Ioni NISSAN TEANA 2008 Service Manual
[x] Cancel search | Manufacturer: NISSAN, Model Year: 2008, Model line: TEANA, Model: NISSAN TEANA 2008Pages: 5121, PDF Size: 69.03 MB
Page 4502 of 5121
![NISSAN TEANA 2008 Service Manual LOCK-UP AND SELECT CONTROL SYSTEM
TM-29
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CVT fluid temperature sensor
Secondary pressure sensor
ROM assembly
Component Descrip NISSAN TEANA 2008 Service Manual LOCK-UP AND SELECT CONTROL SYSTEM
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CVT fluid temperature sensor
Secondary pressure sensor
ROM assembly
Component Descrip](/img/5/57391/w960_57391-4501.png)
LOCK-UP AND SELECT CONTROL SYSTEM
TM-29
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CVT fluid temperature sensor
Secondary pressure sensor
ROM assembly
Component DescriptionINFOID:0000000003848935
TRANSAXLE ASSEMBLY
EXCEPT TRANSAXLE ASSEMBLY
Name Function
Torque converter regulator valve
TM-22
TCC control valve
Select control valve
Select switch valve
Manual valve
TCC solenoid valveTM-62
Lock-up select solenoid valveTM-94
Primary speed sensorTM-52
Secondary speed sensorTM-55
CVT fluid temperature sensorTM-50
PNP switchTM-47
Forward clutch
TM-19
Reverse brake
Torque converter
Name Function
TCMTM-22
Accelerator pedal position sensorTM-88
Page 4503 of 5121
![NISSAN TEANA 2008 Service Manual TM-30
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SHIFT CONTROL SYSTEM
SHIFT CONTROL SYSTEM
System DiagramINFOID:0000000003848936
NOTE:
The gear ratio is set for each position separately.
System DescriptionI NISSAN TEANA 2008 Service Manual TM-30
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SHIFT CONTROL SYSTEM
SHIFT CONTROL SYSTEM
System DiagramINFOID:0000000003848936
NOTE:
The gear ratio is set for each position separately.
System DescriptionI](/img/5/57391/w960_57391-4502.png)
TM-30
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SHIFT CONTROL SYSTEM
SHIFT CONTROL SYSTEM
System DiagramINFOID:0000000003848936
NOTE:
The gear ratio is set for each position separately.
System DescriptionINFOID:0000000003848937
In order to select the gear ratio that can obtain the driving force in accordance with driver's intention and the
vehicle condition, TCM monitors the driving conditions, such as the vehicle speed and the throttle position,
selects the optimum gear ratio, and determines the gear change steps to the gear ratio. Then TCM sends the
command to the step motor, controls the inflow/outflow of line pressure from the primary pulley to determine
the position of the moving-pulley and controls the gear ratio.
“D” POSITION
Shifting over all the ranges of gear ratios from the lowest to the high-
est.
SPORT MODE
Use this position for improved engine braking.
“L” POSITION
JPDIA0745GB
SCIA1953E
JPDIA0685GB
Page 4504 of 5121
![NISSAN TEANA 2008 Service Manual SHIFT CONTROL SYSTEM
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By limiting the gear range to the lowest position, the strong driving
force and the engine brake can be NISSAN TEANA 2008 Service Manual SHIFT CONTROL SYSTEM
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By limiting the gear range to the lowest position, the strong driving
force and the engine brake can be](/img/5/57391/w960_57391-4503.png)
SHIFT CONTROL SYSTEM
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By limiting the gear range to the lowest position, the strong driving
force and the engine brake can be secured.
DOWNHILL ENGINE BRAKE CONTROL (AUTO ENGINE BRAKE CONTROL)
When a downhill slope is detected with the accelerator pedal released, the engine brake will be strengthened
up by downshifting so as not to accelerate the vehicle more than necessary.
ACCELERATION CONTROL
According to vehicle speed and a change of accelerator pedal angle, driver's request for acceleration and driv-
ing scene are judged. This function assists improvement in the acceleration feeling by making the engine
speed proportionate to the vehicle speed. And a shift map that can gain a larger driving force is available for
compatibility of mileage with driveability.
