VEHICLE CONTROL HISTORY [04/2013 - ]
- VEHICLE CONTROL HISTORY HINT: A part of the control history can be confirmed using the vehicle control history. Refer to «VEHICLE CONTROL HISTORY [04/2013 - ]»(ref-665733-S17305890242014102400000)
MONITOR STRATEGY
| Related DTCs | P0010: Camshaft timing oil control valve assembly (for intake camshaft of bank 1) range check P0020: Camshaft timing oil control valve assembly (for intake camshaft of bank 2) range check |
|---|---|
| Required Sensors/Components (Main) | Camshaft timing oil control valve assembly (for intake camshaft) |
| Required Sensors/Components (Related) | |
| Frequency of Operation | Continuous |
| Duration | 1 second |
| MIL Operation | Immediately |
| Sequence of Operation | None |
TYPICAL ENABLING CONDITIONS
| Monitor runs whenever the following DTCs are not stored | None |
|---|---|
| All of the following conditions are met | |
| Starter | Off |
| Engine switch | On (IG) |
| Time after engine switch off to on (IG) | 0.5 seconds or more |
ALL
| Either of the following conditions is met | Condition A or B |
|---|---|
| A. Both of the following conditions are met | |
| Battery voltage | 11 V or higher, and less than 13 V |
| Target duty cycle | Less than 70% |
| B. Both of the following conditions are met | |
| Battery voltage | 13 V or higher |
| Target duty cycle | Less than 80% |
CASE 1
| Current cut status | Not cut |
CASE 2
TYPICAL MALFUNCTION THRESHOLDS
| Output duty cycle | 100% or higher |
CASE 1
| Output duty cycle | 3% or less |
CASE 2
COMPONENT OPERATING RANGE
| Output duty cycle | Higher than 3%, and less than 100% |
CONFIRMATION DRIVING PATTERN
- Connect the Techstream to the DLC3.
- Turn the engine switch on (IG) and turn the Techstream on.
- Clear the DTCs (even if no DTCs are stored, perform the clear DTC procedure).
- Turn the engine switch off and wait for at least 30 seconds.
- Turn the engine switch on (IG) and turn the Techstream on.
- Wait 5 seconds.
- Enter the following menus: Powertrain / Engine and ECT / Trouble Codes.
- Read the pending DTCs. HINT: If a pending DTC is output, the system is malfunctioning. If a pending DTC is not output, perform the following procedure.
- Enter the following menus: Powertrain / Engine and ECT / Utility / All Readiness.
- Input the DTC: P0010 or P0020.
- Check the DTC judgment result. Techstream Display Description NORMAL DTC judgment completed System normal ABNORMAL DTC judgment completed System abnormal INCOMPLETE DTC judgment not completed Perform driving pattern after confirming DTC enabling conditions N/A Unable to perform DTC judgment Number of DTCs which do not fulfill DTC preconditions has reached ECU memory limit HINT: If the judgment result shows NORMAL, the system is normal. If the judgment result shows ABNORMAL, the system has a malfunction.
- If the judgment result is INCOMPLETE or N/A and no pending DTC is output, perform a universal trip and check for permanent DTCs. Refer to «DTC CHECK / CLEAR [04/2013 - ]»(ref-665554-S38092923772014102400000) HINT: If a permanent DTC is output, the system is malfunctioning. If no permanent DTC is output, the system is normal.
Scheme 112
CAUTION / NOTICE / HINT
HINT
- If DTC P0010 is output, check the VVT system (for intake camshaft of bank 1) circuit.
- If DTC P0020 is output, check the VVT system (for intake camshaft of bank 2) circuit.
- Bank 1 refers to the bank that includes the No. 1 cylinder*. *: The No. 1 cylinder is the cylinder which is farthest from the transmission.
- Bank 2 refers to the bank that does not include the No. 1 cylinder.
- Read freeze frame data using the Techstream. The ECM records vehicle and driving condition information as freeze frame data the moment a DTC is stored. When troubleshooting, freeze frame data can help determine if the vehicle was moving or stationary, if the engine was warmed up or not, if the air fuel ratio was lean or rich, and other data from the time the malfunction occurred.
PROCEDURE
- READ OUTPUT DTC (DTC P0010 OR P0020) Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Clear the DTC after recording the freeze frame data and DTC. Refer to «DTC CHECK / CLEAR [04/2013 - ]»(ref-665554-S38092923772014102400000) Powertrain > Engine > Clear DTCs Turn the engine switch off and wait for at least 30 seconds. Turn the engine switch on (IG) and wait 5 seconds. Turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Trouble Codes. Read the DTCs. Powertrain > Engine > Trouble Codes Result Result Proceed to DTC P0010 or P0020 is output A DTCs are not output B Result: 2 B CHECK FOR INTERMITTENT PROBLEMS. Refer to «CHECK FOR INTERMITTENT PROBLEMS [04/2013 - ]»(ref-665554-S41014724152014102400000) Result: 1 A See step 2
- INSPECT CAMSHAFT TIMING OIL CONTROL VALVE ASSEMBLY (FOR INTAKE CAMSHAFT) Inspect the camshaft timing oil control valve assembly (for intake camshaft). Refer to «INSPECTION [04/2013 - ]»(ref-665751-S04324633612014102400000) Result Proceed to OK NG Result: 2 NG REPLACE CAMSHAFT TIMING OIL CONTROL VALVE ASSEMBLY (FOR INTAKE CAMSHAFT). Refer to «REMOVAL [04/2013 - ]»(ref-665751-S41410890202014102400000) Result: 1 OK See step 3
- CHECK HARNESS AND CONNECTOR (CAMSHAFT TIMING OIL CONTROL VALVE ASSEMBLY (FOR INTAKE CAMSHAFT) - ECM) Disconnect the camshaft timing oil control valve assembly (for intake camshaft) connector. Disconnect the ECM connector. Measure the resistance according to the value(s) in the table below. Standard Resistance Tester Connection Condition Specified Condition F27-1 - F1-12 (OC1+) Always Below 1 ohms F27-2 - F1-11 (OC1-) Always Below 1 ohms F20-1 - F1-10 (OC2+) Always Below 1 ohms F20-2 - F1-9 (OC2-) Always Below 1 ohms F27-1 or F1-12 (OC1+) - Body ground Always 10 kohms or higher F27-2 or F1-11 (OC1-) - Body ground Always 10 kohms or higher F20-1 or F1-10 (OC2+) - Body ground Always 10 kohms or higher F20-2 or F1-9 (OC2-) - Body ground Always 10 kohms or higher Result Proceed to OK NG Result: 1 OK REPLACE ECM. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S41334133092014102400000) Result: 2 NG REPAIR OR REPLACE HARNESS OR CONNECTOR
| Related DTCs | P0011: Advanced camshaft timing (for intake camshaft of bank 1) P0012: Retarded camshaft timing (for intake camshaft of bank 1) P0021: Advanced camshaft timing (for intake camshaft of bank 2) P0022: Retarded camshaft timing (for intake camshaft of bank 2) |
|---|---|
| Required Sensors/Components (Main) | Camshaft timing oil control valve assembly (for intake camshaft) Camshaft timing gear assembly |
| Required Sensors/Components (Related) | Crankshaft position sensor VVT sensor Engine coolant temperature sensor |
| Frequency of Operation | Continuous |
| Duration | Within 10 seconds |
| MIL Operation | Advanced camshaft timing: Immediate Retarded camshaft timing: 2 driving cycles |
| Sequence of Operation | None |
| Monitor runs whenever the following DTCs are not stored | P0010, P0020 (Camshaft timing oil control valve bank 1, 2) P0016, P0018 (VVT system bank 1, 2 - misalignment) P0102, P0103 (Mass air flow meter) P0115, P0117, P0118 (Engine coolant temperature sensor) P0125 (Insufficient coolant temperature for closed loop fuel control) P0335 (Crankshaft position sensor) |
|---|---|
| Battery voltage | 11 V or higher |
| Engine speed | 500 to 4000 rpm |
| Engine coolant temperature | 75 to 100°C (167 to 212°F) |
| Both of the following conditions are met | |
|---|---|
| Deviation of actual valve timing and target valve timing | More than 5°CA (Crankshaft Angle) for 5 seconds or more after the VVT hold duty ratio learned value reaches the upper or lower limit. |
| Valve timing | No change at advanced valve timing |
P0011 AND P0021: ADVANCED CAMSHAFT TIMING
| Both of the following conditions are met | |
|---|---|
| Deviation of actual valve timing and target valve timing | More than 5°CA (Crankshaft Angle) for 5 seconds or more after the VVT hold duty ratio learned value reaches the upper or lower limit. |
| Valve timing | No change at retarded valve timing |
P0012 AND P0022: RETARDED CAMSHAFT TIMING
If the difference between the target and actual camshaft timing is greater than the specified value, the ECM operates the VVT actuator (camshaft timing oil control valve assembly) for 10 seconds by applying and releasing oil pressure. Then, the ECM monitors the camshaft timing change for 10 seconds.
MONITOR RESULT
Refer to detailed information in Checking Monitor Status.
Refer to CHECKING MONITOR STATUS [04/2013 - ]
| Monitor ID | Test ID | Scaling | Unit | Description |
|---|---|---|---|---|
| $35 | $81 | Multiply by 0.01 | Second | Forced movement of oil control valve time |
P0011, P0012: EXHAUST GAS RECIRCULATION/VVT / IN VVT STUCK B1
| Monitor ID | Test ID | Scaling | Unit | Description |
|---|---|---|---|---|
| $36 | $81 | Multiply by 0.01 | Second | Forced movement of oil control valve time |
P0021, P0022: EXHAUST GAS RECIRCULATION/VVT / IN VVT STUCK B2
Scheme 113
- Connect the Techstream to the DLC3.
- Turn the engine switch on (IG) and turn the Techstream on.
- Clear the DTCs (even if no DTCs are stored, perform the clear DTC procedure).
- Turn the engine switch off and wait for at least 30 seconds.
- Turn the engine switch on (IG) and turn the Techstream on [A].
- Start the engine and warm it up until the engine coolant temperature reaches 75°C (167°F) or higher [B].
- Drive the vehicle at approximately 60 km/h (37 mph) for 10 minutes or more [C]. WARNING: When performing the confirmation driving pattern, obey all speed limits and traffic laws.
- Idle the engine for 3 minutes or more [D].
- Enter the following menus: Powertrain / Engine and ECT / Trouble Codes [E].
- Read the pending DTCs. HINT: If a pending DTC is output, the system is malfunctioning. If a pending DTC is not output, perform the following procedure.
- Enter the following menus: Powertrain / Engine and ECT / Utility / All Readiness.
- Input the DTC: P0011, P0012, P0021 or P0022.
- Check the DTC judgment result. Techstream Display Description NORMAL DTC judgment completed System normal ABNORMAL DTC judgment completed System abnormal INCOMPLETE DTC judgment not completed Perform driving pattern after confirming DTC enabling conditions N/A Unable to perform DTC judgment Number of DTCs which do not fulfill DTC preconditions has reached ECU memory limit HINT: If the judgment result shows NORMAL, the system is normal. If the judgment result shows ABNORMAL, the system has a malfunction. If the judgment result shows INCOMPLETE or N/A, perform steps [F] through [H].
- Repeat the pattern of accelerating the vehicle from rest to approximately 60 km/h (37 mph) and then decelerating the vehicle 10 to 15 times [F]. WARNING: When performing the confirmation driving pattern, obey all speed limits and traffic laws. HINT: Depress the accelerator pedal by a large amount.
- Idle the engine for 3 minutes or more [G].
- Enter the following menus: Powertrain / Engine and ECT / Trouble Codes [H].
- Read the pending DTCs. HINT: If a pending DTC is output, the system is malfunctioning. If a pending DTC is not output, perform the following procedure.
- Check the DTC judgment result again. HINT: If the judgment result shows NORMAL, the system is normal. If the judgment result shows ABNORMAL, the system has a malfunction. If the judgment result shows INCOMPLETE or N/A, perform the following procedure.
- Perform a universal trip and check for permanent DTCs. Refer to «DTC CHECK / CLEAR [04/2013 - ]»(ref-665554-S38092923772014102400000) HINT: If a permanent DTC is output, the system is malfunctioning. If no permanent DTC is output, the system is normal.
HINT
| Abnormal Bank | Timing Over Advanced (Valve timing is out of specified range) | Timing Over Retarded (Valve timing is out of specified range) |
|---|---|---|
| Bank 1 | P0011 | P0012 |
| Bank 2 | P0021 | P0022 |
- If DTC P0011 or P0012 is output, check the VVT system (for intake camshaft of bank 1) circuit.
- If DTC P0021 or P0022 is output, check the VVT system (for intake camshaft of bank 2) circuit.
- Bank 1 refers to the bank that includes the No. 1 cylinder*. *: The No. 1 cylinder is the cylinder which is farthest from the transmission.
- Bank 2 refers to the bank that does not include the No. 1 cylinder.
- DTC P0011, P0012, P0021 or P0022 may be stored when foreign matter in the engine oil is caught in some parts of the system. The DTC will remain stored even if the system returns to normal after a short time. That foreign matter may then be captured by the oil filter.
- Read freeze frame data using the Techstream. The ECM records vehicle and driving condition information as freeze frame data the moment a DTC is stored. When troubleshooting, freeze frame data can help determine if the vehicle was moving or stationary, if the engine was warmed up or not, if the air fuel ratio was lean or rich, and other data from the time the malfunction occurred.
