
GENERAL INFORMATION
SECTION
GI
CONTENTS
PRECAUTIONS<0011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100
11001100110011001100110011001100110011001100110011[3
Precautions <0011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100
110011[..............3
PRECAUTIONS FOR SUPPLEMENTAL
RESTRAINT SYSTEM (SRS)″AIR BAG″AND
″SEAT BELT PRE-TENSIONER″
.................................3
PRECAUTIONS FOR NATS (NISSAN ANTI-THEFT
SYSTEM)
<0011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100
11001100110011001100110011001100110011001100110011[...3
GENERAL PRECAUTIONS.........................................4
PRECAUTIONS FOR MULTIPORT FUEL
INJECTION SYSTEM OR ENGINE CONTROL
SYSTEM
<0011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100
11001100110011001100110011001100110011001100110011[....6
PRECAUTIONS FOR THREE WAY CATALYST...........6
PRECAUTIONS FOR HOSES.....................................6
PRECAUTIONS FOR ENGINE OILS...........................7
PRECAUTIONS FOR FUEL........................................8
PRECAUTIONS FOR AIR CONDITIONING..................9
HOW TO USE THIS MANUAL......................................10
HOW TO READ WIRING DIAGRAMS..........................12
Sample/Wiring Diagram - EXAMPL - ........................12
OPTIONAL SPLICE..................................................13
Description <0011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100
110011[.............14
CONNECTOR SYMBOLS.........................................16
HARNESS INDICATION...........................................17
COMPONENT INDICATION......................................17
SWITCH POSITIONS...............................................17
DETECTABLE LINES AND NON-DETECTABLE
LINES
<0011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100
11001100110011001100110011001100110011001100110011[......18
MULTIPLE SWITCH.................................................19
REFERENCE AREA.................................................20
HOW TO PERFORM EFFICIENT DIAGNOSES
FOR AN ELECTRICAL INCIDENT...............................22
Work Flow <0011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100
110011001100110011[...........22
Incident Simulation Tests ...........................................23
INTRODUCTION<0011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100
11001100110011> 3
VEHICLE VIBRATION..............................................23
HEAT SENSITIVE<0011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100
110011> 4
FREEZING<0011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100
1100110011001100110011001100110011001100110011> 24
WATER INTRUSION................................................25
ELECTRICAL LOAD.................................................25
COLD OR HOT START UP.......................................25
Circuit Inspection .......................................................25
INTRODUCTION<0011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100
11001100110011> 5
TESTING FOR″OPENS″IN THE CIRCUIT................26
TESTING FOR″SHORTS″IN THE CIRCUIT..............27
GROUND INSPECTION...........................................28
VOLTAGE DROP TESTS..........................................28
CONTROL UNIT CIRCUIT TEST...............................30
HOW TO FOLLOW TROUBLE DIAGNOSES...............32
How to Follow Test Groups in Trouble Diagnoses ....33
Key to Symbols Signifying Measurements or
Procedures<0011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100
1100110011[............34
CONSULT-II CHECKING SYSTEM...............................36
Function and System Application ..............................36
Nickel Metal Hydride Battery Replacement...............37
Checking Equipment..................................................37
CONSULT-II Data Link Connector (DLC) Circuit ......38
INSPECTION PROCEDURE.....................................38
IDENTIFICATION INFORMATION................................39
Model Variation ..........................................................39
FOR EUROPE<0011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100
11001100110011001100110011> 9
FOR AUSTRALIA, NEW ZEALAND AND SOUTH
AFRICA
<0011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100
11001100110011001100110011001100110011001100110011[....39
PREFIX AND SUFFIX DESIGNATIONS.....................40
Identification Number .................................................40
VEHICLE IDENTIFICATION NUMBER
ARRANGEMENT
<0011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100
1100110011> 1
IDENTIFICATION PLATE..........................................41
ENGINE SERIAL NUMBER.......................................42
AUTOMATIC TRANSAXLE NUMBER........................42
MANUAL TRANSAXLE NUMBER..............................43
Dimensions <0011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100
1100110011[...........44
Wheels and Tires .......................................................44
LIFTING POINTS AND TOW TRUCK TOWING...........45
Preparation <0011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100
110011[............45
SPECIAL SERVICE TOOLS......................................45
Board-on Lift <0011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100
11[...........45
Garage Jack and Safety Stand .................................46
2-pole Lift <0011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100110011001100
1100110011[..............47
Tow Truck Towing ......................................................48
TOWING AN AUTOMATIC TRANSAXLE MODEL
WITH FOUR WHEELS ON GROUND
........................48
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Description=NJGI0003S02
Number Item Description
1 Power conditionThis shows the condition when the system receives battery positive voltage (can be
operated).
