DTC P1604: Startability Malfunction [12/2013 - 11/2016]: Procedure
- CHECK ANY OTHER DTCS OUTPUT AND RECORD FREEZE FRAME DATA (IN ADDITION TO DTC P1604)
- Connect the Techstream to the DLC3.
- Turn the ignition switch to ON.
- Turn the Techstream on.
- Enter the following menus: Powertrain / Engine and ECT / Trouble Codes.
- Read the DTCs and record the Freeze Frame Data.
Powertrain > Engine > Trouble Codes
HINT:
- This freeze frame data shows the actual engine conditions when engine starting trouble occurred.
- When confirming the freeze frame data, be sure to check all 5 data sets of freeze frame data.
- The fourth set of freeze frame data is the data recorded when then the DTC is stored.
Result
Result Proceed to DTC P1604 is output A DTC P1604 and other DTCs are output B
Result: 2
B
GO TO DTC CHART. Refer to DIAGNOSTIC TROUBLE CODE CHART [12/2013 - 08/2014] Refer to DIAGNOSTIC TROUBLE CODE CHART [08/2014 - 11/2015] Refer to DIAGNOSTIC TROUBLE CODE CHART [11/2015 - 11/2016]
Result: 1
A
See step 2
- CHECK IMMOBILIZER SYSTEM
- Connect the Techstream to the DLC3.
- Turn the ignition switch to ON.
- Turn the Techstream on.
- Enter the following menus: Powertrain / Engine and ECT / Data List / Primary / Immobilizer Communication and Immobilizer Fuel Cut.
Powertrain > Engine > Data List
Tester Display Immobilizer Communication Immobilizer Fuel Cut - Check the Data List indication.
OK
Data List Item Techstream Display Immobilizer Communication ON Immobilizer Fuel Cut OFF HINT:
- If the engine is started immediately after reconnecting the battery terminal, the engine may stall immediately after it starts due to the intercommunication process between each ECU. For this reason, when starting the engine after reconnecting the battery terminal, first turn the ignition switch to ON and then wait several seconds for the communication process to complete before starting the engine.
- When this operation causes DTC P1604 to be stored, this is due to normal operation of the immobilizer system and does not indicate a malfunction, so clear the DTC and return the vehicle to the customer.
Result
Proceed to OK NG
Result: 2
NG
CHECK IMMOBILIZER SYSTEM. Refer to HOW TO PROCEED WITH TROUBLESHOOTING [12/2013 - 11/2016]
Result: 1
OK
See step 3
- CHECK MALFUNCTION CONDITION
- Confirm the problem symptoms.
Result
Result Proceed to Freeze frame data exists, but the starting difficulty cannot be reproduced and it is unknown what kind of starting difficulty occurred A The problem symptoms can be reproduced, or the malfunction conditions are known B
Result: 2
B
See step 25
Result: 1
A
See step 4
- Confirm the problem symptoms.
- READ FREEZE FRAME DATA
- Connect the Techstream to the DLC3.
- Turn the ignition switch to ON.
- Using the Techstream, confirm the vehicle conditions recorded in the freeze frame data which were present when the DTC was stored.
Refer to FREEZE FRAME DATA [12/2013 - 11/2015] Refer to FREEZE FRAME DATA [11/2015 - 11/2016]
Result
Freeze Frame Data Item Suspected Area Proceed to Engine Speed Battery Voltage All 5 sets of freeze frame data are 0 rpm (no engine cranking at all) Minimum voltage is less than 5 V Battery fully depleted A Minimum voltage is 5 V or higher - Starter assembly malfunction
- Crankshaft position sensor system
- Excess engine friction
- ECM
B 60 to 250 rpm (engine cranks but no initial combustion) - - Fuel pump control system
- Ignition system
- Engine coolant temperature sensor
- Fuel injection system
C 250 rpm or higher (combustion occurs but initial combustion and starter turn off occur late) - - Engine assembly
- Engine coolant temperature sensor
- Fuel injection system
- Fuel pump control system
D Result
Freeze Frame Data Item Suspected Area Proceed to Low Rev for Eng Start ON - Intake system connections
- Throttle body with motor assembly
- Camshaft timing oil control valve assembly
- Mass air flow meter sub-assembly
E HINT:
- When DTC P1604 is stored, either "Engine Start Hesitation"*1 or "Low Rev for Eng Start"*2 in the Freeze Frame Data will be ON. If "Low Rev for Eng Start" is ON, proceed to E.
- *1: This value turns ON when the engine speed does not reach a certain value for a certain period of time when starting the engine.
- *2: This value turns ON when the engine stalls immediately after starting the engine. If "Low Rev for Eng Start" is ON, as there is a possibility that the low engine speed or engine stall was caused by the user, confirm the following freeze frame data items.
- Immobilizer Fuel Cut
- Engine Speed (Starter Off)
- Shift SW Status (R, D Range)
Result: 1
A
CHARGE OR REPLACE BATTERY
Result: 3
C
See step 10
Result: 4
D
See step 15
Result: 5
E
See step 30
Result: 2
B
See step 5
- READ FREEZE FRAME DATA
- Connect the Techstream to the DLC3.
- Turn the ignition switch to ON.
- Using the Techstream, confirm the vehicle conditions recorded in the freeze frame data which were present when the DTC was stored.
Refer to FREEZE FRAME DATA [12/2013 - 11/2015] Refer to FREEZE FRAME DATA [11/2015 - 11/2016]
Result
Freeze Frame Data Item Result Suspected Area Proceed to Battery Voltage Minimum voltage is 6 V or higher and voltage does not fluctuate*1 Starter system A Minimum voltage is 6 V or higher and voltage fluctuates*2, *3 - Crankshaft position sensor system
- ECM
B Minimum voltage is 5 to 6 V*4 - Excess engine friction
- Battery fully depleted
C HINT:
- *1: The 5 sets of freeze frame data show approximately the same battery voltage.
- *2: The 5 sets of freeze frame data show different battery voltages.
- *3: If the voltage fluctuates, it can be determined that cranking is being performed. When the engine speed is 0 rpm, the crankshaft position sensor system and/or the ECM may be malfunctioning.
- *4: There may be excess engine friction. Make sure that the crankshaft rotates smoothly when turning it by hand. Excess engine friction may have occurred temporarily. Remove the cylinder head cover and oil pan, and check for foreign matter such as iron fragments. If there is a malfunction or signs of a malfunction present, perform a detailed inspection by disassembling all the parts.
- Perform "Inspection After Repair" after repairing or replacing the engine assembly.
Refer to INITIALIZATION [12/2013 - ]
Result: 1
A
CHECK STARTER SIGNAL CIRCUIT. Refer to Starter Signal Circuit [12/2013 - 11/2016]
Result: 3
C
CHECK AND REPAIR ENGINE ASSEMBLY OR BATTERY
Result: 2
B
See step 6
- CHECK SENSOR INSTALLATION (CRANKSHAFT POSITION SENSOR)
- Check the tightening and installation condition of the crankshaft position sensor bolt.
- Check the connection of the crankshaft position sensor connector.
OK
Sensor is installed correctly.
Result
Proceed to OK NG
Result: 2
NG
SECURELY REINSTALL SENSOR
Result: 1
OK
See step 7
- INSPECT CRANKSHAFT POSITION SENSOR
- Disconnect the crankshaft position sensor connector.
- Check for oil on the connector terminals.
OK
No oil on the terminals.
Result
Proceed to OK NG
Result: 2
NG
REPLACE CRANKSHAFT POSITION SENSOR. Refer to REMOVAL [12/2013 - ]
Result: 1
OK
See step 8
- CHECK HARNESS AND CONNECTOR (CRANKSHAFT POSITION SENSOR - ECM)
- Check the harnesses and connectors, referring to DTC P0335 inspection procedure.
Refer to PROCEDURE - Step 3
HINT:
- Jiggle the wire harness and connector to increase the likelihood of detecting malfunctions that do not always occur.
- Make sure there is not an excessive amount of force applied to the wire harness.
Result
Proceed to OK NG
Result: 2
NG
REPAIR OR REPLACE HARNESS OR CONNECTOR
Result: 1
OK
See step 9
- Check the harnesses and connectors, referring to DTC P0335 inspection procedure.
- REPLACE CRANKSHAFT POSITION SENSOR
- Replace the crankshaft position sensor.
Refer to REMOVAL [12/2013 - ]
- Check the engine start operation.
OK
Malfunction has been repaired successfully.
Result
Proceed to OK NG
Result: 1
OK
END (CRANKSHAFT POSITION SENSOR IS DEFECTIVE)
Result: 2
NG
REPLACE ECM. Refer to REMOVAL [12/2013 - ]
- Replace the crankshaft position sensor.
- READ FREEZE FRAME DATA
- Connect the Techstream to the DLC3.
- Turn the ignition switch to ON.
- Using the Techstream, confirm the vehicle conditions recorded in the freeze frame data which were present when the DTC was stored.
Refer to FREEZE FRAME DATA [12/2013 - 11/2015] Refer to FREEZE FRAME DATA [11/2015 - 11/2016]
Result
Freeze Frame Data Item Suspected Area Proceed to Coolant Temp, Intake Air Coolant Temp Fuel Pump / Speed Status Difference between Coolant Temp and Intake Air is 10°C (18°F) or higher*1 Coolant Temp is 125°C (257°F) or higher, or less than ambient temperature*3 by 15°C (27°F) or higher - Engine coolant temperature sensor A Other than above All 5 sets of freeze frame data are ON - B At least 1 of the 5 sets of freeze frame data is OFF Fuel pump control system C Difference between Coolant Temp and Intake Air is less than 10°C (18°F)*2 - At least 1 of the 5 sets of freeze frame data is OFF Fuel pump control system All 5 sets of freeze frame data are ON - B HINT:
- *1: A long time had not elapsed after stopping the engine.
- *2: A long time had elapsed after stopping the engine.
- *3: Use an actual ambient temperature estimated from the Initial Intake Air, Ambient Temp for A/C, and (if possible) the weather when the DTC was detected.
- Perform "Inspection After Repair" after replacing the engine coolant temperature sensor.
Refer to INITIALIZATION [12/2013 - ]
Result: 1
A
REPLACE ENGINE COOLANT TEMPERATURE SENSOR. Refer to REMOVAL [12/2013 - ]
Result: 3
C
CHECK FUEL PUMP CONTROL CIRCUIT. Refer to Fuel Pump Control Circuit [12/2013 - 11/2016]
Result: 2
B
See step 11
- PERFORM ACTIVE TEST USING TECHSTREAM (CONTROL THE FUEL PUMP / SPEED)
- Connect the Techstream to the DLC3.
- Disconnect the fuel pump connector.
- Turn the ignition switch to ON.
- Turn the Techstream on.
- Enter the following menus: Powertrain / Engine and ECT / Active Test / Control the Fuel Pump / Speed.
Powertrain > Engine > Active Test
Tester Display Control the Fuel Pump / Speed *a Front view of wire harness connector
(to Fuel Pump) - Measure the voltage according to the value(s) in the table below.
Standard Voltage
Tester Connection Condition Specified Condition M9-4 - Body ground Active Test is being performed 11 to 14 V HINT:
- Jiggle the wire harness and connector to increase the likelihood of detecting malfunctions that do not always occur.
- Make sure there is not an excessive amount of force applied to the wire harness.