Scheme 114
Scheme 115
- CHECK ANY OTHER DTCS OUTPUT (IN ADDITION TO DTC P0011, P0012, P0021 OR P0022) Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Trouble Codes. Read the DTCs. Powertrain > Engine > Trouble Codes Result Result Proceed to DTC P0011, P0012, P0021 or P0022 is output A DTC P0011, P0012, P0021 or P0022 and other DTCs are output B HINT: If any DTCs other than P0011, P0012, P0021 or P0022 are output, troubleshoot those DTCs first. Result: 2 B GO TO DTC CHART. Refer to «DIAGNOSTIC TROUBLE CODE CHART [04/2013 - ]»(ref-665554-S03150692352014102400000) Result: 1 A See step 2
- PERFORM ACTIVE TEST USING TECHSTREAM (CONTROL THE VVT LINEAR) Connect the Techstream to the DLC3. Start the engine. Turn the Techstream on. Turn the A/C switch on. Enter the following menus: Powertrain / Engine and ECT / Active Test / Control the VVT Linear (Bank 1) or Control the VVT Linear (Bank 2). Powertrain > Engine > Active Test Tester Display Control the VVT Linear (Bank1) Powertrain > Engine > Active Test Tester Display Control the VVT Linear (Bank2) Check the engine speed while operating the camshaft timing oil control valve assembly (for intake camshaft) using the Techstream. OK Techstream Operation Engine Condition 0% Normal engine speed 100% Engine idles roughly or stalls HINT: Refer to "Data List / Active Test" [VVT OCV Duty #1, VVT Change Angle #1, VVT OCV Duty #2, and VVT Change Angle #2]. Refer to «DATA LIST / ACTIVE TEST [04/2013 - ]»(ref-665554-S28506335252014102400000) Result Proceed to OK NG Result: 2 NG See step 4 Result: 1 OK See step 3
- CHECK WHETHER DTC OUTPUT RECURS (DTC P0011, P0012, P0021 OR P0022) Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Clear the DTCs. Refer to «DTC CHECK / CLEAR [04/2013 - ]»(ref-665554-S38092923772014102400000) Powertrain > Engine > Clear DTCs Turn the engine switch off and wait for at least 30 seconds. Turn the engine switch on (IG). Turn the Techstream on. Start the engine and warm it up. Drive the vehicle in accordance with the driving pattern described in the Confirmation Driving Pattern. Enter the following menus: Powertrain / Engine and ECT / Trouble Codes / Pending. Read the pending DTCs. Powertrain > Engine > Trouble Codes Result Result Proceed to DTCs are not output A DTC P0011, P0012, P0021 or P0022 is output B HINT: DTC P0011, P0012, P0021 or P0022 may be stored when foreign matter in the engine oil is caught in some parts of the system. The DTC will remain stored even if the system returns to normal after a short time. That foreign matter may then be captured by the oil filter. Result: 1 A CHECK FOR INTERMITTENT PROBLEMS. Refer to «CHECK FOR INTERMITTENT PROBLEMS [04/2013 - ]»(ref-665554-S41014724152014102400000) Result: 2 B See step 4
- CHECK VALVE TIMING (CHECK FOR LOOSE TIMING CHAIN AND JUMPED TEETH) Remove the cylinder head cover sub-assemblies RH and LH. Refer to «DISASSEMBLY [04/2013 - ]»(ref-665703-S00283818792014102400000) *a Timing Mark - - Turn the crankshaft pulley, and align its groove with the "0" timing mark of the timing chain cover. Check that the timing marks of the camshaft timing gear assemblies and camshaft timing exhaust gear assemblies are aligned with the timing marks of the bearing cap as shown in the illustration. HINT: If the timing marks are not as shown, turn the crankshaft one revolution clockwise. OK The timing marks on the camshaft timing gear assemblies and camshaft timing exhaust gear assemblies are aligned as shown in the illustration. Result Proceed to OK NG Result: 2 NG ADJUST VALVE TIMING. Refer to «REASSEMBLY [04/2013 - ]»(ref-665703-S23350833532014102400000) Result: 1 OK See step 5
- INSPECT CAMSHAFT TIMING OIL CONTROL VALVE ASSEMBLY (FOR INTAKE CAMSHAFT) Inspect the camshaft timing oil control valve assembly (for intake camshaft). Refer to «INSPECTION [04/2013 - ]»(ref-665751-S04324633612014102400000) Result Proceed to OK NG Result: 2 NG REPLACE CAMSHAFT TIMING OIL CONTROL VALVE ASSEMBLY (FOR INTAKE CAMSHAFT). Refer to «REMOVAL [04/2013 - ]»(ref-665751-S41410890202014102400000) Result: 1 OK See step 6
- INSPECT OIL CONTROL VALVE FILTER AND OIL PIPE Remove the oil pipe or No. 1 oil pipe. *1 Oil Pipe *2 No. 1 Oil Pipe *a Bank 1 *b Bank 2 Refer to «DISASSEMBLY [04/2013 - ]»(ref-665703-S00283818792014102400000) Remove the oil control valve filter RH or oil control valve filter LH. Check that the oil control valve filter and oil pipe are not clogged. OK The oil control valve filter or oil pipe is not clogged. Result Proceed to OK NG Result: 2 NG REPLACE OIL CONTROL VALVE FILTER AND OIL PIPE. Refer to «DISASSEMBLY [04/2013 - ]»(ref-665703-S00283818792014102400000) Result: 1 OK See step 7
- REPLACE CAMSHAFT TIMING GEAR ASSEMBLY Replace the camshaft timing gear assembly (bank 1 or bank 2). Refer to «REMOVAL [04/2013 - ]»(ref-665703-S01780840092014102400000) HINT: Perform "Inspection After Repair" after replacing the camshaft timing gear assembly. Refer to «INITIALIZATION [04/2013 - ]»(ref-665554-S39644640142014102400000) Result Proceed to NEXT Result: 1 NEXT See step 8
- CHECK WHETHER DTC OUTPUT RECURS (DTC P0011, P0012, P0021 OR P0022) Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Clear the DTCs. Refer to «DTC CHECK / CLEAR [04/2013 - ]»(ref-665554-S38092923772014102400000) Powertrain > Engine > Clear DTCs Turn the engine switch off and wait for at least 30 seconds. Turn the engine switch on (IG). Turn the Techstream on. Start the engine and warm it up. Drive the vehicle in accordance with the driving pattern described in the Confirmation Driving Pattern. Enter the following menus: Powertrain / Engine and ECT / Trouble Codes / Pending. Read the pending DTCs. Powertrain > Engine > Trouble Codes Result Result Proceed to DTCs are not output A DTC P0011, P0012, P0021 or P0022 is output B Result: 1 A END Result: 2 B REPLACE ECM. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S41334133092014102400000)
| Related DTCs | P0013: Camshaft timing oil control valve assembly (for exhaust camshaft of bank 1) range check P0023: Camshaft timing oil control valve assembly (for exhaust camshaft of bank 2) range check |
|---|---|
| Required Sensors/Components (Main) | Camshaft timing oil control valve assembly (for exhaust camshaft) |
| Required Sensors/Components (Related) | |
| Frequency of Operation | Continuous |
| Duration | 1 second |
| MIL Operation | Immediately |
| Sequence of Operation | None |
| Monitor runs whenever the following DTCs are not stored | None |
|---|---|
| All of the following conditions are met | |
| Starter | Off |
| Engine switch | On (IG) |
| Time after engine switch off to on (IG) | 0.5 seconds or more |
ALL
| Either of the following conditions is met | Condition A or B |
|---|---|
| A. Both of the following conditions are met | |
| Battery voltage | 11 V or higher, and less than 13 V |
| Target duty cycle | Less than 70% |
| B. Both of the following conditions are met | |
| Battery voltage | 13 V or higher |
| Target duty cycle | Less than 80% |
CASE 1
| Current cut status | Not cut |
CASE 2
| Output duty cycle | 100% or higher |
CASE 1
| Output duty cycle | 3% or less |
CASE 2
| Output duty cycle | Higher than 3%, and less than 100% |
- Connect the Techstream to the DLC3.
- Turn the engine switch on (IG) and turn the Techstream on.
- Clear the DTCs (even if no DTCs are stored, perform the clear DTC procedure).
- Turn the engine switch off and wait for at least 30 seconds.
- Turn the engine switch on (IG) and turn the Techstream on.
- Wait 5 seconds.
- Enter the following menus: Powertrain / Engine and ECT / Trouble Codes.
- Read the pending DTCs. HINT: If a pending DTC is output, the system is malfunctioning. If a pending DTC is not output, perform the following procedure.
- Enter the following menus: Powertrain / Engine and ECT / Utility / All Readiness.
- Input the DTC: P0013 or P0023.
- Check the DTC judgment result. Techstream Display Description NORMAL DTC judgment completed System normal ABNORMAL DTC judgment completed System abnormal INCOMPLETE DTC judgment not completed Perform driving pattern after confirming DTC enabling conditions N/A Unable to perform DTC judgment Number of DTCs which do not fulfill DTC preconditions has reached ECU memory limit HINT: If the judgment result shows NORMAL, the system is normal. If the judgment result shows ABNORMAL, the system has a malfunction.
- If the judgment result is INCOMPLETE or N/A and no pending DTC is output, perform a universal trip and check for permanent DTCs. Refer to «DTC CHECK / CLEAR [04/2013 - ]»(ref-665554-S38092923772014102400000) HINT: If a permanent DTC is output, the system is malfunctioning. If no permanent DTC is output, the system is normal.
Scheme 116
HINT
- If DTC P0013 is output, check the VVT system (for exhaust camshaft of bank 1) circuit.
- If DTC P0023 is output, check the VVT system (for exhaust camshaft of bank 2) circuit.
- Bank 1 refers to the bank that includes the No. 1 cylinder*. *: The No. 1 cylinder is the cylinder which is farthest from the transmission.
- Bank 2 refers to the bank that does not include the No. 1 cylinder.
- Read freeze frame data using the Techstream. The ECM records vehicle and driving condition information as freeze frame data the moment a DTC is stored. When troubleshooting, freeze frame data can help determine if the vehicle was moving or stationary, if the engine was warmed up or not, if the air fuel ratio was lean or rich, and other data from the time the malfunction occurred.
- READ OUTPUT DTC (DTC P0013 OR P0023) Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Clear the DTC after recording the freeze frame data and DTC. Refer to «DTC CHECK / CLEAR [04/2013 - ]»(ref-665554-S38092923772014102400000) Powertrain > Engine > Clear DTCs Turn the engine switch off and wait for at least 30 seconds. Turn the engine switch on (IG) and wait 5 seconds. Turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Trouble Codes. Read the DTCs. Powertrain > Engine > Trouble Codes Result Result Proceed to DTC P0013 or P0023 is output A DTCs are not output B Result: 2 B CHECK FOR INTERMITTENT PROBLEMS. Refer to «CHECK FOR INTERMITTENT PROBLEMS [04/2013 - ]»(ref-665554-S41014724152014102400000) Result: 1 A See step 2
- INSPECT CAMSHAFT TIMING OIL CONTROL VALVE ASSEMBLY (FOR EXHAUST CAMSHAFT) Inspect the camshaft timing oil control valve assembly (for exhaust camshaft). Refer to «INSPECTION [04/2013 - ]»(ref-665751-S04324633612014102400000) Result Proceed to OK NG Result: 2 NG REPLACE CAMSHAFT TIMING OIL CONTROL VALVE ASSEMBLY (FOR EXHAUST CAMSHAFT). Refer to «REMOVAL [04/2013 - ]»(ref-665751-S41410890202014102400000) Result: 1 OK See step 3
- CHECK HARNESS AND CONNECTOR (CAMSHAFT TIMING OIL CONTROL VALVE ASSEMBLY (FOR EXHAUST CAMSHAFT) - ECM) Disconnect the camshaft timing oil control valve assembly (for exhaust camshaft) connector. Disconnect the ECM connector. Measure the resistance according to the value(s) in the table below. Standard Resistance Tester Connection Condition Specified Condition F28-1 - F2-4 (OE1+) Always Below 1 ohms F28-2 - F2-3 (OE1-) Always Below 1 ohms F13-1 - F3-18 (OE2+) Always Below 1 ohms F13-2 - F3-28 (OE2-) Always Below 1 ohms F28-1 or F2-4 (OE1+) - Body ground Always 10 kohms or higher F28-2 or F2-3 (OE1-) - Body ground Always 10 kohms or higher F13-1 or F3-18 (OE2+) - Body ground Always 10 kohms or higher F13-2 or F3-28 (OE2-) - Body ground Always 10 kohms or higher Result Proceed to OK NG Result: 1 OK REPLACE ECM. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S41334133092014102400000) Result: 2 NG REPAIR OR REPLACE HARNESS OR CONNECTOR
| Related DTCs | P0014: Advanced camshaft timing (for exhaust camshaft of bank 1) P0015: Retarded camshaft timing (for exhaust camshaft of bank 1) P0024: Advanced camshaft timing (for exhaust camshaft of bank 2) P0025: Retarded camshaft timing (for exhaust camshaft of bank 2) |
|---|---|
| Required Sensors/Components (Main) | Camshaft timing oil control valve assembly (for exhaust camshaft) Camshaft timing exhaust gear assembly |
| Required Sensors/Components (Related) | Crankshaft position sensor VVT sensor Engine coolant temperature sensor |
| Frequency of Operation | Continuous |
| Duration | Within 10 seconds |
| MIL Operation | Advanced camshaft timing: 2 driving cycles Retarded camshaft timing: Immediate |
| Sequence of Operation | None |
| Monitor runs whenever the following DTCs are not stored | P0013, P0023 (Exhaust camshaft timing oil control valve bank 1, 2) P0017, P0019 (Exhaust VVT system bank 1, 2 - misalignment) P0102, P0103 (Mass air flow meter) P0115, P0117, P0118 (Engine coolant temperature sensor) P0125 (Insufficient coolant temperature for closed loop fuel control) P0335 (Crankshaft position sensor) |
|---|---|
| Battery voltage | 11 V or higher |
| Engine speed | 500 to 4000 rpm |
| Engine coolant temperature | 75 to 100°C (167 to 212°F) |
| Both of the following conditions are met | |
|---|---|
| Deviation of actual valve timing and target valve timing | More than 5°CA (Crankshaft Angle) for 5 seconds or more after the VVT hold duty ratio learned value reaches the upper or lower limit. |
| Valve timing | No change at advanced valve timing |
P0014 AND P0024: ADVANCED CAMSHAFT TIMING
| Both of the following conditions are met | |
|---|---|
| Deviation of actual valve timing and target valve timing | More than 5°CA (Crankshaft Angle) for 5 seconds or more after the VVT hold duty ratio learned value reaches the upper or lower limit. |
| Valve timing | No change at retarded valve timing |
P0015 AND P0025: RETARDED CAMSHAFT TIMING
If the difference between the target and actual camshaft timing is greater than the specified value, the ECM operates the VVT actuator (camshaft timing oil control valve assembly) for 10 seconds by applying and releasing oil pressure. Then, the ECM monitors the camshaft timing change for 10 seconds.
Refer to detailed information in Checking Monitor Status.
Refer to CHECKING MONITOR STATUS [04/2013 - ]
| Monitor ID | Test ID | Scaling | Unit | Description |
|---|---|---|---|---|
| $35 | $85 | Multiply by 0.01 | Second | Forced movement of oil control valve time |
P0014, P0015: EXHAUST GAS RECIRCULATION/VVT / EX VVT STUCK B1
| Monitor ID | Test ID | Scaling | Unit | Description |
|---|---|---|---|---|
| $36 | $85 | Multiply by 0.01 | Second | Forced movement of oil control valve time |
P0024, P0025: EXHAUST GAS RECIRCULATION/VVT / EX VVT STUCK B2
Scheme 117
- Connect the Techstream to the DLC3.
- Turn the engine switch on (IG) and turn the Techstream on.
- Clear the DTCs (even if no DTCs are stored, perform the clear DTC procedure).
- Turn the engine switch off and wait for at least 30 seconds.
- Turn the engine switch on (IG) and turn the Techstream on [A].
- Start the engine and warm it up until the engine coolant temperature reaches 75°C (167°F) or higher [B].
- Drive the vehicle at approximately 60 km/h (37 mph) for 10 minutes or more [C]. WARNING: When performing the confirmation driving pattern, obey all speed limits and traffic laws.
- Idle the engine for 3 minutes or more [D].
- Enter the following menus: Powertrain / Engine and ECT / Trouble Codes [E].
- Read the pending DTCs. HINT: If a pending DTC is output, the system is malfunctioning. If a pending DTC is not output, perform the following procedure.
- Enter the following menus: Powertrain / Engine and ECT / Utility / All Readiness.
- Input the DTC: P0014, P0015, P0024 or P0025.
- Check the DTC judgment result. Techstream Display Description NORMAL DTC judgment completed System normal ABNORMAL DTC judgment completed System abnormal INCOMPLETE DTC judgment not completed Perform driving pattern after confirming DTC enabling conditions N/A Unable to perform DTC judgment Number of DTCs which do not fulfill DTC preconditions has reached ECU memory limit HINT: If the judgment result shows NORMAL, the system is normal. If the judgment result shows ABNORMAL, the system has a malfunction. If the judgment result shows INCOMPLETE or N/A, perform steps [F] through [H].
- Repeat the pattern of accelerating the vehicle from rest to approximately 60 km/h (37 mph) and then decelerating the vehicle 10 to 15 times [F]. WARNING: When performing the confirmation driving pattern, obey all speed limits and traffic laws. HINT: Depress the accelerator pedal by a large amount.
- Idle the engine for 3 minutes or more [G].
- Enter the following menus: Powertrain / Engine and ECT / Trouble Codes [H].
- Read the pending DTCs. HINT: If a pending DTC is output, the system is malfunctioning. If a pending DTC is not output, perform the following procedure.
- Check the DTC judgment result again. HINT: If the judgment result shows NORMAL, the system is normal. If the judgment result shows ABNORMAL, the system has a malfunction. If the judgment result shows INCOMPLETE or N/A, perform the following procedure.
- Perform a universal trip and check for permanent DTCs. Refer to «DTC CHECK / CLEAR [04/2013 - ]»(ref-665554-S38092923772014102400000) HINT: If a permanent DTC is output, the system is malfunctioning. If no permanent DTC is output, the system is normal.
HINT
| Abnormal Bank | Timing Over Advanced (Valve timing is out of specified range) | Timing Over Retarded (Valve timing is out of specified range) |
|---|---|---|
| Bank 1 | P0014 | P0015 |
| Bank 2 | P0024 | P0025 |
- If DTC P0014 or P0015 is output, check the VVT system (for exhaust camshaft of bank 1) circuit.
- If DTC P0024 or P0025 is output, check the VVT system (for exhaust camshaft of bank 2) circuit.
- Bank 1 refers to the bank that includes the No. 1 cylinder*. *: The No. 1 cylinder is the cylinder which is farthest from the transmission.
- Bank 2 refers to the bank that does not include the No. 1 cylinder.
