SYSTEM DESCRIPTION
ECM controls the engine by various functions.
| Function | Reference |
|---|---|
| Multiport fuel injection system | " MULTIPORT FUEL INJECTION SYSTEM: SYSTEM DESCRIPTION (WITH AUTOMATIC AIR CONDITIONER) " |
| Electric ignition system | " ELECTRIC IGNITION SYSTEM: SYSTEM DESCRIPTION " |
| Intake valve timing control | " INTAKE VALVE TIMING CONTROL: SYSTEM DESCRIPTION " |
| Exhaust valve timing control | " EXHAUST VALVE TIMING CONTROL: SYSTEM DESCRIPTION " |
| Intake manifold runner control | " INTAKE MANIFOLD RUNNER CONTROL: SYSTEM DESCRIPTION " |
| Engine protection control | " ENGINE PROTECTION CONTROL AT LOW ENGINE OIL PRESSURE: SYSTEM DESCRIPTION " |
| Fuel filler cap warning system | " FUEL FILLER CAP WARNING SYSTEM: SYSTEM DESCRIPTION " |
| Air conditioning cut control | " AIR CONDITIONING CUT CONTROL: SYSTEM DESCRIPTION " |
| Power generation voltage variable control | " POWER GENERATION VOLTAGE VARIABLE CONTROL SYSTEM: SYSTEM DESCRIPTION " |
| Cooling fan control | " COOLING FAN CONTROL: SYSTEM DESCRIPTION " |
| Evaporative emission system | " EVAPORATIVE EMISSION SYSTEM: SYSTEM DESCRIPTION " |
| Automatic speed control device (ASCD) | " AUTOMATIC SPEED CONTROL DEVICE (ASCD): SYSTEM DESCRIPTION " |
| CAN communication | " CAN COMMUNICATION: SYSTEM DESCRIPTION " |
| Sport mode | " SPORT MODE CONTROL: SYSTEM DESCRIPTION " |
The amount of fuel injected from the fuel injector is determined by the ECM. The ECM controls the length of time the valve remains open (injection pulse duration). The amount of fuel injected is a program value in the ECM memory. The program value is preset by engine operating conditions. These conditions are determined by input signals (for engine speed and intake air) from the crankshaft position sensor (POS), camshaft position sensor (PHASE) and the mass air flow sensor.
The amount of fuel injected from the fuel injector is determined by the ECM. The ECM controls the length of time the valve remains open (injection pulse duration). The amount of fuel injected is a program value in the ECM memory. The program value is preset by engine operating conditions. These conditions are determined by input signals (for engine speed and intake air) from the crankshaft position sensor (POS), camshaft position sensor (PHASE) and the mass air flow sensor.
Firing order: 1 - 3 - 4 - 2
The ignition timing is controlled by the ECM to maintain the best air-fuel ratio for every running condition of the engine. The ignition timing data is stored in the ECM.
The ECM receives information such as the injection pulse width and camshaft position sensor (PHASE) signal. Computing this information, ignition signals are transmitted to the power transistor.
During the following conditions, the ignition timing is revised by the ECM according to the other data stored in the ECM.
- At starting
- During warm-up
- At idle
- At low battery voltage
- During acceleration
The knock sensor retard system is designed only for emergencies. The basic ignition timing is programmed within the anti-knocking zone, if recommended fuel is used under dry conditions. The retard system does not operate under normal driving conditions. If engine knocking occurs, the knock sensor monitors the condition. The signal is transmitted to the ECM. The ECM retards the ignition timing to eliminate the knocking condition.
Intake manifold runner control valve has a valve portion in the intake passage of each cylinder.
While idling and during low engine coolant temperature, the intake manifold runner control valve closes. Thus the velocity of the air in the intake passage increases, promoting the vaporization of the fuel and producing a intake manifold runner in the combustion chamber.
Because of this operation, this system tends to increase the burning speed of the gas mixture, improve exhaust emission, and increase the stability in running conditions.
Also, except when idling and during low engine coolant temperature, this system opens the intake manifold runner control valve.
In this condition, this system tends to increase power by improving intake efficiency via reduction of intake flow resistance.
