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>> Download PG documenatation <<Text preview - extract from the documentPOWER SUPPLY, GROUND & CIRCUIT ELEMENTS
K ELECTRICAL
A
POWER SUPPLY, GROUND & CIRCUIT ELEMENTS
SECTION PG B
C
D
E
CONTENTS
POWER SUPPLY ROUTING CIRCUIT ..................... 3 . GROUND .................................................................. 30
. F
Schematic ............................................................... 3
. Ground Distribution ................................................ 30
.
Wiring Diagram - POWER - .................................... 4 . MAIN HARNESS ................................................ 30 .
BATTERY POWER SUPPLY - IGNITION SW. IN ENGINE ROOM HARNESS ............................... 33 . G
ANY POSITION .................................................... 4 . ENGINE CONTROL HARNESS ......................... 35 .
ACCESSORY POWER SUPPLY - IGNITION SW. BODY HARNESS ............................................... 36 .
IN "ACC" OR "ON" ............................................... 9 . BODY NO.2 HARNESS ..................................... 38 .
H
IGNITION POWER SUPPLY - IGNITION SW. IN HARNESS ................................................................ 39
.
"ON" AND/OR "START" ...................................... 10 . Harness Layout ..................................................... 39
.
Fuse ...................................................................... 16
. HOW TO READ HARNESS LAYOUT ................ 39 .
Fusible Link ........................................................... 16
. OUTLINE ............................................................ 40
. I
Circuit Breaker ...................................................... 16
. MAIN HARNESS ................................................ 41 .
IPDM E/R (INTELLIGENT POWER DISTRIBUTION ENGINE ROOM HARNESS ............................... 43 .
MODULE ENGINE ROOM) ..................................... 17 . ENGINE CONTROL HARNESS ......................... 46 . J
System Description ............................................... 17 . BODY HARNESS ............................................... 48 .
SYSTEMS CONTROLLED BY IPDM E/R .......... 17 . BODY NO.2 HARNESS ..................................... 50 .
CAN COMMUNICATION LINE CONTROL ........ 17 . ROOM LAMP HARNESS ................................... 51 .
PG
IPDM E/R STATUS CONTROL .......................... 18 . FRONT DOOR HARNESS ................................. 52 .
CAN Communication System Description ............. 18 . REAR DOOR HARNESS ................................... 53 .
CAN Communication Unit ..................................... 18 . BACK DOOR HARNESS ................................... 54 .
Function of Detecting Ignition Relay Malfunction ... 18 Wiring Diagram Codes (Cell Codes) ..................... 55 . L
CONSULT-II .......................................................... 19. ELECTRICAL UNITS LOCATION ........................... 58 .
CONSULT-II INSPECTION PROCEDURE ........ 19 . Electrical Units Location ........................................ 58 .
SELF-DIAG RESULTS ....................................... 20 . ENGINE COMPARTMENT ................................. 58 . M
DATA MONITOR ................................................ 21 . PASSENGER COMPARTMENT ........................ 59 .
ACTIVE TEST .................................................... 22 . LUGGAGE COMPARTMENT ............................. 61 .
Auto Active Test .................................................... 23. HARNESS CONNECTOR ........................................ 62 .
DESCRIPTION ................................................... 23 . Description ............................................................. 62
.
OPERATION PROCEDURE .............................. 23 . HARNESS CONNECTOR (TAB-LOCKING
INSPECTION IN AUTO ACTIVE TEST MODE ... 23 TYPE) ................................................................. 62
.
Schematic ............................................................. 25
. HARNESS CONNECTOR (SLIDE-LOCKING
IPDM E/R Terminal Arrangement .......................... 26 . TYPE) ................................................................. 63
.
IPDM E/R Power/Ground Circuit Inspection ......... 27 . ELECTRICAL UNITS ............................................... 64 .
Inspection With CONSULT-II (Self-Diagnosis) ...... 28 . Terminal Arrangement ........................................... 64 .
Removal and Installation of IPDM E/R .................. 29 . SMJ (SUPER MULTIPLE JUNCTION) .................... 66 .