- DTC P0014, P0015, P0024 or P0025 may be stored when foreign matter in the engine oil is caught in some parts of the system. The DTC will remain stored even if the system returns to normal after a short time. This foreign matter may then be captured by the oil filter.
- Read freeze frame data using the Techstream. The ECM records vehicle and driving condition information as freeze frame data the moment a DTC is stored. When troubleshooting, freeze frame data can help determine if the vehicle was moving or stationary, if the engine was warmed up or not, if the air fuel ratio was lean or rich, and other data from the time the malfunction occurred.
- CHECK ANY OTHER DTCS OUTPUT (IN ADDITION TO DTC P0014, P0015, P0024 OR P0025) Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Trouble Codes. Read the DTCs. Powertrain > Engine > Trouble Codes Result Result Proceed to DTC P0014, P0015, P0024 or P0025 is output A DTC P0014, P0015, P0024 or P0025 and other DTCs are output B HINT: If any DTCs other than P0014, P0015, P0024 or P0025 are output, troubleshoot those DTCs first. Result: 2 B GO TO DTC CHART. Refer to «DIAGNOSTIC TROUBLE CODE CHART [04/2013 - ]»(ref-665554-S03150692352014102400000) Result: 1 A See step 2
- PERFORM ACTIVE TEST USING TECHSTREAM (CONTROL THE VVT EXHAUST LINEAR) Connect the Techstream to the DLC3. Start the engine. Turn the Techstream on. Turn the A/C switch on. Enter the following menus: Powertrain / Engine and ECT / Active Test / Control the VVT Exhaust Linear (Bank 1) or Control the VVT Exhaust Linear (Bank 2). Powertrain > Engine > Active Test Tester Display Control the VVT Exhaust Linear (Bank1) Powertrain > Engine > Active Test Tester Display Control the VVT Exhaust Linear (Bank2) Check the engine speed while operating the camshaft timing oil control valve assembly (for exhaust camshaft) using the Techstream. OK Techstream Operation Engine Condition 0% Normal engine speed 100% Engine idles roughly or stalls HINT: Refer to "Data List / Active Test" [VVT Ex OCV Duty #1, VVT Ex Chg Angle #1, VVT Ex OCV Duty #2 and VVT Ex Chg Angle #2]. Refer to «DATA LIST / ACTIVE TEST [04/2013 - ]»(ref-665554-S28506335252014102400000) Result Proceed to OK NG Result: 2 NG See step 4 Result: 1 OK See step 3
- CHECK WHETHER DTC OUTPUT RECURS (DTC P0014, P0015, P0024 OR P0025) Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Clear the DTCs. Powertrain > Engine > Clear DTCs Turn the engine switch off and wait for at least 30 seconds. Turn the engine switch on (IG). Turn the Techstream on. Start the engine and warm it up. Drive the vehicle in accordance with the driving pattern described in the Confirmation Driving Pattern. Enter the following menus: Powertrain / Engine and ECT / Trouble Codes / Pending. Read the pending DTCs. Powertrain > Engine > Trouble Codes Result Result Proceed to DTCs are not output A DTC P0014, P0015, P0024 or P0025 is output B HINT: DTC P0014, P0015, P0024 or P0025 may be stored when foreign matter in the engine oil is caught in some parts of the system. The DTC will remain stored even if the system returns to normal after a short time. This foreign matter may then be captured by the oil filter. Result: 1 A CHECK FOR INTERMITTENT PROBLEMS. Refer to «CHECK FOR INTERMITTENT PROBLEMS [04/2013 - ]»(ref-665554-S41014724152014102400000) Result: 2 B See step 4
- CHECK VALVE TIMING (CHECK FOR LOOSE TIMING CHAIN AND JUMPED TEETH) See step 4 Result Proceed to OK NG Result: 2 NG ADJUST VALVE TIMING. Refer to «REASSEMBLY [04/2013 - ]»(ref-665703-S23350833532014102400000) Result: 1 OK See step 5
- INSPECT CAMSHAFT TIMING OIL CONTROL VALVE ASSEMBLY (FOR EXHAUST CAMSHAFT) Inspect the camshaft timing oil control valve assembly (for exhaust camshaft). Refer to «INSPECTION [04/2013 - ]»(ref-665751-S04324633612014102400000) Result Proceed to OK NG Result: 2 NG REPLACE CAMSHAFT TIMING OIL CONTROL VALVE ASSEMBLY (FOR EXHAUST CAMSHAFT). Refer to «REMOVAL [04/2013 - ]»(ref-665751-S41410890202014102400000) Result: 1 OK See step 6
- INSPECT OIL CONTROL VALVE FILTER AND OIL PIPE See step 6 Result Proceed to OK NG Result: 2 NG REPLACE OIL CONTROL VALVE FILTER AND OIL PIPE. Refer to «DISASSEMBLY [04/2013 - ]»(ref-665703-S00283818792014102400000) Result: 1 OK See step 7
- REPLACE CAMSHAFT TIMING EXHAUST GEAR ASSEMBLY Replace the camshaft timing exhaust gear assembly (bank 1 or bank 2). Refer to «REMOVAL [04/2013 - ]»(ref-665703-S01780840092014102400000) HINT: Perform "Inspection After Repair" after replacing the camshaft timing exhaust gear assembly. Refer to «INITIALIZATION [04/2013 - ]»(ref-665554-S39644640142014102400000) Result Proceed to NEXT Result: 1 NEXT See step 8
- CHECK WHETHER DTC OUTPUT RECURS (DTC P0014, P0015, P0024 OR P0025) Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Clear the DTCs. Refer to «DTC CHECK / CLEAR [04/2013 - ]»(ref-665554-S38092923772014102400000) Powertrain > Engine > Clear DTCs Turn the engine switch off and wait for at least 30 seconds. Turn the engine switch on (IG). Turn the Techstream on. Start the engine and warm it up. Drive the vehicle in accordance with the driving pattern described in the Confirmation Driving Pattern. Enter the following menus: Powertrain / Engine and ECT / Trouble Codes / Pending. Read the pending DTCs. Powertrain > Engine > Trouble Codes Result Result Proceed to DTCs are not output A DTC P0014, P0015, P0024 or P0025 is output B Result: 1 A END Result: 2 B REPLACE ECM. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S41334133092014102400000)
| Related DTCs | P0016: Camshaft timing misaligned at idling (bank 1) P0018: Camshaft timing misaligned at idling (bank 2) |
|---|---|
| Required Sensors/Components (Main) | Camshaft timing gear assembly |
| Required Sensors/Components (Related) | VVT sensor Crankshaft position sensor |
| Frequency of Operation | Continuous |
| Duration | Within 1 minute |
| MIL Operation | 2 driving cycles |
| Sequence of Operation | None |
| Monitor runs whenever the following DTCs are not stored | P0010, P0020 (Camshaft timing oil control valve bank 1, 2) P0102, P0103 (Mass air flow meter) P0115, P0117, P0118 (Engine coolant temperature sensor) P0125 (Insufficient coolant temperature for closed loop fuel control) P0335 (Crankshaft position sensor) |
|---|---|
| Engine speed | 500 to 1000 rpm |
| One of the following conditions is met | A, B, C or D |
|---|---|
| A. VVT learning value at maximum retarded valve timing (bank 1) | Less than 18.5°CA (Crankshaft Angle) |
| B. VVT learning value at maximum retarded valve timing (bank 2) | Less than 18.5°CA (Crankshaft Angle) |
| C. VVT learning value at maximum retarded valve timing (bank 1) | More than 43.5°CA (Crankshaft Angle) |
| D. VVT learning value at maximum retarded valve timing (bank 2) | More than 43.5°CA (Crankshaft Angle) |
Scheme 118
- Connect the Techstream to the DLC3.
- Turn the engine switch on (IG) and turn the Techstream on.
- Clear the DTCs (even if no DTCs are stored, perform the clear DTC procedure).
- Turn the engine switch off and wait for at least 30 seconds.
- Turn the engine switch on (IG) and turn the Techstream on [A].
- Start the engine and warm it up until the engine coolant temperature reaches 75°C (167°F) or higher [B].
- Idle the engine for 5 minutes or more [C].
- Enter the following menus: Powertrain / Engine and ECT / Trouble Codes [D].
- Read the pending DTCs. HINT: If a pending DTC is output, the system is malfunctioning. If a pending DTC is not output, perform the following procedure.
- Enter the following menus: Powertrain / Engine and ECT / Utility / All Readiness.
- Input the DTC: P0016 or P0018.
- Check the DTC judgment result. Techstream Display Description NORMAL DTC judgment completed System normal ABNORMAL DTC judgment completed System abnormal INCOMPLETE DTC judgment not completed Perform driving pattern after confirming DTC enabling conditions N/A Unable to perform DTC judgment Number of DTCs which do not fulfill DTC preconditions has reached ECU memory limit HINT: If the judgment result shows NORMAL, the system is normal. If the judgment result shows ABNORMAL, the system has a malfunction. If the judgment result shows INCOMPLETE or N/A, perform steps [E] through [G].
- Drive the vehicle for 2 to 3 minutes [E]. WARNING: When performing the confirmation driving pattern, obey all speed limits and traffic laws.
- Idle the engine for 5 minutes or more [F].
- Enter the following menus: Powertrain / Engine and ECT / Trouble Codes [G].
- Read the pending DTCs. HINT: If a pending DTC is output, the system is malfunctioning. If a pending DTC is not output, perform the following procedure.
- Check the DTC judgment result.
- If the judgment result is INCOMPLETE or N/A and no pending DTC is output, perform a universal trip and check for permanent DTCs. Refer to «DTC CHECK / CLEAR [04/2013 - ]»(ref-665554-S38092923772014102400000) HINT: If a permanent DTC is output, the system is malfunctioning. If no permanent DTC is output, the system is normal.
HINT
- Bank 1 refers to the bank that includes the No. 1 cylinder*. *: The No. 1 cylinder is the cylinder which is farthest from the transmission.
- Bank 2 refers to the bank that does not include the No. 1 cylinder.
- The monitor for this DTC detects when the timing chain is shifted by one tooth or more.
- Read freeze frame data using the Techstream. The ECM records vehicle and driving condition information as freeze frame data the moment a DTC is stored. When troubleshooting, freeze frame data can help determine if the vehicle was moving or stationary, if the engine was warmed up or not, if the air fuel ratio was lean or rich, and other data from the time the malfunction occurred.
- CHECK FOR ANY OTHER DTCS OUTPUT (IN ADDITION TO DTC P0016 OR P0018) Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Trouble Codes. Read the DTCs. Powertrain > Engine > Trouble Codes Result Result Proceed to DTC P0016 or P0018 is output A DTC P0016 or P0018 and other DTCs are output B HINT: If any DTCs other than P0016 or P0018 are output, troubleshoot those DTCs first. Result: 2 B GO TO DTC CHART. Refer to «DIAGNOSTIC TROUBLE CODE CHART [04/2013 - ]»(ref-665554-S03150692352014102400000) Result: 1 A See step 2
- PERFORM ACTIVE TEST USING TECHSTREAM (CONTROL THE VVT LINEAR) HINT: If the VVT system can be operated through the Active Test, it can be assumed that the VVT system is operating normally. Connect the Techstream to the DLC3. Start the engine. Turn the A/C switch on. Turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Active Test / Control the VVT Linear (Bank 1) or Control the VVT Linear (Bank 2) / Gas Valve Control / VVT Change Angle #1 or VVT Change Angle #2. Powertrain > Engine > Active Test Active Test Display Control the VVT Linear (Bank1) Data List Display VVT Change Angle #1 Powertrain > Engine > Active Test Active Test Display Control the VVT Linear (Bank2) Data List Display VVT Change Angle #2 Perform the Active Test. Check that the displacement angle varies. OK Displacement angle varies. Result Proceed to OK NG Result: 2 NG See step 5 Result: 1 OK See step 3
- ADJUST VALVE TIMING Adjust the valve timing. Refer to «REASSEMBLY [04/2013 - ]»(ref-665703-S23350833532014102400000) Result Proceed to NEXT Result: 1 NEXT See step 4
- CHECK WHETHER DTC OUTPUT RECURS (DTC P0016 OR P0018) Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Clear the DTCs. Refer to «DTC CHECK / CLEAR [04/2013 - ]»(ref-665554-S38092923772014102400000) Powertrain > Engine > Clear DTCs Turn the engine switch off and wait for at least 30 seconds. Turn the engine switch on (IG). Turn the Techstream on. Start the engine and warm it up. Drive the vehicle in accordance with the driving pattern described in the Confirmation Driving Pattern. Enter the following menus: Powertrain / Engine and ECT / Trouble Codes / Pending. Read the pending DTCs. Powertrain > Engine > Trouble Codes Result Result Proceed to DTCs are not output A DTC P0016 or P0018 is output B Result: 1 A END Result: 2 B REPLACE ECM. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S41334133092014102400000)
- INSPECT CAMSHAFT TIMING OIL CONTROL VALVE ASSEMBLY (FOR INTAKE CAMSHAFT) See step 2 Result Proceed to OK NG Result: 2 NG REPLACE CAMSHAFT TIMING OIL CONTROL VALVE ASSEMBLY (FOR INTAKE CAMSHAFT). Refer to «REMOVAL [04/2013 - ]»(ref-665751-S41410890202014102400000) Result: 1 OK See step 6
- INSPECT OIL CONTROL VALVE FILTER AND OIL PIPE See step 6 Result Proceed to OK NG Result: 2 NG REPLACE OIL CONTROL VALVE FILTER AND OIL PIPE. Refer to «DISASSEMBLY [04/2013 - ]»(ref-665703-S00283818792014102400000) Result: 1 OK See step 7
- INSPECT CAMSHAFT TIMING GEAR ASSEMBLY Inspect the camshaft timing gear assembly. Refer to «INSPECTION [04/2013 - ]»(ref-665703-S11510689492014102400000) HINT: Perform "Inspection After Repair" after replacing the camshaft timing gear assembly. Refer to «INITIALIZATION [04/2013 - ]»(ref-665554-S39644640142014102400000) Result Proceed to OK NG Result: 1 OK See step 4 Result: 2 NG REPLACE CAMSHAFT TIMING GEAR ASSEMBLY. Refer to «REMOVAL [04/2013 - ]»(ref-665703-S01780840092014102400000)
| Related DTCs | P0017: Exhaust camshaft timing misalignment at idling (bank 1) P0019: Exhaust camshaft timing misalignment at idling (bank 2) |
|---|---|
| Required Sensors/Components (Main) | Camshaft timing exhaust gear assembly |
| Required Sensors/Components (Related) | VVT sensor Crankshaft position sensor |
| Frequency of Operation | Continuous |
| Duration | Within 1 minute |
| MIL Operation | 2 driving cycles |
| Sequence of Operation | None |
| Monitor runs whenever the following DTCs are not stored | P0013, P0023 (Exhaust camshaft timing oil control valve bank 1, 2) P0102, P0103 (Mass air flow meter) P0115, P0117, P0118 (Engine coolant temperature sensor) P0125 (Insufficient coolant temperature for closed loop fuel control) P0335 (Crankshaft position sensor) |
|---|---|
| Engine speed | 500 to 1000 rpm |
| One of the following conditions is met | A, B, C or D |
|---|---|
| A. VVT learning value at maximum advanced valve timing (bank 1) | Less than 77°CA (Crankshaft Angle) |
| B. VVT learning value at maximum advanced valve timing (bank 2) | Less than 77°CA (Crankshaft Angle) |
| C. VVT learning value at maximum advanced valve timing (bank 1) | More than 102°CA (Crankshaft Angle) |
| D. VVT learning value at maximum advanced valve timing (bank 2) | More than 102°CA (Crankshaft Angle) |
Scheme 119
- Connect the Techstream to the DLC3.
- Turn the engine switch on (IG) and turn the Techstream on.
- Clear the DTCs (even if no DTCs are stored, perform the clear DTC procedure).
- Turn the engine switch off and wait for at least 30 seconds.
- Turn the engine switch on (IG) and turn the Techstream on [A].
- Start the engine and warm it up until the engine coolant temperature reaches 75°C (167°F) or higher [B].
- Idle the engine for 5 minutes or more [C].
- Enter the following menus: Powertrain / Engine and ECT / Trouble Codes [D].