Result
Proceed to OK NG
Result: 2
NG
CHECK FUEL PUMP CONTROL CIRCUIT. Refer to Fuel Pump Control Circuit [12/2013 - 11/2016]
Result: 1
OK
See step 12
- CHECK TERMINAL VOLTAGE (#10, #20, #30 AND/OR #40)
- Check the harnesses and connectors, referring to DTC P0300 inspection procedure.
Refer to PROCEDURE - Step 10 Refer to PROCEDURE - Step 10
HINT:
- Jiggle the wire harness and connector to increase the likelihood of detecting malfunctions that do not always occur.
- Make sure there is not an excessive amount of force applied to the wire harness.
Result
Proceed to OK NG
Result: 2
NG
CHECK FUEL INJECTOR CIRCUIT. Refer to Fuel Injector Circuit [12/2013 - ]
Result: 1
OK
See step 13
- Check the harnesses and connectors, referring to DTC P0300 inspection procedure.
- PERFORM ACTIVE TEST USING TECHSTREAM (CONTROL THE FUEL PUMP / SPEED)
- Connect the Techstream to the DLC3.
- Turn the ignition switch to ON.
- Turn the Techstream on.
- Enter the following menus: Powertrain / Engine and ECT / Active Test / Control the Fuel Pump / Speed.
Powertrain > Engine > Active Test
Tester Display Control the Fuel Pump / Speed - When performing the Active Test, check for fuel leakage from the fuel pipes.
Result
Result Proceed to Fuel leakage or signs of fuel leakage are present A No fuel leakage or signs of fuel leakage B HINT:
- Jiggle the wire harness and connector to increase the likelihood of detecting malfunctions that do not always occur.
- When performing the Active Test, if there is no operating noise from the fuel pump, the fuel pump system may be malfunctioning.
- Check if the vehicle ran out of fuel, as engine starting trouble due to running out of fuel is also detected.
Result: 1
A
REPAIR OR REPLACE FUEL LINE
Result: 2
B
See step 14
- CHECK FUEL SYSTEM
- Check for foreign matter such as iron particles around the fuel pump (fuel pump, fuel pump filter and inside the fuel tank), and for signs that the fuel pump was stuck.
Result
Result Proceed to There is foreign matter or signs that fuel pump was stuck A There is no foreign matter and no signs that fuel pump was stuck B HINT:
If there is foreign matter such as iron particles on the fuel pump, remove the foreign matter.
Result: 1
A
REPAIR OR REPLACE FUEL SYSTEM
Result: 2
B
See step 24
- Check for foreign matter such as iron particles around the fuel pump (fuel pump, fuel pump filter and inside the fuel tank), and for signs that the fuel pump was stuck.
- READ FREEZE FRAME DATA
- Connect the Techstream to the DLC3.
- Turn the ignition switch to ON.
- Using the Techstream, confirm the vehicle conditions recorded in the freeze frame data which were present when the DTC was stored.
Refer to FREEZE FRAME DATA [12/2013 - 11/2015] Refer to FREEZE FRAME DATA [11/2015 - 11/2016]
Result
Freeze Frame Data Item Suspected Area Proceed to Coolant Temp, Intake Air Coolant Temp Long FT #1 Engine Speed Difference between Coolant Temp and Intake Air is 10°C (18°F) or higher Coolant Temp is 125°C (257°F) or higher, or less than ambient temperature*2 by 15°C (27°F) or higher - - Engine coolant temperature sensor A Other than above -15% or less, or 15% or higher - - Fuel pump control system
- Fuel injector assembly
B -15 to 15% Minimum speed is 300 rpm or higher*1 Engine assembly C Minimum speed is less than 300 rpm - Fuel system
- Intake air system
D Difference between Coolant Temp and Intake Air is less than 10°C (18°F) - -15% or less, or 15% or higher - - Fuel pump control system
- Fuel injector assembly
B -15 to 15% Minimum speed is 300 rpm or higher*1 Engine assembly C Minimum speed is less than 300 rpm - Fuel system
- Intake air system
D HINT:
- *1: Compression loss may have occurred in the engine assembly.
- *2: Use an actual ambient temperature estimated from the Initial Intake Air, Ambient Temp for A/C, and (if possible) the weather when the DTC was detected.
- Perform "Inspection After Repair" after replacing the engine assembly or engine coolant temperature sensor.
Refer to INITIALIZATION [12/2013 - ]
Result: 1
A
REPLACE ENGINE COOLANT TEMPERATURE SENSOR. Refer to REMOVAL [12/2013 - ]
Result: 3
C
CHECK AND REPAIR ENGINE ASSEMBLY
Result: 4
D
See step 18
Result: 2
B
See step 16
- INSPECT FUEL INJECTOR ASSEMBLY
- Check that no carbon is stuck to the fuel injector assembly.
OK
No carbon present.
HINT:
Perform "Inspection After Repair" after replacing the fuel injector assembly.
Refer to INITIALIZATION [12/2013 - ]
Result
Proceed to OK NG
Result: 2
NG
REPLACE FUEL INJECTOR ASSEMBLY. Refer to REMOVAL [12/2013 - ]
Result: 1
OK
See step 17
- Check that no carbon is stuck to the fuel injector assembly.
- CHECK FUEL SYSTEM
- Check for foreign matter such as iron particles around the fuel pump (fuel pump, fuel filter and inside the fuel tank), and for signs that the fuel pump was stuck.
Result
Result Proceed to There is foreign matter or signs that fuel pump was stuck A There is no foreign matter and no signs that fuel pump was stuck B HINT:
If there is foreign matter such as iron particles on the fuel pump, remove the foreign matter.
Result: 1
A
REPAIR OR REPLACE FUEL SYSTEM
Result: 2
B
See step 24
- Check for foreign matter such as iron particles around the fuel pump (fuel pump, fuel filter and inside the fuel tank), and for signs that the fuel pump was stuck.
- READ FREEZE FRAME DATA
- Connect the Techstream to the DLC3.
- Turn the ignition switch to ON.
- Using the Techstream, confirm the vehicle conditions recorded in the freeze frame data which were present when the DTC was stored.
Refer to FREEZE FRAME DATA [12/2013 - 11/2015] Refer to FREEZE FRAME DATA [11/2015 - 11/2016]
Result
Freeze Frame Data Item Result Suspected Area Proceed to Coolant Temp Engine coolant temperature is 40°C (104°F) or less*1 Pressure regulator assembly A Engine coolant temperature is 90°C (194°F) or higher*2 Engine coolant temperature is 40 to 90°C (104 to 194°F)*3 Fuel injector assembly B HINT:
- *1: If the engine coolant temperature is 40°C [104°F] or less (after the engine is stopped and the vehicle is not driven for a long period of time), the pressure regulator may be stuck open. Attach a fuel pressure gauge and check the ability to maintain fuel pressure after stopping the engine.
- *2: If the engine coolant temperature is 90°C [194°F] or higher (2 to 5 minutes have passed after stopping the engine), there may be a problem with the pressure regulator failing to maintain the fuel pressure. Attach a fuel pressure gauge and check the ability to maintain fuel pressure after stopping the engine.
- *3: If the engine coolant temperature is 40 to 90°C [104 to 194°F] (15 to 120 minutes have passed after stopping the engine), there may be fuel leaking from a fuel injector.
Result: 2
B
See step 20
Result: 1
A
See step 19
- CHECK FUEL PRESSURE
HINT:
For the fuel pressure inspection, refer to the following procedures.
Refer to PROCEDURE - Step 2
- Attach a fuel pressure gauge and check the fuel pressure after stopping the engine.
Standard
147 kPa (1.5 kgf/cm2 , 21 psi) or higher (5 minutes after stopping the engine)
HINT:
If the engine cannot be started, read the values after cranking the engine.
Result
Result Proceed to Abnormal A Normal B
Result: 1
A
REPLACE FUEL PRESSURE REGULATOR ASSEMBLY. Refer to REMOVAL [12/2013 - ]
Result: 2
B
See step 24
- Attach a fuel pressure gauge and check the fuel pressure after stopping the engine.
- INSPECT FUEL INJECTOR ASSEMBLY
- Clean the inside of the intake manifold with compressed air.
- After stopping the engine, measure the HC concentration inside the intake manifold for 15 minutes.
Result
Result Proceed to 4000 ppm or higher A Less than 4000 ppm B HINT:
If the concentration is 4000 ppm or higher, a fuel injector assembly may have a sealing problem.
Result: 2
B
See step 22
Result: 1
A
See step 21
- INSPECT FUEL INJECTOR ASSEMBLY
- Inspect the fuel injector assemblies.
Refer to INSPECTION [12/2013 - ]
HINT:
Perform "Inspection After Repair" after replacing the fuel injector assembly.
Refer to INITIALIZATION [12/2013 - ]
Result
Proceed to OK NG
Result: 2
NG
REPLACE FUEL INJECTOR ASSEMBLY. Refer to REMOVAL [12/2013 - ]
Result: 1
OK
See step 22
- Inspect the fuel injector assemblies.
- INSPECT THROTTLE BODY WITH MOTOR ASSEMBLY
- Check if carbon is in the air flow passage.
Result
Result Proceed to No carbon present A Carbon in passage B HINT:
Perform "Inspection After Repair" after cleaning or replacing the throttle body with motor assembly.
Refer to INITIALIZATION [12/2013 - ]
Result: 2
B
CLEAN OR REPLACE THROTTLE BODY WITH MOTOR ASSEMBLY. Refer to REMOVAL [12/2013 - ]
Result: 1
A
See step 23
- Check if carbon is in the air flow passage.
- CHECK INTAKE SYSTEM
- Check the intake system for vacuum leak.
Refer to ON-VEHICLE INSPECTION [12/2013 - ]
OK
No leak in intake system.
HINT:
Perform "Inspection After Repair" after repairing or replacing the intake system.
Refer to INITIALIZATION [12/2013 - ]
Result
Proceed to OK NG
Result: 2
NG
REPAIR OR REPLACE INTAKE SYSTEM
Result: 1
OK
See step 24
- Check the intake system for vacuum leak.
- PERFORM SIMULATION TEST
- Check if the engine can be started.
Result
Result Proceed to Engine can be started A Engine cannot be started B
Result: 1
A
END
Result: 2
B
See step 25
- Check if the engine can be started.
- CONFIRM PROBLEM SYMPTOM
- Confirm the problem symptoms.
HINT:
The problem symptoms below can be determined by reading the freeze frame data.
Result
Problem Symptom Suspected Area Proceed to The engine does not crank - Battery fully depleted
- Starter assembly (includes pinion gear wear or teeth damage)
- Starter system
- Engine assembly (excess friction)
- Drive plate and ring gear sub-assembly wear or teeth damage
A Abnormal cranking speed - Battery fully depleted
- Starter assembly
- Engine assembly (excess friction, compression loss)
B There is no initial combustion (combustion does not occur even once)*1 - Pressure regulator assembly fuel pressure maintenance
- Fuel injector assembly leak
- Fuel leak from fuel line
- Fuel pump control system
- Fuel pump
- Spark plug
- Crankshaft position sensor system
- Ignition coil assembly system
C The engine stalls after starter turnoff (engine stalls immediately after the first time the engine speed increases)*2 - Intake system connections
- Throttle body with motor assembly
- Camshaft timing oil control valve assembly
- Mass air flow meter sub-assembly system
D Initial combustion and starter turn off occur late*3 - Engine coolant temperature sensor
- Mass air flow meter sub-assembly
- Air fuel ratio sensor
- Heated oxygen sensor
- Fuel injector assembly
- Spark plug
- Pressure regulator assembly
- Fuel pump
- Fuel pump control system
E HINT:
- If there is hesitation (cranking speed is slow and combustion occurs before passing TDC) during the initial cranking period, the battery charge may be insufficient or the starter may be malfunctioning.