Component Parts LocationINFOID:0000000003848938
JPDIA0686GB
JPDIA0747ZZ
Page 4505 of 5121
![NISSAN TEANA 2008 Service Manual TM-32
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SHIFT CONTROL SYSTEM
*1: Primary pressure sensor is included in CVT assembly.
*2: Control valve assembly is included in CVT assembly.
NOTE:
The following com NISSAN TEANA 2008 Service Manual TM-32
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SHIFT CONTROL SYSTEM
*1: Primary pressure sensor is included in CVT assembly.
*2: Control valve assembly is included in CVT assembly.
NOTE:
The following com](/img/5/57391/w960_57391-4504.png)
TM-32
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SHIFT CONTROL SYSTEM
*1: Primary pressure sensor is included in CVT assembly.
*2: Control valve assembly is included in CVT assembly.
NOTE:
The following components are included in control valve assembly (7).
PNP switch
Primary speed sensor
Step motor
Secondary pressure solenoid valve
Line pressure solenoid valve
Torque converter clutch solenoid valve
Shift control valve
Secondary valve
Manual valve
Lock-up select solenoid valve
CVT fluid temperature sensor
Secondary pressure sensor
ROM assembly
Component DescriptionINFOID:0000000003848939
TRANSAXLE ASSEMBLY
EXCEPT TRANSAXLE ASSEMBLY
1. Sport mode switch 2. Shift position indicator 3. SPORT indicator lamp
4.
TCM5. Secondary speed sensor 6.
Primary pressure sensor
*1
7.
Control valve assembly*28. CVT unit connector 9. Accelerator pedal position sensor
A. Control device B. Combination meter C. Engine room LH
D. CVT assembly E. Accelerator pedal, upper
Item Function
PNP switchTM-47
Primary speed sensorTM-52
Secondary speed sensorTM-55
Ste p m ot orTM-97
Shift control valveTM-22
Primary pulleyTM-19
Secondary pulleyTM-19
Item Function
TCMTM-22
Page 4506 of 5121
![NISSAN TEANA 2008 Service Manual SHIFT LOCK SYSTEM
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SHIFT LOCK SYSTEM
System DescriptionINFOID:0000000003848940
The shift lever cannot be shifted from the “P NISSAN TEANA 2008 Service Manual SHIFT LOCK SYSTEM
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SHIFT LOCK SYSTEM
System DescriptionINFOID:0000000003848940
The shift lever cannot be shifted from the “P](/img/5/57391/w960_57391-4505.png)
SHIFT LOCK SYSTEM
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SHIFT LOCK SYSTEM
System DescriptionINFOID:0000000003848940
The shift lever cannot be shifted from the “P” position unless the
brake pedal is depressed while the ignition switch is set to ON. The
shift lock is unlocked by turning the shift lock solenoid ON when the
ignition switch is set to ON, the park position switch is turned ON
(selector lever is in “P” position), and the stop lamp switch is turned
ON (brake pedal is depressed) as shown in the operation chart in the
figure. Therefore, the shift lock solenoid receives no ON signal and
the shift lock remains locked if all of the above conditions are not ful-
filled. (However, selector operation is allowed if the shift lock release
button is pressed.)
SHIFT LOCK OPERATION at “P” POSITION
When Brake Pedal Is Not Depressed (No Selector Operation Allowed)
The shift lock solenoid (A) is turned OFF (not energized) and the
solenoid rod (B) is extended with the spring when the brake pedal is
not depressed (no selector operation allowed) with the ignition
switch ON.
The connecting lock lever (C) is located at the position shown in the
figure when the solenoid rod is extended. It prevents the movement
of the detent rod (D). The selector lever cannot be shifted from the
“P” position for this reason.
When Brake Pedal Is Depressed (Shift Operation Allowed)
The shift lock solenoid (A) is turned ON (energized) when the brake
pedal is depressed with the ignition switch ON. The solenoid rod (B)
is compressed by the electromagnetic force. The connecting lock
lever (C) rotates when the solenoid is activated. Therefore, the
detent rod (D) can be moved. The selector lever can be shifted to
other positions for this reason.