The intake manifold runner control valve is operated by the ECM.
Scheme 1
- The engine protection control at low engine oil pressure warns the driver of a decrease in engine oil pressure by the engine oil pressure warning lamp a before the engine becomes damaged.
- When detecting a decrease in engine oil pressure at an engine speed less than 1, 000 RPM, ECM transmits an engine oil pressure warning lamp signal to the combination meter. The combination meter turns ON the engine oil pressure warning lamp, according to the signal.
| Decrease in engine oil pressure | Engine speed | Combination meter | Fuel cut |
|---|---|---|---|
| Engine oil pressure warning lamp | |||
| Detection | Less than 1, 000 RPM | ON (1) | NO |
| 1, 000 RPM or more | ON | YES | |
| (1) When detecting a normal engine oil pressure, ECM turns OFF the engine oil pressure warning lamp. | |||
| (1) | When detecting a normal engine oil pressure, ECM turns OFF the engine oil pressure warning lamp. |
Scheme 2
This system improves engine operation when the air conditioner is used.
Under the following conditions, the air conditioner is turned off.
- When cranking the engine.
- At high engine speeds.
- When the engine coolant temperature becomes excessively high.
- When operating power steering during low engine speed or low vehicle speed.
- When engine speed is excessively low.
- When refrigerant pressure is excessively low or high.
DESCRIPTION
ECM transmits a target power generation voltage signal received from IPDM E/R to the generator via LIN communication.
The generator includes a self-diagnosis function and transmits a diagnosis signal to ECM via LIN communication when detecting a malfunction. When ECM receives a diagnosis signal, ECM detects DTC and transmits a charge warning lamp request signal to the combination meter to turn ON the charge warning lamp.
Scheme 3
ECM controls cooling fan speed corresponding to vehicle speed, engine coolant temperature, refrigerant pressure, air conditioner ON signal. Then control system has 3-step control [HIGH/LOW/OFF].
Cooling Fan Operation
Scheme 4
Cooling Fan Relay Operation
The ECM controls cooling fan relays through CAN communication line.
| Cooling fan speed | Cooling fan relay | ||
|---|---|---|---|
| 1 | 2 | 3 | |
| Stop (OFF) | OFF | OFF | OFF |
| Low (LOW) | OFF | ON | OFF |
| High (HI) | ON | OFF | ON |
Scheme 5
SET OPERATION
Press MAIN switch. (CRUISE is indicated on the information display.)
When vehicle speed reaches a desired speed between approximately 40 km/h (25 MPH) and 144 km/h (89 MPH), press SET/COAST switch. (Then SET is indicated on the information display.)
ACCELERATE OPERATION
If the RESUME/ACCELERATE switch is pressed during cruise control driving, increase the vehicle speed until the switch is released or vehicle speed reaches maximum speed controlled by the system.
And then ASCD will keep the new set speed.
CANCEL OPERATION
When any of following conditions exist, cruise operation will be canceled.
- CANCEL switch is pressed
- More than 2 switches at ASCD steering switch are pressed at the same time (Set speed will be cleared)
- Brake pedal is depressed
- Selector lever is changed to N, P, R position
- Vehicle speed decreased to 13 km/h (8 MPH) lower than the set speed
- TCS system is operated
When the ECM detects any of the following conditions, the ECM will cancel the cruise operation and inform the driver by blinking indicators.
- Engine coolant temperature is slightly higher than the normal operating temperature, CRUISE indicator may blink slowly. When the engine coolant temperature decreases to the normal operating temperature, CRUISE indicator will stop blinking and the cruise operation will be able to work by pressing SET/COAST switch or RESUME/ACCELERATE switch.
- Malfunction for some self-diagnoses regarding ASCD control: SET indicator will blink quickly.
If MAIN switch is turned to OFF during ASCD is activated, all of ASCD operations will be canceled and vehicle speed memory will be erased.
COAST OPERATION
When the SET/COAST switch is pressed during cruise control driving, decrease vehicle set speed until the switch is released. And then ASCD will keep the new set speed.
RESUME OPERATION
When the RESUME/ACCELERATE switch is pressed after cancel operation other than pressing MAIN switch is performed, vehicle speed will return to last set speed. To resume vehicle set speed, vehicle condition must meet following conditions.