2 Fusible linkThe double line shows that this is a fusible link.
The open circle shows current flow in, and the shaded circle shows current flow out.
3Fusible link/fuse loca-
tionThis shows the location of the fusible link or fuse in the fusible link or fusebox.For
arrangement, refer to EL-12, “POWER SUPPLY ROUTING”.
4FuseThe single line shows that this is a fuse.
The open circle shows current flow in, and the shaded circle shows current flow out.
5 Current rating This shows the current rating of the fusible link or fuse.
6 ConnectorsThis shows that connector E3 is female and connector M1 is male.
The G/R wire is located in the 1A terminal of both connectors.
Terminal number with an alphabet (1A, 5B, etc.) indicates that the connector is SMJ con-
nector. Refer to GI-20.
7 Optional splice The open circle shows that the splice is optional depending on vehicle application.
8 Splice The shaded circle shows that the splice is always on the vehicle.
9 Page crossingThis arrow shows that the circuit continues to an adjacent page.
The A will match with the A on the preceding or next page.
10 Common connectorThe dotted lines between terminals show that these terminals are part of thesamecon-
nector.
11 Option abbreviation This shows that the circuit is optional depending on vehicle application.
12 RelayThis shows an internal representation of the relay. For details, refer to EL-9, “STAN-
DARDIZED RELAY”.
13 Connectors This shows that the connector is connected to the body or a terminal with bolt or nut.
14 Wire colorThis shows a code for the color of the wire.
B=Black
W = White
R = Red
G = Green
L = Blue
Y = Yellow
LG = Light GreenBR = Brown
OR = Orange
P = Pink
PU = Purple
GY = Gray
SB = Sky Blue
CH = Dark Brown
DG=DarkGreen
When the wire color is striped, the base color is given first, followed by the stripe color as
shown below:
Example: L/W = Blue with White Stripe
15 Option description This shows a description of the option abbreviationused on the page.
16 SwitchThis shows that continuity exists between terminals 1 and 2 when the switchis in the A
position. Continuity exists between terminals 1 and 3 when the switch is inthe B posi-
tion.
17 Assembly parts Connector terminal in component shows that it is a harness incorporated assembly.
18 Cell codeThis identifies each page of the wiring diagram by section, system and wiring diagram
page number.
19 Current flow arrowArrow indicates electric current flow, especially where the direction ofstandard flow (ver-
tically downward or horizontally from left to right) is difficult to follow.
A double arrow “
” shows that current can flow in either direction depending on cir-
cuit operation.
HOW TO READ WIRING DIAGRAMS
Description
GI-14

Number Item Description
20 System branchThis shows that the system branches to another system identified by cell code (section
and system).
21 Page crossingThis arrow shows that the circuit continues to another page identified by cell code.
The C will match with the C on another page within the system other than the next or
preceding pages.
22 Shielded line The line enclosed by broken line circle shows shield wire.
23Component box in
wave lineThis shows that another part of the component is also shown on another page (indicated
by wave line) within the system.
24 Component name This shows the name of a component.
25 Connector numberThis shows the connector number.
The letter shows which harness the connector is located in.
Example:M: main harness. For detail and to locate the connector, refer to EL-556, “Main
Harness”. A coordinate grid is included for complex harnesses to aid in locating connec-
tors.
26 Ground (GND)The line spliced and grounded under wire color shows that ground line is spliced at the
grounded connector.
27 Ground (GND)This shows the ground connection. For detailed ground distribution information, refer to
EL-24, “GROUND DISTRIBUTION”.
28 Connector viewsThis area shows the connector faces of the components in the wiring diagramon the
page.
29 Common componentConnectors enclosed in broken line show that these connectors belong to thesamecom-
ponent.
30 Connector colorThis shows a code for the color of the connector. For code meaning, refer to wire color
codes, Number 14 of this chart.
31Fusible link and fuse
boxThis shows the arrangement of fusible link(s) and fuse(s), used for connector views of
“POWER SUPPLY ROUTING” in EL section.
The open square shows current flow in, and the shaded square shows current flow out.
32 Reference areaThis shows that more information on the Super Multiple Junction (SMJ), Electrical Units,
exists at the end of the manual. Refer to GI-20 for details.