“P” POSITION HOLD MECHANISM (IGNITION SWITCH LOCK)
JPDIA0624GB
JPDIA0612ZZ
JPDIA0613ZZ
Page 4507 of 5121
![NISSAN TEANA 2008 Service Manual TM-34
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SHIFT LOCK SYSTEM
The shift lock solenoid (A) is not energized when the ignition switch
is in any position other than ON. In this condition, the shift mecha- NISSAN TEANA 2008 Service Manual TM-34
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SHIFT LOCK SYSTEM
The shift lock solenoid (A) is not energized when the ignition switch
is in any position other than ON. In this condition, the shift mecha-](/img/5/57391/w960_57391-4506.png)
TM-34
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SHIFT LOCK SYSTEM
The shift lock solenoid (A) is not energized when the ignition switch
is in any position other than ON. In this condition, the shift mecha-
nism is locked and “P” position is held. The operation cannot be per-
formed from “P” position if the brake pedal is depressed with the
ignition switch ON when the operation system of shift lock solenoid is
malfunctioning. However, the lock lever (B) is forcibly rotated and the
shift lock is released when the shift lock release button (C) is
pressed from above. Then the selector operation from “P” position
can be performed.
CAUTION:
Use the shift lock release button only when the selector lever cannot be operated even if the brake
pedal is depressed with the ignition switch ON.
Component Parts LocationINFOID:0000000003848941
Component DescriptionINFOID:0000000003848942
SHIFT LOCK
D : Detent rodJPDIA0614ZZ
1. Stop lamp switch
A. Shift lock release button B. Shift lock solenoid C. Park position switch
JPDIA0753ZZ
Component Function
Shift lock solenoid
TM-103
Lock lever
Detent rod
Park position switch
Shift lock release button
Page 4508 of 5121
![NISSAN TEANA 2008 Service Manual ON BOARD DIAGNOSTIC (OBD) SYSTEM
TM-35
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ON BOARD DIAGNOSTIC (OBD) SYSTEM
Diagnosis DescriptionINFOID:0000000003848943
DESCRIPTION
Th NISSAN TEANA 2008 Service Manual ON BOARD DIAGNOSTIC (OBD) SYSTEM
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ON BOARD DIAGNOSTIC (OBD) SYSTEM
Diagnosis DescriptionINFOID:0000000003848943
DESCRIPTION
Th](/img/5/57391/w960_57391-4507.png)
ON BOARD DIAGNOSTIC (OBD) SYSTEM
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ON BOARD DIAGNOSTIC (OBD) SYSTEM
Diagnosis DescriptionINFOID:0000000003848943
DESCRIPTION
The CVT system has two self-diagnostic systems.
The first is the emission-related on board diagnostic system (OBD) performed by the TCM in combination with
the ECM. A malfunction is indicated by the MI (Malfunction Indicator) and is stored as a DTC in the ECM mem-
ory and in the TCM memory.
The second is the TCM original self-diagnosis performed by the TCM. A malfunction history is stored in the
TCM memory. The detected items are overlapped with OBD self-diagnostic items. For details, refer to TM-121,
"DTC Index".
OBD FUNCTION
The ECM provides emission-related on board diagnostic (OBD) functions for the CVT system. One function is
to receive a signal from the TCM used with OBD-related parts of the CVT system. The signal is sent to the
ECM when a malfunction occurs in the corresponding OBD-related part. The other function is to indicate a
diagnostic result by means of the MI (Malfunction Indicator) on the instrument panel. Sensors, switches and
solenoid valves are used as sensing elements.
The MI automatically illuminates in “One or Two Trip Detection Logic” when a malfunction is sensed in relation
to CVT system parts.
ONE OR TWO TRIP DETECTION LOGIC OF OBD
One Trip Detection Logic
If a malfunction is sensed during the first test drive, the MI illuminates and the ECM memory stores the mal-
function as a DTC. The TCM is not provided with such a memory function.
Two Trip Detection Logic
When a malfunction is sensed during the first test drive, it is stored in the ECM memory as a 1st trip DTC
(diagnostic trouble code) or 1st trip freeze frame data. At this point, the MI does not illuminate. — 1st trip
If the same malfunction as that experienced during the first test drive is sensed during the second test drive,
the MI will illuminate. — 2nd trip
The “trip” in the “One or Two Trip Detection Logic” means a driving mode in which self-diagnosis is performed
during vehicle operation.
OBD DIAGNOSTIC TROUBLE CODE (DTC)
How to Read DTC and 1st Trip DTC
DTC and 1st trip DTC can be read by the following methods.