REMOVAL .......................................................... 29 . Terminal Arrangement ........................................... 66 .
INSTALLATION .................................................. 29 . STANDARDIZED RELAY ......................................... 67 .
Description ............................................................. 67
.
NORMAL OPEN, NORMAL CLOSED AND
Revision: 2004 November PG-1 2004 Murano
MIXED TYPE RELAYS ....................................... 67
. FUSE, FUSIBLE LINK AND RELAY BOX ...............70 .
TYPE OF STANDARDIZED RELAYS ................. 67 . Terminal Arrangement ............................................70
.
FUSE BLOCK - JUNCTION BOX (J/B) ................... 69 .
Terminal Arrangement ........................................... 69
.
Revision: 2004 November PG-2 2004 Murano
POWER SUPPLY ROUTING CIRCUIT
POWER SUPPLY ROUTING CIRCUIT PFP:24110
A
Schematic AKS007HE
B
C
D
E
F
G
H
I
J
PG
L
M
TKWA1741E
Revision: 2004 November PG-3 2004 Murano
POWER SUPPLY ROUTING CIRCUIT
Wiring Diagram - POWER - AKS007HF
BATTERY POWER SUPPLY - IGNITION SW. IN ANY POSITION
TKWA1742E
Revision: 2004 November PG-4 2004 Murano
POWER SUPPLY ROUTING CIRCUIT
A
B
C
D
E
F
G
H
I
J
PG
L
M
TKWA1743E
Revision: 2004 November PG-5 2004 Murano
POWER SUPPLY ROUTING CIRCUIT
TKWA1744E
Revision: 2004 November PG-6 2004 Murano
POWER SUPPLY ROUTING CIRCUIT
A
B
C
D
E
F
G
H
I
J
PG
L
M
TKWA1745E
Revision: 2004 November PG-7 2004 Murano
POWER SUPPLY ROUTING CIRCUIT
TKWA1746E
Revision: 2004 November PG-8 2004 Murano
POWER SUPPLY ROUTING CIRCUIT
ACCESSORY POWER SUPPLY - IGNITION SW. IN "ACC" OR "ON"
A
B
C
D
E
F
G
H
I
J
PG
L
M
TKWA1747E
Revision: 2004 November PG-9 2004 Murano
POWER SUPPLY ROUTING CIRCUIT
IGNITION POWER SUPPLY - IGNITION SW. IN "ON" AND/OR "START"
TKWA1748E
Revision: 2004 November PG-10 2004 Murano
POWER SUPPLY ROUTING CIRCUIT
A
B
C
D
E
F
G
H
I
J
PG
L
M
TKWA1749E
Revision: 2004 November PG-11 2004 Murano
POWER SUPPLY ROUTING CIRCUIT
TKWA1750E
Revision: 2004 November PG-12 2004 Murano
POWER SUPPLY ROUTING CIRCUIT
A
B
C
D
E
F
G
H
I
J
PG
L
M
TKWA1751E
Revision: 2004 November PG-13 2004 Murano
POWER SUPPLY ROUTING CIRCUIT
TKWA1752E
Revision: 2004 November PG-14 2004 Murano
POWER SUPPLY ROUTING CIRCUIT
A
B
C
D
E
F
G
H
I
J
PG
L
M
TKWA1753E
Revision: 2004 November PG-15 2004 Murano
POWER SUPPLY ROUTING CIRCUIT
Fuse AKS007HG
q If fuse is blown, be sure to eliminate cause of incident before
installing new fuse.
q Use fuse of specified rating. Never use fuse of more than speci-
fied rating.
q Do not partially install fuse; always insert it into fuse holder prop-
erly.
q Remove fuse for "ELECTRICAL PARTS (BAT)" if vehicle is not
used for a long period of time.
CEL083
Fusible Link AKS007HH
A melted fusible link can be detected either by visual inspection or by
feeling with finger tip. If its condition is questionable, use circuit
tester or test lamp.
CAUTION:
q If fusible link should melt, it is possible that critical circuit
(power supply or large current carrying circuit) is shorted.