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HOW TO READ WIRING DIAGRAMS
Description (Cont’d)
GI-15

REFERENCE AREA=NJGI0003S0207The Reference Area of the wiring diagram contains references to
additional electrical reference pages at the end of the manual. If
connector numbers and titles are shown in the Reference Area of
the wiring diagram, these connector symbols are not shown in the
Connector Area.
SGI092A
Super multiple junction (SMJ)
In a wiring diagram, the SMJ connectors include a letter of the
alphabet in the terminal number.
SMJ connector numbers are shown in the Reference Area of the
wiring diagram. SMJ terminal arrangement can be found on the
electrical reference pages at the end of the manual. For terminal
arrangement of these connectors, refer to the “SUPER MULTIPLE
JUNCTION (SMJ)” electrical reference page at the end of the
HOW TO READ WIRING DIAGRAMS
Description (Cont’d)
GI-20

manual.
Fuse block — Junction box (J/B)
Fuse block — Junction box (J/B) connector number is shown in the
Reference Area of the wiring diagram. For connector terminal and
fuse arrangement, refer to the “FUSE BLOCK — Junction Box
(J/B)” electrical reference page at the end of the manual.
Fuse and fusible link box
For fuse arrangement in the fuse and fusible link box, refer to the
“FUSE AND FUSIBLE LINK BOX” electrical reference page at the
end of the manual.
Electrical units
Electrical unit connector symbols are shown in the Connector Area
of the wiring diagram.
However, when there is not enough space to show the connector
terminal arrangement in the Connector Area of the wiring diagram,
the electrical unit connector number is shown in the Reference
Area of the wiring diagram. For electrical unit connector terminal
arrangement, refer to the “ELECTRICAL UNITS” electrical refer-
ence page at the end of the manual. Most of the electrical unit
connectors on this page are shown from the harness side of the
connector.
Joint connector
Joint connector symbols are shown in the connector area of the
wiring diagram. For connector internal wiring layout and joint con-
nector terminal arrangement, refer to the “JOINT CONNECTOR
(J/C)” electrical reference page at the end of the manual.
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HOW TO READ WIRING DIAGRAMS
Description (Cont’d)
GI-21

Engine Compartment
There are several reasons a vehicle or engine vibration could
cause an electrical complaint. Some of the things to check for are:
Connectors not fully seated.
Wiring harness not long enough and is being stressed due to
engine vibrations or rocking.
Wires laying across brackets or moving components.
Loose, dirty or corroded ground wires.
Wires routed too close to hot components.
To inspect components under the hood, start by verifying the integ-
rity of ground connections. (Refer to GROUND INSPECTION
described later.) First check that the system is properly grounded.
Then check for loose connection bygently shakingthe wiring or
components as previously explained. Using the wiring diagrams
inspect the wiring for continuity.
Behind The Instrument Panel
An improperly routed or improperly clamped harness can become
pinched during accessory installation. Vehicle vibration can aggra-
vate a harness which is routed along a bracket or near a screw.
Under Seating Areas
An unclamped or loose harness can cause wiring to be pinched by
seat components (such as slide guides) during vehicle vibration. If
the wiring runs under seating areas, inspect wire routing for pos-
sible damage or pinching.
SGI842
HEAT SENSITIVENJGI0005S0203The owner’s problem may occur during hot weather or after car has
sat for a short time. In such cases you will want to check for a heat
sensitive condition.
To determine if an electrical component is heat sensitive, heat the
component with a heat gun or equivalent.
Do not heat components above 60°C (140°F).If incident occurs
while heating the unit, either replace or properly insulate the com-
ponent.
SGI843
FREEZINGNJGI0005S0204The customer may indicate the incident goes away after the car
warms up (winter time). The cause could be related to water freez-
ing somewhere in the wiring/electrical system.
There are two methods to check for this. The first is to arrange for
the owner to leave his car overnight. Make sure it will get cold
enough to demonstrate his complaint. Leave the car parked out-
side overnight. In the morning, do a quick and thorough diagnoses
of those electrical components which could be affected.
