
STEP 3Get the proper diagnosis materials together including:
Power Supply Routing
System Operation Descriptions
Applicable Service Manual Sections
Check for any Service Bulletins
Identify where to begin diagnosis based upon your knowledge of the system operation and the customer comments.
STEP 4Inspect the system for mechanical binding, loose connectors or wiring damage.
Determine which circuits and components are involved and diagnose using the Power Supply Routing and Harness
Layouts.
STEP 5 Repair or replace the incident circuit or component.
STEP 6Operate the system in all modes. Verify the system works properly under all conditions. Make sure you have not inad-
vertently created a new incident during your diagnosis or repair steps.

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SERVICE INFORMATION FOR ELECTRICAL INCIDENT
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VOLTAGE CHECK METHOD
To help in understanding the diagnosis of open circuits please refer to the previous schematic.
In any powered circuit, an open can be found by methodically checking the system for the presence of voltage.
This is done by switching the DMM to the voltage function.
Connect one probe of the DMM to a known good ground.
Begin probing at one end of the circuit and work your way to the other end.
With SW1 open, probe at SW1 to check for voltage.
voltage; open is further down the circuit than SW1.
no voltage; open is between fuse block and SW1 (point A).
Close SW1 and probe at relay.
voltage; open is further down the circuit than the relay.
no voltage; open is between SW1 and relay (point B).
Close the relay and probe at the solenoid.
voltage; open is further down the circuit than the solenoid.
no voltage; open is between relay and solenoid (point C).
Any powered circuit can be diagnosed using the approach in the previous example.
Testing for “Shorts” in the Circuit
To simplify the discussion of shorts in the system, please refer to the following schematic.
RESISTANCE CHECK METHOD
Disconnect the battery negative cable and remove the blown fuse.
Disconnect all loads (SW1 open, relay disconnected and solenoid disconnected) powered through the
fuse.
Connect one probe of the DMM to the load side of the fuse terminal. Connect the other probe to a known
good ground.
With SW1 open, check for continuity.
continuity; short is between fuse terminal and SW1 (point A).
no continuity; short is further down the circuit than SW1.
Close SW1 and disconnect the relay. Put probes at the load side of fuse terminal and a known good
ground. Then, check for continuity.
continuity; short is between SW1 and the relay (point B).
no continuity; short is further down the circuit than the relay.
Close SW1 and jump the relay contacts with jumper wire. Put probes at the load side of fuse terminal and
a known good ground. Then, check for continuity.
continuity; short is between relay and solenoid (point C).
no continuity; check solenoid, retrace steps.
VOLTAGE CHECK METHOD
Remove the blown fuse and disconnect all loads (i.e. SW1 open, relay disconnected and solenoid discon-
nected) powered through the fuse.
Turn the ignition key to the ON or START position. Verify battery voltage at the battery + side of the fuse
terminal (one lead on the battery + terminal side of the fuse block and one lead on a known good ground).
With SW1 open and the DMM leads across both fuse terminals, check for voltage.
voltage; short is between fuse block and SW1 (point A).
SGI847-A