- Read the pending DTCs. HINT: If a pending DTC is output, the system is malfunctioning. If a pending DTC is not output, perform the following procedure.
- Enter the following menus: Powertrain / Engine and ECT / Utility / All Readiness.
- Input the DTC: P0017 or P0019.
- Check the DTC judgment result. Techstream Display Description NORMAL DTC judgment completed System normal ABNORMAL DTC judgment completed System abnormal INCOMPLETE DTC judgment not completed Perform driving pattern after confirming DTC enabling conditions N/A Unable to perform DTC judgment Number of DTCs which do not fulfill DTC preconditions has reached ECU memory limit HINT: If the judgment result shows NORMAL, the system is normal. If the judgment result shows ABNORMAL, the system has a malfunction. If the judgment result shows INCOMPLETE or N/A, perform steps [E] through [G].
- Drive the vehicle for 2 to 3 minutes [E]. WARNING: When performing the confirmation driving pattern, obey all speed limits and traffic laws.
- Idle the engine for 5 minutes or more [F].
- Enter the following menus: Powertrain / Engine and ECT / Trouble Codes [G].
- Read the pending DTCs. HINT: If a pending DTC is output, the system is malfunctioning. If a pending DTC is not output, perform the following procedure.
- Check the DTC judgment result.
- If the judgment result is INCOMPLETE or N/A and no pending DTC is output, perform a universal trip and check for permanent DTCs. Refer to «DTC CHECK / CLEAR [04/2013 - ]»(ref-665554-S38092923772014102400000) HINT: If a permanent DTC is output, the system is malfunctioning. If no permanent DTC is output, the system is normal.
HINT
- Bank 1 refers to the bank that includes the No. 1 cylinder*. *: The No. 1 cylinder is the cylinder which is farthest from the transmission.
- Bank 2 refers to the bank that does not include the No. 1 cylinder.
- The monitor for this DTC detects when the timing chain is shifted by one tooth or more.
- Read freeze frame data using the Techstream. The ECM records vehicle and driving condition information as freeze frame data the moment a DTC is stored. When troubleshooting, freeze frame data can help determine if the vehicle was moving or stationary, if the engine was warmed up or not, if the air fuel ratio was lean or rich, and other data from the time the malfunction occurred.
- CHECK ANY OTHER DTCS OUTPUT (IN ADDITION TO DTC P0017 OR P0019) Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Trouble Codes. Read the DTCs. Powertrain > Engine > Trouble Codes Result Result Proceed to DTC P0017 or P0019 is output A DTC P0017 or P0019 and other DTCs are output B HINT: If any DTCs other than P0017 or P0019 are output, troubleshoot those DTCs first. Result: 2 B GO TO DTC CHART. Refer to «DIAGNOSTIC TROUBLE CODE CHART [04/2013 - ]»(ref-665554-S03150692352014102400000) Result: 1 A See step 2
- PERFORM ACTIVE TEST USING TECHSTREAM (CONTROL THE VVT EXHAUST LINEAR) HINT: If the VVT system can be operated through the Active Test, it can be assumed that the VVT system is operating normally. Connect the Techstream to the DLC3. Start the engine. Turn the A/C switch on. Turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Active Test / Control the VVT Exhaust Linear (Bank 1) or Control the VVT Exhaust Linear (Bank 2) / Gas Valve Control / VVT Ex Chg Angle #1 or VVT Ex Chg Angle #2. Powertrain > Engine > Active Test Active Test Display Control the VVT Exhaust Linear (Bank1) Data List Display VVT Ex Chg Angle #1 Powertrain > Engine > Active Test Active Test Display Control the VVT Exhaust Linear (Bank2) Data List Display VVT Ex Chg Angle #2 Perform the Active Test. Check that the displacement angle varies. OK Displacement angle varies. Result Proceed to OK NG Result: 2 NG See step 5 Result: 1 OK See step 3
- ADJUST VALVE TIMING Adjust the valve timing. Refer to «REASSEMBLY [04/2013 - ]»(ref-665703-S23350833532014102400000) Result Proceed to NEXT Result: 1 NEXT See step 4
- CHECK WHETHER DTC OUTPUT RECURS (DTC P0017 OR P0019) Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream. Clear the DTCs. Refer to «DTC CHECK / CLEAR [04/2013 - ]»(ref-665554-S38092923772014102400000) Powertrain > Engine > Clear DTCs Turn the engine switch off and wait for at least 30 seconds. Turn the engine switch on (IG). Turn the Techstream on. Start the engine and warm it up. Drive the vehicle in accordance with the driving pattern described in the Confirmation Driving Pattern. Enter the following menus: Powertrain / Engine and ECT / Trouble Codes / Pending. Read the pending DTCs. Powertrain > Engine > Trouble Codes Result Result Proceed to DTCs are not output A DTC P0017 or P0019 is output B Result: 1 A END Result: 2 B REPLACE ECM. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S41334133092014102400000)
- INSPECT CAMSHAFT TIMING OIL CONTROL VALVE ASSEMBLY (FOR EXHAUST CAMSHAFT) See step 2 Result Proceed to OK NG Result: 2 NG REPLACE CAMSHAFT TIMING OIL CONTROL VALVE ASSEMBLY (FOR EXHAUST CAMSHAFT). Refer to «REMOVAL [04/2013 - ]»(ref-665751-S41410890202014102400000) Result: 1 OK See step 6
- INSPECT OIL CONTROL VALVE FILTER AND OIL PIPE See step 6 Result Proceed to OK NG Result: 2 NG REPLACE OIL CONTROL VALVE FILTER AND OIL PIPE. Refer to «DISASSEMBLY [04/2013 - ]»(ref-665703-S00283818792014102400000) Result: 1 OK See step 7
- INSPECT CAMSHAFT TIMING EXHAUST GEAR ASSEMBLY Inspect the camshaft timing exhaust gear assembly. Refer to «INSPECTION [04/2013 - ]»(ref-665703-S11510689492014102400000) HINT: Perform "Inspection After Repair" after replacing the camshaft timing exhaust gear assembly. Refer to «INITIALIZATION [04/2013 - ]»(ref-665554-S39644640142014102400000) Result Proceed to OK NG Result: 1 OK See step 4 Result: 2 NG REPLACE CAMSHAFT TIMING EXHAUST GEAR ASSEMBLY. Refer to «REMOVAL [04/2013 - ]»(ref-665703-S01780840092014102400000)
| Related DTCs | P0031: Air fuel ratio sensor (bank 1 sensor 1) heater range check (low current) P0032: Air fuel ratio sensor (bank 1 sensor 1) heater range check (high current) P0051: Air fuel ratio sensor (bank 2 sensor 1) heater range check (low current) P0052: Air fuel ratio sensor (bank 2 sensor 1) heater range check (high current) P101D: Air fuel ratio sensor (bank 1 sensor 1) heater performance P103D: Air fuel ratio sensor (bank 2 sensor 1) heater performance |
|---|---|
| Required Sensors/Components (Main) | Air fuel ratio sensor heater |
| Required Sensors/Components (Related) | |
| Frequency of Operation | Continuous |
| Duration | 1 second: P101D and P103D 10 seconds: P0031 and P0051 10.24 seconds: P0032 and P0052 |
| MIL Operation | Immediate |
| Sequence of Operation | None |
| Monitor runs whenever the following DTCs are not stored | None |
ALL
| All of the following conditions are met | |
|---|---|
| Battery voltage | 10.5 V or higher |
| Time after heater on | 5 seconds or more |
| Active heater off control | Not operating |
| Active heater on control | Not operating |
| Air fuel ratio sensor heater performance fail (P101D, P103D) | Not detected |
| Heater output duty cycle | 30% or higher |
P0031 AND P0051
| All of the following conditions are met | |
|---|---|
| Battery voltage | 10.5 V or higher |
| Time after heater on | 5 seconds or more |
| Heater output duty cycle | Higher than 0% |
| Active heater off control | Not operating |
| Active heater on control | Not operating |
P0032 AND P0052
| All of the following conditions are met | 10 seconds or more |
|---|---|
| Battery voltage | 10.5 V or higher |
| Air fuel ratio sensor heater low current fail (P0031, P0051) | Not detected |
| Heater output duty cycle | Less than 60% |
| Active heater off control | Not operating |
| Active heater on control | Not operating |
P101D AND P103D
| Heater on current | Less than 0.8 A |
P0031 AND P0051
| Both of the following conditions are met | |
|---|---|
| Command to heater output | On |
| Heater monitor IC high current limiter monitor input | Fail |
P0032 AND P0052
| Both of the following conditions are met | |
|---|---|
| Heater monitor IC high current limiter monitor input | Fail |
| Heater off current | Higher than 11 A |
P101D AND P103D
| Heater on current | 0.8 A or higher |
P0031 AND P0051
| Both of the following conditions are met | |
|---|---|
| Command to heater output | On |
| Heater monitor IC high current limiter monitor input | Pass |
P0032 AND P0052
| Heater off current | 11 A or less |
P101D AND P103D
Scheme 120
- Connect the Techstream to the DLC3.
- Turn the engine switch on (IG) and turn the Techstream on.
- Clear the DTCs (even if no DTCs are stored, perform the clear DTC procedure).
- Turn the engine switch off and wait for at least 30 seconds.
- Turn the engine switch on (IG) and turn the Techstream on [A].
- Start the engine and idle it for 5 minutes or more [B].
- With the vehicle stationary, depress the accelerator pedal and maintain an engine speed of 3000 rpm for 1 minute [C].
- Idle the engine for 5 minutes or more [D].
- Enter the following menus: Powertrain / Engine and ECT / Trouble Codes [E].
- Read the pending DTCs. HINT: If a pending DTC is output, the system is malfunctioning. If a pending DTC is not output, perform the following procedure.
- Enter the following menus: Powertrain / Engine and ECT / Utility / All Readiness.
- Input the DTC: P0031, P0032, P0051, P0052, P101D or P103D.
- Check the DTC judgment result. Techstream Display Description NORMAL DTC judgment completed System normal ABNORMAL DTC judgment completed System abnormal INCOMPLETE DTC judgment not completed Perform driving pattern after confirming DTC enabling conditions N/A Unable to perform DTC judgment Number of DTCs which do not fulfill DTC preconditions has reached ECU memory limit HINT: If the judgment result shows NORMAL, the system is normal. If the judgment result shows ABNORMAL, the system has a malfunction. If the judgment result shows INCOMPLETE or N/A, perform steps [B] through [E] again.
- If no pending DTC is output, perform a universal trip and check for permanent DTCs. Refer to «DTC CHECK / CLEAR [04/2013 - ]»(ref-665554-S38092923772014102400000) HINT: If a permanent DTC is output, the system is malfunctioning. If no permanent DTC is output, the system is normal.
Note. Inspect the fuses for circuits related to this system before performing the following procedure.
HINT
- Refer to "Data List / Active Test" [A/F Heater Duty #1 and A/F Heater Duty #2]. Refer to «DATA LIST / ACTIVE TEST [04/2013 - ]»(ref-665554-S28506335252014102400000)
- Bank 1 refers to the bank that includes the No. 1 cylinder*. *: The No. 1 cylinder is the cylinder which is farthest from the transmission.
- Bank 2 refers to the bank that does not include the No. 1 cylinder.
- Sensor 1 refers to the sensor closest to the engine assembly.
- Sensor 2 refers to the sensor farthest away from the engine assembly.
- Read freeze frame data using the Techstream. The ECM records vehicle and driving condition information as freeze frame data the moment a DTC is stored. When troubleshooting, freeze frame data can help determine if the vehicle was moving or stationary, if the engine was warmed up or not, if the air fuel ratio was lean or rich, and other data from the time the malfunction occurred.
- Change the fuel injection volume using the Control the Injection Volume for A/F Sensor function provided in the Active Test and monitor the air fuel ratio sensor output voltage (Refer to «DTC P0136: Oxygen Sensor Circuit Malfunction (Bank 1 Sensor 2); DTC P0137: Oxygen Sensor Circuit Low Voltage (Bank 1 Sensor 2); DTC P0138: Oxygen Sensor Circuit High Voltage (Bank 1 Sensor 2); DTC P0139: Oxygen Sensor Circuit Slow Response (Bank 1 Sensor 2); DTC P013A: Oxygen Sensor Slow Response - Rich to Lean Bank 1 Sensor 2; DTC P013C: Oxygen Sensor Slow Response - Rich to Lean Bank 2 Sensor 2; DTC P0156: Oxygen Sensor Circuit Malfunction (Bank 2 Sensor 2); DTC P0157: Oxygen Sensor Circuit Low Voltage (Bank 2 Sensor 2); DTC P0158: Oxygen Sensor Circuit High Voltage (Bank 2 Sensor 2); DTC P0159: Oxygen Sensor Circuit Slow Response (Bank 2 Sensor 2) [04/2013 - ]»(ref-665747-S37745986462014102400000) ). If the sensor output voltage does not change (almost no reaction) while performing the Active Test, the sensor may be malfunctioning.