- *1: If there is no initial combustion, a wire harness may be malfunctioning, or the ignition or fuel system may be malfunctioning.
- *2: If the engine stalls after starter turn off, the air fuel ratio may be incorrect or the camshaft timing oil control valve may have a problem returning.
- *3: If initial combustion and starter turn off occur late, the fuel injection volume may be incorrect (too low or too high).
Result: 2
B
See step 37
Result: 3
C
See step 41
Result: 4
D
See step 30
Result: 5
E
See step 55
Result: 1
A
See step 26
- Confirm the problem symptoms.
- PERFORM SIMULATION TEST
- When cranking the engine, check for a noise indicating that the starter pinion gear is extending, and check that the starter pinion gear is not spinning freely.
Result
Problem Symptom Suspected Area Proceed to A noise indicating that the starter pinion gear is extending is heard and the starter pinion gear is not spinning freely.* - Battery
- Excess engine friction
- Starter assembly
A A noise indicating that the starter pinion gear is extending is heard but the starter pinion gear is spinning freely. - Drive plate and ring gear sub-assembly
- Starter assembly
B A noise indicating that the starter pinion gear is extending is not heard - Battery
- Starter assembly
- Starter system
C HINT:
*: The battery may be fully depleted or there may be excess engine friction.
Result: 2
B
See step 29
Result: 3
C
See step 35
Result: 1
A
See step 27
- When cranking the engine, check for a noise indicating that the starter pinion gear is extending, and check that the starter pinion gear is not spinning freely.
- INSPECT BATTERY
- Inspect the battery.
Refer to ON-VEHICLE INSPECTION [12/2013 - ]
Result
Proceed to OK NG
Result: 2
NG
CHARGE OR REPLACE BATTERY
Result: 1
OK
See step 28
- Inspect the battery.
- CHECK ENGINE ASSEMBLY
- Check that the crankshaft rotates smoothly when rotating it by hand.
OK
Crankshaft rotates smoothly.
HINT:
- Excess engine friction may have occurred temporarily. Remove the cylinder head cover and oil pan, and check for foreign matter such as iron fragments. If there is a malfunction or signs of a malfunction present, perform a detailed inspection by disassembling all the parts.
- Perform "Inspection After Repair" after repairing or replacing the engine assembly.
Refer to INITIALIZATION [12/2013 - ]
Result
Proceed to OK NG
Result: 1
OK
INSPECT STARTER ASSEMBLY. Refer to INSPECTION [12/2013 - ]
Result: 2
NG
REPAIR OR REPLACE ENGINE ASSEMBLY
- Check that the crankshaft rotates smoothly when rotating it by hand.
- INSPECT STARTER ASSEMBLY (STARTER PINION GEAR)
- Remove the starter assembly.
Refer to REMOVAL [12/2013 - 11/2016]
- Check for starter pinion gear wear and damage.
OK
There is no wear or damage.
Result
Proceed to OK NG
Result: 1
OK
REPLACE DRIVE PLATE AND RING GEAR SUB-ASSEMBLY. Refer to REMOVAL [12/2013 - 11/2016]
Result: 2
NG
REPLACE STARTER ASSEMBLY. Refer to REMOVAL [12/2013 - 11/2016]
- Remove the starter assembly.
- INSPECT MASS AIR FLOW METER SUB-ASSEMBLY
- Inspect the mass air flow meter sub-assembly.
Refer to ON-VEHICLE INSPECTION [12/2013 - ]
Result
Proceed to OK NG
Result: 2
NG
See step 40
Result: 1
OK
See step 31
- Inspect the mass air flow meter sub-assembly.
- CHECK INTAKE SYSTEM
- Check for air leaks in the intake system (vacuum hose disconnection, cracks, damaged gaskets, etc.).
Refer to ON-VEHICLE INSPECTION [12/2013 - ]
HINT:
- If the accelerator pedal is released after racing the engine, the inspection is easier to perform because the vacuum inside the intake manifold increases and the air suction noise becomes louder.
- If Short FT #1 and Long FT #1 are largely different from the normal values (differ by more than 15%) when idling (intake air volume is small) and almost the same as the normal values when racing the engine (for example, when maintaining a speed of 3000 rpm) (intake air volume is high), air leakage may be present.
OK
There are no air leaks.
HINT:
Perform "Inspection After Repair" after repairing or replacing the intake system.
Refer to INITIALIZATION [12/2013 - ]
Result
Proceed to OK NG
Result: 2
NG
REPAIR OR REPLACE INTAKE SYSTEM
Result: 1
OK
See step 32
- Check for air leaks in the intake system (vacuum hose disconnection, cracks, damaged gaskets, etc.).
- INSPECT THROTTLE BODY WITH MOTOR ASSEMBLY
- Disconnect the throttle body with motor assembly connector.
HINT:
When the connector is disconnected, the vehicle enters fail-safe mode and the throttle valve opening angle is 4 to 7°.
- Crank the engine and check that it starts.
Result
Result Proceed to Engine starts A Engine does not start B HINT:
When this inspection is performed, the MIL may illuminate. After finishing the inspection, check and clear DTCs.
Result: 2
B
See step 34
Result: 1
A
See step 33
- Disconnect the throttle body with motor assembly connector.
- INSPECT THROTTLE BODY WITH MOTOR ASSEMBLY
- Check if carbon is in the air flow passage.
OK
No carbon present.
HINT:
Perform "Inspection After Repair" after cleaning or replacing the throttle body with motor assembly.
Refer to INITIALIZATION [12/2013 - ]
Result
Proceed to OK NG
Result: 2
NG
REMOVE FOREIGN OBJECT AND CLEAN THROTTLE BODY WITH MOTOR ASSEMBLY
Result: 1
OK
See step 34
- Check if carbon is in the air flow passage.
- PERFORM ACTIVE TEST USING TECHSTREAM (OPERATE CAMSHAFT TIMING OIL CONTROL VALVE ASSEMBLY)
- Operate the VVT system through the Active Test, and check if the VVT system is operating normally.
- Perform the Active Test, referring to DTC P0011 inspection procedure (VVT system for intake camshaft).
Refer to PROCEDURE - Step 2 Refer to PROCEDURE - Step 2
- Perform the Active Test, referring to DTC P0014 inspection procedure (VVT system for exhaust camshaft).
Refer to PROCEDURE - Step 2 Refer to PROCEDURE - Step 2
Result
Result Proceed to NG A OK B
*HINT:
- Jiggle the wire harness and connector to increase the likelihood of detecting malfunctions that do not always occur.
- When the results of the inspection using the Active Test are normal but the valve operating noise is abnormal, check the valve for any signs of problems.
- *: From step 68, perform intake system troubleshooting (steps 84 to 86). If engine starting trouble still occurs, perform fuel system troubleshooting A (steps 87 to 94).
- Perform the Active Test, referring to DTC P0011 inspection procedure (VVT system for intake camshaft).
Result: 1
A
REPLACE CAMSHAFT TIMING OIL CONTROL VALVE ASSEMBLY (FOR INTAKE OR EXHAUST CAMSHAFT). Refer to REMOVAL [12/2013 - ]
Result: 2
B
See step 68
- Operate the VVT system through the Active Test, and check if the VVT system is operating normally.
- INSPECT BATTERY
- Inspect the battery.
Refer to PROCEDURE - Step 1
Result
Proceed to OK NG
Result: 2
NG
CHARGE OR REPLACE BATTERY
Result: 1
OK
See step 36
- Inspect the battery.
- INSPECT STARTER ASSEMBLY
- Inspect the starter assembly.
Refer to INSPECTION [12/2013 - ]
Result
Proceed to OK NG
Result: 1
OK
CHECK STARTER SIGNAL CIRCUIT. Refer to Starter Signal Circuit [12/2013 - 11/2016]
Result: 2
NG
REPLACE STARTER ASSEMBLY. Refer to REMOVAL [12/2013 - 11/2016]
- Inspect the starter assembly.
- PERFORM SIMULATION TEST
- Check the cranking speed.
Result
Problem Symptom Suspected Area Proceed to Cranking speed is slow (100 rpm or less) - Battery
- Starter assembly
- Excess engine friction
A Cranking speed is fast (300 rpm or higher)* Engine compression loss B HINT:
- *: If the cranking speed is fast, there may be compression loss.
- Perform "Inspection After Repair" after repairing or replacing the engine assembly.
Refer to INITIALIZATION [12/2013 - ]
Result: 2
B
CHECK AND REPAIR ENGINE ASSEMBLY
Result: 1
A
See step 38
- Check the cranking speed.
- INSPECT BATTERY
- Inspect the battery.
Refer to PROCEDURE - Step 1
Result
Proceed to OK NG
Result: 2
NG
CHARGE OR REPLACE BATTERY
Result: 1
OK
See step 39
- Inspect the battery.
- CHECK ENGINE ASSEMBLY
- Check that the crankshaft rotates smoothly when rotating it by hand.
OK
Crankshaft rotates smoothly.
HINT:
- Excess engine friction may have occurred temporarily. Remove the cylinder head cover and oil pan, and check for foreign matter such as iron fragments. If there is a malfunction or signs of a malfunction present, perform a detailed inspection by disassembling all the parts.
- Perform "Inspection After Repair" after repairing or replacing the engine assembly.
Refer to INITIALIZATION [12/2013 - ]
Result
Proceed to OK NG
Result: 1
OK
INSPECT STARTER ASSEMBLY. Refer to INSPECTION [12/2013 - ]
Result: 2
NG
CHECK AND REPLACE ENGINE ASSEMBLY
- Check that the crankshaft rotates smoothly when rotating it by hand.
- CHECK HARNESS AND CONNECTOR (MASS AIR FLOW METER SUB-ASSEMBLY - ECM)
- Check the harnesses and connectors, referring to DTC P0102 inspection procedure.
Refer to PROCEDURE - Step 3
HINT:
- Jiggle the wire harness and connector to increase the likelihood of detecting malfunctions that do not always occur.
- Make sure there is not an excessive amount of force applied to the wire harness.
- If the wire harness is normal, after replacing the mass air flow meter sub-assembly, check if engine starting trouble occurs again. If engine starting trouble occurs again, proceed to step 68 and perform intake system troubleshooting (steps 84 to 86). If engine starting trouble still occurs, perform fuel system troubleshooting A (steps 87 to 94).
- Perform "Inspection After Repair" after replacing the mass air flow meter sub-assembly.
Refer to INITIALIZATION [12/2013 - ]
Result
Proceed to OK NG
Result: 1
OK
REPLACE MASS AIR FLOW METER SUB-ASSEMBLY. Refer to REMOVAL [12/2013 - ]
Result: 2
NG
REPAIR OR REPLACE HARNESS OR CONNECTOR
- Check the harnesses and connectors, referring to DTC P0102 inspection procedure.
- INSPECT FUEL INJECTOR ASSEMBLY
- Using a sound scope or screwdriver, check for an injector operating sound while cranking the engine.
OK
Fuel injector assembly operating sound is heard.
Result
Proceed to OK NG
Result: 2
NG
See step 53
Result: 1
OK
See step 42
- Using a sound scope or screwdriver, check for an injector operating sound while cranking the engine.
- CHECK FUEL PRESSURE
- Inspect the fuel pressure.