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CONSULT-II CHECKING SYSTEM
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CONSULT-II CHECKING SYSTEMPFP:00000
DescriptionAAS000E7
CONSULT-II is a hand-held type tester. When it is connected with a diagnostic connector equipped on the
vehicle side, it will communicate with the control unit equipped in the vehicle and then enable various
kinds of diagnostic tests.
Refer to “CONSULT-II Software Operation Manual” for more information.
Function and System Application AAS000E8
x: Applicable
*1: IVIS (NATS) [INFINITI Vehicle immobilizer system (NISSAN Anti-Theft System)]
*2: This item is indicated, but it is what it does not use.Diagnostic test
modeFunction
ENGINE
A/T
AIR BAG
REARVIEW CAMERA
METER A/C AMP
BCM
AUTO DRIVE POS.
ABS (Including VDC)
AIR PRESSURE MONITOR
IVIS (NATS)*
1
IPDM E/R
ICC
ALL MODE AWD/4WD
INTELLIGENT KEY
Work supportThis mode enables a technician to adjust some devices
faster and more accurately by following the indications on
CONSULT-II.x- -x-xxxx-- x- x
Self-diagnostic
resultsSelf-diagnostic results can be read and erased quickly. x x x -xxxxxxxxxx
Trouble diagnostic
recordCurrent self-diagnostic results and all trouble diagnostic
records previously stored can be read.--x-----------
Data monitor Input/Output data in the ECM can be read. x x - x x - x x x - x x x x
CAN diagnosis
support monitorThe communication condition of CAN communication line
can be indicated.xx- - xxxxx- xxxx
Active testDiagnostic Test Mode in which CONSULT-II drives some
actuators apart from the ECMs and also shifts some param-
eters in a specified range.x- -- - xxx - -xxxx
DTC & SRT confir-
mationThe results of SRT (System Readiness Test) and the self-
diagnosis status/result can be confirmed.x- -- ----------
DTC work supportThe operating condition to confirm Diagnosis Trouble Codes
can be selected.xx-- ----------
ECU (ECM) part
numberECU (ECM) part number can be read. x x - x - x x x x - - x x x
ECU discrimi-
nated No.Classification number of a replacement ECU can be read to
prevent an incorrect ECU from being installed.-- x- ----------
Function testThis mode can show results of self-diagnosis of ECU with
either “OK” or “NG”. For engines, more practical tests
regarding sensors/switches and/or actuators are available.xxx- ---x------
Control unit initial-
izationAll registered ignition key IDs in NATS components can be
initialized and new IDs can be registered.-- -- -----x----
Configuration*
2— -----x------- -
Pin readIndividual control unit number can be read.
For future information, refer to “CONSULT-II operation man-
ual NATS-IVIS/NVIS” -- -- -----x----

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CONSULT-II CHECKING SYSTEM
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2. If necessary, turn on the ignition switch.
3. Touch “START (NISSAN BASED VHCL)” or System Shortcut
key (eg: ENGINE) on the screen.
SAIA0450E

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TOW TRUCK TOWING
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TOW TRUCK TOWINGPFP:00000
Tow Truck TowingAAS000EH
CAUTION:
All applicable state or Provincial (in Canada) laws and local laws regarding the towing operation
must be obeyed.
It is necessary to use proper towing equipment to avoid possible damage to the vehicle during
towing operation. Towing is in accordance with Towing Procedure Manual at dealer.
Always attach safety chains before towing.
When towing, make sure that the transmission, steering system and power train are in good order.
If any unit is damaged, dollies must be used.
Never tow an automatic transmission model from the rear (that is backward) with four wheels on
the ground. This may cause serious and expensive damage to the transmission.
2WD MODELS
INFINITI recommends that your vehicle be towed with the driving (rear) wheels off the ground or that a dolly be
used as illustrated.
CAUTION:
Never tow automatic transmission models with the rear wheels on the ground or four wheels on
the ground (forward or backward) as this may cause serious and expensive damage to the trans-
mission.
If it is necessary to tow the vehicle with the front wheels raised, always use towing dollies under
the rear wheels.
When towing rear wheel drive models with the front wheels on the ground or on towing dollies:
–Turn the ignition key to the OFF position, and secure the steering wheel in a straight ahead posi-
tion with a rope or similar device.Never secure the steering wheel by turning the ignition key to the
LOCK position. This may damage the steering lock mechanism.
–Move the selector lever to the N (Neutral) position.
When the battery of vehicle equipped with the Intelligent Key system is discharged, your vehicle
should be towed with the front wheels on towing dollies or place the vehicle on a flat bed truck.
PAIA0097E

