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![NISSAN TEANA 2003 Service Manual WATER PUMP
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e. Install timing chain tensioner (primary).
Remove any dirt and foreign materials completely from the
back and the mounting surfaces of timing chain NISSAN TEANA 2003 Service Manual WATER PUMP
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e. Install timing chain tensioner (primary).
Remove any dirt and foreign materials completely from the
back and the mounting surfaces of timing chain](/manual-img/5/57392/w960_57392-1000.png)
WATER PUMP
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e. Install timing chain tensioner (primary).
Remove any dirt and foreign materials completely from the
back and the mounting surfaces of timing chain tensioner (pri-
mary).
f. Pull out stopper pin after installing, and then release plunger.
g. Make sure again that timing chain and water pump sprocket are
engaged.
4. Install chain tensioner cover and water pump cover as follows:
a. Before installing, remove all traces of old liquid gasket from mat-
ing surface of water pump cover and chain tensioner cover
using scraper. Also remove traces of old liquid gasket from the
mating surface of front timing chain case.
b. Apply a continuous bead of liquid gasket with tube presser [SST:
WS39930000] to mating surface of chain tensioner cover and
water pump cover.
Use Genuine Liquid Gasket or equivalent.
CAUTION:
Attaching should be done within 5 minutes after coating.
c. Tighten mounting bolts.
5. Install water drain plug (front) on water pump side of cylinder block.
Apply liquid gasket to the thread of water drain plug (front).
Use Genuine Liquid Gasket or equivalent.
6. Install in the reverse order of removal in this step.
NOTE:
If hydraulic pressure inside timing chain tensioner drops after removal/installation, slack in guide may gen-
erate a pounding noise during and just after engine start. However, this does not indicate an unusualness.
Noise will stop after hydraulic pressure rises.
INSPECTION AFTER INSTALLATION
Check for leaks of engine coolant using radiator cap tester adapter [SST: EG17650301] and radiator cap
tester (commercial service tool). Refer to CO-34, "
LEAK CHECK" .
Start and warm up engine. Visually check if there is no leaks of engine coolant.
PBIC3569E
SLC446B
PBIC2650E
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WATER INLET AND THERMOSTAT ASSEMBLY
WATER INLET AND THERMOSTAT ASSEMBLYPFP:21200
Removal and InstallationBBS004X7
REMOVAL
1. Drain engine coolant from radiator drain plug at the bottom of radiator, and from water drain plug at the
front of cylinder block. Refer to CO-34, "
Changing Engine Coolant" and CO-46, "WATER PUMP" .
CAUTION:
Perform this step when engine is cold.
Do not spill engine coolant on drive belts.
2. Remove reservoir tank of radiator, and move it aside.
3. Disconnect radiator hose (lower) from water inlet and thermostat assembly.
4. Disconnect oil cooler water hose from water inlet and thermostat assembly. (VQ35DE)
5. Remove water inlet and thermostat assembly.
CAUTION:
Do not disassemble water inlet and thermostat assembly.
Replace them as a unit, if necessary.
1. Gasket 2. Water inlet and thermostat assembly 3. Radiator hose (lower)
4. Water hose
PBIC2517E
SLC962AB
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INSPECTION AFTER REMOVAL
1. Check valve seating condition at ordinary room temperature. It should seat tightly.
2. Check valv NISSAN TEANA 2003 Service Manual WATER INLET AND THERMOSTAT ASSEMBLY
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INSPECTION AFTER REMOVAL
1. Check valve seating condition at ordinary room temperature. It should seat tightly.
2. Check valv](/manual-img/5/57392/w960_57392-1002.png)
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INSPECTION AFTER REMOVAL
1. Check valve seating condition at ordinary room temperature. It should seat tightly.
2. Check valve operation.
If the malfunctioning condition, when valve seating at ordinary
room temperature, or measured values are out of the standard,
replace water inlet and thermostat assembly.
INSTALLATION
Note the following, and install in the reverse order of removal.
Be careful not to spill engine coolant over engine room. Use rag to absorb engine coolant.
INSPECTION AFTER INSTALLATION
Check for leaks of engine coolant using radiator cap tester adapter [SST: EG17650301] and radiator cap
tester (commercial service tool). Refer to CO-34, "
LEAK CHECK" .
Start and warm up engine. Visually check if there is no leaks of engine coolant.