- INSPECT AIR FUEL RATIO SENSOR (HEATER RESISTANCE) Inspect the air fuel ratio sensor. Refer to «INSPECTION [04/2013 - ]»(ref-665751-S40977130612014102400000) HINT: Perform "Inspection After Repair" after replacing the air fuel ratio sensor. Refer to «INITIALIZATION [04/2013 - ]»(ref-665554-S39644640142014102400000) Result Proceed to OK NG Result: 2 NG REPLACE AIR FUEL RATIO SENSOR. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S18498474432014102400000) Result: 1 OK See step 2
- CHECK TERMINAL VOLTAGE (POWER SOURCE OF AIR FUEL RATIO SENSOR) Disconnect the air fuel ratio sensor connector. *a Front view of wire harness connector (to Air Fuel Ratio Sensor) *b Bank 1 *c Bank 2 Turn the engine switch on (IG). Measure the voltage according to the value(s) in the table below. Standard Voltage Tester Connection Condition Specified Condition F62-2 (+B) - Body ground Engine switch on (IG) 11 to 14 V F57-2 (+B) - Body ground Engine switch on (IG) 11 to 14 V Result Proceed to OK NG Result: 2 NG See step 5 Result: 1 OK See step 3
- CHECK HARNESS AND CONNECTOR (AIR FUEL RATIO SENSOR - ECM) Disconnect the air fuel ratio 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 F62-1 (HA1A) - F4-5 (HA1A) Always Below 1 ohms F57-1 (HA2A) - F4-6 (HA2A) Always Below 1 ohms F62-1 (HA1A) or F4-5 (HA1A) - Body ground Always 10 kohms or higher F57-1 (HA2A) or F4-6 (HA2A) - Body ground Always 10 kohms or higher Result Proceed to OK NG Result: 2 NG REPAIR OR REPLACE HARNESS OR CONNECTOR Result: 1 OK See step 4
- CHECK WHETHER DTC OUTPUT RECURS (DTC P0031, P0032, P0051, P0052, P101D OR P103D) Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Clear the DTCs. Refer to «DTC CHECK / CLEAR [04/2013 - ]»(ref-665554-S38092923772014102400000) Powertrain > Engine > Clear DTCs Turn the engine switch off and wait for at least 30 seconds. Turn the engine switch on (IG). Turn the Techstream on. Drive the vehicle in accordance with the driving pattern described in Confirmation Driving Pattern. Enter the following menus: Powertrain / Engine and ECT / Trouble Codes. Read the DTCs. Powertrain > Engine > Trouble Codes Result Result Proceed to DTCs are not output A DTC P0031, P0032, P0051, P0052, P101D or P103D is output B Result: 1 A CHECK FOR INTERMITTENT PROBLEMS. Refer to «CHECK FOR INTERMITTENT PROBLEMS [04/2013 - ]»(ref-665554-S41014724152014102400000) Result: 2 B REPLACE ECM. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S41334133092014102400000)
- CHECK HARNESS AND CONNECTOR (AIR FUEL RATIO SENSOR - SEMICONDUCTOR PWR INTEGRATION ECU) Disconnect the air fuel ratio sensor connector. Disconnect the semiconductor pwr integration ECU connector. Measure the resistance according to the value(s) in the table below. Standard Resistance Tester Connection Condition Specified Condition F62-2 (+B) - 2F-1 Always Below 1 ohms F57-2 (+B) - 2F-1 Always Below 1 ohms F62-2 (+B) or 2F-1 - Body ground Always 10 kohms or higher F57-2 (+B) or 2F-1 - Body ground Always 10 kohms or higher Result Proceed to OK NG Result: 1 OK REPLACE SEMICONDUCTOR PWR INTEGRATION ECU. Refer to «REMOVAL [04/2013 - ]»(ref-665734-S38821131362014102400000) Result: 2 NG REPAIR OR REPLACE HARNESS OR CONNECTOR
| Related DTCs | P0037: Heated oxygen sensor (bank 1 sensor 2) heater range check (low current) P0038: Heated oxygen sensor (bank 1 sensor 2) heater range check (high current) P0057: Heated oxygen sensor (bank 2 sensor 2) heater range check (low current) P0058: Heated oxygen sensor (bank 2 sensor 2) heater range check (high current) P0141: Heated oxygen sensor (bank 1 sensor 2) heater performance P0161: Heated oxygen sensor (bank 2 sensor 2) heater performance P102D: Heated oxygen sensor (bank 1 sensor 2) heater performance P105D: Heated oxygen sensor (bank 2 sensor 2) heater performance |
|---|---|
| Required Sensors/Components (Main) | Heated oxygen sensor (bank 1, 2 sensor 2) heater |
| Required Sensors/Components (Related) | |
| Frequency of Operation | Continuous: P0037, P0038, P0057, P0058, P102D, P105D Once per driving cycle: P0141, P0161 |
| Duration | 0.5 seconds: P0037, P0057, P102D, P105D Within 3 seconds: P0038, P0058 10 seconds: P0141, P0161 |
| MIL Operation | Immediate: P0037, P0038, P0057, P0058, P102D, P105D 2 driving cycles: P0141, P0161 |
| Sequence of Operation | None |
| Monitor runs whenever the following DTCs are not stored | None |
ALL
| All of the following conditions are met | |
|---|---|
| Engine | Running |
| Starter | Off |
| Catalyst active air fuel ratio control | Not operating |
| Time after heater on | 10 seconds or more |
| Learned heater off current operation | Completed |
| Learned heater off current operation | Succeeded |
| Heated oxygen sensor heater high current fail (P0038, P0058) | Not detected |
| Heater on current - Learned heater off current | 0.3 A or less |
| Command to heater output | On |
P0037 AND P0057 (CASE 1)
| All of the following conditions are met | |
|---|---|
| Battery voltage | 10.5 V or higher |
| Engine | Running |
| Starter | Off |
| Catalyst active air fuel ratio control | Not operating |
| Time after heater on | 10 seconds or more |
| Learned heater off current operation | Completed |
| Heater off current | Higher than 3.5 A |
| Heater monitor IC high current limiter monitor input | Fail |
| Heated oxygen sensor heater high current fail (P0038, P0058) | Not detected |
P0037 AND P0057 (CASE 2)
| All of the following conditions are met | |
|---|---|
| Battery voltage | 10.5 V or higher |
| Engine | Running |
| Starter | Off |
| Catalyst active air fuel ratio control | Not operating |
| Time after heater on | 10 seconds or more |
| Learned heater off current operation | Completed |
P0038 AND P0058
| All of the following conditions are met | |
|---|---|
| Heated oxygen sensor heater circuit fail (P0037, P0038, P0057, P0058, P102D and P105D) | Not detected |
| Battery voltage | 10.5 V or higher |
| Fuel cut | Off |
| Time after fuel cut on to off | 30 seconds or more |
| Accumulated heater on time | 100 seconds or more |
| Learned heater off current operation | Completed |
| Duration that heated oxygen sensor impedance is less than 15 kohms | 2 seconds or more |
P0141 AND P0161
| All of the following conditions are met | |
|---|---|
| Battery voltage | 10.5 V or higher |
| Engine | Running |
| Starter | Off |
| Catalyst active air fuel ratio control | Not operating |
| Time after heater on | 10 seconds or more |
| Learned heater off current operation | Completed |
| Oxygen sensor heater low current fail (P0037, P0057) | Not detected |
| Oxygen sensor heater high current fail (P0038, P0058) | Not detected |
P102D AND P105D
| Heater on current - Learned heater off current | 0.3 A or less |
P0037 AND P0057 (CASE 1)
| Heater on current | 1 A or less |
P0037 AND P0057 (CASE 2)
| Both of the following conditions are met | |
|---|---|
| Heater monitor IC high current limiter monitor input | Fail |
| Command to heater output | On |
P0038 AND P0058
| Heater resistance | Varies with sensor element temperature (Example: Higher than 23 ohms) |
P0141 AND P0161
| Heater on current | Higher than 1 A |
P102D AND P105D
Refer to detailed information in Checking Monitor Status.
Refer to CHECKING MONITOR STATUS [04/2013 - ]
| Monitor ID | Test ID | Scaling | Unit | Description |
|---|---|---|---|---|
| $42 | $91 | Multiply by 0.001 | Ohm | Oxygen sensor heater resistance bank 1 sensor 2 |
P0141: O2 SENSOR HEATER / O2 HEATER B1S2
| Monitor ID | Test ID | Scaling | Unit | Description |
|---|---|---|---|---|
| $46 | $91 | Multiply by 0.001 | Ohm | Oxygen sensor heater resistance bank 2 sensor 2 |
P0161: O2 SENSOR HEATER / O2 HEATER B2S2
Scheme 121
- Connect the Techstream to the DLC3.
- Turn the engine switch on (IG) and turn the Techstream on.
- Clear the DTCs (even if no DTCs are stored, perform the clear DTC procedure).
- Turn the engine switch off and wait for at least 30 seconds.
- Turn the engine switch on (IG) and turn the Techstream on [A].
- Start the engine and idle it for 5 minutes or more [B].
- With the vehicle stationary, depress the accelerator pedal and maintain an engine speed of 3000 rpm for 1 minute [C].
- Idle the engine for 5 minutes or more [D].
- Enter the following menus: Powertrain / Engine and ECT / Trouble Codes [E].
- Read the pending DTCs. HINT: If a pending DTC is output, the system is malfunctioning. If a pending DTC is not output, perform the following procedure.
- Enter the following menus: Powertrain / Engine and ECT / Utility / All Readiness.
- Input the DTC: P0037, P0038, P0057, P0058, P0141, P0161, P102D or P105D.
- Check the DTC judgment result. Techstream Display Description NORMAL DTC judgment completed System normal ABNORMAL DTC judgment completed System abnormal INCOMPLETE DTC judgment not completed Perform driving pattern after confirming DTC enabling conditions N/A Unable to perform DTC judgment Number of DTCs which do not fulfill DTC preconditions has reached ECU memory limit HINT: If the judgment result shows NORMAL, the system is normal. If the judgment result shows ABNORMAL, the system has a malfunction. If the judgment result shows INCOMPLETE or N/A, perform steps [B] through [E] again.
- If no pending DTC is output, perform a universal trip and check for permanent DTCs. Refer to «DTC CHECK / CLEAR [04/2013 - ]»(ref-665554-S38092923772014102400000) HINT: If a permanent DTC is output, the system is malfunctioning. If no permanent DTC is output, the system is normal.
Note. Inspect the fuses for circuits related to this system before performing the following procedure.
HINT
- Bank 1 refers to the bank that includes the No. 1 cylinder*. *: The No. 1 cylinder is the cylinder which is farthest from the transmission.
- Bank 2 refers to the bank that does not include the No. 1 cylinder.
- Sensor 1 refers to the sensor closest to the engine assembly.
- Sensor 2 refers to the sensor farthest away from the engine assembly.
- Refer to "Data List / Active Test" [O2 Heater B1S2, O2 Heater B2S2, O2 Heater Curr Val B1S2 and O2 Heater Curr Val B2S2]. Refer to «DATA LIST / ACTIVE TEST [04/2013 - ]»(ref-665554-S28506335252014102400000)
- When the values for the Data List items O2 Heater Curr Val B1S2 and O2 Heater Curr Val B2S2 are not 0 A, the heaters are on.
- Read freeze frame data using the Techstream. The ECM records vehicle and driving condition information as freeze frame data the moment a DTC is stored. When troubleshooting, freeze frame data can help determine if the vehicle was moving or stationary, if the engine was warmed up or not, if the air fuel ratio was lean or rich, and other data from the time the malfunction occurred.
- Change the fuel injection volume using the Control the Injection Volume for A/F Sensor function provided in the Active Test and monitor the heated oxygen sensor output voltage (Refer to «DTC P0136: Oxygen Sensor Circuit Malfunction (Bank 1 Sensor 2); DTC P0137: Oxygen Sensor Circuit Low Voltage (Bank 1 Sensor 2); DTC P0138: Oxygen Sensor Circuit High Voltage (Bank 1 Sensor 2); DTC P0139: Oxygen Sensor Circuit Slow Response (Bank 1 Sensor 2); DTC P013A: Oxygen Sensor Slow Response - Rich to Lean Bank 1 Sensor 2; DTC P013C: Oxygen Sensor Slow Response - Rich to Lean Bank 2 Sensor 2; DTC P0156: Oxygen Sensor Circuit Malfunction (Bank 2 Sensor 2); DTC P0157: Oxygen Sensor Circuit Low Voltage (Bank 2 Sensor 2); DTC P0158: Oxygen Sensor Circuit High Voltage (Bank 2 Sensor 2); DTC P0159: Oxygen Sensor Circuit Slow Response (Bank 2 Sensor 2) [04/2013 - ]»(ref-665747-S37745986462014102400000) ). If the sensor output voltage does not change (almost no reaction) while performing the Active Test, the sensor may be malfunctioning.
- INSPECT HEATED OXYGEN SENSOR (HEATER RESISTANCE) Inspect the heated oxygen sensor. Refer to «INSPECTION [04/2013 - ]»(ref-665751-S40695499582014102400000) HINT: Perform "Inspection After Repair" after replacing the heated oxygen sensor. Refer to «INITIALIZATION [04/2013 - ]»(ref-665554-S39644640142014102400000) Result Proceed to OK NG Result: 2 NG REPLACE HEATED OXYGEN SENSOR. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S00952357372014102400000) Result: 1 OK See step 2
- CHECK TERMINAL VOLTAGE (POWER SOURCE OF HEATED OXYGEN SENSOR) Disconnect the heated oxygen sensor connector. *a Front view of wire harness connector (to Heated Oxygen Sensor) *b Bank 1 *c Bank 2 (for 2WD models) *d Bank 2 (for AWD models) Turn the engine switch on (IG). Measure the voltage according to the value(s) in the table below. Standard Voltage Tester Connection Condition Specified Condition K101-2 (+B) - Body ground Engine switch on (IG) 11 to 14 V K100-2 (+B) - Body ground Engine switch on (IG) 11 to 14 V Q33-2 (+B) - Body ground Engine switch on (IG) 11 to 14 V Result Proceed to OK NG Result: 2 NG See step 5 Result: 1 OK See step 3
- CHECK HARNESS AND CONNECTOR (HEATED OXYGEN SENSOR - ECM) Disconnect the heated oxygen 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 K101-1 (HT1B) - A77-4 (HT1B) Always Below 1 ohms K100-1 (HT2B) - A77-3 (HT2B) Always Below 1 ohms Q33-1 (HT2B) - A77-3 (HT2B) Always Below 1 ohms K101-1 (HT1B) or A77-4 (HT1B) - Body ground Always 10 kohms or higher K100-1 (HT2B) or A77-3 (HT2B) - Body ground Always 10 kohms or higher Q33-1 (HT2B) or A77-3 (HT2B) - Body ground Always 10 kohms or higher Result Proceed to OK NG Result: 2 NG REPAIR OR REPLACE HARNESS OR CONNECTOR Result: 1 OK See step 4
- CHECK WHETHER DTC OUTPUT RECURS (DTC P0037, P0038, P0057, P0058, P0141, P0161, P102D OR P105D) Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Clear the DTCs. Refer to «DTC CHECK / CLEAR [04/2013 - ]»(ref-665554-S38092923772014102400000) Powertrain > Engine > Clear DTCs Turn the engine switch off and wait for at least 30 seconds. Turn the engine switch on (IG). Turn the Techstream on. Drive the vehicle in accordance with the driving pattern described in Confirmation Driving Pattern. Enter the following menus: Powertrain / Engine and ECT / Trouble Codes. Read the pending DTCs. Powertrain > Engine > Trouble Codes Result Result Proceed to DTCs are not output A DTC P0037, P0038, P0057, P0058, P0141, P0161, P102D or P105D is output B Result: 1 A CHECK FOR INTERMITTENT PROBLEMS. Refer to «CHECK FOR INTERMITTENT PROBLEMS [04/2013 - ]»(ref-665554-S41014724152014102400000) Result: 2 B REPLACE ECM. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S41334133092014102400000)
- CHECK HARNESS AND CONNECTOR (HEATED OXYGEN SENSOR - SEMICONDUCTOR PWR INTEGRATION ECU) Disconnect the heated oxygen sensor connector. Disconnect the semiconductor pwr integration ECU connector. Measure the resistance according to the value(s) in the table below. Standard Resistance Tester Connection Condition Specified Condition K101-2 (+B) - 2G-1 Always Below 1 ohms K100-2 (+B) - 2G-1 Always Below 1 ohms Q33-2 (+B) - 2G-1 Always Below 1 ohms K101-2 (+B) or 2G-1 - Body ground Always 10 kohms or higher K100-2 (+B) or 2G-1 - Body ground Always 10 kohms or higher Q33-2 (+B) or 2G-1 - Body ground Always 10 kohms or higher Result Proceed to OK NG Result: 1 OK REPLACE SEMICONDUCTOR PWR INTEGRATION ECU. Refer to «REMOVAL [04/2013 - ]»(ref-665734-S38821131362014102400000) Result: 2 NG REPAIR OR REPLACE HARNESS OR CONNECTOR
| Related DTCs | P0087: Fuel pressure too low |
|---|---|
| Required Sensors/Components (Main) | Fuel pressure sensor |
| Required Sensors/Components (Related) | |
| Frequency of Operation | Continuous |
| Duration | About 10 seconds |
| MIL Operation | Immediately |
| Sequence of Operation | None |
| Monitor runs whenever the following DTCs are not stored | None |
|---|---|
| Time after engine start | 0.2 seconds or more |
| Time after fuel cut finished | 3 seconds or more |
| Target fuel pressure | Small change |
| Either of the following conditions A or B is met | |
|---|---|
| A. Both of the following conditions are met while engine is not idling | Condition 1 and 2 |
| 1. Difference in fuel pressure between actual and target | Less than -5 MPa (-51.0 kgf/cm 2 , -725 psi) |
| 2. Difference in high press fuel pump duty between actual and target | More than 40% |
| B. Both of the following conditions are met while engine is idling | Condition 1 and 2 |
| 1. Difference in fuel pressure between actual and target | Less than -3 MPa (-30.6 kgf/cm 2 , -435 psi) |
| 2. Difference in high press fuel pump duty between actual and target | More than 40% |
- Connect the Techstream to the DLC3.
- Turn the engine switch on (IG) and turn the Techstream on.
- Record the Freeze Frame Data.
- Clear the DTCs (even if no DTCs are stored, perform the clear DTC procedure).
- Turn the engine switch off and wait for at least 30 seconds.
- Turn the engine switch on (IG) and turn the Techstream on.
- Start the engine.
- Based on engine speed, engine load and other freeze frame data stored in the ECM, reproduce the conditions present when the DTC was stored.
- Enter the following menus: Powertrain / Engine and ECT / Trouble Codes.
- Read the pending DTCs. HINT: If a pending DTC is output, the system is malfunctioning. If a pending DTC is not output, perform the following procedure.
- Enter the following menus: Powertrain / Engine and ECT / Utility / All Readiness.
- Input the DTC: P0087.
- Check the DTC judgment result. Techstream Display Description NORMAL DTC judgment completed System normal ABNORMAL DTC judgment completed System abnormal INCOMPLETE DTC judgment not completed Perform driving pattern after confirming DTC enabling conditions N/A Unable to perform DTC judgment Number of DTCs which do not fulfill DTC preconditions has reached ECU memory limit HINT: If the judgment result shows NORMAL, the system is normal. If the judgment result shows ABNORMAL, the system has a malfunction.