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GW-1
GLASSES, WINDOW SYSTEM & MIRRORS
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CONTENTS
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SECTION GW
A
B
GW
Revision: 2004 November 2004 FX35/FX45
GLASSES, WINDOW SYSTEM & MIRRORS
PRECAUTIONS .......................................................... 3
Precautions for Supplemental Restraint System
(SRS) “AIR BAG” and “SEAT BELT PRE-TEN-
SIONER” .................................................................. 3
Handling for Adhesive and Primer ........................... 3
Wiring Diagrams and Trouble Diagnosis .................. 3
PREPARATION ........................................................... 4
Special Service Tools ............................................... 4
Commercial Service Tools ........................................ 4
SQUEAK AND RATTLE TROUBLE DIAGNOSES ..... 5
Work Flow ................................................................ 5
CUSTOMER INTERVIEW ..................................... 5
DUPLICATE THE NOISE AND TEST DRIVE ....... 6
CHECK RELATED SERVICE BULLETINS ........... 6
LOCATE THE NOISE AND IDENTIFY THE
ROOT CAUSE ...................................................... 6
REPAIR THE CAUSE ........................................... 6
CONFIRM THE REPAIR ....................................... 7
Generic Squeak and Rattle Troubleshooting ........... 7
INSTRUMENT PANEL .......................................... 7
CENTER CONSOLE ............................................. 7
DOORS ................................................................. 7
TRUNK .................................................................. 8
SUNROOF/HEADLINING ..................................... 8
SEATS ................................................................... 8
UNDERHOOD ....................................................... 8
Diagnostic Worksheet .............................................. 9
WINDSHIELD GLASS ...............................................11
Removal and Installation ......................................... 11
REMOVAL ............................................................ 11
INSTALLATION ................................................... 12
REAR WINDOW GLASS AND MOLDING ............... 13
Removal and Installation ........................................ 13
REMOVAL ........................................................... 13
INSTALLATION ................................................... 14
POWER WINDOW SYSTEM .................................... 15
Component Parts and Harness Connector Location ... 15
System Description ................................................ 16
WITH FRONT POWER WINDOW ANTI-PINCH
SYSTEM ............................................................. 16WITH FRONT AND REAR WINDOW ANTI-
PINCH SYSTEM ................................................. 16
MANUAL OPERATION ........................................ 17
AUTO OPERATION ............................................. 19
POWER WINDOW SERIAL LINK ....................... 20
POWER WINDOW LOCK ................................... 20
RETAINED POWER OPERATION ...................... 21
ANTI-PINCH SYSTEM ........................................ 21
POWER WINDOW CONTROL BY THE KEY
CYLINDER SWITCH ........................................... 21
CAN Communication System Description .............. 22
CAN Communication Unit ....................................... 22
Schematic (With Front Power Window Anti-pinch
System) .................................................................. 23
Wiring Diagram —WINDOW— (With Front Power
Window Anti-pinch System) .................................... 24
Terminal and Reference Value for BCM / With Front
Power Window Anti-pinch System .......................... 28
Terminal and Reference Value for Power Window
Main Switch / With Front Power Window Anti-pinch
System .................................................................... 29
Terminal and Reference Value for Front Power Win-
dow Switch (Passenger Side) / With Front Power
Window Anti-pinch System ..................................... 30
Schematic (With Front and Rear Power Window
Anti-pinch System) ................................................. 31
Wiring Diagram —WINDOW— (With Front and
Rear Power Window Anti-pinch System) ................ 32
Terminal and Reference Value for BCM / With Front
and Rear Power Window Anti-pinch ....................... 37
Terminal and Reference Value for Power Window
Main Switch / With Front and Rear Power Window
Anti-pinch System ................................................... 38
Terminal and Reference Value for (Front and Rear)
Power Window Switch / With Front and Rear Win-
dow Anti-pinch System ........................................... 39
Work Flow ............................................................... 39
CONSULT-II Inspection Procedure ......................... 40
ACTIVE TEST ..................................................... 41
WORK SUPPORT ............................................... 41