Thermostat Standard
Valve opening temperature 80.5 - 83.5°C (177 - 182°F)
Maximum valve lift 8.6 mm / 95°C (0.339 in / 203°F)
Valve closing temperature 77°C (171°F)
SLC949A
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WATER OUTLET AND WATER PIPING
WATER OUTLET AND WATER PIPINGPFP:11060
Removal and InstallationBBS004X8
Refer to GI-10, "Components" for symbol marks in the figure.
REMOVAL
1. Remove engi NISSAN TEANA 2003 Service Manual CO-52
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WATER OUTLET AND WATER PIPING
WATER OUTLET AND WATER PIPINGPFP:11060
Removal and InstallationBBS004X8
Refer to GI-10, "Components" for symbol marks in the figure.
REMOVAL
1. Remove engi](/manual-img/5/57392/w960_57392-1003.png)
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WATER OUTLET AND WATER PIPING
WATER OUTLET AND WATER PIPINGPFP:11060
Removal and InstallationBBS004X8
Refer to GI-10, "Components" for symbol marks in the figure.
REMOVAL
1. Remove engine cover. Refer to EM-133, "INTAKE MANIFOLD COLLECTOR" .
2. Drain engine coolant from radiator drain plug at the bottom of radiator, and from water drain plug at the
front of cylinder block. Refer to CO-34, "
Changing Engine Coolant" and CO-46, "WATER PUMP" .
CAUTION:
Perform this step when engine is cold.
Do not spill engine coolant on drive belts.
3. Remove air duct (inlet), air cleaner case (upper) with mass air flow sensor and air duct assembly. Refer to
EM-131, "
AIR CLEANER AND AIR DUCT" .
4. Remove radiator hose (upper).
5. Remove water hoses and heater hoses.
6. Disconnect harness connectors, and move harness to aside.
1. Radiator hose (upper) 2. Washer 3. Engine coolant temperature sensor
4. Heater hose 5. Water outlet 6. Water hose
7. Gasket 8. Water hose 9. Gasket
10. Water connector 11. O-ring 12. Heater pipe
13. Heater hose 14. Water bypass pipe 15. Water hose
A. To heater core B. To intake manifold collector (upper) C. To intake manifold collector (upper)
D.To heater core (VQ23DE)
To CVT fluid cooler valve (VQ35DE)E. To radiator
PBIC4583J
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7. Remove engine coolant temperature sensor as necessary.
CAUTION:
Be careful not to damage engine coolant temperature sensor.
8. Remove water outlet, heater pipe, water bypass pipe and water connector.
INSTALLATION
Note the following, and install in the reverse order of removal.
Securely insert each hose, and install clamp at a position where it does not interfere with the pipe bulge.
When inserting water bypass pipe and heater pipe into water connector, apply neutral detergent to O-ring.
INSPECTION AFTER INSTALLATION
Check for leaks of engine coolant using radiator cap tester adapter [SST: EG17650301] and radiator cap
tester (commercial service tool). Refer to CO-34, "
LEAK CHECK" .
Start and warm up engine. Visually check if there is no leaks of engine coolant.
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SERVICE DATA AND SPECIFICATIONS (SDS)
SERVICE DATA AND SPECIFICATIONS (SDS)PFP:00100
Standard and LimitBBS004X9
ENGINE COOLANT CAPACITY (APPROXIMATE)
Unit: (Imp qt)
RADIATOR
Unit: kPa (bar, kg/cm2 , psi)
THERMOSTAT
Engine coolant capacity (With reservoir tank at “MAX” level)8.2 (7-1/4) [VQ23DE]
8.8 (7-3/4) [VQ35DE]
Reservoir tank engine coolant capacity (At “MAX” level) 0.8 (3/4)
Cap relief pressureStandard 78 - 98 (0.78 - 0.98, 0.8 - 1.0, 11 - 14)
Limit 59 (0.59, 0.6, 9)
Leakage test pressure 157 (1.57, 1.6, 23)
Valve opening temperature 80.5 - 83.5°C (177 - 182°F)
Maximum valve lift 8.6 mm / 95°C (0.339 in /203°F)
Valve closing temperature 77°C (171°F)
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CVT-1
CVT
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CONTENTS
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SECTION CVT
A
B
CVT
CVT
INDEX FOR DTC ........................................................ 6
Alphabetical Index .................................................... 6
DTC No. Index ......................................................... 7
PRECAUTIONS .......................................................... 8
Precautions for Supplemental Restraint System
(SRS) “AIR BAG” and “SEAT BELT PRE-TEN-
SIONER” .................................................................. 8
Precautions Necessary for Steering Wheel Rotation
After Battery Disconnect .......................................... 8
OPERATION PROCEDURE ................................. 8
Precautions for TCM and CVT Assembly Replace-
ment ......................................................................... 9
EEPROM ERASING PATTERNS .......................... 9
METHOD FOR ERASING THE EEPROM IN THE
TCM ...................................................................... 9
METHOD FOR WRITING DATA FROM THE
ROM ASSEMBLY IN THE TRANSAXLE .............. 9
CHECK METHOD ................................................. 9
Removal and Installation Procedure for CVT Unit
Connector ............................................................... 10
REMOVAL ........................................................... 10
INSTALLATION ................................................... 10
Precautions ............................................................. 11
PREPARATION ......................................................... 12
Special Service Tools ............................................. 12
Commercial Service Tools ...................................... 12
CVT FLUID ............................................................... 13