Refer to PROCEDURE - Step 2
Result
Proceed to OK NG
Result: 2
NG
See step 51
Result: 1
OK
See step 43
- Inspect the fuel pressure.
- CHECK SPARK PLUG AND SPARK
- Check for sparks.
Refer to ON-VEHICLE INSPECTION [12/2013 - ]
Result
Proceed to OK NG
Result: 2
NG
See step 47
Result: 1
OK
See step 44
- Check for sparks.
- CONFIRM VEHICLE CONDITION
- Confirm the conditions present when the malfunction occurred based on the customer problem analysis.
Result
Problem Symptom Suspected Area Proceed to When the engine is stopped and a long time has passed, engine starting trouble occurs*1 Pressure regulator assembly is stuck open A When the engine is stopped and approximately 2 to 3 minutes have passed, engine starting trouble occurs*2 Failure to maintain fuel pressure by pressure regulator assembly When the engine is stopped and approximately 15 to 120 minutes have passed, engine starting trouble occurs*3 Fuel injector assembly leak B Condition other than above, or there is an inconsistency in the conditions present when engine starting trouble occurs - C
*4HINT:
- *1: The pressure regulator may be stuck open. Attach a fuel pressure gauge and check the ability to maintain fuel pressure after stopping the engine.
- *2: The pressure regulator may not be able to maintain the fuel pressure. Attach a fuel pressure gauge and check the ability to maintain fuel pressure after stopping the engine.
- *3: Fuel may be leaking from a fuel injector assembly.
- *4: From step 68, perform fuel system troubleshooting C (steps 69 to 73).
Result: 2
B
See step 46
Result: 3
C
See step 68
Result: 1
A
See step 45
- Confirm the conditions present when the malfunction occurred based on the customer problem analysis.
- CHECK FUEL PRESSURE
HINT:
For the fuel pressure inspection, refer to the following procedures.
Refer to PROCEDURE - Step 2
- Attach a fuel pressure gauge and check the fuel pressure after stopping the engine.
Standard
147 kPa (1.5 kgf/cm2 , 21 psi) or higher (5 minutes after stopping the engine)
Result
Result Proceed to Abnormal A Normal B
*HINT:
- If the engine cannot be started, read the values after cranking the engine.
- *: from step 68, perform fuel system troubleshooting C (steps 69 to 73).
Result: 1
A
REPLACE FUEL PRESSURE REGULATOR ASSEMBLY. Refer to REMOVAL [12/2013 - ]
Result: 2
B
See step 68
- Attach a fuel pressure gauge and check the fuel pressure after stopping the engine.
- INSPECT FUEL INJECTOR ASSEMBLY
- Clean the inside of the intake manifold with compressed air.
- After stopping the engine, measure the HC concentration inside the intake manifold for 15 minutes.
Result
Result Proceed to 4000 ppm or higher A Less than 4000 ppm B
*HINT:
- If the concentration is 4000 ppm or higher, a fuel injector assembly may have a sealing problem.
- *: From step 68, perform fuel system troubleshooting C (steps 69 to 73).
- Perform "Inspection After Repair" after replacing the fuel injector assembly.
Refer to INITIALIZATION [12/2013 - ]
Result: 1
A
REPLACE FUEL INJECTOR ASSEMBLY. Refer to REMOVAL [12/2013 - ]
Result: 2
B
See step 68
- INSPECT SPARK PLUG
- Inspect the spark plugs.
Refer to ON-VEHICLE INSPECTION [12/2013 - ]
HINT:
- Even if the spark plug of only one cylinder is malfunctioning, replace the spark plugs of all cylinders.
- Perform "Inspection After Repair" after replacing the spark plug.
Refer to INITIALIZATION [12/2013 - ]
Result
Proceed to OK NG
Result: 2
NG
REPLACE SPARK PLUG. Refer to REMOVAL [12/2013 - ]
Result: 1
OK
See step 48
- Inspect the spark plugs.
- READ VALUE USING TECHSTREAM (ENGINE SPEED)
- Connect the Techstream to the DLC3.
- Turn the ignition switch to ON.
- Turn the Techstream on.
- Enter the following menus: Powertrain / Engine and ECT / Data List / Primary / Engine Speed.
Powertrain > Engine > Data List
Tester Display Engine Speed - Start the engine.
- While running the engine, read the [Engine Speed] value.
OK
A value that matches the actual engine speed is constantly output.
HINT:
- Check the engine speed using a line graph.
- If the engine cannot be started, check the engine speed while cranking the engine.
- If the engine speed is 0 rpm, the crankshaft position sensor may have an open or short circuit.
Result
Proceed to OK NG
Result: 2
NG
CHECK CRANKSHAFT POSITION SENSOR CIRCUIT. Refer to DTC P0335: Crankshaft Position Sensor "A" Circuit; DTC P0339: Crankshaft Position Sensor "A" Circuit Intermittent [12/2013 - 11/2016]
Result: 1
OK
See step 49
- CHECK TERMINAL VOLTAGE (POWER SOURCE OF IGNITION COIL ASSEMBLY)
- Check the harnesses and connectors, referring to DTC P0351 inspection procedure.
Refer to PROCEDURE - Step 2
HINT:
- Jiggle the wire harness and connector to increase the likelihood of detecting malfunctions that do not always occur.
- Make sure there is not an excessive amount of force applied to the wire harness.
Result
Proceed to OK NG
Result: 2
NG
CHECK IGNITION COIL POWER SOURCE CIRCUIT. Refer to DTC P0351: Ignition Coil "A" Primary / Secondary Circuit; DTC P0352: Ignition Coil "B" Primary / Secondary Circuit; DTC P0353: Ignition Coil "C" Primary / Secondary Circuit; DTC P0354: Ignition Coil "D" Primary / Secondary Circuit [12/2013 - 11/2016]
Result: 1
OK
See step 50
- Check the harnesses and connectors, referring to DTC P0351 inspection procedure.
- CHECK HARNESS AND CONNECTOR (IGNITION COIL ASSEMBLY - ECM)
- Check the harnesses and connectors, referring to DTC P0351 inspection procedure.
Refer to PROCEDURE - Step 3
HINT:
- Jiggle the wire harness and connector to increase the likelihood of detecting malfunctions that do not always occur.
- Make sure there is not an excessive amount of force applied to the wire harness.
- If the wire harness is normal, after replacing the ignition coil assembly, check if engine starting trouble occurs again. If engine starting trouble occurs again, proceed to step 68 and perform troubleshooting for the ignition system (steps 75 to 83).
- Perform "Inspection After Repair" after replacing the ignition coil assembly.
Refer to INITIALIZATION [12/2013 - ]
Result
Proceed to OK NG
Result: 1
OK
REPLACE IGNITION COIL ASSEMBLY. Refer to REMOVAL [12/2013 - ]
Result: 2
NG
REPAIR OR REPLACE HARNESS OR CONNECTOR
- Check the harnesses and connectors, referring to DTC P0351 inspection procedure.
- PERFORM ACTIVE TEST USING TECHSTREAM (CONTROL THE FUEL PUMP / SPEED)
- Connect the Techstream to the DLC3.
- Turn the ignition switch to ON.
- Turn the Techstream on.
- Enter the following menus: Powertrain / Engine and ECT / Active Test / Control the Fuel Pump / Speed.
Powertrain > Engine > Active Test
Tester Display Control the Fuel Pump / Speed - When performing the Active Test, check for an operating sound from the fuel pump.
OK
Control the Fuel Pump / Speed Specified Condition ON Operating sound heard OFF Operating sound not heard HINT:
Jiggle the wire harness and connector to increase the likelihood of detecting malfunctions that do not always occur.
Result
Proceed to OK NG
Result: 2
NG
CHECK FUEL PUMP CONTROL CIRCUIT. Refer to Fuel Pump Control Circuit [12/2013 - 11/2016]
Result: 1
OK
See step 52
- PERFORM ACTIVE TEST USING TECHSTREAM (CONTROL THE FUEL PUMP / SPEED)
- Connect the Techstream to the DLC3.
- Turn the ignition switch to ON.
- Turn the Techstream on.
- Enter the following menus: Powertrain / Engine and ECT / Active Test / Control the Fuel Pump / Speed.
Powertrain > Engine > Active Test
Tester Display Control the Fuel Pump / Speed - When performing the Active Test, check for fuel leakage from the fuel pipes.
Result
Result Proceed to Fuel leakage or signs of fuel leakage are present A No fuel leakage or signs of fuel leakage B HINT:
- Jiggle the wire harness and connector to increase the likelihood of detecting malfunctions that do not always occur.
- Check if the vehicle ran out of fuel, as engine starting trouble due to running out of fuel is also detected.
- If there are no fuel leaks, after inspecting the fuel pump control system, check if engine starting trouble occurs again. If engine starting trouble occurs again, proceed to step 68 and perform fuel system troubleshooting C (steps 69 to 73).
Result: 1
A
REPAIR OR REPLACE FUEL LINE
Result: 2
B
CHECK FUEL PUMP CONTROL CIRCUIT. Refer to Fuel Pump Control Circuit [12/2013 - 11/2016]
- READ VALUE USING TECHSTREAM (ENGINE SPEED)
- Connect the Techstream to the DLC3.
- Turn the ignition switch to ON.
- Turn the Techstream on.
- Enter the following menus: Powertrain / Engine and ECT / Data List / Primary / Engine Speed.
Powertrain > Engine > Data List
Tester Display Engine Speed - Start the engine.
- While running the engine, read the [Engine Speed] value.
OK
A value that matches the actual engine speed is constantly output.
HINT:
- Check the engine speed using a line graph.
- If the engine cannot be started, check the engine speed while cranking the engine.
- If the engine speed is 0 rpm, the crankshaft position sensor may have an open or short circuit.
Result
Proceed to OK NG
Result: 2
NG
REPLACE CRANKSHAFT POSITION SENSOR. Refer to REMOVAL [12/2013 - ]
Result: 1
OK
See step 54
- CHECK TERMINAL VOLTAGE (#10, #20, #30 AND/OR #40)
- Check the harnesses and connectors, referring to DTC P0300 inspection procedure.
Refer to PROCEDURE - Step 10 Refer to PROCEDURE - Step 10
HINT:
- Jiggle the wire harness and connector to increase the likelihood of detecting malfunctions that do not always occur.
- Make sure there is not an excessive amount of force applied to the wire harness.
Result
Proceed to OK NG
Result: 1
OK
REPLACE ECM. Refer to REMOVAL [12/2013 - ]
Result: 2
NG
CHECK FUEL INJECTOR CIRCUIT. Refer to Fuel Injector Circuit [12/2013 - ]
- Check the harnesses and connectors, referring to DTC P0300 inspection procedure.
- INSPECT ENGINE COOLANT TEMPERATURE SENSOR
- Inspect the engine coolant temperature sensor.
Refer to INSPECTION [12/2013 - ]
HINT:
- If the engine coolant temperature sensor is malfunctioning, after replacing it, check if engine starting trouble occurs again. If engine starting trouble occurs, replace the ECM. If engine starting trouble still occurs, proceed to step 68 and perform fuel system troubleshooting A (steps 95 to 102), fuel system troubleshooting B (steps 103 to 105), intake system troubleshooting (steps 106 to 108), and ignition system troubleshooting (steps 109 to 117), in that order.
- Perform "Inspection After Repair" after replacing the engine coolant temperature sensor.