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GW-2Revision: 2004 November 2004 FX35/FX45DATE MONITOR ................................................. 41
Trouble Diagnosis Symptom Chart / With Front
Power Window Anti-pinch System .......................... 42
Trouble Diagnosis Symptom Chart / With Front and
Rear Power Window Anti-pinch System ................. 43
BCM Power Supply and Ground Circuit Check ...... 44
Power Window Main Switch Power Supply Circuit
Check ..................................................................... 45
Front Power Window Switch (Passenger Side)
Power Supply and Ground Circuit Check ............... 46
Rear Power Window Switch (LH or RH) Power Sup-
ply and Ground Circuit Check / With Front and Rear
Power Window Anti-pinch System .......................... 47
Front Power Window Motor (Driver Side) Circuit
Check ..................................................................... 48
Front Power Window Motor (Passenger Side) Cir-
cuit Check ............................................................... 49
Rear Power Window Motor (LH) Circuit Check / With
Front Anti-pinch Power Window System ................ 50
Rear Power Window Motor (RH) Circuit Check / With
Front Anti-pinch Power Window System ................ 52
Rear Power Window Motor (LH or RH) Circuit Check
/ With Front and Rear Power Window Anti-pinch
System .................................................................... 55
Limit Switch Circuit Check (Driver Side) ................. 56
Limit Switch Circuit Check (Passenger Side) ......... 57
Limit Switch Circuit Check (Rear LH or RH) / With
Front and Rear Anti-pinch System ......................... 59
Encoder Circuit Check (Driver Side) ....................... 61
Encoder Circuit Check (Passenger Side) ............... 63
Encoder Circuit Check (Rear LH or RH) / With Front
and Rear Power Window Anti-pinch System .......... 65
Door Switch Check ................................................. 67
Front Door Key Cylinder Switch Check .................. 69
Power Window Serial Link Check (Passenger Side) ... 71
Power Window Serial Link Check (Rear LH or RH)
/ With Front and Rear Power Window Anti-pinch
System .................................................................... 73
Power Window Lock Switch Check ........................ 73
SIDE WINDOW GLASS ............................................ 74
Removal and Installation ........................................ 74
REMOVAL ........................................................... 74
INSTALLATION .................................................... 75
FRONT DOOR GLASS AND REGULATOR ............. 76
Removal and Installation ........................................ 76
DOOR GLASS ..................................................... 76
REGULATOR ASSEMBLY .................................. 77
Disassembly and assembly .................................... 78
REGULATOR ASSEMBLY .................................. 78
Inspection after Installation ..................................... 78
SETTING OF LIMIT SWITCH .............................. 78
FITTING INSPECTION ........................................ 78
REAR DOOR GLASS AND REGULATOR ............... 80
Removal and Installation ........................................ 80
DOOR GLASS ..................................................... 80REGULATOR ASSEMBLY ................................... 81
Disassembly and assembly .................................... 82
REGULATOR ASSEMBLY ................................... 82
Inspection after Installation ..................................... 82
SETTING OF LIMIT SWITCH (WITH ANTI-
PINCH SYSTEM ONLY) ...................................... 82
FITTING INSPECTION ........................................ 83
INSIDE MIRROR ....................................................... 84
Wiring Diagram —I/MIRR— ................................... 84
Removal and Installation ......................................... 85
REMOVAL ............................................................ 85
INSTALLATION .................................................... 85
COMPASS ........................................................... 85
REAR WINDOW DEFOGGER .................................. 86
Component Parts and Harness Connector Location ... 86
System Description ................................................. 86
CAN Communication System Description .............. 88
CAN Communication Unit ....................................... 88
Schematic ............................................................... 89
Wiring Diagram —DEF— ........................................ 90
Terminal and Reference Value for BCM .................. 94
Terminal and Reference Value for IPDM E/R .......... 94
Work Flow ............................................................... 94
CONSULT-II Inspection Procedure ......................... 95
DATA MONITOR .................................................. 96
ACTIVE TEST ...................................................... 96
Trouble Diagnoses Symptom Chart ........................ 97
BCM Power Supply and Ground Circuit Check ...... 97
Rear Window Defogger Switch Circuit Check ......... 98
Rear Window Defogger Power Supply Circuit
Check ....................................................................100
Rear Window Defogger Circuit Check ..................102
Door Mirror Defogger Power Supply Circuit Check .103
Driver Side Door Mirror Defogger Circuit Check ...104
Passenger Side Door Mirror Defogger Circuit Check
.105
Rear Window Defogger Signal Check ..................106
Filament Check .....................................................107
Filament Repair .....................................................107
REPAIR EQUIPMENT .......................................107
REPAIRING PROCEDURE ...............................108
DOOR MIRROR .......................................................109
Door Mirror (Only Manual Operation) ...................109
WRING DIAGRAM —MIRROR— FOR MAN-
UAL OPERATION DOOR MIRROR ...................109
Automatic Drive Positioner Interlocking Door Mirror .110
WRING DIAGRAM –MIRROR– FOR AUTO-
MATIC DRIVE POSITIONER INTERLOCKING
DOOR MIRROR ................................................. 111
Removal and Installation .......................................113
REMOVAL ..........................................................113
INSTALLATION ..................................................113
Disassembly and Assembly ..................................113
DISASSEMBLY ..................................................113
ASSEMBLY ........................................................114

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