Checking CVT Fluid ............................................... 13
Changing CVT Fluid ............................................... 14
CVT SYSTEM ........................................................... 15
Cross-Sectional View - RE0F09A .......................... 15
Control System ....................................................... 16
Hydraulic Control System ....................................... 17
TCM Function ......................................................... 18
CONTROL SYSTEM OUTLINE .......................... 18
CONTROL SYSTEM DIAGRAM ......................... 18
CAN Communication .............................................. 19
SYSTEM DESCRIPTION .................................... 19
Input/Output Signal of TCM .................................... 19Line Pressure and Secondary Pressure Control .... 20
NORMAL CONTROL .......................................... 20
FEEDBACK CONTROL ...................................... 20
Shift Control ............................................................ 20
“D” POSITION ..................................................... 21
“M” POSITION ..................................................... 21
DOWNHILL ENGINE BRAKE CONTROL (AUTO
ENGINE BRAKE CONTROL) .............................. 21
ACCELERATION CONTROL .............................. 21
Lock-up and Select Control .................................... 21
TORQUE CONVERTER CLUTCH AND SELECT
CONTROL VALVE CONTROL ............................ 22
Control Valve .......................................................... 23
FUNCTION OF CONTROL VALVE ..................... 23
TROUBLE DIAGNOSIS ............................................ 24
DTC Inspection Priority Chart ................................. 24
Fail-safe .................................................................. 24
FAIL-SAFE FUNCTION ....................................... 24
How to Perform Trouble Diagnosis for Quick and
Accurate Repair ...................................................... 25
INTRODUCTION ................................................. 25
WORK FLOW ...................................................... 26
DIAGNOSTIC WORKSHEET .............................. 27
CVT Electrical Parts Location ................................. 30
Circuit Diagram ....................................................... 31
Inspections Before Trouble Diagnosis .................... 32
CVT FLUID CHECK ............................................ 32
STALL TEST ........................................................ 32
LINE PRESSURE TEST ..................................... 33
Road Test ............................................................... 35
DESCRIPTION .................................................... 35
CONSULT-II OPERATION PROCEDURE ........... 35
Check Before Engine Is Started ............................. 37
Check at Idle ........................................................... 37
Cruise Test .............................................................. 38
Vehicle Speed at Which Gear Shifting Occurs ....... 40
TCM Input/Output Signal Reference Values ........... 40
TCM TERMINAL CONNECTOR LAYOUT .......... 40
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CVT-2 TCM INSPECTION TABLE .................................. 40
CONSULT-II Function (TRANSMISSION) .............. 43
FUNCTION .......................................................... 43
CONSULT-II REFERENCE VALUE ..................... 43
CONSULT-II SETTING PROCEDURE ................ 45
WORK SUPPORT MODE ................................... 45
SELF-DIAGNOSTIC RESULT MODE ................. 47
DATA MONITOR MODE ...................................... 50
CAN DIAGNOSTIC SUPPORT MONITOR
MODE .................................................................. 52
DTC U1000 CAN COMMUNICATION LINE .............. 53
Description .............................................................. 53
On Board Diagnosis Logic ...................................... 53
Possible Cause ....................................................... 53
DTC Confirmation Procedure ................................. 53
WITH CONSULT-II .............................................. 53
Wiring Diagram — CVT — CAN ............................. 54
Diagnostic Procedure ............................................. 55
DTC P0615 START SIGNAL CIRCUIT ..................... 56
Description .............................................................. 56
CONSULT-II Reference Value ................................ 56
On Board Diagnosis Logic ...................................... 56
Possible Cause ....................................................... 56
DTC Confirmation Procedure ................................. 56
WITH CONSULT-II .............................................. 56
Wiring Diagram — CVT — STSIG .......................... 57
Diagnostic Procedure ............................................. 58
DTC P0703 STOP LAMP SWITCH CIRCUIT ........... 60
Description .............................................................. 60
CONSULT-II Reference Value ................................ 60
On Board Diagnosis Logic ...................................... 60
Possible Cause ....................................................... 60
DTC Confirmation Procedure ................................. 60
WITH CONSULT-II .............................................. 60
Diagnostic Procedure ............................................. 61