- Brake pedal is released
- Selector lever is in other than P and N positions
- Vehicle speed is greater than 40 km/h (25 MPH) and less than 144 km/h (89 MPH)
Scheme 6
The fuel filler cap warning system alerts the driver to the prevention of the fuel filler being left uncapped and malfunction occurrences after refueling, by turning ON the fuel filler cap warning display on the combination meter.
ECM judges a refueled state, based on a fuel level signal transmitted from the combination meter.
When a very small leak is detected through the EVAP leak diagnosis performed after judging the refueled state, ECM transmits a fuel filler cap warning display signal (request for display ON) to the combination meter via CAN communication.
When receiving the signal, the combination meter turns ON the fuel filler cap warning display.
| CAUTION | Check fuel filler cap installation condition when the fuel filler cap warning display turns ON. |
Reset Operation
The fuel filler cap warning lamp tunes OFF, according to any condition listed below
- Reset operation is performed by operating the meter control switch on the combination meter. Refer to " «SWITCH NAME AND FUNCTION»(ref-616734-S12136553922014051900000) ". When the reset operation is performed, the combination meter transmits a fuel filler cap warning reset signal to ECM via CAN communication. ECM transmits a fuel filler cap warning display signal (request for display OFF) to the combination meter via CAN communication. When receiving the signal, the combination meter turns OFF the fuel filler cap warning display.
- EVAP leak diagnosis result is normal.
- Fuel refilled.
- DTC erased by using CONSULT.
Note. MIL turns ON if a malfunction is detected in leak diagnosis results again at the trip after the fuel filler cap warning display turns ON/OFF.
OPERATION AT COMBINATION METER CAN COMMUNICATION CUT-OFF OR UNUSUAL SIGNAL
For the operation for CAN communication blackout in the combination meter, refer to " FAIL-SAFE ".
Scheme 7
For the operation for CAN communications blackout or abnormal signal reception, refer to " FAIL-SAFE ".
Scheme 8
CAN COMMUNICATION: System Description
CAN (Controller Area Network) is a serial communication line for real time application. It is an on-vehicle multiplex communication line with high data communication speed and excellent error 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 connected 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.
Refer to " CAN COMMUNICATION SYSTEM: CAN COMMUNICATION SIGNAL CHART ", about CAN communication for detail.
Scheme 9
- SPORT mode that keeps high engine revolution and provides direct feel and acceleration performance suitable for driving on winding road.
- ECM receives an SPORT mode signal from TCM via CAN communication and improves drivability by controlling the throttle movement.
- ECM transmits an SPORT mode indicator lamp signal to the combination meter via CAN communication.
Note. For the details of the SPORT mode, refer to " SPORT MODE CONTROL: SYSTEM DESCRIPTION ".
Scheme 10
SWITCH OPERATION
| Item | Function |
|---|---|
| CANCEL switch | Cancels the cruise control driving. |
| ACCEL/RES switch | Resumes the set speed. Increases speed incrementally during cruise control driving. |
| COAST/SET switch | Sets desired cruise speed. Decreases speed incrementally during cruise control driving. |
| ASCD MAIN switch | Master switch to activate the ASCD system. |
Refer to " AUTOMATIC SPEED CONTROL DEVICE (ASCD): SYSTEM DESCRIPTION " for ASCD operating instructions.
Diagnosis Description
This system is an on board diagnostic system that records exhaust emission-related diagnostic information and detects a sensors/actuator-related malfunction. A malfunction is indicated by the malfunction indicator lamp (MIL) and stored in control module memory as a DTC. The diagnostic information can be obtained with the diagnostic tool (GST: Generic Scan Tool).