Refer to INITIALIZATION [12/2013 - ]
Result
Proceed to OK NG
Result: 2
NG
REPLACE ENGINE COOLANT TEMPERATURE SENSOR. Refer to REMOVAL [12/2013 - ]
Result: 1
OK
See step 56
- Inspect the engine coolant temperature sensor.
- CHECK HARNESS AND CONNECTOR (ENGINE COOLANT TEMPERATURE SENSOR - ECM)
- Disconnect the engine coolant temperature sensor connector.
- Disconnect the ECM connector.
- Measure the resistance according to the value(s) in the table below.
Standard Resistance
Tester Connection Condition Specified Condition C17-2 - C1-95 (THW) Always Below 1 Ω C17-1 - C1-96 (ETHW) Always Below 1 Ω C17-2 or C1-95 (THW) - Body ground Always 10 kΩ or higher HINT:
- Jiggle the wire harness and connector to increase the likelihood of detecting malfunctions that do not always occur.
- Make sure there is not an excessive amount of force applied to the wire harness.
- If the wire harness or connector is malfunctioning, after replacing or repairing it, check if engine starting trouble occurs again. If engine starting trouble occurs, replace the ECM. If engine starting trouble still occurs, proceed to step 68 and perform fuel system troubleshooting A (steps 95 to 102), fuel system troubleshooting B (steps 103 to 105), intake system troubleshooting (steps 106 to 108), and ignition system troubleshooting (steps 109 to 117), in that order.
Result
Proceed to OK NG
Result: 2
NG
REPAIR OR REPLACE HARNESS OR CONNECTOR
Result: 1
OK
See step 57
- INSPECT MASS AIR FLOW METER SUB-ASSEMBLY
- Inspect the mass air flow meter sub-assembly.
Refer to ON-VEHICLE INSPECTION [12/2013 - ]
HINT:
- If the mass air flow meter sub-assembly is malfunctioning, after replacing it, check if engine starting trouble occurs again. If engine starting trouble occurs, replace the ECM. If engine starting trouble still occurs, proceed to step 68 and perform fuel system troubleshooting A (steps 95 to 102), fuel system troubleshooting B (steps 103 to 105), intake system troubleshooting (steps 106 to 108), and ignition system troubleshooting (steps 109 to 117), in that order.
- Perform "Inspection After Repair" after replacing the mass air flow meter sub-assembly.
Refer to INITIALIZATION [12/2013 - ]
Result
Proceed to OK NG
Result: 2
NG
REPLACE MASS AIR FLOW METER SUB-ASSEMBLY. Refer to REMOVAL [12/2013 - ]
Result: 1
OK
See step 58
- Inspect the mass air flow meter sub-assembly.
- CHECK HARNESS AND CONNECTOR (MASS AIR FLOW METER SUB-ASSEMBLY - ECM)
- Check the harnesses and connectors, referring to DTC P0102 inspection procedure.
Refer to PROCEDURE - Step 3
HINT:
- Jiggle the wire harness and connector to increase the likelihood of detecting malfunctions that do not always occur.
- Make sure there is not an excessive amount of force applied to the wire harness.
- If the wire harness or connector is malfunctioning, after replacing or repairing it, check if engine starting trouble occurs again. If engine starting trouble occurs, replace the ECM. If engine starting trouble still occurs, proceed to step 68 and perform fuel system troubleshooting A (steps 95 to 102), fuel system troubleshooting B (steps 103 to 105), intake system troubleshooting (steps 106 to 108), and ignition system troubleshooting (steps 109 to 117), in that order.
Result
Proceed to OK NG
Result: 2
NG
REPAIR OR REPLACE HARNESS OR CONNECTOR
Result: 1
OK
See step 59
- Check the harnesses and connectors, referring to DTC P0102 inspection procedure.
- READ VALUE USING TECHSTREAM
- Connect the Techstream to the DLC3.
- Turn the ignition switch to ON.
- Turn the Techstream on.
- Enter the following menus: Powertrain / Engine and ECT / Data List / Primary / Long FT #1 and Atmosphere Pressure.
Powertrain > Engine > Data List
Tester Display Long FT #1 Atmosphere Pressure Result
Data List Item Result Suspected Area Proceed to Long FT #1 25% or higher, or less than -25% - Air fuel ratio sensor
- Heated oxygen sensor
- Mass air flow meter sub-assembly
- Fuel injector assembly
- ECM
A Atmosphere Pressure 80 kPa(abs) [600 mmHg(abs)] or less (when altitude is 0 m [0 ft]) Both Data List items listed above Values are other than above - B
Result: 2
B
See step 63
Result: 1
A
See step 60
- PERFORM SIMULATION TEST
- Connect the Techstream to the DLC3.
- Turn the ignition switch to ON.
- Turn the Techstream on.
- Enter the following menus: Powertrain / Engine and ECT / Utility / Learning Value Reset.
Powertrain > Engine > Utility
Tester Display Learning Value Reset - Confirm the following conditions as instructed on the screen.
- Ignition switch ON
- Engine stopped
- Battery voltage is higher than 9 V
- After confirming, select "Next" and initialize the learn value.
HINT:
If a message indicating learned value initialization failure is displayed on the screen, confirm the execution conditions, and perform learned value initialization again.
- Check if the engine can be started.
Result
Result Proceed to Engine can be started A Engine cannot be started B
Result: 2
B
See step 63
Result: 1
A
See step 61
- INSPECT AIR FUEL RATIO SENSOR
- Connect the Techstream to the DLC3.
- Start the engine.
- Turn the Techstream on.
- Enter the following menus: Powertrain / Engine and ECT / Data List / Primary / Fuel System Status #1.
Powertrain > Engine > Data List
Tester Display Fuel System Status #1 - Confirm that Fuel System Status #1 is CL.
- Enter the following menus: Powertrain / Engine and ECT / Data List / Primary / AF Lambda B1S1.
Powertrain > Engine > Data List
Tester Display AF Lambda B1S1 - Confirm that AF Lambda B1S1 is within the range of 0.95 to 1.05 when idling.
- Enter the following menus: Powertrain / Engine and ECT / Active Test / Control the Injection Volume for A/F Sensor / Gas AF Control / AFS Voltage B1S1 and O2S B1S2.
Powertrain > Engine > Active Test
Active Test Display Control the Injection Volume for A/F Sensor Data List Display AFS Voltage B1S1 O2S B1S2 - Read the output voltage from the air fuel ratio sensor when increasing and decreasing the fuel injection volume.
Standard
Techstream Display Injection Volume Specified Condition AFS Voltage B1S1 12.5% Air fuel ratio sensor output voltage is below 3.1 V -12.5% Air fuel ratio sensor output voltage is higher than 3.4 V HINT:
- The air fuel ratio sensor has an output delay of a few seconds and the heated oxygen sensor has a maximum output delay of approximately 20 seconds.
- If the air fuel ratio sensor is malfunctioning, after replacing it, check if engine starting trouble occurs again. If engine starting trouble occurs, replace the ECM. If engine starting trouble still occurs, proceed to step 68 and perform fuel system troubleshooting A (steps 95 to 102), fuel system troubleshooting B (steps 103 to 105), intake system troubleshooting (steps 106 to 108), and ignition system troubleshooting (steps 109 to 117), in that order.
- Perform "Inspection After Repair" after replacing the air fuel ratio sensor.
Refer to INITIALIZATION [12/2013 - ]
Result
Proceed to OK NG
Result: 2
NG
REPLACE AIR FUEL RATIO SENSOR. Refer to REMOVAL [12/2013 - ]
Result: 1
OK
See step 62
- PERFORM SIMULATION TEST
- Check if the idling speed is stable after starting the engine.
OK
Engine speed is stable.
HINT:
- After replacing the fuel injector assembly or mass air flow meter sub-assembly, check if engine starting trouble occurs again. If engine starting trouble occurs, replace the ECM. If engine starting trouble still occurs, proceed to step 68 and perform fuel system troubleshooting A (steps 95 to 102), fuel system troubleshooting B (steps 103 to 105), intake system troubleshooting (steps 106 to 108), and ignition system troubleshooting (steps 109 to 117), in that order.
- Perform "Inspection After Repair" after replacing the fuel injector assembly or mass air flow meter sub-assembly.
Refer to INITIALIZATION [12/2013 - ]
Result
Proceed to OK NG
Result: 1
OK
REPLACE MASS AIR FLOW METER SUB-ASSEMBLY. Refer to REMOVAL [12/2013 - ]
Result: 2
NG
REPLACE FUEL INJECTOR ASSEMBLY. Refer to REMOVAL [12/2013 - ]
- Check if the idling speed is stable after starting the engine.
- CHECK FUEL PRESSURE
- Check the fuel pressure.
Refer to PROCEDURE - Step 2
Result
Proceed to OK NG
Result: 2
NG
See step 74
Result: 1
OK
See step 64
- Check the fuel pressure.
- INSPECT SPARK PLUG
- Inspect the spark plugs.
Refer to ON-VEHICLE INSPECTION [12/2013 - ]
Result
Result Proceed to All cylinders are normal A One cylinder is abnormal*1 B All cylinders are abnormal*2, *3 C HINT:
- *1: If one cylinder is abnormal, replace the spark plug of that cylinder and inspect the ignition and fuel system for that cylinder. After performing repairs, check if engine starting trouble occurs again. If engine starting trouble still occurs, proceed to step 68 and perform fuel system troubleshooting A (steps 95 to 102), fuel system troubleshooting B (steps 103 to 105), intake system troubleshooting (steps 106 to 108), and ignition system troubleshooting (steps 109 to 117), in that order.
- *2: If all cylinders are abnormal, replace the spark plugs of all cylinders and check if engine starting trouble occurs again. If engine starting trouble still occurs, proceed to step 68 and perform fuel system troubleshooting A (steps 95 to 102), fuel system troubleshooting B (steps 103 to 105), intake system troubleshooting (steps 106 to 108), and ignition system troubleshooting (steps 109 to 117), in that order.
- *3: Engine starting trouble may occur if the vehicle is driven extremely short distances repeatedly.
- Perform "Inspection After Repair" after replacing the spark plug.
Refer to INITIALIZATION [12/2013 - ]
Result: 2
B
REPLACE SPARK PLUG (ABNORMAL CYLINDER). Refer to REMOVAL [12/2013 - ]
Result: 3
C
REPLACE SPARK PLUG (ALL CYLINDER). Refer to REMOVAL [12/2013 - ]
Result: 1
A
See step 65
- Inspect the spark plugs.
- CONFIRM VEHICLE CONDITION
- Confirm the conditions present when the malfunction occurred based on the customer problem analysis.
Result
Problem Symptom Suspected Area Proceed to When the engine is stopped and a long time has passed, engine starting trouble occurs*1 Pressure regulator assembly is stuck open A When the engine is stopped and approximately 2 to 3 minutes have passed, engine starting trouble occurs*2 Failure to maintain fuel pressure by pressure regulator assembly When the engine is stopped and approximately 15 to 120 minutes have passed, engine starting trouble occurs*3 Fuel injector assembly leak B Condition other than above, or there is an inconsistency in the conditions present when engine starting trouble occurs - C
*4HINT:
- *1: The pressure regulator may be stuck open. Attach a fuel pressure gauge and check the ability to maintain fuel pressure after stopping the engine.
- *2: The pressure regulator may not be able to maintain the fuel pressure. Attach a fuel pressure gauge and check the ability to maintain fuel pressure after stopping the engine.
- *3: Fuel may be leaking from a fuel injector assembly.