HOW TO PERFORM EFFICIENT DIAGNOSES FOR AN ELECTRICAL INCIDENT
Incident Simulation Tests (Cont’d)
GI-24

EC-3
C
D
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K
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M
ECA Component Inspection ......................................... 204
Removal and Installation ...................................... 204
DTC P0222, P0223 TP SENSOR ........................... 205
Component Description ........................................ 205
CONSULT-II Reference Value in Data Monitor Mode
. 205
On Board Diagnosis Logic ................................... 205
DTC Confirmation Procedure ............................... 205
Wiring Diagram .................................................... 207
Diagnostic Procedure ........................................... 208
Component Inspection ......................................... 210
Removal and Installation ...................................... 210
DTC P0226 APP SENSOR ......................................211
Component Description ......................................... 211
CONSULT-II Reference Value in Data Monitor Mode
.. 211
On Board Diagnosis Logic .................................... 211
DTC Confirmation Procedure ................................ 211
Wiring Diagram .................................................... 213
Diagnostic Procedure ........................................... 214
Component Inspection ......................................... 216
Removal and Installation ...................................... 217
DTC P0227, P0228 APP SENSOR ........................ 218
Component Description ........................................ 218
CONSULT-II Reference Value in Data Monitor Mode
. 218
On Board Diagnosis Logic ................................... 218
DTC Confirmation Procedure ............................... 218
Wiring Diagram .................................................... 220
Diagnostic Procedure ........................................... 221
Component Inspection ......................................... 223
Removal and Installation ...................................... 224
DTC P0300 - P0304 MULTIPLE CYLINDER MIS-
FIRE, NO. 1 - 4 CYLINDER MISFIRE ..................... 225
On Board Diagnosis Logic ................................... 225
DTC Confirmation Procedure ............................... 225
Diagnostic Procedure ........................................... 226
DTC P0327, P0328 KS ........................................... 230
Component Description ........................................ 230
On Board Diagnosis Logic ................................... 230
DTC Confirmation Procedure ............................... 230
Wiring Diagram .................................................... 231
Diagnostic Procedure ........................................... 232
Component Inspection ......................................... 233
Removal and Installation ...................................... 233
DTC P0335 CKP SENSOR (POS) .......................... 234
Component Description ........................................ 234
CONSULT-II Reference Value in Data Monitor Mode
. 234
On Board Diagnosis Logic ................................... 234
DTC Confirmation Procedure ............................... 234
Wiring Diagram ...................................................
. 235
Diagnostic Procedure ........................................... 236
Component Inspection ......................................... 238
Removal and Installation ...................................... 239
DTC P0340 CMP SENSOR (PHASE) ..................... 240
Component Description ........................................ 240
On Board Diagnosis Logic ................................... 240
DTC Confirmation Procedure ............................... 240Wiring Diagram .....................................................241
Diagnostic Procedure ...........................................242
Component Inspection ..........................................244
Removal and Installation ......................................245
DTC P0420 THREE WAY CATALYST FUNCTION . 246
On Board Diagnosis Logic ....................................246
DTC Confirmation Procedure ...............................246
Overall Function Check ........................................247
Diagnostic Procedure ...........................................248
DTC P0444 EVAP CANISTER PURGE VOLUME
CONTROL SOLENOID VALVE ...............................251
Description ............................................................251
CONSULT-II Reference Value in Data Monitor Mode
.251
On Board Diagnosis Logic ....................................252
DTC Confirmation Procedure ...............................252
Wiring Diagram .....................................................253
Diagnostic Procedure ...........................................254
Component Inspection ..........................................256
Removal and Installation ......................................256
DTC P0500 VSS ......................................................257
Description ............................................................257
On Board Diagnosis Logic ....................................257
DTC Confirmation Procedure ...............................257
Overall Function Check ........................................258
Diagnostic Procedure ...........................................259
DTC P0550 PSP SENSOR .....................................260
Component Description ........................................260
CONSULT-II Reference Value in Data Monitor Mode
.260
On Board Diagnosis Logic ....................................260
DTC Confirmation Procedure ...............................260
Wiring Diagram .....................................................261
Diagnostic Procedure ...........................................262
Component Inspection ..........................................264
DTC P0605 ECM .....................................................265
Component Description ........................................265
On Board Diagnosis Logic ....................................265
DTC Confirmation Procedure ...............................265
Diagnostic Procedure ...........................................266
DTC P1065 ECM POWER SUPPLY .......................268
Component Description ........................................268
On Board Diagnosis Logic ....................................268
DTC Confirmation Procedure ...............................268
Wiring Diagram .....................................................269
Diagnostic Procedure ...........................................270
DTC P1111 IVT CONTROL SOLENOID VALVE .....272
Component Description ........................................272
CONSULT-II Reference Value in Data Monitor Mode
.272
On Board Diagnosis Logic ....................................272
DTC Confirmation Procedure ...............................272
Wiring Diagram .....................................................273
Diagnostic Procedure ...........................................274
Component Inspection ..........................................275
Removal and Installation ......................................275
DTC P1121 ELECTRIC THROTTLE CONTROL