DIAGNOSIS DESCRIPTION: 1st Trip Detection Logic and Two Trip Detection Logic
When a malfunction is detected for the first time, 1st trip DTC and 1st trip Freeze Frame data are stored in the ECM memory. The MIL will not illuminate at this stage. < 1st trip >
If the same malfunction is detected again during the next drive, the DTC and Freeze Frame data are stored in the ECM memory, and the MIL illuminates. The MIL illuminates at the same time when the DTC is stored. < 2nd trip > The "trip" in the "Two Trip Detection Logic" means a driving mode in which self-diagnosis is performed during vehicle operation. Specific on board diagnostic items will cause the ECM to illuminate or blink the MIL, and store DTC and Freeze Frame data, even in the 1st trip, as shown below.
| X: Applicable -: Not applicable | ||||||||
|---|---|---|---|---|---|---|---|---|
| Items | MIL | DTC | 1st trip DTC | |||||
| 1st trip | 2nd trip | 1st trip displaying | 2nd trip displaying | 1st trip displaying | 2nd trip displaying | |||
| Blinking | Illuminated | Blinking | Illuminated | |||||
| Misfire (Possible three way catalyst damage) - DTC: P0300 - P0304 is being detected | X | X | ||||||
| Misfire (Possible three way catalyst damage) - DTC: P0300 - P0304 is being detected | X | X | ||||||
| One trip detection diagnoses (Refer to " DTC INDEX ".) | X | X | ||||||
| Except above | X | X | X | |||||
DIAGNOSIS DESCRIPTION: Driving Pattern
| CAUTION | Always drive at a safe speed. |
DIAGNOSIS DESCRIPTION: System Readiness Test (SRT) Code
System Readiness Test (SRT) code is specified in Service $01 of SAE J1979/ISO 15031-5.
As part of an enhanced emissions test for Inspection & Maintenance (I/M), certain states require the status of SRT be used to indicate whether the ECM has completed self-diagnosis of major emission systems and components. Completion must be verified in order for the emissions inspection to proceed.
If a vehicle is rejected for a State emissions inspection due to one or more SRT items indicating "INCMP", use the information in this Service Information to set the SRT to "CMPLT".
In most cases the ECM will automatically complete its self-diagnosis cycle during normal usage, and the SRT status will indicate "CMPLT" for each application system. Once set as "CMPLT", the SRT status remains "CMPLT" until the self-diagnosis memory is erased.
Occasionally, certain portions of the self-diagnostic test may not be completed as a result of the customer's normal driving pattern; the SRT will indicate "INCMP" for these items.
Note. The SRT will also indicate "INCMP" if the self-diagnosis memory is erased for any reason or if the ECM memory power supply is interrupted for several hours. If, during the state emissions inspection, the SRT indicates "CMPLT" for all test items, the inspector will continue with the emissions test. However, if the SRT indicates "INCMP" for one or more of the SRT items the vehicle is returned to the customer untested.
Note. If permanent DTC is stored or MIL illuminates during the state emissions inspection, the vehicle is also returned to the customer untested even though the SRT indicates "CMPLT" for all test items. therefore, it is important to check SRT ("CMPLT"), DTC (No DTCs) and permanent DTC (No permanent DTC) before the inspection.
DIAGNOSIS DESCRIPTION: Permanent Diagnostic Trouble Code (Permanent DTC)
Permanent DTC is defined in SAE J1979/ISO 15031-5 Service $0A.
ECM stores a DTC issuing a command of turning on MIL as a permanent DTC and keeps storing the DTC as a permanent DTC until ECM judges that there is no presence of malfunction.
Permanent DTCs cannot be erased by using the erase function of CONSULT or Generic Scan Tool (GST) and by disconnecting the battery to shut off power to ECM. This prevents a vehicle from passing the in-use inspection without repairing a malfunctioning part.
When not passing the in-use inspection due to more than one permanent DTC, permanent DTCs should be erased, referring to this information.
Note. The important items in in-use inspection are that MIL is not ON, SRT test items are set, and permanent DTCs are not included. Permanent DTCs do not apply for regions that permanent DTCs are not regulated by law.
DIAGNOSIS DESCRIPTION: Malfunction Indicator Lamp (MIL)
When emission-related ECU detects a malfunction in the emission control systems components and/or the powertrain control components (which affect vehicle emissions), it turns on/blinks MIL to inform the driver that a malfunction has been detected.