- *4: From step 68, perform fuel system troubleshooting A (steps 95 to 102), fuel system troubleshooting B (steps 103 to 105), intake system troubleshooting (steps 106 to 108), and ignition system troubleshooting (steps 109 to 117), in that order.
Result: 2
B
See step 67
Result: 3
C
See step 68
Result: 1
A
See step 66
- Confirm the conditions present when the malfunction occurred based on the customer problem analysis.
- CHECK FUEL PRESSURE
HINT:
For the fuel pressure inspection, refer to the following procedures.
Refer to PROCEDURE - Step 2
- Attach a fuel pressure gauge and check the fuel pressure after stopping the engine.
Standard
147 kPa (1.5 kgf/cm2 , 21 psi) or higher (5 minutes after stopping the engine)
Result
Result Proceed to Abnormal A Normal B
*HINT:
- If the engine cannot be started, read the values after cranking the engine.
- *: From step 68, perform fuel system troubleshooting A (steps 95 to 102), fuel system troubleshooting B (steps 103 to 105), intake system troubleshooting (steps 106 to 108), and ignition system troubleshooting (steps 109 to 117), in that order.
Result: 1
A
REPLACE FUEL PRESSURE REGULATOR ASSEMBLY. Refer to REMOVAL [12/2013 - ]
Result: 2
B
See step 68
- Attach a fuel pressure gauge and check the fuel pressure after stopping the engine.
- INSPECT FUEL INJECTOR ASSEMBLY
- Clean the inside of the intake manifold with compressed air.
- After stopping the engine, measure the HC concentration inside the intake manifold for 15 minutes.
Result
Result Proceed to 4000 ppm or higher A Less than 4000 ppm B
*HINT:
- If the concentration is 4000 ppm or higher, a fuel injector may have a sealing problem.
- *: From step 68, perform fuel system troubleshooting A (steps 95 to 102), fuel system troubleshooting B (steps 103 to 105), intake system troubleshooting (steps 106 to 108), and ignition system troubleshooting (steps 109 to 117), in that order.
- Perform "Inspection After Repair" after replacing the fuel injector assembly.
Refer to INITIALIZATION [12/2013 - ]
Result: 1
A
REPLACE FUEL INJECTOR ASSEMBLY. Refer to REMOVAL [12/2013 - ]
Result: 2
B
See step 68
- CHECK MALFUNCTION CONDITION
- If the malfunction could not be identified during the inspection in steps 44, 45, 46 and 52, perform fuel system troubleshooting C (steps 69 to 73).
Result
Performed Step Troubleshooting by System Procedure Proceed to Steps 44, 45, 46 and 52 Fuel system troubleshooting C 69 to 73 A - If the malfunction could not be identified during the inspection in step 50, perform ignition system troubleshooting (steps 75 to 83).
Result
Performed Step Troubleshooting by System Procedure Proceed to Step 50 Ignition system troubleshooting 75 to 83 B - If the malfunction could not be identified during the inspection in steps 34 and 40, perform intake air system troubleshooting (steps 84 to 86). If engine starting trouble still occurs, perform fuel system troubleshooting A (steps 87 to 94).
Result
Performed Step Troubleshooting by System Procedure Proceed to Step 34 and 40 Intake air system troubleshooting 84 to 86 C Fuel system troubleshooting A 87 to 94 - If the malfunction could not be identified during the inspection in steps 55, 56, 57, 58, 61, 62, 64, 65, 66, 67 and 74, perform fuel system troubleshooting A (steps 95 to 102), fuel system troubleshooting B (steps 103 to 105), intake air system troubleshooting (steps 106 to 108), and ignition system troubleshooting (steps 109 to 117), in that order.
Result
Performed Step Troubleshooting by System Procedure Proceed to Steps 55, 56, 57, 58, 61, 62, 64, 65, 66, 67 and 74 Fuel system troubleshooting A 95 to 102 D Fuel system troubleshooting B 103 to 105 Intake air system troubleshooting 106 to 108 Ignition system troubleshooting 109 to 117
Result: 2
B
See step 75
Result: 3
C
See step 84
Result: 4
D
See step 95
Result: 1
A
See step 69
- If the malfunction could not be identified during the inspection in steps 44, 45, 46 and 52, perform fuel system troubleshooting C (steps 69 to 73).
- INSPECT FUEL INJECTOR ASSEMBLY
- Inspect the fuel injector assemblies.
Refer to INSPECTION [12/2013 - ]
HINT:
Perform "Inspection After Repair" after replacing the fuel injector assembly.
Refer to INITIALIZATION [12/2013 - ]
Result
Proceed to OK NG
Result: 2
NG
REPLACE FUEL INJECTOR ASSEMBLY. Refer to REMOVAL [12/2013 - ]
Result: 1
OK
See step 70
- Inspect the fuel injector assemblies.
- CHECK TERMINAL VOLTAGE (#10, #20, #30 AND/OR #40)
- Check the harnesses and connectors, referring to DTC P0300 inspection procedure.
Refer to PROCEDURE - Step 10 Refer to PROCEDURE - Step 10
HINT:
- Jiggle the wire harness and connector to increase the likelihood of detecting malfunctions that do not always occur.
- Make sure there is not an excessive amount of force applied to the wire harness.
Result
Proceed to OK NG
Result: 2
NG
CHECK FUEL INJECTOR CIRCUIT. Refer to Fuel Injector Circuit [12/2013 - ]
Result: 1
OK
See step 71
- Check the harnesses and connectors, referring to DTC P0300 inspection procedure.
- REPLACE CRANKSHAFT POSITION SENSOR
- Replace the crankshaft position sensor.
Refer to REMOVAL [12/2013 - ]
- Check the engine start operation.
OK
Malfunction has been repaired successfully.
Result
Proceed to OK NG
Result: 1
OK
END (CRANKSHAFT POSITION SENSOR IS DEFECTIVE)
Result: 2
NG
See step 72
- Replace the crankshaft position sensor.
- REPLACE CAMSHAFT POSITION SENSOR (FOR INTAKE CAMSHAFT)
- Replace the camshaft position sensor (for intake camshaft).
Refer to REMOVAL [12/2013 - ]
- Check the engine start operation.
OK
Malfunction has been repaired successfully.
Result
Proceed to OK NG
Result: 1
OK
END (CAMSHAFT POSITION SENSOR (FOR INTAKE CAMSHAFT) IS DEFECTIVE)
Result: 2
NG
See step 73
- Replace the camshaft position sensor (for intake camshaft).
- REPLACE CAMSHAFT POSITION SENSOR (FOR EXHAUST CAMSHAFT)
- Replace the camshaft position sensor (for exhaust camshaft).
Refer to REMOVAL [12/2013 - ]
- Check the engine start operation.
OK
Malfunction has been repaired successfully.
Result
Proceed to OK NG
Result: 1
OK
END (CAMSHAFT POSITION SENSOR (FOR EXHAUST CAMSHAFT) IS DEFECTIVE)
Result: 2
NG
REPLACE ECM. Refer to REMOVAL [12/2013 - ]
- Replace the camshaft position sensor (for exhaust camshaft).
- PERFORM ACTIVE TEST USING TECHSTREAM (CONTROL THE FUEL PUMP / SPEED)
- Connect the Techstream to the DLC3.
- Turn the ignition switch to ON.
- Turn the Techstream on.
- Enter the following menus: Powertrain / Engine and ECT / Active Test / Control the Fuel Pump / Speed.
Powertrain > Engine > Active Test
Tester Display Control the Fuel Pump / Speed - When performing the Active Test, check for fuel leakage from the fuel pipes.
Result
Result Proceed to Fuel leakage or signs of fuel leakage are present A No fuel leakage or signs of fuel leakage B HINT:
- Jiggle the wire harness and connector to increase the likelihood of detecting malfunctions that do not always occur.
- Check if the vehicle ran out of fuel, as engine starting trouble due to running out of fuel is also detected.
- If there are no fuel leaks, after inspecting the fuel pump control system, check if engine starting trouble occurs again. If engine starting trouble still occurs, proceed to step 68 and perform fuel system troubleshooting A (steps 95 to 102), fuel system troubleshooting B (steps 103 to 105), intake system troubleshooting (steps 106 to 108), and ignition system troubleshooting (steps 109 to 117), in that order.
Result: 1
A
REPAIR OR REPLACE FUEL LINE
Result: 2
B
CHECK FUEL PUMP CONTROL CIRCUIT. Refer to Fuel Pump Control Circuit [12/2013 - 11/2016]
- CHECK SENSOR INSTALLATION (CRANKSHAFT POSITION SENSOR)
- Check the tightening and installation condition of the crankshaft position sensor bolt.
- Check the connection of the crankshaft position sensor connector.
OK
Sensor is installed correctly.
Result
Proceed to OK NG
Result: 2
NG
SECURELY REINSTALL SENSOR
Result: 1
OK
See step 76
- CHECK SENSOR INSTALLATION (CAMSHAFT POSITION SENSOR (FOR INTAKE CAMSHAFT))
- Check the tightening and installation condition of the camshaft position sensor (for intake camshaft) bolt.
- Check the connection of the camshaft position sensor (for intake camshaft) connector.
OK
Sensor is installed correctly.
Result
Proceed to OK NG
Result: 2
NG
SECURELY REINSTALL SENSOR (FOR INTAKE CAMSHAFT)
Result: 1
OK
See step 77
- CHECK SENSOR INSTALLATION (CAMSHAFT POSITION SENSOR (FOR EXHAUST CAMSHAFT))
- Check the tightening and installation condition of the camshaft position sensor (for exhaust camshaft) bolt.
- Check the connection of the camshaft position sensor (for exhaust camshaft) connector.
OK
Sensor is installed correctly.
Result
Proceed to OK NG
Result: 2
NG
SECURELY REINSTALL SENSOR (FOR EXHAUST CAMSHAFT)
Result: 1
OK
See step 78
- CHECK HARNESS AND CONNECTOR (CRANKSHAFT POSITION SENSOR - ECM)
- Check the harnesses and connectors, referring to DTC P0335 inspection procedure.
Refer to PROCEDURE - Step 3
HINT:
- Jiggle the wire harness and connector to increase the likelihood of detecting malfunctions that do not always occur.
- Make sure there is not an excessive amount of force applied to the wire harness.
Result
Proceed to OK NG
Result: 2
NG
REPAIR OR REPLACE HARNESS OR CONNECTOR
Result: 1
OK
See step 79
- Check the harnesses and connectors, referring to DTC P0335 inspection procedure.
- CHECK HARNESS AND CONNECTOR (CAMSHAFT POSITION SENSOR (FOR INTAKE CAMSHAFT) - ECM)
- Check the harnesses and connectors, referring to DTC P0340 inspection procedure.
Refer to PROCEDURE - Step 2
HINT:
- Jiggle the wire harness and connector to increase the likelihood of detecting malfunctions that do not always occur.
- Make sure there is not an excessive amount of force applied to the wire harness.
Result
Proceed to OK NG
Result: 2
NG
REPAIR OR REPLACE HARNESS OR CONNECTOR
Result: 1
OK
See step 80
- Check the harnesses and connectors, referring to DTC P0340 inspection procedure.
- CHECK HARNESS AND CONNECTOR (CAMSHAFT POSITION SENSOR (FOR EXHAUST CAMSHAFT) - ECM)
- Check the harnesses and connectors, referring to DTC P0365 inspection procedure.