DTC P0705 PARK/NEUTRAL POSITION SWITCH ... 62
Description .............................................................. 62
CONSULT-II Reference Value ................................ 62
On Board Diagnosis Logic ...................................... 62
Possible Cause ....................................................... 62
DTC Confirmation Procedure ................................. 62
WITH CONSULT-II .............................................. 63
Wiring Diagram — CVT — PNP/SW ...................... 64
Diagnostic Procedure ............................................. 66
Component Inspection ............................................ 68
PNP SWITCH ...................................................... 68
DTC P0710 CVT FLUID TEMPERATURE SENSOR
CIRCUIT .................................................................... 69
Description .............................................................. 69
CONSULT-II Reference Value ................................ 69
On Board Diagnosis Logic ...................................... 69
Possible Cause ....................................................... 69
DTC Confirmation Procedure ................................. 69
WITH CONSULT-II .............................................. 69
Wiring Diagram — CVT — FTS .............................. 70
Diagnostic Procedure ............................................. 71
Component Inspection ............................................ 73
CVT FLUID TEMPERATURE SENSOR .............. 73
DTC P0715 INPUT SPEED SENSOR CIRCUIT (PRI SPEED SENSOR) ..................................................... 74
Description .............................................................. 74
CONSULT-II Reference Value ................................. 74
On Board Diagnosis Logic ...................................... 74
Possible Cause ....................................................... 74
DTC Confirmation Procedure .................................. 74
WITH CONSULT-II ............................................... 74
Wiring Diagram — CVT — PRSCVT ...................... 75
Diagnostic Procedure .............................................. 76
DTC P0720 VEHICLE SPEED SENSOR CVT (SEC-
ONDARY SPEED SENSOR) ..................................... 79
Description .............................................................. 79
CONSULT-II Reference Value ................................. 79
On Board Diagnosis Logic ...................................... 79
Possible Cause ....................................................... 79
DTC Confirmation Procedure .................................. 79
WITH CONSULT-II ............................................... 79
Wiring Diagram — CVT — SESCVT ...................... 80
Diagnostic Procedure .............................................. 81
DTC P0725 ENGINE SPEED SIGNAL ...................... 85
Description .............................................................. 85
CONSULT-II Reference Value ................................. 85
On Board Diagnosis Logic ...................................... 85
Possible Cause ....................................................... 85
DTC Confirmation Procedure .................................. 85
WITH CONSULT-II ............................................... 85
Diagnostic Procedure .............................................. 85
DTC P0730 BELT DAMAGE ..................................... 87
Description .............................................................. 87
CONSULT-II Reference Value ................................. 87
On Board Diagnosis Logic ...................................... 87
Possible Cause ....................................................... 87
DTC Confirmation Procedure .................................. 87
WITH CONSULT-II ............................................... 87
Diagnostic Procedure .............................................. 88
DTC P0740 TORQUE CONVERTER CLUTCH
SOLENOID VALVE .................................................... 89
Description .............................................................. 89
CONSULT-II Reference Value ................................. 89
On Board Diagnosis Logic ...................................... 89
Possible Cause ....................................................... 89
DTC Confirmation Procedure .................................. 89
WITH CONSULT-II ............................................... 89
Wiring Diagram — CVT — TCV .............................. 90
Diagnostic Procedure .............................................. 91
Component Inspection ............................................ 93
TORQUE CONVERTER CLUTCH SOLENOID
VALVE .................................................................. 93
DTC P0744 A/T TCC S/V FUNCTION (LOCK-UP) ... 94
Description .............................................................. 94
CONSULT-II Reference Value ................................. 94
On Board Diagnosis Logic ...................................... 94
Possible Cause ....................................................... 94
DTC Confirmation Procedure .................................. 94
WITH CONSULT-II ............................................... 94
Diagnostic Procedure .............................................. 95
DTC P0745 LINE PRESSURE SOLENOID VALVE ... 97
Description .............................................................. 97
CONSULT-II Reference Value ................................. 97