In such a case, carefully check and eliminate cause of inci-
dent.
q Never wrap outside of fusible link with vinyl tape. Important:
Never let fusible link touch any other wiring harness, vinyl
or rubber parts. CKIA0274E
Circuit Breaker AKS007HI
The PTC thermistor generates heat in response to current flow. The
temperature (and resistance) of the thermistor element varies with
current flow. Excessive current flow will cause the element's temper-
ature to rise. When the temperature reaches a specified level, the
electrical resistance will rise sharply to control the circuit current.
Reduced current flow will cause the element to cool. Resistance falls
accordingly and normal circuit current flow is allowed to resume.
SEL109W
Revision: 2004 November PG-16 2004 Murano
IPDM E/R (INTELLIGENT POWER DISTRIBUTION MODULE ENGINE ROOM)
IPDM E/R (INTELLIGENT POWER DISTRIBUTION MODULE ENGINE ROOM)
PFP:284B7 A
System Description AKS00A49
q IPDM E/R (Intelligent Power Distribution Module Engine Room) integrates the relay box and fuse block B
which were originally placed in engine room. It controls integrated relay via IPDM E/R control circuit.
q IPDM E/R-integrated control circuit performs ON-OFF operation of relay, CAN communication control, oil
pressure switch signal, hood switch signal reception, etc.
C
q It controls operation of each electrical part via ECM, BCM and CAN communication lines.
CAUTION:
None of the IPDM E/R-integrated relays can be removed.
D
SYSTEMS CONTROLLED BY IPDM E/R
1. Lamp control
Using CAN communication line, it receives signal from BCM and controls the following lamps: E
q Headlamps (Hi, Lo)
q Parking lamps
q Tail lamps F
q Front fog lamps
2. Wiper control
Using CAN communication line, it receives signals from BCM and controls the front wipers. G
3. Rear window defogger relay control
Using CAN communication line, it receives signals from BCM and controls the rear window defogger
relay. H
4. A/C compressor control
Using CAN communication line, it receives signals from ECM and controls the A/C relay.
5. Cooling fan control I
Using CAN communication line, it receives signals from ECM and controls cooling fan relay.
6. Horn control
Using CAN communication line, it receives signals from BCM and controls horn relay. J
CAN COMMUNICATION LINE CONTROL
With CAN communication, by connecting each control unit using two communication lines (CAN L line, CAN H
line), it is possible to transmit maximum amount of information with minimum wiring. Each control unit can PG
transmit and receive data, and reads necessary information only.
1. Fail-safe control
q When CAN communication with other control units is impossible, IPDM E/R performs fail-safe control.
L
After CAN communication recovers normally, it also returns to normal control.
q Operation of control parts by IPDM E/R during fail-safe mode is as follows:
M
Controlled system Fail-safe mode
q With the ignition switch ON, the headlamp (low) is ON.
Headlamp
q With the ignition switch OFF, the headlamp (low) is OFF.
Tail and parking lamps q With the ignition switch ON, the tail and parking lamps is ON.
q With the ignition switch OFF, the tail and parking lamps is OFF.
q With the ignition switch ON, the cooling fan HI operates.
Cooling fan
q With the ignition switch OFF, the cooling fan stops.
Until the ignition switch is turned off, the front wiper LO and HI remains in the same status it
Front wiper
was in just before fail-safe control was initiated.
Rear window defogger Rear window defogger relay OFF
A/C compressor A/C compressor OFF
Front fog lamps Front fog lamp relay OFF
Revision: 2004 November PG-17 2004 Murano
IPDM E/R (INTELLIGENT POWER DISTRIBUTION MODULE ENGINE ROOM)
IPDM E/R STATUS CONTROL
In order to save power, IPDM E/R switches status by itself based on each operating condition.
1. CAN communication status
q CAN communication is normally performed with other control units.
q Individual unit control by IPDM E/R is normally performed.
q When sleep request signal is received from BCM, mode is switched to sleep waiting status.
2. Sleep waiting status
q Process to stop CAN communication is activated.
q All systems controlled by IPDM E/R are stopped. When 1 seconds have elapsed after CAN communi-
cation with other control units is stopped, mode switches to sleep status.