Refer to PROCEDURE - Step 2
HINT:
- Jiggle the wire harness and connector to increase the likelihood of detecting malfunctions that do not always occur.
- Make sure there is not an excessive amount of force applied to the wire harness.
Result
Proceed to OK NG
Result: 2
NG
REPAIR OR REPLACE HARNESS OR CONNECTOR
Result: 1
OK
See step 81
- Check the harnesses and connectors, referring to DTC P0365 inspection procedure.
- REPLACE CRANKSHAFT POSITION SENSOR
- Replace the crankshaft position sensor.
Refer to REMOVAL [12/2013 - ]
- Check the engine start operation.
OK
Malfunction has been repaired successfully.
Result
Proceed to OK NG
Result: 1
OK
END (CRANKSHAFT POSITION SENSOR IS DEFECTIVE)
Result: 2
NG
See step 82
- Replace the crankshaft position sensor.
- REPLACE CAMSHAFT POSITION SENSOR (FOR INTAKE CAMSHAFT)
- Replace the camshaft position sensor (for intake camshaft).
Refer to REMOVAL [12/2013 - ]
- Check the engine start operation.
OK
Malfunction has been repaired successfully.
Result
Proceed to OK NG
Result: 1
OK
END (CAMSHAFT POSITION SENSOR (FOR INTAKE CAMSHAFT) IS DEFECTIVE)
Result: 2
NG
See step 83
- Replace the camshaft position sensor (for intake camshaft).
- REPLACE CAMSHAFT POSITION SENSOR (FOR EXHAUST CAMSHAFT)
- Replace the camshaft position sensor (for exhaust camshaft).
Refer to REMOVAL [12/2013 - ]
- Check the engine start operation.
OK
Malfunction has been repaired successfully.
Result
Proceed to OK NG
Result: 1
OK
END (CAMSHAFT POSITION SENSOR (FOR EXHAUST CAMSHAFT) IS DEFECTIVE)
Result: 2
NG
REPLACE ECM. Refer to REMOVAL [12/2013 - ]
- Replace the camshaft position sensor (for exhaust camshaft).
- READ VALUE USING TECHSTREAM (ISC LEARNING VALUE)
- Connect the Techstream to the DLC3.
- Turn the ignition switch to ON.
- Turn the Techstream on.
- Enter the following menus: Powertrain / Engine and ECT / Data List / Primary / ISC Learning Value.
Powertrain > Engine > Data List
Tester Display ISC Learning Value - Start the engine and warm it up until the engine coolant temperature stabilizes with the A/C switch and all the accessory switches off.
Result
Data List Item Result Suspected Area Proceed to ISC Learning Value (Engine displacement (liters) x 0.9) or higher - Valve timing
- Compression
A Less than (engine displacement (liters) x 0.9) - B
Result: 2
B
See step 86
Result: 1
A
See step 85
- CHECK CYLINDER COMPRESSION PRESSURE
- Check the compression.
Refer to PROCEDURE - Step 11
HINT:
Perform "Inspection After Repair" after repairing or replacing the engine assembly.
Refer to INITIALIZATION [12/2013 - ]
Result
Proceed to OK NG
Result: 1
OK
ADJUST VALVE TIMING. Refer to REASSEMBLY [12/2013 - 11/2015] Refer to REASSEMBLY [11/2015 - ]
Result: 2
NG
CHECK AND REPAIR ENGINE ASSEMBLY
- Check the compression.
- INSPECT ENGINE COOLANT TEMPERATURE SENSOR
- Inspect the engine coolant temperature sensor.
Refer to INSPECTION [12/2013 - ]
HINT:
Perform "Inspection After Repair" after replacing the engine coolant temperature sensor.
Refer to INITIALIZATION [12/2013 - ]
Result
Proceed to OK NG
Result: 2
NG
REPLACE ENGINE COOLANT TEMPERATURE SENSOR. Refer to REMOVAL [12/2013 - ]
Result: 1
OK
See step 87
- Inspect the engine coolant temperature sensor.
- CHECK FUEL PRESSURE
HINT:
For the fuel pressure inspection, refer to the following procedures.
Refer to PROCEDURE - Step 2
- Attach a fuel pressure gauge and check the fuel pressure when cranking the engine and after stopping the engine.
Standard
Vehicle State Specified Condition Cranking engine 304 to 343 kPa (3.1 to 3.5 kgf/cm2 , 44 to 50 psi) 5 minutes after stopping engine 147 kPa (1.5 kgf/cm2 , 21 psi) or higher Result
Proceed to OK NG
Result: 2
NG
See step 93
Result: 1
OK
See step 88
- Attach a fuel pressure gauge and check the fuel pressure when cranking the engine and after stopping the engine.
- READ VALUE USING TECHSTREAM (LONG FT #1)
- Connect the Techstream to the DLC3.
- Turn the ignition switch to ON.
- Turn the Techstream on.
- Enter the following menus: Powertrain / Engine and ECT / Data List / Gas AF Control / Long FT #1.
Powertrain > Engine > Data List
Tester Display Long FT #1 Result
Data List Item Result Suspected Area Proceed to Long FT #1 -15 to 15% - Wire harness or connector
- Fuel
A 15% or higher, or less than -15% Fuel injector assembly B HINT:
Perform "Inspection After Repair" after replacing the fuel injector assembly.
Refer to INITIALIZATION [12/2013 - ]
Result: 2
B
REPLACE FUEL INJECTOR ASSEMBLY. Refer to REMOVAL [12/2013 - ]
Result: 1
A
See step 89
- PERFORM SIMULATION TEST
- Check if the idling speed after starting the engine is currently stable and has always been stable in the past.
Result
Problem Symptom Suspected Area Proceed to Current unstable idle speed or history of unstable idle speed Crankshaft position sensor system A All current and past idle speeds are stable Fuel B HINT:
Through the customer problem analysis, confirm the fuel being used and the location at which the fuel was added to check if the malfunction is caused by the fuel in the vehicle.
Result: 2
B
REPLACE FUEL
Result: 1
A
See step 90
- Check if the idling speed after starting the engine is currently stable and has always been stable in the past.
- CHECK SENSOR INSTALLATION (CRANKSHAFT POSITION SENSOR)
- Check the tightening and installation condition of the crankshaft position sensor bolt.
- Check the connection of the crankshaft position sensor connector.
OK
Sensor is installed correctly.
Result
Proceed to OK NG
Result: 2
NG
SECURELY REINSTALL SENSOR
Result: 1
OK
See step 91
- CHECK HARNESS AND CONNECTOR (CRANKSHAFT POSITION SENSOR - ECM)
- Check the harnesses and connectors, referring to DTC P0335 inspection procedure.
Refer to PROCEDURE - Step 3
HINT:
- Jiggle the wire harness and connector to increase the likelihood of detecting malfunctions that do not always occur.
- Make sure there is not an excessive amount of force applied to the wire harness.
Result
Proceed to OK NG
Result: 2
NG
REPAIR OR REPLACE HARNESS OR CONNECTOR
Result: 1
OK
See step 92
- Check the harnesses and connectors, referring to DTC P0335 inspection procedure.
- REPLACE CRANKSHAFT POSITION SENSOR
- Replace the crankshaft position sensor.
Refer to REMOVAL [12/2013 - ]
- Check the engine start operation.
OK
Malfunction has been repaired successfully.
Result
Proceed to OK NG
Result: 1
OK
END (CRANKSHAFT POSITION SENSOR IS DEFECTIVE)
Result: 2
NG
REPLACE ECM. Refer to REMOVAL [12/2013 - ]
- Replace the crankshaft position sensor.
- PERFORM ACTIVE TEST USING TECHSTREAM (CONTROL THE FUEL PUMP / SPEED)
- Connect the Techstream to the DLC3.
- Turn the ignition switch to ON.
- Turn the Techstream on.
- Enter the following menus: Powertrain / Engine and ECT / Active Test / Control the Fuel Pump / Speed.
Powertrain > Engine > Active Test
Tester Display Control the Fuel Pump / Speed - When performing the Active Test, check for fuel leakage from the fuel pipes.
Result
Result Proceed to Fuel leakage or signs of fuel leakage are present A No fuel leakage or signs of fuel leakage B HINT:
- Jiggle the wire harness and connector to increase the likelihood of detecting malfunctions that do not always occur.
- When performing the Active Test, if there is no operating noise from the fuel pump, the fuel pump system may be malfunctioning.
- Check if the vehicle ran out of fuel, as engine starting trouble due to running out of fuel is also detected.
Result: 1
A
REPAIR OR REPLACE FUEL LINE
Result: 2
B
See step 94
- INSPECT FUEL PUMP
- Inspect the fuel pump.
Refer to INSPECTION [12/2013 - ]
HINT:
- Make sure there is no foreign matter such as iron particles on the fuel pump and no signs that the fuel pump was stuck.
- Make sure the internal connector is securely connected.
- Make sure the fuel pump filter is not clogged.
- Perform "Inspection After Repair" after replacing the fuel pump.
Refer to INITIALIZATION [12/2013 - ]
Result
Proceed to OK NG
Result: 1
OK
REPLACE FUEL PRESSURE REGULATOR ASSEMBLY. Refer to REMOVAL [12/2013 - ]
Result: 2
NG
REPLACE FUEL PUMP. Refer to REMOVAL [12/2013 - ]
- Inspect the fuel pump.
- CHECK FUEL PRESSURE
HINT:
For the fuel pressure inspection, refer to the following procedures.
Refer to PROCEDURE - Step 2
- Attach a fuel pressure gauge and check the fuel pressure after stopping the engine.
Standard
147 kPa (1.5 kgf/cm2 , 21 psi) or higher (5 minutes after stopping the engine)
HINT:
If the engine cannot be started, read the values after cranking the engine.
Result
Proceed to OK NG
Result: 2
NG
See step 101
Result: 1
OK
See step 96
- Attach a fuel pressure gauge and check the fuel pressure after stopping the engine.
- READ VALUE USING TECHSTREAM (LONG FT #1)
- Connect the Techstream to the DLC3.
- Turn the ignition switch to ON.
- Turn the Techstream on.
- Enter the following menus: Powertrain / Engine and ECT / Data List / Gas AF Control / Long FT #1.
Powertrain > Engine > Data List
Tester Display Long FT #1 Result
Data List Item Result Suspected Area Proceed to Long FT #1 -15 to 15% - Wire harness or connector
- Fuel
A 15% or higher, or less than -15% Fuel injector assembly B HINT:
Perform "Inspection After Repair" after replacing the fuel injector assembly.
Refer to INITIALIZATION [12/2013 - ]
Result: 2
B
REPLACE FUEL INJECTOR ASSEMBLY. Refer to REMOVAL [12/2013 - ]
Result: 1
A
See step 97
- PERFORM SIMULATION TEST
- Check if the idling speed after starting the engine is currently stable and has always been stable in the past.
Result
Problem Symptom Suspected Area Proceed to Current unstable idling speed or history of unstable idling speed Crankshaft position sensor system A All current and past idling speeds are stable Fuel B HINT:
Through the customer problem analysis, confirm the fuel being used and the location at which the fuel was added to check if the malfunction is caused by the fuel in the vehicle.
Result: 2
B
REPLACE FUEL
Result: 1
A
See step 98
- Check if the idling speed after starting the engine is currently stable and has always been stable in the past.
- CHECK SENSOR INSTALLATION (CRANKSHAFT POSITION SENSOR)
- Check the tightening and installation condition of the crankshaft position sensor bolt.