- The MIL illuminates when ignition switch is turned ON (engine is not running). NOTE: Check the MIL circuit if MIL does not illuminate. Refer to " «DIAGNOSIS PROCEDURE»(/nissan/rogue/ii-2013-2016/remont/testing-diagnostics/#engine-control-system-diagnostic-codes-symptom-tests-usa-canada) ".
- When the engine is started, the MIL should go off. NOTE: If MIL continues to illuminate/blink, perform self-diagnoses and inspect/repair accordingly because an emission-related ECU has detected a malfunction in the emission control systems components and/or the powertrain control components (which affect vehicle emissions).
When a DTC is detected, ECM executes a mode (in the Fail-safe mode) applicable to the DTC. The fail-safe mode has the preset traveling control mode (accelerator angle variation and engine output limit) and device fix mode.
| Fail safe mode | Vehicle behavior | |
|---|---|---|
| Traveling control mode | Accelerator angle variation control | ECM controls the accelerator pedal depression speed to make it slower than actual speed. This causes a drop in accelerating performance and encourages the driver to repair malfunction. NOTE: ECM does not control the accelerator pedal releasing speed. |
| Engine output control | ECM reduces the engine output, according to the rise in engine speed. This reduces the vehicle speed to encourage the driver to repair malfunction. | |
| Device fix mode | This mode fixes the IVT control solenoid valve and the EVT control solenoid valve in the reference position. The intake manifold runner control valve motor is turned OFF (intake manifold runner control valve opens). | |
| NOTE |
|---|
| ECM does not control the accelerator pedal releasing speed. |
There are many operating conditions that lead to the malfunction of engine components. A good grasp of such conditions can make troubleshooting faster and more accurate.
In general, each customer feels differently about symptoms. It is important to fully understand the symptoms or conditions for a customer complaint.
Utilize a diagnostic worksheet like the WORKSHEET SAMPLE below in order to organize all the information for troubleshooting. Some conditions may cause the MIL to illuminate or blink, and DTC to be detected. Examples
Scheme 11
- Vehicle ran out of fuel, which caused the engine to misfire.
- Fuel filler cap was left off or incorrectly screwed on, allowing fuel to evaporate into the atmosphere.
Scheme 12
Scheme 13
Scheme 14
Scheme 15
Scheme 16
Scheme 17
Scheme 18
- INSPECTION START Check service records for any recent repairs that may indicate a related malfunction, or a current need for scheduled maintenance. Open engine hood and check the following: Harness connectors for improper connections Wiring harness for improper connections, pinches and cut Vacuum hoses for splits, kinks and improper connections Hoses and ducts for leaks Air cleaner clogging Gasket Confirm that electrical or mechanical loads are not applied. Headlamp switch is OFF. Air conditioner switch is OFF. Rear window defogger switch is OFF. Steering wheel is in the straight-ahead position, etc. Start engine and warm it up until engine coolant temperature indicator points the middle of gauge. Ensure engine stays below 1, 000 RPM. Run engine at about 2, 000 RPM for about 2 minutes under no load. Make sure that no DTC is displayed with CONSULT or GST. Is any DTC detected? YES: GO TO 2. NO: GO TO 3 .
- REPAIR OR REPLACE Repair or replace components as necessary according to corresponding Diagnostic Procedure. : GO TO 3.
- CHECK TARGET IDLE SPEED Run engine at about 2, 000 RPM for about 2 minutes under no load. Rev engine (2, 000 to 3, 000 RPM) two or three times under no load, then run engine at idle speed for about 1 minute. Check idle speed. For procedure, refer to " «INSPECTION»(/nissan/rogue/ii-2013-2016/remont/testing-diagnostics/#engine-control-system-diagnostic-codes-symptom-tests-usa-canada) ". For specification, refer to " «IDLE SPEED»(/nissan/rogue/ii-2013-2016/remont/testing-diagnostics/#engine-control-system-diagnostic-codes-symptom-tests-usa-canada) ". Is the inspection result normal? YES: GO TO 10 . NO: GO TO 4.
- PERFORM ACCELERATOR PEDAL RELEASED POSITION LEARNING Stop engine. Perform " «WORK PROCEDURE»(ref-616720-S13788919192014051900000) ".: GO TO 5.