- If the judgment result is INCOMPLETE or N/A and no pending DTC is output, perform a universal trip and check for permanent DTCs. Refer to «DTC CHECK / CLEAR [04/2013 - ]»(ref-665554-S38092923772014102400000) HINT: If a permanent DTC is output, the system is malfunctioning. If no permanent DTC is output, the system is normal.
HINT
Read freeze frame data using the Techstream. The ECM records vehicle and driving condition information as freeze frame data the moment a DTC is stored. When troubleshooting, freeze frame data can help determine if the vehicle was moving or stationary, if the engine was warmed up or not, if the air fuel ratio was lean or rich, and other data from the time the malfunction occurred.
Scheme 122
- CHECK FUEL LEAK (HIGH PRESSURE SIDE) Check around and beneath the vehicle for fuel leaks, fumes, etc. OK No fuel leaks present. Result Proceed to OK NG Result: 2 NG REPAIR OR REPLACE FUEL LEAK POINT Result: 1 OK See step 2
- CHECK OTHER DTCS OUTPUT (IN ADDITION TO DTC P0087) Connect the Techstream to the DLC3. Turn the engine switch on (IG) and turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Trouble Codes. Read the DTCs. Powertrain > Engine > Trouble Codes Result Result Proceed to DTC P0087 is output A DTC P0087 and other DTCs are output B HINT: If any DTCs other than P0087 are output, troubleshoot those DTCs first. Result: 2 B GO TO DTC CHART. Refer to «DIAGNOSTIC TROUBLE CODE CHART [04/2013 - ]»(ref-665554-S03150692352014102400000) Result: 1 A See step 3
- CONFIRM IF VEHICLE HAS RUN OUT OF FUEL IN PAST Has the vehicle run out of fuel in the past? Result Proceed to YES NO Result: 1 YES DTC CAUSED BY RUNNING OUT OF FUEL Result: 2 NO See step 4
- CHECK MISFIRE COUNT (CYLINDER #1 (TO #6) MISFIRE COUNT) Connect the Techstream to the DLC3. Turn the engine switch on (IG) and turn the Techstream on. Start the engine and warm it up. Enter the following menus: Powertrain / Engine and ECT / Data List / Misfire / Cylinder #1 Misfire Count to Cylinder #6 Misfire Count. Powertrain > Engine > Data List Tester Display Cylinder #1 Misfire Count Cylinder #2 Misfire Count Cylinder #3 Misfire Count Cylinder #4 Misfire Count Cylinder #5 Misfire Count Cylinder #6 Misfire Count All on the engine to idle. Read each value of Cylinder #1 (to #6) Misfire Count displayed on the Techstream. Check if there is a particular cylinder that the misfire count is concentrated on. Result Result Proceed to No misfire counts, or misfire counts occur randomly in all cylinders A Misfire counts occur in a particular cylinder B HINT: Perform "Inspection After Repair" after replacing the fuel injector assembly. Refer to «INITIALIZATION [04/2013 - ]»(ref-665554-S39644640142014102400000) Result: 2 B REPLACE FUEL INJECTOR ASSEMBLY. Refer to «REMOVAL [04/2013 - ]»(ref-665752-S02581426282014102400000) Result: 1 A See step 5
- CHECK FUEL PRESSURE SENSOR Connect the Techstream to the DLC3. Turn the engine switch on (IG) and turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Data List / Gas General / Fuel Press. Powertrain > Engine > Data List Tester Display Fuel Press Start the engine. Check that the fuel pressure fluctuates when the engine condition changes from idling to racing. Result Result Proceed to Fuel pressure does not rise A Fuel pressure does not fluctuate B Fuel pressure fluctuates C Result: 2 B REPLACE FUEL PRESSURE SENSOR. Refer to «REMOVAL [04/2013 - ]»(ref-665752-S08165459162014102400000) Result: 3 C See step 8 Result: 1 A See step 6
- CHECK FUEL PUMP OPERATION (LOW PRESSURE SIDE) Check the fuel pump operation. Refer to «PROCEDURE - Step 1»(ref-665746-S18024150712014102400000) Result Proceed to OK NG Result: 2 NG GO TO FUEL PUMP CONTROL CIRCUIT. Refer to «Fuel Pump Control Circuit [04/2013 - ]»(ref-665745-S02545237912014102400000) Result: 1 OK See step 7
- CHECK FUEL PRESSURE (LOW PRESSURE SIDE) Check the fuel pressure (low pressure side). Refer to «PROCEDURE - Step 2»(ref-665746-S18024150712014102400000) Result Proceed to OK NG Result: 2 NG REPAIR OR REPLACE FUEL SYSTEM (PRESSURE REGULATOR, PIPE LINE AND FILTER) Result: 1 OK See step 8
- CHECK FUEL LEAK (HIGH PRESSURE FUEL LINE) Connect the Techstream to the DLC3. Turn the engine switch on (IG) and turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Data List / Gas General / Fuel Press. Powertrain > Engine > Data List Tester Display Fuel Press Start the engine. Check if the fuel pressure fluctuates when the engine switch is turned off. HINT: Turn the engine switch off and on (IG) before checking the fuel pressure. Result Result Proceed to Fuel pressure is almost constant, or fluctuations are gradual A Fuel pressure drops suddenly B Result: 2 B See step 13 Result: 1 A See step 9
- REPLACE INJECTOR DRIVER (EDU) Replace the injector driver (EDU). Refer to «REMOVAL [04/2013 - ]»(ref-665752-S16663720972014102400000) Result Proceed to NEXT Result: 1 NEXT See step 10
- CHECK IF DTC OUTPUT RECURS (SEE IF DTC P0087 IS OUTPUT AGAIN) Connect the Techstream to the DLC3. Turn the engine switch on (IG) and turn the Techstream on. Clear the DTCs. Powertrain > Engine > Clear DTCs Turn the engine switch off and wait for at least 30 seconds. Drive the vehicle in accordance with the driving pattern described in the Confirmation Driving Pattern. Enter the following menus: Powertrain / Engine and ECT / Trouble Codes. Read the DTCs. Powertrain > Engine > Trouble Codes Result Result Proceed to DTC P0087 is output A DTCs are not output B Result: 2 B END Result: 1 A See step 11
- REPLACE FUEL PUMP (FOR HIGH PRESSURE) Replace the fuel pump (for high pressure). Refer to «REMOVAL [04/2013 - ]»(ref-665752-S11712684222014102400000) HINT: Perform "Inspection After Repair" after replacing the fuel pump (for high pressure). Refer to «INITIALIZATION [04/2013 - ]»(ref-665554-S39644640142014102400000) Result Proceed to NEXT Result: 1 NEXT See step 12
- CHECK IF DTC OUTPUT RECURS (SEE IF DTC P0087 IS OUTPUT AGAIN) Connect the Techstream to the DLC3. Turn the engine switch on (IG) and turn the Techstream on. Clear the DTCs. Powertrain > Engine > Clear DTCs Turn the engine switch off and wait for at least 30 seconds. Drive the vehicle in accordance with the driving pattern described in the Confirmation Driving Pattern. Enter the following menus: Powertrain / Engine and ECT / Trouble Codes. Read the DTCs. Powertrain > Engine > Trouble Codes Result Result Proceed to DTC P0087 is output A DTCs are not output B Result: 1 A REPLACE ECM. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S41334133092014102400000) Result: 2 B END
- CHECK FUEL RELIEF VALVE ASSEMBLY Connect the Techstream to the DLC3. Turn the engine switch on (IG) and turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Data List / Gas General / Fuel Press. Powertrain > Engine > Data List Tester Display Fuel Press Start the engine. Check if the fuel pressure fluctuates when the fuel hose is pressed with your fingers. Result Result Proceed to Pressing the hose raises the fuel pressure slightly A Fuel pressure does not fluctuate B Result: 1 A See step 9 Result: 2 B REPLACE FUEL RELIEF VALVE ASSEMBLY. Refer to «REMOVAL [04/2013 - ]»(ref-665752-S30044924652014102400000)
| Related DTCs | P0088: Fuel pressure too high |
|---|---|
| Required Sensors/Components (Main) | Fuel pressure sensor |
| Required Sensors/Components (Related) | |
| Frequency of Operation | Continuous |
| Duration | About 10 seconds |
| MIL Operation | Immediately |
| Sequence of Operation | None |
| Monitor runs whenever the following DTCs are not stored | None |
|---|---|
| Time after engine start | 0.2 seconds or more |
| Time after fuel cut finished | 3 seconds or more |
| Target fuel pressure | Small change |
| Difference in fuel pressure between actual and target | More than 3 MPa (30.6 kgf/cm 2 , 435 psi) |
|---|---|
| Difference in high press fuel pump duty between actual and target | Less than -40% |
- Connect the Techstream to the DLC3.
- Turn the engine switch on (IG) and turn the Techstream on.
- Record the Freeze Frame Data.
- Clear the DTCs (even if no DTCs are stored, perform the clear DTC procedure).
- Turn the engine switch off and wait for at least 30 seconds.
- Turn the engine switch on (IG) and turn the Techstream on.
- Start the engine.
- Based on engine speed, engine load and other freeze frame data stored in the ECM, reproduce the conditions present when the DTC was stored.
- Enter the following menus: Powertrain / Engine and ECT / Trouble Codes.
- Read the pending DTCs. HINT: If a pending DTC is output, the system is malfunctioning. If a pending DTC is not output, perform the following procedure.
- Enter the following menus: Powertrain / Engine and ECT / Utility / All Readiness.
- Input the DTC: P0088.
- Check the DTC judgment result. Techstream Display Description NORMAL DTC judgment completed System normal ABNORMAL DTC judgment completed System abnormal INCOMPLETE DTC judgment not completed Perform driving pattern after confirming DTC enabling conditions N/A Unable to perform DTC judgment Number of DTCs which do not fulfill DTC preconditions has reached ECU memory limit HINT: If the judgment result shows NORMAL, the system is normal. If the judgment result shows ABNORMAL, the system has a malfunction.
- If the judgment result is INCOMPLETE or N/A and no pending DTC is output, perform a universal trip and check for permanent DTCs. Refer to «DTC CHECK / CLEAR [04/2013 - ]»(ref-665554-S38092923772014102400000) HINT: If a permanent DTC is output, the system is malfunctioning. If no permanent DTC is output, the system is normal.
HINT
Read freeze frame data using the Techstream. The ECM records vehicle and driving condition information as freeze frame data the moment a DTC is stored. When troubleshooting, freeze frame data can help determine if the vehicle was moving or stationary, if the engine was warmed up or not, if the air fuel ratio was lean or rich, and other data from the time the malfunction occurred.
- CHECK OTHER DTCS OUTPUT (IN ADDITION TO DTC P0088) Connect the Techstream to the DLC3. Turn the engine switch on (IG) and turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Trouble Codes. Read the DTCs. Powertrain > Engine > Trouble Codes Result Result Proceed to DTC P0088 is output A DTC P0088 and other DTCs are output B HINT: If any DTCs other than P0088 are output, troubleshoot those DTCs first. Result: 2 B GO TO DTC CHART. Refer to «DIAGNOSTIC TROUBLE CODE CHART [04/2013 - ]»(ref-665554-S03150692352014102400000) Result: 1 A See step 2
- CHECK FUEL PRESSURE SENSOR Connect the Techstream to the DLC3. Start the engine and turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Data List / Gas General / Fuel Press. Powertrain > Engine > Data List Tester Display Fuel Press Check that the fuel pressure fluctuates when the engine is raced. OK Fuel pressure fluctuates. Result Proceed to OK NG Result: 2 NG REPLACE FUEL PRESSURE SENSOR. Refer to «REMOVAL [04/2013 - ]»(ref-665752-S08165459162014102400000) Result: 1 OK See step 3
- REPLACE FUEL PUMP (FOR HIGH PRESSURE) Replace the fuel pump (for high pressure). Refer to «REMOVAL [04/2013 - ]»(ref-665752-S11712684222014102400000) HINT: Perform "Inspection After Repair" after replacing the fuel pump (for high pressure). Refer to «INITIALIZATION [04/2013 - ]»(ref-665554-S39644640142014102400000) Result Proceed to NEXT Result: 1 NEXT See step 4
- CHECK IF DTC OUTPUT RECURS (SEE IF DTC P0088 IS OUTPUT AGAIN) Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Clear the DTCs. Powertrain > Engine > Clear DTCs Turn the engine switch off and wait at for least 30 seconds. Drive the vehicle in accordance with the driving pattern described in the Confirmation Driving Pattern. Enter the following menus: Powertrain / Engine and ECT / Trouble Codes. Read the DTCs. Powertrain > Engine > Trouble Codes Result Result Proceed to DTC P0088 is output A DTCs are not output B Result: 2 B END Result: 1 A See step 5
- INSPECT FUEL RELIEF VALVE ASSEMBLY Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Data List / Gas General / Fuel Press. Powertrain > Engine > Data List Tester Display Fuel Press Start the engine. Check the fuel pressure. Result Techstream Display Result Proceed to Fuel Press Less then 15300 kPag A 15300 kPag or higher B Result: 1 A REPLACE ECM. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S41334133092014102400000) Result: 2 B REPLACE FUEL RELIEF VALVE ASSEMBLY. Refer to «REMOVAL [04/2013 - ]»(ref-665752-S30044924652014102400000)
| Related DTCs | P0101: Mass air flow meter rationality |
|---|---|
| Required Sensors/Components (Main) | Mass air flow meter sub-assembly |
| Required Sensors/Components (Related) | Crankshaft position sensor VVT sensor Engine coolant temperature sensor Throttle position sensor |
| Frequency of Operation | Continuous |
| Duration | 10 times |
| MIL Operation | 2 driving cycles |
| Sequence of Operation | None |
| Monitor runs whenever the following DTCs are not stored | None |
|---|---|
| All of the following conditions are met | |
| Throttle position voltage | 0.2 V or higher, and less than 2 V |
| Time after engine start | 5 seconds or more |
| Battery voltage | 10.5 V or higher |
| Engine coolant temperature | 70°C (158°F) or higher |
| Estimated load | 30% or higher, and less than 70% |
| Mass air flow meter circuit fail (P0102, P0103) | Not detected |
| Intake air temperature sensor circuit fail (P0112, P0113) | Not detected |
| Engine coolant temperature sensor circuit fail (P0115, P0117, P0118) | Not detected |
| Crankshaft position sensor circuit fail (P0335) | Not detected |
| Throttle position sensor circuit fail (P0120, P0121, P0122, P0123, P0220, P0222, P0223, P2135) | Not detected |
| Canister pressure sensor circuit fail (P0452, P0453) | Not detected |
| Leak detection pump fail (P2401, P2402) | Not detected |
| Vent valve fail (P2419, P2420) | Not detected |
| Both of the following conditions are met | |
|---|---|
| Average engine load value ratio | Less than 0.85, or higher than 1.15 (varies with estimated engine load) |
| Average air fuel ratio | Less than -20%, or higher than 20% |
Scheme 123
- Connect the Techstream to the DLC3.
- Turn the engine switch on (IG).
- Turn the Techstream on.
- Clear the DTCs (even if no DTCs are stored, perform the clear DTC procedure).
- Turn the engine switch off and wait for at least 30 seconds.
- Turn the engine switch on (IG) and turn the Techstream on.
- Start the engine and warm it up until the engine coolant temperature reaches 70°C (158°F) or higher [A].
- Drive the vehicle at approximately 80 km/h (50 mph) to 112 km/h (70 mph) for 5 minutes or more [B]. WARNING: When performing the confirmation driving pattern, obey all speed limits and traffic laws. HINT: Drive while keeping the engine load as stable as possible.
- Enter the following menus: Powertrain / Engine and ECT / Trouble Codes [C].
- Read the pending DTCs. HINT: If a pending DTC is output, the system is malfunctioning. If a pending DTC is not output, perform the following procedure.
- Enter the following menus: Powertrain / Engine and ECT / Utility / All Readiness.
- Input the DTC: P0101.
- Check the DTC judgment result. Techstream Display Description NORMAL DTC judgment completed System normal ABNORMAL DTC judgment completed System abnormal INCOMPLETE DTC judgment not completed Perform driving pattern after confirming DTC enabling conditions N/A Unable to perform DTC judgment Number of DTCs which do not fulfill DTC preconditions has reached ECU memory limit HINT: If the judgment result shows NORMAL, the system is normal. If the judgment result shows ABNORMAL, the system has a malfunction. If the judgment result shows INCOMPLETE or N/A, perform steps [B] and [C] again.