( with CONSULT-III or GST) CONSULT-III or GST (Generic Scan Tool) Examples: P0705, P0720, etc.
These DTC are prescribed by ISO 15031-6.
(CONSULT-III also displays the malfunctioning component or system.)
1st trip DTC No. is the same as DTC No.
Output of the diagnostic trouble code indicates that the indicated circuit has a malfunction. How-
ever, in case of the Mode II and GST, they do not indicate whether the malfunction is still occurring or
it occurred in the past and has returned to normal.
CONSULT-III can identify them as shown below, therefore, CONSULT-III (if available) is recom-
mended.
- DTC or 1st trip DTC of a malfunction is displayed in “Self-Diagnostic Results” mode for “ENGINE” with CON-
SULT-III. Time data indicates how many times the vehicle was driven after the last detection of a DTC.
- If the DTC is being detected currently, the time data will be “0”.
- If a 1st trip DTC is stored in the ECM, the time data will be “1t”.
Freeze Frame Data and 1st Trip Freeze Frame Data The ECM has a memory function, which stores the driving conditions such as fuel system status, calculated
load value, engine coolant temperature, short-term fuel trim, long-term fuel trim, engine speed and vehicle
speed at the moment the ECM detects a malfunction.
Data that are stored in the ECM memory, along with the 1st trip DTC, are called 1st trip freeze frame data,
and the data, stored together with the DTC data, are called freeze frame data and displayed on CONSULT-
III or GST. The 1st trip freeze frame data can only be displayed on the CONSULT-III screen, not on the GST.
For details, refer to EC-113, "
CONSULT-III Function".
Page 4514 of 5121
![NISSAN TEANA 2008 Service Manual U1000 CAN COMM CIRCUIT
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COMPONENT DIAGNOSIS
U1000 CAN COMM CIRCUIT
DescriptionINFOID:0000000003848946
CAN (Controller Area Ne NISSAN TEANA 2008 Service Manual U1000 CAN COMM CIRCUIT
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COMPONENT DIAGNOSIS
U1000 CAN COMM CIRCUIT
DescriptionINFOID:0000000003848946
CAN (Controller Area Ne](/img/5/57391/w960_57391-4513.png)
U1000 CAN COMM CIRCUIT
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COMPONENT DIAGNOSIS
U1000 CAN COMM CIRCUIT
DescriptionINFOID:0000000003848946
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 malfunction detection ability.
Many electronic control units are equipped onto a vehicle, 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 and CAN-L) allowing a high rate of information transmission with
less wiring. Each control unit transmits/receives data but selectively reads required data only.
DTC LogicINFOID:0000000003848947
DTC DETECTION LOGIC
DTC CONFIRMATION PROCEDURE
NOTE:
Immediately after performing any “DTC CONFIRMATION PROCEDURE”, always turn ignition switch OFF.
Then wait at least 10 seconds before performing the next test.
1.CHECK DTC DETECTION
With CONSULT-III
1. Turn ignition switch ON.
2. Start engine and wait for at least 6 seconds.
3. Perform “Self-Diagnostic Results” mode for “TRANSMISSION”.
With GST
Follow the procedure “With CONSULT-III”.
Is
“U1000 CAN COMM CIRCUIT” detected?
YES >> Go to TM-41, "Diagnosis Procedure".
NO >> Check intermittent incident. Refer to GI-35, "
Intermittent Incident".
Diagnosis ProcedureINFOID:0000000003848948
1.CHECK CAN COMMUNICATION CIRCUIT
With CONSULT-III
1. Turn ignition switch ON and start engine.
2. Perform “Self-Diagnostic Results” mode for “TRANSMISSION”.
Is
“U1000 CAN COMM CIRCUIT” indicated?
YES >> Go to LAN section. Refer to LAN-22, "CAN System Specification Chart".
NO >> Check intermittent incident. Refer to GI-35, "
Intermittent Incident".
DTCItem
(CONSULT-III screen term)Malfunction is detected when... Possible cause
U1000 CAN COMM CIRCUITWhen TCM is not transmitting or receiving
CAN communication signal for 2 seconds or
more.Harness or connectors
(CAN communication line is open or short-
ed.)