- PERFORM THROTTLE VALVE CLOSED POSITION LEARNING Perform " «WORK PROCEDURE»(ref-616720-S02703137402014051900000) ".: GO TO 6.
- PERFORM IDLE AIR VOLUME LEARNING Perform " «WORK PROCEDURE»(ref-616720-S23433204712014051900000) ". Is Idle Air Volume Learning carried out successfully? YES: GO TO 7. NO: Follow the instruction of Idle Air Volume Learning. Then GO TO 4.
- CHECK TARGET IDLE SPEED AGAIN Start engine and warm it up to normal operating temperature. Check idle speed. For procedure, refer to " «INSPECTION»(/nissan/rogue/ii-2013-2016/remont/testing-diagnostics/#engine-control-system-diagnostic-codes-symptom-tests-usa-canada) ". For specification, refer to " «IDLE SPEED»(/nissan/rogue/ii-2013-2016/remont/testing-diagnostics/#engine-control-system-diagnostic-codes-symptom-tests-usa-canada) ". Is the inspection result normal? YES: GO TO 10 . NO: GO TO 8.
- DETECT MALFUNCTIONING PART Check the Following. Check camshaft position sensor (PHASE) and circuit. Refer to " «DTC DESCRIPTION»(/nissan/rogue/ii-2013-2016/remont/testing-diagnostics/#engine-control-system-diagnostic-codes-symptom-tests-usa-canada) ". Check crankshaft position sensor (POS) and circuit. Refer to " «DTC DESCRIPTION»(/nissan/rogue/ii-2013-2016/remont/testing-diagnostics/#engine-control-system-diagnostic-codes-symptom-tests-usa-canada) ". Is the inspection result normal? YES: GO TO 9. NO: Repair or replace. Then GO TO 4
- CHECK ECM FUNCTION Substitute another known-good ECM to check ECM function. (ECM may be the cause of an incident, but this is a rare case.) Perform initialization of NVIS (NATS) system and registration of all NVIS (NATS) ignition key IDs. Refer to " «ECM: WORK PROCEDURE»(ref-616736-S07018299122014051900000) " (With intelligent key system) or " «ECM RE-COMMUNICATING FUNCTION: SPECIAL REPAIR REQUIREMENT»(ref-616737-S13931693952014051900000) " (Without intelligent key system).: GO TO 4.
- CHECK IGNITION TIMING Run engine at idle. Check ignition timing with a timing light. For procedure, refer to " «INSPECTION»(/nissan/rogue/ii-2013-2016/remont/testing-diagnostics/#engine-control-system-diagnostic-codes-symptom-tests-usa-canada) " For specification, refer to " «IGNITION TIMING»(/nissan/rogue/ii-2013-2016/remont/testing-diagnostics/#engine-control-system-diagnostic-codes-symptom-tests-usa-canada) ". Is the inspection result normal? YES: INSPECTION END. NO: GO TO 11.
- PERFORM ACCELERATOR PEDAL RELEASED POSITION LEARNING Stop engine. Perform " «WORK PROCEDURE»(ref-616720-S13788919192014051900000) ".: GO TO 12.
- PERFORM THROTTLE VALVE CLOSED POSITION LEARNING Perform " «WORK PROCEDURE»(ref-616720-S02703137402014051900000) ".: GO TO 13.
- PERFORM IDLE AIR VOLUME LEARNING Perform " «WORK PROCEDURE»(ref-616720-S23433204712014051900000) ". Is Idle Air Volume Learning carried out successfully? YES: GO TO 14. NO: Follow the instruction of Idle Air Volume Learning. Then GO TO 4.
- CHECK TARGET IDLE SPEED AGAIN Start engine and warm it up to normal operating temperature. Check idle speed. For procedure, refer to " «INSPECTION»(/nissan/rogue/ii-2013-2016/remont/testing-diagnostics/#engine-control-system-diagnostic-codes-symptom-tests-usa-canada) ". For specification, refer to " «IDLE SPEED»(/nissan/rogue/ii-2013-2016/remont/testing-diagnostics/#engine-control-system-diagnostic-codes-symptom-tests-usa-canada) ". Is the inspection result normal? YES: GO TO 15. NO: GO TO 17 .