- If no pending DTC is output, perform a universal trip and check for permanent DTCs. Refer to «DTC CHECK / CLEAR [04/2013 - ]»(ref-665554-S38092923772014102400000) HINT: If a permanent DTC is output, the system is malfunctioning. If no permanent DTC is output, the system is normal.
HINT
Read freeze frame data using the Techstream. The ECM records vehicle and driving condition information as freeze frame data the moment a DTC is stored. When troubleshooting, freeze frame data can help determine if the vehicle was moving or stationary, if the engine was warmed up or not, if the air fuel ratio was lean or rich, and other data from the time the malfunction occurred.
- CHECK ANY OTHER DTCS OUTPUT (IN ADDITION TO DTC P0101) Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Trouble Codes. Read the DTCs. Powertrain > Engine > Trouble Codes Result Result Proceed to DTC P0101 is output A DTC P0101 and other DTCs are output B HINT: If any DTCs other than P0101 are output, troubleshoot those DTCs first. Result: 2 B GO TO DTC CHART. Refer to «DIAGNOSTIC TROUBLE CODE CHART [04/2013 - ]»(ref-665554-S03150692352014102400000) Result: 1 A See step 2
- CHECK INTAKE SYSTEM Check the intake system for vacuum leaks. Refer to «ON-VEHICLE INSPECTION [04/2013 - ]»(ref-665753-S17965231612014102400000) OK No leaks from intake system. HINT: Perform "Inspection After Repair" after repairing or replacing the intake system. Refer to «INITIALIZATION [04/2013 - ]»(ref-665554-S39644640142014102400000) Result Proceed to OK NG Result: 2 NG REPAIR OR REPLACE INTAKE SYSTEM Result: 1 OK See step 3
- CHECK PCV HOSE CONNECTIONS Check the PCV hose connections. Refer to «COMPONENTS [04/2013 - ]»(ref-665713-S36646338582014102400000) OK PCV valve and hose are connected correctly and are not damaged. Result Proceed to OK NG Result: 2 NG REPAIR OR REPLACE PCV HOSE Result: 1 OK See step 4
- REPLACE MASS AIR FLOW METER SUB-ASSEMBLY Replace the mass air flow meter sub-assembly. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S23197549392014102400000) HINT: Perform "Inspection After Repair" after replacing the mass air flow meter sub-assembly. Refer to «INITIALIZATION [04/2013 - ]»(ref-665554-S39644640142014102400000) Result Proceed to NEXT Result: 1 NEXT See step 5
- CONFIRM WHETHER MALFUNCTION HAS BEEN SUCCESSFULLY REPAIRED Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Clear the DTCs. Refer to «DTC CHECK / CLEAR [04/2013 - ]»(ref-665554-S38092923772014102400000) Powertrain > Engine > Clear DTCs Turn the engine switch off and wait for at least 30 seconds. Turn the engine switch on (IG). Turn the Techstream on. Start the engine and warm it up. Drive the vehicle in accordance with the driving pattern described in Confirmation Driving Pattern. Enter the following menus: Powertrain / Engine and ECT / Utility / All Readiness Powertrain > Engine > Utility Tester Display All Readiness Input the DTC: P0101. Check the DTC judgment result. Result Techstream Display Description NORMAL DTC judgment completed System normal ABNORMAL DTC judgment completed System abnormal INCOMPLETE DTC judgment not completed Perform driving pattern after confirming DTC enabling conditions N/A Unable to perform DTC judgment Number of DTCs which do not fulfill DTC preconditions has reached ECU memory limit Result Proceed to NEXT Result: 1 NEXT END
| Related DTCs | P0102: Mass air flow meter range check (low voltage) P0103: Mass air flow meter range check (high voltage) |
|---|---|
| Required Sensors/Components (Main) | Mass air flow meter sub-assembly |
| Required Sensors/Components (Related) | Crankshaft position sensor |
| Frequency of Operation | Continuous |
| Duration | 3 seconds |
| MIL Operation | Immediate: Engine speed less than 4000 rpm 2 driving cycles: Engine speed 4000 rpm or higher |
| Sequence of Operation | None |
| Monitor runs whenever the following DTCs are not stored | None |
| Mass air flow meter voltage | Less than 0.2 V |
P0102
| Mass air flow meter voltage | Higher than 4.9 V |
P0103
| Mass air flow meter voltage | 0.2 to 4.9 V |
Scheme 124
- Connect the Techstream to the DLC3.
- Turn the engine switch on (IG) and turn the Techstream on.
- Clear the DTCs (even if no DTCs are stored, perform the clear DTC procedure).
- Turn the engine switch off and wait for at least 30 seconds.
- Turn the engine switch on (IG) and turn the Techstream on [A].
- Start the engine.
- Idle the engine for 5 seconds [B].
- Enter the following menus: Powertrain / Engine and ECT / Trouble Codes [C].
- Read the pending DTCs. HINT: If a pending DTC is output, the system is malfunctioning. If a pending DTC is not output, perform the following procedure.
- Run the engine at an engine speed of 4000 rpm or higher for 5 seconds [D].
- Enter the following menus: Powertrain / Engine and ECT / Trouble Codes [E].
- Read the pending DTCs. HINT: If a pending DTC is output, the system is malfunctioning. If a pending DTC is not output, perform the following procedure.
- Enter the following menus: Powertrain / Engine and ECT / Utility / All Readiness.
- Input the DTC: P0102 or P0103.
- Check the DTC judgment result. Techstream Display Description NORMAL DTC judgment completed System normal ABNORMAL DTC judgment completed System abnormal INCOMPLETE DTC judgment not completed Perform driving pattern after confirming DTC enabling conditions N/A Unable to perform DTC judgment Number of DTCs which do not fulfill DTC preconditions has reached ECU memory limit HINT: If the judgment result shows NORMAL, the system is normal. If the judgment result shows ABNORMAL, the system has a malfunction. If the judgment result shows INCOMPLETE or N/A, perform steps [B] through [E] again.
- If no pending DTC is output, perform a universal trip and check for permanent DTCs. Refer to «DTC CHECK / CLEAR [04/2013 - ]»(ref-665554-S38092923772014102400000) HINT: If a permanent DTC is output, the system is malfunctioning. If no permanent DTC is output, the system is normal.
Scheme 125
Note. Inspect the fuses for circuits related to this system before performing the following procedure.
HINT
Read freeze frame data using the Techstream. The ECM records vehicle and driving condition information as freeze frame data the moment a DTC is stored. When troubleshooting, freeze frame data can help determine if the vehicle was moving or stationary, if the engine was warmed up or not, if the air fuel ratio was lean or rich, and other data from the time the malfunction occurred.
Scheme 126
- READ OUTPUT DTC (DTC P0102 OR P0103) Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Trouble Codes. Read the DTCs. Powertrain > Engine > Trouble Codes Result Result Proceed to DTC P0102 is output A DTC P0103 is output B Result: 2 B See step 6 Result: 1 A See step 2
- CHECK TERMINAL VOLTAGE (POWER SOURCE OF MASS AIR FLOW METER SUB-ASSEMBLY) Disconnect the mass air flow meter sub-assembly connector. *a Front view of wire harness connector (to Mass Air Flow Meter Sub-assembly) Turn the engine switch on (IG). Measure the voltage according to the value(s) in the table below. Standard Voltage Tester Connection Condition Specified Condition F40-3 (+B) - Body ground Engine switch on (IG) 11 to 14 V Result Proceed to OK NG Result: 2 NG See step 5 Result: 1 OK See step 3
- CHECK HARNESS AND CONNECTOR (MASS AIR FLOW METER SUB-ASSEMBLY - ECM) Disconnect the mass air flow meter sub-assembly connector. Disconnect the ECM connector. Measure the resistance according to the value(s) in the table below. Standard Resistance Tester Connection Condition Specified Condition F40-5 (VG) - F1-25 (VG) Always Below 1 ohms F40-4 (E2G) - F1-24 (E2G) Always Below 1 ohms F40-5 (VG) or F1-25 (VG) - Body ground Always 10 kohms or higher Result Proceed to OK NG Result: 2 NG REPAIR OR REPLACE HARNESS OR CONNECTOR Result: 1 OK See step 4
- INSPECT MASS AIR FLOW METER SUB-ASSEMBLY Inspect the mass air flow meter sub-assembly, referring to the On-vehicle Inspection for Mass Air Flow Meter. Refer to «ON-VEHICLE INSPECTION [04/2013 - ]»(ref-665751-S05061758712014102400000) Inspect the mass air flow meter sub-assembly, referring to the Inspection for Mass Air Flow Meter. Refer to «INSPECTION [04/2013 - ]»(ref-665751-S26977866142014102400000) Inspect the function of the mass air flow meter sub-assembly. Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Data List / Primary / MAF. Powertrain > Engine > Data List Tester Display MAF Start the engine. Check that the MAF value changes when the engine is raced. OK The reading changes. HINT: Perform "Inspection After Repair" after replacing the mass air flow meter sub-assembly. Refer to «INITIALIZATION [04/2013 - ]»(ref-665554-S39644640142014102400000) Result Proceed to OK NG Result: 1 OK REPLACE ECM. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S41334133092014102400000) Result: 2 NG REPLACE MASS AIR FLOW METER SUB-ASSEMBLY. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S23197549392014102400000)
- CHECK HARNESS AND CONNECTOR (MASS AIR FLOW METER SUB-ASSEMBLY - SEMICONDUCTOR PWR INTEGRATION ECU) Disconnect the mass air flow meter sub-assembly connector. Disconnect the semiconductor pwr integration ECU connector. Measure the resistance according to the value(s) in the table below. Standard Resistance Tester Connection Condition Specified Condition F40-3 (+B) - 2G-1 Always Below 1 ohms F40-3 (+B) or 2G-1 - Body ground Always 10 kohms or higher Result Proceed to OK NG Result: 1 OK REPLACE SEMICONDUCTOR PWR INTEGRATION ECU. Refer to «REMOVAL [04/2013 - ]»(ref-665734-S38821131362014102400000) Result: 2 NG REPAIR OR REPLACE HARNESS OR CONNECTOR
- CHECK HARNESS AND CONNECTOR (SENSOR GROUND) Disconnect the mass air flow meter sub-assembly connector. Measure the resistance according to the value(s) in the table below. Standard Resistance Tester Connection Condition Specified Condition F40-4 (E2G) - Body ground Always Below 1 ohms HINT: Perform "Inspection After Repair" after replacing the mass air flow meter sub-assembly. Refer to «INITIALIZATION [04/2013 - ]»(ref-665554-S39644640142014102400000) Result Proceed to OK NG Result: 1 OK REPLACE MASS AIR FLOW METER SUB-ASSEMBLY. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S23197549392014102400000) Result: 2 NG See step 7
- CHECK HARNESS AND CONNECTOR (MASS AIR FLOW METER SUB-ASSEMBLY - ECM) Disconnect the mass air flow meter sub-assembly connector. Disconnect the ECM connector. Measure the resistance according to the value(s) in the table below. Standard Resistance Tester Connection Condition Specified Condition F40-4 (E2G) - F1-24 (E2G) Always Below 1 ohms Result Proceed to OK NG Result: 1 OK REPLACE ECM. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S41334133092014102400000) Result: 2 NG REPAIR OR REPLACE HARNESS OR CONNECTOR
| Related DTCs | P0111: Intake air temperature sensor rationality (After engine stop) P0111: Intake air temperature sensor rationality (After cold engine start) |
|---|---|
| Required Sensors/Components (Main) | Intake air temperature sensor |
| Required Sensors/Components (Related) | |
| Frequency of Operation | Once per driving cycle |
| Duration | |
| MIL Operation | 2 driving cycles |
| Sequence of Operation | None |
| Monitor runs whenever the following DTCs are not stored | None |
ALL
| All of the following conditions are met | |
|---|---|
| Time after engine start | 10 seconds or more |
| Battery voltage | 10.5 V or higher |
| Engine coolant temperature at ECM started by internal engine off timer | 40°C (-40°F) or higher |
| Time that mass air flow is low before engine stop | 2100 seconds or more |
| Engine coolant temperature before engine stop | 70°C (158°F) or higher |
| Accumulated mass air flow amount in previous driving cycle | 3353 g or more |
| Key-off duration | 30 minutes |
| Intake air temperature sensor circuit fail (P0112, P0113) | Not detected |
| Engine coolant temperature sensor circuit fail (P0115, P0117, P0118) | Not detected |
| Mass air flow meter circuit fail (P0102, P0103) | Not detected |
| Soak timer circuit fail (P2610) | Not detected |
AFTER ENGINE STOP
| All of the following conditions are met | |
|---|---|
| Key-off duration | 5 hours or more |
| Time after engine start | 10 seconds or more |
| Engine coolant temperature | 70°C (158°F) or higher |
| Accumulated mass air flow amount | 3353 g or more |
| Either of the following conditions is met | 1 or 2 |
| 1. Duration while engine load is low | 120 seconds or more |
| 2. Duration while engine load is high | 10 seconds or more |
| Intake air temperature sensor circuit fail (P0112, P0113) | Not detected |
| Engine coolant temperature sensor circuit fail (P0115, P0117, P0118) | Not detected |
| Mass air flow meter circuit fail (P0102, P0103) | Not detected |
| Soak timer circuit fail (P2610) | Not detected |
AFTER COLD ENGINE START
| Intake air temperature change | Less than 1°C (1.8°F) |
AFTER ENGINE STOP
| Intake air temperature change | Less than 1°C (1.8°F) |
AFTER COLD ENGINE START
Scheme 127
- Connect the Techstream to the DLC3.
- Turn the engine switch on (IG) and turn the Techstream on.
- Clear the DTCs (even if no DTCs are stored, perform the clear DTC procedure).
- Turn the engine switch off and wait for at least 30 seconds.
- Turn the engine switch on (IG) and turn the Techstream on [A].
- Start the engine and warm it up until the engine coolant temperature reaches 75°C (167°F) or higher [B].
- Idle the engine for 5 minutes or more [C]. HINT: During steps [A] through [C], if the change in the intake air temperature is less than 1°C (1.8°F), the intake air temperature sensor (mass air flow meter sub-assembly) is malfunctioning. It is not necessary to continue this procedure.
- Enter the following menus: Powertrain / Engine and ECT / Trouble Codes [D].
- Read the pending DTCs. HINT: If a pending DTC is output, the system is malfunctioning. If a pending DTC is not output, perform the following procedure.
- Enter the following menus: Powertrain / Engine and ECT / Utility / All Readiness.
- Input the DTC: P0111.
- Check the DTC judgment result. Techstream Display Description NORMAL DTC judgment completed System normal ABNORMAL DTC judgment completed System abnormal INCOMPLETE DTC judgment not completed Perform driving pattern after confirming DTC enabling conditions N/A Unable to perform DTC judgment Number of DTCs which do not fulfill DTC preconditions has reached ECU memory limit HINT: If the judgment result shows NORMAL, the system is normal. If the judgment result shows ABNORMAL, the system has a malfunction. If the judgment result shows INCOMPLETE or N/A, perform steps [E] and [F].
- Drive the vehicle at 40 km/h (25 mph) or more for a total of 5 minutes or more [E]. WARNING: When performing the confirmation driving pattern, obey all speed limits and traffic laws.
- Check the DTC judgment result again [F]. HINT: If the judgment result shows INCOMPLETE or N/A, perform steps [E] and [F] again.
- If no pending DTC is output, perform a universal trip and check for permanent DTCs. Refer to «DTC CHECK / CLEAR [04/2013 - ]»(ref-665554-S38092923772014102400000) HINT: If a permanent DTC is output, the system is malfunctioning. If no permanent DTC is output, the system is normal.
HINT
Read freeze frame data using the Techstream. The ECM records vehicle and driving condition information as freeze frame data the moment a DTC is stored. When troubleshooting, freeze frame data can help determine if the vehicle was moving or stationary, if the engine was warmed up or not, if the air fuel ratio was lean or rich, and other data from the time the malfunction occurred.