Page 4515 of 5121
![NISSAN TEANA 2008 Service Manual TM-42
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P0615 START SIGNAL
P0615 START SIGNAL
DescriptionINFOID:0000000003848949
TCM controls starter relay in IPDM E/R.
TCM switches starter relay ON at “P NISSAN TEANA 2008 Service Manual TM-42
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P0615 START SIGNAL
P0615 START SIGNAL
DescriptionINFOID:0000000003848949
TCM controls starter relay in IPDM E/R.
TCM switches starter relay ON at “P](/img/5/57391/w960_57391-4514.png)
TM-42
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P0615 START SIGNAL
P0615 START SIGNAL
DescriptionINFOID:0000000003848949
TCM controls starter relay in IPDM E/R.
TCM switches starter relay ON at “P” or “N” position and allows to crank engine.
Then it prohibits cranking other than at “P” or “N” position.
DTC LogicINFOID:0000000003848950
DTC DETECTION LOGIC
DTC CONFIRMATION PROCEDURE
CAUTION:
Always drive vehicle at a safe speed.
NOTE:
Immediately after performing any “DTC CONFIRMATION PROCEDURE”, always turn ignition switch OFF.
Then wait at least 10 seconds before performing the next test.
1.CHECK DTC DETECTION
With CONSULT-III
1. Turn ignition switch ON.
2. Perform “Self-Diagnostic Results” mode for “TRANSMISSION”.
Is
“P0615 STARTER RELAY/CIRC” detected?
YES >> Go to TM-42, "Diagnosis Procedure".
NO >> Check intermittent incident. Refer to GI-35, "
Intermittent Incident".
Diagnosis ProcedureINFOID:0000000003848951
1.CHECK STARTER RELAY SIGNAL
1. Turn ignition switch ON.
2. Disconnect IPDM E/R harness connector.
3. Check voltage between IPDM E/R vehicle side harness connector terminal and ground.
Is the inspection result normal?
YES >> Check starter relay and starter control relay. Refer to STR-10, "Wiring Diagram - STARTING SYS-
TEM -".
NO >> GO TO 2.
2.CHECK HARNESS BETWEEN TCM AND IPDM E/R (PART 1)
1. Turn ignition switch OFF.
2. Disconnect TCM connector.
3. Check continuity between TCM vehicle side harness connector terminal and IPDM E/R vehicle side har-
ness connector terminal.
DTCItem
(CONSULT-III screen term)Malfunction is detected when... Possible cause
P0615 STARTER RELAY/CIRCIf this signal is ON other than in “P” or “N” po-
sition, this is judged to be a malfunction.
(And if it is OFF in “P” or “N” position, this too
is judged to be a malfunction.) Harness or connectors
(Starter relay and TCM circuit is open or
shorted.)
Starter relay circuit
IPDM E/R vehicle side harness connector
GroundCondition Voltage (Approx.)
Connector Terminal
F12 72Selector lever in “P” and “N” positions Battery voltage
Selector lever in other positions 0 V
Page 4516 of 5121
![NISSAN TEANA 2008 Service Manual P0615 START SIGNAL
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Is the inspection result normal?
YES >> GO TO 3.
NO >> Repair or replace damaged parts.
3.CHECK HARNESS B NISSAN TEANA 2008 Service Manual P0615 START SIGNAL
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Is the inspection result normal?
YES >> GO TO 3.
NO >> Repair or replace damaged parts.
3.CHECK HARNESS B](/img/5/57391/w960_57391-4515.png)
P0615 START SIGNAL
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Is the inspection result normal?
YES >> GO TO 3.
NO >> Repair or replace damaged parts.
3.CHECK HARNESS BETWEEN TCM AND IPDM E/R (PART 2)
Check continuity between TCM vehicle side harness connector terminal and ground.
Is the inspection result normal?
YES >> GO TO 4.
NO >> Repair or replace damaged parts.
4.DETECT MALFUNCTIONING ITEMS
Check TCM connector pin terminals for damage or loose connection with harness connector.
Is the inspection result normal?
YES >> Replace TCM. Refer to TM-153, "Exploded View".
NO >> Repair or replace damaged parts.
TCM vehicle side harness connector IPDM E/R vehicle side harness connector
Continuity
Connector Terminal Connector Terminal
F23 20 F12 72 Existed
TCM vehicle side harness connector
GroundContinuity
Connector Terminal
F23 20 Not existed