- CHECK IGNITION TIMING AGAIN Run engine at idle. Check ignition timing with a timing light. For procedure, refer to " «INSPECTION»(/nissan/rogue/ii-2013-2016/remont/testing-diagnostics/#engine-control-system-diagnostic-codes-symptom-tests-usa-canada) ". For specification, refer to " «IGNITION TIMING»(/nissan/rogue/ii-2013-2016/remont/testing-diagnostics/#engine-control-system-diagnostic-codes-symptom-tests-usa-canada) ". Is the inspection result normal? YES: INSPECTION END. NO: GO TO 16.
- CHECK TIMING CHAIN INSTALLATION Check timing chain installation. Refer to " «REMOVAL AND INSTALLATION»(ref-616715-S01424716332014051900000) ". Is the inspection result normal? YES: GO TO 17. NO: Repair the timing chain installation. Then GO TO 4.
- DETECT MALFUNCTIONING PART Check the following. Check camshaft position sensor (PHASE) and circuit. Refer to " «DTC DESCRIPTION»(/nissan/rogue/ii-2013-2016/remont/testing-diagnostics/#engine-control-system-diagnostic-codes-symptom-tests-usa-canada) ". Check crankshaft position sensor (POS) and circuit. Refer to " «DTC DESCRIPTION»(/nissan/rogue/ii-2013-2016/remont/testing-diagnostics/#engine-control-system-diagnostic-codes-symptom-tests-usa-canada) ". Is the inspection result normal? YES: GO TO 18. NO: Repair or replace. Then GO TO 4
- CHECK ECM FUNCTION Substitute another known-good ECM to check ECM function. (ECM may be the cause of an incident, but this is a rare case.) Perform initialization of NVIS (NATS) system and registration of all NVIS (NATS) ignition key IDs. Refer to " «ECM: WORK PROCEDURE»(ref-616736-S07018299122014051900000) " (With intelligent key system) or " «ECM RE-COMMUNICATING FUNCTION: SPECIAL REPAIR REQUIREMENT»(ref-616737-S13931693952014051900000) " (Without intelligent key system).: GO TO 4.
When replacing ECM, the following procedure must be performed. (For details, refer to " WORK PROCEDURE ".)
PROGRAMMING OPERATION
Note. After replacing with a blank ECM, programming is required to write ECM information. Be sure to follow the procedure to perform the programming.
VIN Registration is an operation to registering VIN in ECM. It must be performed each time ECM is replaced.
Note. Accurate VIN which is registered in ECM may be required for Inspection & Maintenance (I/M).
Accelerator Pedal Released Position Learning is a function of ECM to learn the fully released position of the accelerator pedal by monitoring the accelerator pedal position sensor output signal. It must be performed each time harness connector of accelerator pedal position sensor or ECM is disconnected.
Throttle Valve Closed Position Learning is a function of ECM to learn the fully closed position of the throttle valve by monitoring the throttle position sensor output signal. It must be performed each time the harness connector of the electric throttle control actuator or ECM is disconnected or electric throttle control actuator inside is cleaned.
Idle Air Volume Learning is a function of ECM to learn the idle air volume that keeps each engine idle speed within the specific range. It must be performed under any of the following conditions
- Each time electric throttle control actuator or ECM is replaced.
- Idle speed or ignition timing is out of specification.
Scheme 19
- PRECONDITIONING Make sure that all of the following conditions are satisfied. Learning will be cancelled if any of the following conditions are missed for even a moment. Battery voltage: More than 12.9 V (At idle) Engine coolant temperature: 70 - 100°C (158 - 212°F) Selector lever: P or N Electric load switch: OFF (Air conditioner, headlamp, rear window defogger) On vehicles equipped with daytime running light systems, set lighting switch to the 1st position to light only small lamps. Steering wheel: Neutral (Straight-ahead position) Vehicle speed: Stopped Transmission: Warmed-up With CONSULT Drive vehicle until "ATF TENP SEN" in "DATA MONITOR" mode of "CVT" system indicates less than 0.9 V. Without CONSULT Drive vehicle for 10 minutes. Do you have CONSULT? YES: GO TO 2. NO: GO TO 3 .