3. Sleep status
q IPDM E/R operates in low current-consumption mode.
q CAN communication is stopped.
q When a change in CAN communication line is detected, mode switches to CAN communication status.
q When a change hood switch or ignition switch signal is detected, mode switches to CAN communica-
tion status.
CAN Communication System Description AKS00A4A
CAN (Controller Area Network) is a serial communication line for real time application. It is an on-vehicle mul-
tiplex communication line with high data communication speed and excellent error detection ability. Modern
vehicles are equipped with many electronic control units and each control unit shares information and links
with other control units during operation (not independent). In CAN communication, control units are con-
nected with 2 communication lines (CAN H line, CAN L line) allowing a high rate of information transmission
with less wiring. Each control unit transmits/receives data but selectively reads required data only.
CAN Communication Unit AKS00AOH
Refer to LAN-8, "CAN Communication Unit" .
Function of Detecting Ignition Relay Malfunction AKS00A4C
q When contact point of integrated ignition relay is stuck and cannot be turned OFF, IPDM E/R turns ON tail
and parking lamps for 10 minutes to indicate IPDM E/R malfunction.
q When a state of ignition relay having built-in does not agree with a state of Ignition switch signal input by a
CAN communication from BCM, IPDM E/R lets tail lamp relay operate.
Ignition switch signal Ignition relay status Tail lamp relay
ON ON --
OFF OFF --
ON OFF --
OFF ON ON (10 minutes)
NOTE:
When the ignition switch is turned ON, the tail lamp is OFF.
Revision: 2004 November PG-18 2004 Murano
IPDM E/R (INTELLIGENT POWER DISTRIBUTION MODULE ENGINE ROOM)
CONSULT-II AKS00A4D
A
CONSULT-II performs the following functions with combination of data receiving, command and transmission
using the CAN communication line from the IPDM E/R.
Inspection Item, Diagnosis Mode Description
B
SELF-DIAG RESULTS The IPDM E/R performs diagnosis of the CAN communication and self-diagnosis.
DATA MONITOR The input/output data of the IPDM E/R is displayed in real time.
CAN DIAG SUPPORT MNTR The result of transmit/receive diagnosis of CAN communication can be read. C
ACTIVE TEST The IPDM E/R sends a drive signal to electronic components to check their operation.
CONSULT-II INSPECTION PROCEDURE D
CAUTION:
If CONSULT-II is used with no connection of CONSULT-II CONVERTER, malfunctions might be
detected in self-diagnosis depending on control unit which carry out CAN communication. E
1. With the ignition switch OFF, connect CONSULT-II and CON-
SULT-II CONVERTER to the data link connector, then turn the
ignition switch ON. F
G
H
PBIB1300E
2. Touch "START (NISSAN BASED VHCL)". I
J
PG
SKIA3098E L
3. Touch "IPDM E/R" on "SELECT SYSTEM" screen.
q If "IPDM E/R" is not displayed, print "SELECT SYSTEM" M
screen, then refer to GI-39, "CONSULT-II Data Link Connec-
tor (DLC) Circuit" .
SKIA6338E
Revision: 2004 November PG-19 2004 Murano
IPDM E/R (INTELLIGENT POWER DISTRIBUTION MODULE ENGINE ROOM)
4. Select the desired part to be diagnosed on the "SELECT DIAG
MODE" screen.
PKIA6016E
SELF-DIAG RESULTS
Operation Procedure
1. Touch "SELF-DIAG RESULTS" on "SELECT DIAG MODE" screen.
2. Check display content in self-diagnostic results.
Display Item List
CONSULT-II TIME
Display Items Malfunction detecting condition Possible causes
display code CRNT PAST
NO DTC IS
DETECTED.FURTHER
- - - - -
TESTING MAY BE
REQUIRED.
q If CAN communication reception/transmis- Any of or several items
sion data has a malfunction, or if any of the below have errors.
control units malfunction, data reception/
CAN COMM CIRC U1000 transmission cannot be confirmed.
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