- Check the connection of the crankshaft position sensor connector.
OK
Sensor is installed correctly.
Result
Proceed to OK NG
Result: 2
NG
SECURELY REINSTALL SENSOR
Result: 1
OK
See step 99
- CHECK HARNESS AND CONNECTOR (CRANKSHAFT POSITION SENSOR - ECM)
- Check the harnesses and connectors, referring to DTC P0335 inspection procedure.
Refer to PROCEDURE - Step 3
HINT:
- Jiggle the wire harness and connector to increase the likelihood of detecting malfunctions that do not always occur.
- Make sure there is not an excessive amount of force applied to the wire harness.
Result
Proceed to OK NG
Result: 2
NG
REPAIR OR REPLACE HARNESS OR CONNECTOR
Result: 1
OK
See step 100
- Check the harnesses and connectors, referring to DTC P0335 inspection procedure.
- REPLACE CRANKSHAFT POSITION SENSOR
- Replace the crankshaft position sensor.
Refer to REMOVAL [12/2013 - ]
- Check the engine start operation.
OK
Malfunction has been repaired successfully.
Result
Proceed to OK NG
Result: 1
OK
END (CRANKSHAFT POSITION SENSOR IS DEFECTIVE)
Result: 2
NG
REPLACE ECM. Refer to REMOVAL [12/2013 - ]
- Replace the crankshaft position sensor.
- PERFORM ACTIVE TEST USING TECHSTREAM (CONTROL THE FUEL PUMP / SPEED)
- Connect the Techstream to the DLC3.
- Turn the ignition switch to ON.
- Turn the Techstream on.
- Enter the following menus: Powertrain / Engine and ECT / Active Test / Control the Fuel Pump / Speed.
Powertrain > Engine > Active Test
Tester Display Control the Fuel Pump / Speed - When performing the Active Test, check for fuel leakage from the fuel pipes.
Result
Result Proceed to Fuel leakage or signs of fuel leakage are present A No fuel leakage or signs of fuel leakage B HINT:
- Jiggle the wire harness and connector to increase the likelihood of detecting malfunctions that do not always occur.
- When performing the Active Test, if there is no operating noise from the fuel pump, the fuel pump system may be malfunctioning.
- Check if the vehicle ran out of fuel, as engine starting trouble due to running out of fuel is also detected.
Result: 1
A
REPAIR OR REPLACE FUEL LINE
Result: 2
B
See step 102
- INSPECT FUEL PUMP
- Inspect the fuel pump.
Refer to INSPECTION [12/2013 - ]
HINT:
- Make sure there is no foreign matter such as iron particles on the fuel pump and no signs that the fuel pump was stuck.
- Make sure the internal connector is securely connected.
- Make sure the fuel pump filter is not clogged.
- Perform "Inspection After Repair" after replacing the fuel pump.
Refer to INITIALIZATION [12/2013 - ]
Result
Proceed to OK NG
Result: 2
NG
REPLACE FUEL PUMP. Refer to REMOVAL [12/2013 - ]
Result: 1
OK
See step 103
- Inspect the fuel pump.
- CHECK PURGE VSV
*1 Purge VSV *2 Fuel Vapor Feed Hose (to Canister) *3 Purge VSV connector - Disconnect the fuel vapor feed hose (on the canister side) of the purge VSV.
- Start the engine.
- Idle the engine.
- Disconnect the connector of the purge VSV.
- Check if air flows through the purge VSV.
OK
Air does not flow
HINT:
When this inspection is performed, the MIL may illuminate. After finishing the inspection, check and clear the DTCs.
Result
Proceed to OK NG
Result: 2
NG
INSPECT PURGE VSV. Refer to INSPECTION [12/2013 - ]
Result: 1
OK
See step 104
- INSPECT FUEL INJECTOR ASSEMBLY
- Clean the inside of the intake manifold with compressed air.
- After stopping the engine, measure the HC concentration inside the intake manifold for 15 minutes.
Result
Result Proceed to 4000 ppm or higher A Less than 4000 ppm B HINT:
- If the concentration is 4000 ppm or higher, a fuel injector assembly may have a sealing problem.
- Perform "Inspection After Repair" after replacing the fuel injector assembly.
Refer to INITIALIZATION [12/2013 - ]
Result: 1
A
REPLACE FUEL INJECTOR ASSEMBLY. Refer to REMOVAL [12/2013 - ]
Result: 2
B
See step 105
- CHECK INTAKE VALVE
- Check if carbon is on the intake valves.
Result
Result Proceed to Carbon present A No carbon present B
Result: 1
A
CLEAN INTAKE VALVE
Result: 2
B
See step 106
- Check if carbon is on the intake valves.
- READ VALUE USING TECHSTREAM (ISC LEARNING VALUE)
- Connect the Techstream to the DLC3.
- Turn the ignition switch to ON.
- Turn the Techstream on.
- Enter the following menus: Powertrain / Engine and ECT / Data List / Primary / ISC Learning Value.
Powertrain > Engine > Data List
Tester Display ISC Learning Value - Start the engine and warm it up until the engine coolant temperature stabilizes with the A/C switch and all the accessory switches off.
Result
Data List Item Result Suspected Area Proceed to ISC Learning Value (Engine displacement (liters) x 0.9) or more - Valve timing
- Compression
A Less than (engine displacement (liters) x 0.9) - B
Result: 2
B
See step 108
Result: 1
A
See step 107
- CHECK CYLINDER COMPRESSION PRESSURE
- Check the compression.
Refer to PROCEDURE - Step 11
HINT:
Perform "Inspection After Repair" after repairing or replacing the engine assembly.
Refer to INITIALIZATION [12/2013 - ]
Result
Proceed to OK NG
Result: 1
OK
ADJUST VALVE TIMING. Refer to REASSEMBLY [12/2013 - 11/2015] Refer to REASSEMBLY [11/2015 - ]
Result: 2
NG
CHECK AND REPAIR ENGINE ASSEMBLY
- Check the compression.
- INSPECT ENGINE COOLANT TEMPERATURE SENSOR
- Inspect the engine coolant temperature sensor.
Refer to INSPECTION [12/2013 - ]
HINT:
Perform "Inspection After Repair" after replacing the engine coolant temperature sensor.
Refer to INITIALIZATION [12/2013 - ]
Result
Proceed to OK NG
Result: 2
NG
REPLACE ENGINE COOLANT TEMPERATURE SENSOR. Refer to REMOVAL [12/2013 - ]
Result: 1
OK
See step 109
- Inspect the engine coolant temperature sensor.
- CHECK SENSOR INSTALLATION (CRANKSHAFT POSITION SENSOR)
- Check the tightening and installation condition of the crankshaft position sensor bolt.
- Check the connection of the crankshaft position sensor connector.
OK
Sensor is installed correctly.
Result
Proceed to OK NG
Result: 2
NG
SECURELY REINSTALL SENSOR
Result: 1
OK
See step 110
- CHECK SENSOR INSTALLATION (CAMSHAFT POSITION SENSOR (FOR INTAKE CAMSHAFT))
- Check the tightening and installation condition of the camshaft position sensor (for intake camshaft) bolt.
- Check the connection of the camshaft position sensor (for intake camshaft) connector.
OK
Sensor is installed correctly.
Result
Proceed to OK NG
Result: 2
NG
SECURELY REINSTALL SENSOR (FOR INTAKE CAMSHAFT)
Result: 1
OK
See step 111
- CHECK SENSOR INSTALLATION (CAMSHAFT POSITION SENSOR (FOR EXHAUST CAMSHAFT))
- Check the tightening and installation condition of the camshaft position sensor (for exhaust camshaft) bolt.
- Check the connection of the camshaft position sensor (for exhaust camshaft) connector.
OK
Sensor is installed correctly.
Result
Proceed to OK NG
Result: 2
NG
SECURELY REINSTALL SENSOR (FOR EXHAUST CAMSHAFT)
Result: 1
OK
See step 112
- CHECK HARNESS AND CONNECTOR (CRANKSHAFT POSITION SENSOR - ECM)
- Check the harnesses and connectors, referring to DTC P0335 inspection procedure.
Refer to PROCEDURE - Step 3
HINT:
- Jiggle the wire harness and connector to increase the likelihood of detecting malfunctions that do not always occur.
- Make sure there is not an excessive amount of force applied to the wire harness.
Result
Proceed to OK NG
Result: 2
NG
REPAIR OR REPLACE HARNESS OR CONNECTOR
Result: 1
OK
See step 113
- Check the harnesses and connectors, referring to DTC P0335 inspection procedure.
- CHECK HARNESS AND CONNECTOR (CAMSHAFT POSITION SENSOR (FOR INTAKE CAMSHAFT) - ECM)
- Check the harnesses and connectors, referring to DTC P0340 inspection procedure.
Refer to PROCEDURE - Step 2
HINT:
- Jiggle the wire harness and connector to increase the likelihood of detecting malfunctions that do not always occur.
- Make sure there is not an excessive amount of force applied to the wire harness.
Result
Proceed to OK NG
Result: 2
NG
REPAIR OR REPLACE HARNESS OR CONNECTOR
Result: 1
OK
See step 114
- Check the harnesses and connectors, referring to DTC P0340 inspection procedure.
- CHECK HARNESS AND CONNECTOR (CAMSHAFT POSITION SENSOR (FOR EXHAUST CAMSHAFT) - ECM)
- Check the harnesses and connectors, referring to DTC P0365 inspection procedure.
Refer to PROCEDURE - Step 2
HINT:
- Jiggle the wire harness and connector to increase the likelihood of detecting malfunctions that do not always occur.
- Make sure there is not an excessive amount of force applied to the wire harness.
Result
Proceed to OK NG
Result: 2
NG
REPAIR OR REPLACE HARNESS OR CONNECTOR
Result: 1
OK
See step 115
- Check the harnesses and connectors, referring to DTC P0365 inspection procedure.
- REPLACE CRANKSHAFT POSITION SENSOR
- Replace the crankshaft position sensor.
Refer to REMOVAL [12/2013 - ]
- Check the engine start operation.
OK
Malfunction has been repaired successfully.
Result
Proceed to OK NG
Result: 1
OK
END (CRANKSHAFT POSITION SENSOR IS DEFECTIVE)
Result: 2
NG
See step 116
- Replace the crankshaft position sensor.
- REPLACE CAMSHAFT POSITION SENSOR (FOR INTAKE CAMSHAFT)
- Replace the camshaft position sensor (for intake camshaft).
Refer to REMOVAL [12/2013 - ]
- Check the engine start operation.
OK
Malfunction has been repaired successfully.
Result
Proceed to OK NG
Result: 1
OK
END (CAMSHAFT POSITION SENSOR (FOR INTAKE CAMSHAFT) IS DEFECTIVE)
Result: 2
NG
See step 117
- Replace the camshaft position sensor (for intake camshaft).
- REPLACE CAMSHAFT POSITION SENSOR (FOR EXHAUST CAMSHAFT)
- Replace the camshaft position sensor (for exhaust camshaft).
Refer to REMOVAL [12/2013 - ]
- Check the engine start operation.
OK
Malfunction has been repaired successfully.
Result
Proceed to OK NG
Result: 1
OK
END (CAMSHAFT POSITION SENSOR (FOR EXHAUST CAMSHAFT) IS DEFECTIVE)
Result: 2
NG
REPLACE ECM. Refer to REMOVAL [12/2013 - ]
- Replace the camshaft position sensor (for exhaust camshaft).