- IDLE AIR VOLUME LEARNING With CONSULT Perform Accelerator Pedal Released Position Learning. Refer to " «WORK PROCEDURE»(ref-616720-S13788919192014051900000) ". Perform Throttle Valve Closed Position Learning. Refer to " «WORK PROCEDURE»(ref-616720-S02703137402014051900000) ". Start engine and warm it up to normal operating temperature. Select "IDLE AIR VOL LEARN" in "WORK SUPPORT" mode of "ENGINE". Touch "START" and wait 20 seconds. Is "CMPLT" displayed on CONSULT screen? YES: GO TO 4. NO: GO TO 5.
- IDLE AIR VOLUME LEARNING Without CONSULT NOTE: It is better to count the time accurately with a clock. It is impossible to switch the diagnostic mode when an accelerator pedal position sensor circuit has a malfunction. Perform Accelerator Pedal Released Position Learning. Refer to " «WORK PROCEDURE»(ref-616720-S13788919192014051900000) ". Perform Throttle Valve Closed Position Learning. Refer to " «WORK PROCEDURE»(ref-616720-S02703137402014051900000) ". Start engine and warm it up to normal operating temperature. Turn ignition switch OFF and wait at least 10 seconds. Confirm that accelerator pedal is fully released, turn ignition switch ON and wait 3 seconds. Repeat the following procedure quickly five times within 5 seconds. Fully depress the accelerator pedal. Fully release the accelerator pedal. Wait 7 seconds, fully depress the accelerator pedal and keep it for approx. 20 seconds until the MIL stops blinking and turned ON. Fully release the accelerator pedal within 3 seconds after the MIL turned ON. Start engine and let it idle. Wait 20 seconds.: GO TO 4
- CHECK IDLE SPEED AND IGNITION TIMING Rev up the engine two or three times and make sure that idle speed and ignition timing are within the specifications. For specification, refer to " «IDLE SPEED»(/nissan/rogue/ii-2013-2016/remont/testing-diagnostics/#engine-control-system-diagnostic-codes-symptom-tests-usa-canada) " and " «IGNITION TIMING»(/nissan/rogue/ii-2013-2016/remont/testing-diagnostics/#engine-control-system-diagnostic-codes-symptom-tests-usa-canada) ". Is the inspection result normal? YES: INSPECTION END NO: GO TO 5.
- DETECT MALFUNCTIONING PART Check the following Check that throttle valve is fully closed. Check PCV valve operation. Check that downstream of throttle valve is free from air leakage. Is the inspection result normal? YES: GO TO 6. NO: Repair or replace malfunctioning part.
- DETECT MALFUNCTIONING PART Engine component parts and their installation condition are questionable. Check and eliminate the cause of the incident. It is useful to perform " «TROUBLE DIAGNOSIS - SPECIFICATION VALUE»(ref-616720-S04340163142014051900000) ". Refer to " «DESCRIPTION»(ref-616720-S28393924912014051900000) ". If any of the following conditions occur after the engine has started, eliminate the cause of the incident and perform Idle Air Volume Learning all over again: Engine stalls. Erroneous idle.: INSPECTION END
This describes how to erase the mixture ratio self-learning value. For the actual procedure, follow the instructions in "Diagnosis Procedure".
The specification (SP) value indicates the tolerance of the value that is displayed in "SPEC" of "DATA MONITOR" mode of CONSULT during normal operation of the Engine Control System. When the value in "SPEC" of "DATA MONITOR" mode is within the SP value, the Engine Control System is confirmed OK. When the value in "SPEC" of "DATA MONITOR" mode is NOT within the SP value, the Engine Control System may have one or more malfunctions.
The SP value is used to detect malfunctions that may affect the Engine Control System, but will not light the MIL.
The SP value will be displayed for the following three items
- B/FUEL SCHDL (The fuel injection pulse width programmed into ECM prior to any learned on board correction)
- A/F ALPHA-B1 (The mean value of air-fuel ratio feedback correction factor per cycle)
- MASS AIR FLOW SENSOR (Hz) (The signal frequency of the mass air flow sensor)
See also:
• INSPECTION