ACTUATOR .............................................................276
Component Description ........................................276

EC-4
On Board Diagnosis Logic ....................................276
DTC Confirmation Procedure ...............................276
Diagnostic Procedure ...........................................277
Removal and Installation ......................................277
DTC P1122 ELECTRIC THROTTLE CONTROL
FUNCTION ..............................................................278
Description ............................................................278
On Board Diagnosis Logic ....................................278
DTC Confirmation Procedure ...............................278
Wiring Diagram .....................................................279
Diagnostic Procedure ...........................................280
Component Inspection ..........................................284
Removal and Installation ......................................284
DTC P1124, P1126 THROTTLE CONTROL MOTOR
RELAY .....................................................................285
Component Description ........................................285
CONSULT-II Reference Value in Data Monitor Mode
.285
On Board Diagnosis Logic ....................................285
DTC Confirmation Procedure ...............................285
Wiring Diagram .....................................................287
Diagnostic Procedure ...........................................288
Component Inspection ..........................................289
DTC P1128 THROTTLE CONTROL MOTOR .........291
Component Description ........................................291
On Board Diagnosis Logic ....................................291
DTC Confirmation Procedure ...............................291
Wiring Diagram .....................................................292
Diagnostic Procedure ...........................................293
Component Inspection ..........................................294
Removal and Installation ......................................295
DTC P1143 HO2S1 .................................................296
Component Description ........................................296
CONSULT-II Reference Value in Data Monitor Mode
.296
On Board Diagnosis Logic ....................................296
DTC Confirmation Procedure ...............................297
Overall Function Check ........................................298
Diagnostic Procedure ...........................................298
Component Inspection ..........................................300
Removal and Installation ......................................301
DTC P1144 HO2S1 .................................................302
Component Description ........................................302
CONSULT-II Reference Value in Data Monitor Mode
.302
On Board Diagnosis Logic ....................................302
DTC Confirmation Procedure ...............................303
Overall Function Check ........................................304
Diagnostic Procedure ...........................................304
Component Inspection ..........................................306
Removal and Installation ......................................307
DTC P1146 HO2S2 ...............................................
..308
Component Description ........................................308
CONSULT-II Reference Value in Data Monitor Mode
.308
On Board Diagnosis Logic ....................................308
DTC Confirmation Procedure ...............................308
Overall Function Check ........................................310
Wiring Diagram .....................................................311Diagnostic Procedure ............................................312
Component Inspection ..........................................314
Removal and Installation .......................................315
DTC P1147 HO2S2 ..................................................316
Component Description ........................................316
CONSULT-II Reference Value in Data Monitor Mode
.316
On Board Diagnosis Logic ....................................316
DTC Confirmation Procedure ................................317
Overall Function Check .........................................318
Wiring Diagram .....................................................319
Diagnostic Procedure ............................................320
Component Inspection ..........................................322
Removal and Installation .......................................323
DTC P1217 ENGINE OVER TEMPERATURE ........324
System Description ...............................................324
CONSULT-II Reference Value in Data Monitor Mode
.324
On Board Diagnosis Logic ....................................325
Overall Function Check .........................................325
Wiring Diagram .....................................................327
Diagnostic Procedure ............................................328
Main 12 Causes of Overheating ...........................333
Component Inspection ..........................................334
DTC P1223, P1224 TP SENSOR ............................335
Component Description ........................................335
CONSULT-II Reference Value in Data Monitor Mode
.335
On Board Diagnosis Logic ....................................335
DTC Confirmation Procedure ................................335
Wiring Diagram .....................................................337
Diagnostic Procedure ............................................338
Component Inspection ..........................................340
Removal and Installation .......................................340
DTC P1225 TP SENSOR ........................................341
Component Description ........................................341
On Board Diagnosis Logic ....................................341
DTC Confirmation Procedure ................................341
Diagnostic Procedure ............................................342
Removal and Installation .......................................342
DTC P1226 TP SENSOR ........................................343
Component Description ........................................343
On Board Diagnosis Logic ....................................343
DTC Confirmation Procedure ................................343
Diagnostic Procedure ............................................344
Removal and Installation .......................................344
DTC P1227, P1228 APP SENSOR .........................345
Component Description ........................................345
CONSULT-II Reference Value in Data Monitor Mode
.345
On Board Diagnosis Logic ....................................345
DTC Confirmation Procedure ................................345
Wiring Diagram .....................................................347
Diagnostic Procedure ............................................348
Component Inspection ..........................................350
Removal and Installation .......................................351
DTC P1229 SENSOR POWER SUPPLY ................352
On Board Diagnosis Logic ....................................352
DTC Confirmation Procedure ................................352