- CHECK ANY OTHER DTCS OUTPUT (IN ADDITION TO DTC P0111) Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Trouble Codes. Read the DTCs. Powertrain > Engine > Trouble Codes Result Result Proceed to DTC P0111 and other DTCs are output A DTC P0111 is output B HINT: If any DTCs other than P0111 are output, troubleshoot those DTCs first. Perform "Inspection After Repair" after replacing the mass air flow meter sub-assembly. Refer to «INITIALIZATION [04/2013 - ]»(ref-665554-S39644640142014102400000) Result: 1 A GO TO DTC CHART. Refer to «DIAGNOSTIC TROUBLE CODE CHART [04/2013 - ]»(ref-665554-S03150692352014102400000) Result: 2 B REPLACE MASS AIR FLOW METER SUB-ASSEMBLY. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S23197549392014102400000)
Scheme 128
The intake air temperature sensor, mounted on the mass air flow meter sub-assembly, monitors the intake air temperature. The intake air temperature sensor has a built-in thermistor with a resistance that varies according to the temperature of the intake air. When the intake air temperature is low, the resistance of the thermistor increases. When the temperature is high, the resistance drops. These variations in resistance are transmitted to the ECM as voltage changes (Scheme 124)
The intake air temperature sensor is powered by a 5 V supply from the THA terminal of the ECM, via resistor R.
Resistor R and the intake air temperature sensor are connected in series. When the resistance value of the intake air temperature sensor changes, according to changes in the intake air temperature, the voltage at terminal THA also varies. Based on this signal, the ECM increases the fuel injection volume when the engine is cold to improve driveability.
HINT
When DTC P0112 or P0113 is stored, the ECM enters fail-safe mode. During fail-safe mode, the intake air temperature is estimated to be 20°C (68°F) by the ECM. Fail-safe mode continues until a pass condition is detected.
| DTC No. | Detection Item | DTC Detection Condition | Trouble Area | MIL | Memory |
|---|---|---|---|---|---|
| P0112 | Intake Air Temperature Circuit Low Input | A short in the intake air temperature sensor circuit for 0.5 seconds (1 trip detection logic). | Short in intake air temperature sensor circuit Intake air temperature sensor (mass air flow meter sub-assembly) ECM | Comes on | DTC stored |
| P0113 | Intake Air Temperature Circuit High Input | An open in the intake air temperature sensor circuit for 0.5 seconds (1 trip detection logic). | Open in intake air temperature sensor circuit Intake air temperature sensor (mass air flow meter sub-assembly) ECM | Comes on | DTC stored |
HINT
When any of these DTCs are output, check the intake air temperature using the Techstream. Enter the following menus: Powertrain / Engine and ECT / Data List / Primary / Intake Air.
| Temperature Displayed | Malfunction |
|---|---|
| 40°C (-40°F) | Open circuit |
| Higher than 128°C (262°F) | Short circuit |
| Related DTCs | P0112: Intake air temperature sensor range check (low voltage) P0113: Intake air temperature sensor range check (high voltage) |
|---|---|
| Required Sensors/Components (Main) | Intake air temperature sensor |
| Required Sensors/Components (Related) | |
| Frequency of Operation | Continuous |
| Duration | 0.5 seconds |
| MIL Operation | Immediate |
| Sequence of Operation | None |
| Monitor runs whenever the following DTCs are not stored | None |
|---|---|
| Battery voltage | 8 V or higher |
| Engine switch | On (IG) |
| Starter | Off |
| Intake air temperature sensor voltage [Intake air temperature] | Less than 0.18 V [Higher than 128°C (262°F)] |
P0112
| Intake air temperature sensor voltage [Intake air temperature] | Higher than 4.91 V [Less than -55°C (-67°F)] |
P0113
| Intake air temperature sensor voltage [Intake air temperature] | 0.18 to 4.91 V [-55 to 128°C (-67 to 262°F)] |
- Connect the Techstream to the DLC3.
- Turn the engine switch on (IG) and turn the Techstream on.
- Clear the DTCs (even if no DTCs are stored, perform the clear DTC procedure).
- Turn the engine switch off and wait for at least 30 seconds.
- Turn the engine switch on (IG) and turn the Techstream on.
- Wait 0.5 seconds or more.
- Enter the following menus: Powertrain / Engine and ECT / Trouble Codes.
- Read the pending DTCs. HINT: If a pending DTC is output, the system is malfunctioning. If a pending DTC is not output, perform the following procedure.
- Enter the following menus: Powertrain / Engine and ECT / Utility / All Readiness.
- Input the DTC: P0112 or P0113.
- Check the DTC judgment result. Techstream Display Description NORMAL DTC judgment completed System normal ABNORMAL DTC judgment completed System abnormal INCOMPLETE DTC judgment not completed Perform driving pattern after confirming DTC enabling conditions N/A Unable to perform DTC judgment Number of DTCs which do not fulfill DTC preconditions has reached ECU memory limit HINT: If the judgment result shows NORMAL, the system is normal. If the judgment result shows ABNORMAL, the system has a malfunction.
- If the judgment result is INCOMPLETE or N/A and no pending DTC is output, perform a universal trip and check for permanent DTCs. Refer to «DTC CHECK / CLEAR [04/2013 - ]»(ref-665554-S38092923772014102400000) HINT: If a permanent DTC is output, the system is malfunctioning. If no permanent DTC is output, the system is normal.
Scheme 129
HINT
- If other DTCs relating to different systems that have terminal E2 as the ground terminal are output simultaneously, terminal E2 may have an open circuit.
- Read freeze frame data using the Techstream. The ECM records vehicle and driving condition information as freeze frame data the moment a DTC is stored. When troubleshooting, freeze frame data can help determine if the vehicle was moving or stationary, if the engine was warmed up or not, if the air fuel ratio was lean or rich, and other data from the time the malfunction occurred.
Scheme 130
Scheme 131
- READ VALUE USING TECHSTREAM (INTAKE AIR) Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Data List / Primary / Intake Air. Powertrain > Engine > Data List Tester Display Intake Air Read the value displayed on the Techstream. OK Same as actual intake air temperature. Result Result Proceed to -40°C (-40°F) A Higher than 128°C (262°F) B Same as actual intake air temperature C HINT: If there is an open circuit, the Techstream indicates -40°C (-40°F). If there is a short circuit, the Techstream indicates higher than 128°C (262°F). Result: 2 B See step 4 Result: 3 C CHECK FOR INTERMITTENT PROBLEMS. Refer to «CHECK FOR INTERMITTENT PROBLEMS [04/2013 - ]»(ref-665554-S41014724152014102400000) Result: 1 A See step 2
- READ VALUE USING TECHSTREAM (CHECK FOR OPEN IN WIRE HARNESS) Disconnect the mass air flow meter sub-assembly connector. *1 Mass Air Flow Meter Sub-assembly *2 ECM *a Front view of wire harness connector (to Mass Air Flow Meter Sub-assembly) - - Connect terminals 1 (THA) and 2 (E2) of the mass air flow meter sub-assembly connector on the wire harness side. Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Data List / Primary / Intake Air. Powertrain > Engine > Data List Tester Display Intake Air Read the value displayed on the Techstream. Standard Value Higher than 128°C (262°F) HINT: Perform "Inspection After Repair" after replacing the mass air flow meter sub-assembly. Refer to «INITIALIZATION [04/2013 - ]»(ref-665554-S39644640142014102400000) Result Proceed to OK NG Result: 1 OK REPLACE MASS AIR FLOW METER SUB-ASSEMBLY. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S23197549392014102400000) Result: 2 NG See step 3
- CHECK HARNESS AND CONNECTOR (MASS AIR FLOW METER SUB-ASSEMBLY - ECM) Disconnect the mass air flow meter sub-assembly connector. Disconnect the ECM connector. Measure the resistance according to the value(s) in the table below. Standard Resistance Tester Connection Condition Specified Condition F40-1 (THA) - F1-22 (THA) Always Below 1 ohms F40-2 (E2) - F1-28 (E2) Always Below 1 ohms Result Proceed to OK NG Result: 1 OK REPLACE ECM. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S41334133092014102400000) Result: 2 NG REPAIR OR REPLACE HARNESS OR CONNECTOR
- READ VALUE USING TECHSTREAM (CHECK FOR SHORT IN WIRE HARNESS) Disconnect the mass air flow meter sub-assembly connector. *1 Mass Air Flow Meter Sub-assembly *2 ECM Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Data List / Primary / Intake Air. Powertrain > Engine > Data List Tester Display Intake Air Read the value displayed on the Techstream. Standard Value -40°C (-40°F) HINT: Perform "Inspection After Repair" after replacing the mass air flow meter sub-assembly. Refer to «INITIALIZATION [04/2013 - ]»(ref-665554-S39644640142014102400000) Result Proceed to OK NG Result: 1 OK REPLACE MASS AIR FLOW METER SUB-ASSEMBLY. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S23197549392014102400000) Result: 2 NG See step 5
- CHECK HARNESS AND CONNECTOR (MASS AIR FLOW METER SUB-ASSEMBLY - ECM) Disconnect the mass air flow meter sub-assembly connector. Disconnect the ECM connector. Measure the resistance according to the value(s) in the table below. Standard Resistance Tester Connection Condition Specified Condition F40-1 (THA) or F1-22 (THA) - Body ground Always 10 kohms or higher Result Proceed to OK NG Result: 1 OK REPLACE ECM. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S41334133092014102400000) Result: 2 NG REPAIR OR REPLACE HARNESS OR CONNECTOR
| Related DTCs | P0115: Engine coolant temperature sensor range check (chattering) P0117: Engine coolant temperature sensor range check (low voltage) P0118: Engine coolant temperature sensor range check (high voltage) |
|---|---|
| Required Sensors/Components (Main) | Engine coolant temperature sensor |
| Required Sensors/Components (Related) | |
| Frequency of Operation | Continuous |
| Duration | 0.5 seconds |
| MIL Operation | Immediate |
| Sequence of Operation | None |
| Monitor runs whenever the following DTCs are not stored | None |
| Engine coolant temperature sensor voltage [Engine coolant temperature] | Less than 0.14 V, or higher than 4.91 V [Higher than 135°C (275°F), or less than -60°C (-76°F)] |
P0115
| Engine coolant temperature sensor voltage [Engine coolant temperature] | Less than 0.14 V [Higher than 135°C (275°F)] |
P0117
| Engine coolant temperature sensor voltage [Engine coolant temperature] | Higher than 4.91 V [Less than -60°C (-76°F)] |
P0118
| Engine coolant temperature sensor voltage [Engine coolant temperature] | 0.14 to 4.91 V [-60 to 135°C (-76 to 275°F)] |
- Connect the Techstream to the DLC3.
- Turn the engine switch on (IG) and turn the Techstream on.
- Clear the DTCs (even if no DTCs are stored, perform the clear DTC procedure).
- Turn the engine switch off and wait for at least 30 seconds.
- Turn the engine switch on (IG) and turn the Techstream on.
- Wait 0.5 seconds or more.
- Enter the following menus: Powertrain / Engine and ECT / Trouble Codes.
- Read the pending DTCs. HINT: If a pending DTC is output, the system is malfunctioning. If a pending DTC is not output, perform the following procedure.
- Enter the following menus: Powertrain / Engine and ECT / Utility / All Readiness.
- Input the DTC: P0115, P0117 or P0118.
- Check the DTC judgment result. Techstream Display Description NORMAL DTC judgment completed System normal ABNORMAL DTC judgment completed System abnormal INCOMPLETE DTC judgment not completed Perform driving pattern after confirming DTC enabling conditions N/A Unable to perform DTC judgment Number of DTCs which do not fulfill DTC preconditions has reached ECU memory limit HINT: If the judgment result shows NORMAL, the system is normal. If the judgment result shows ABNORMAL, the system has a malfunction.
- If the judgment result is INCOMPLETE or N/A and no pending DTC is output, perform a universal trip and check for permanent DTCs. Refer to «DTC CHECK / CLEAR [04/2013 - ]»(ref-665554-S38092923772014102400000) HINT: If a permanent DTC is output, the system is malfunctioning. If no permanent DTC is output, the system is normal.
Scheme 132
HINT
- Read freeze frame data using the Techstream. The ECM records vehicle and driving condition information as freeze frame data the moment a DTC is stored. When troubleshooting, freeze frame data can help determine if the vehicle was moving or stationary, if the engine was warmed up or not, if the air fuel ratio was lean or rich, and other data from the time the malfunction occurred.
- If DTC P0117 is stored, check that the engine does not overheat (the DTC P0117 may be stored due to engine overheating).
- If other DTCs relating to different systems that have terminal E2 as the ground terminal are output simultaneously, terminal E2 may have an open circuit.
- READ VALUE USING TECHSTREAM (COOLANT TEMP) Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Data List / Primary / Coolant Temp. Powertrain > Engine > Data List Tester Display Coolant Temp Read the value displayed on the Techstream. Standard value Between 75 and 100°C (167 and 212°F) with warm engine. Result Result Proceed to -40°C (-40°F) A Higher than 135°C (275°F) B Between 75 and 100°C (167 and 212°F) C HINT: If there is an open circuit, the Techstream indicates -40°C (-40°F). If there is a short circuit, the Techstream indicates higher than 135°C (275°F). Result: 2 B See step 4 Result: 3 C CHECK FOR INTERMITTENT PROBLEMS. Refer to «CHECK FOR INTERMITTENT PROBLEMS [04/2013 - ]»(ref-665554-S41014724152014102400000) Result: 1 A See step 2
- READ VALUE USING TECHSTREAM (CHECK FOR OPEN IN WIRE HARNESS) Disconnect the engine coolant temperature sensor connector. *1 Engine Coolant Temperature Sensor *2 ECM *a Front view of wire harness connector (to Engine Coolant Temperature Sensor) - - Connect terminals 1 and 2 of the engine coolant temperature sensor connector on the wire harness side. Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Data List / Primary / Coolant Temp. Powertrain > Engine > Data List Tester Display Coolant Temp Read the value displayed on the Techstream. Standard Value Higher than 135°C (275°F) HINT: Perform "Inspection After Repair" after replacing the engine coolant temperature sensor. Refer to «INITIALIZATION [04/2013 - ]»(ref-665554-S39644640142014102400000) Result Proceed to OK NG Result: 1 OK REPLACE ENGINE COOLANT TEMPERATURE SENSOR. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S21288719452014102400000) Result: 2 NG See step 3
- 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 F59-2 - F1-19 (THW) Always Below 1 ohms F59-1 - F1-28 (E2) Always Below 1 ohms Result Proceed to OK NG Result: 1 OK REPLACE ECM. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S41334133092014102400000) Result: 2 NG REPAIR OR REPLACE HARNESS OR CONNECTOR
- READ VALUE USING TECHSTREAM (CHECK FOR SHORT IN WIRE HARNESS) Disconnect the engine coolant temperature sensor connector. *1 Engine Coolant Temperature Sensor *2 ECM Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Data List / Primary / Coolant Temp. Powertrain > Engine > Data List Tester Display Coolant Temp Read the value displayed on the Techstream. Standard Value -40°C (-40°F) HINT: Perform "Inspection After Repair" after replacing the engine coolant temperature sensor. Refer to «INITIALIZATION [04/2013 - ]»(ref-665554-S39644640142014102400000) Result Proceed to OK NG Result: 1 OK REPLACE ENGINE COOLANT TEMPERATURE SENSOR. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S21288719452014102400000) Result: 2 NG See step 5
- 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 F59-2 or F1-19 (THW) - Body ground Always 10 kohms or higher Result Proceed to OK NG Result: 1 OK REPLACE ECM. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S41334133092014102400000) Result: 2 NG REPAIR OR REPLACE HARNESS OR CONNECTOR
| Related DTCs | P0116: Engine coolant temperature sensor rationality (cold start monitor) P0116: Engine coolant temperature sensor rationality (soak monitor) |
|---|---|
| Required Sensors/Components (Main) | Engine coolant temperature sensor |
| Required Sensors/Components (Related) | |
| Frequency of Operation | Once per driving cycle |
| Duration | Cold start monitor 10 seconds: Soak monitor |
| MIL Operation | 2 driving cycles |
| Sequence of Operation | None |
| Monitor runs whenever the following DTCs are not stored | None |
ALL
| All of the following conditions are met | |
|---|---|
| Battery voltage | 10.5 V or higher |
| Time after engine start | 1 second or more |
| Engine coolant temperature at engine start | Less than 60°C (140°F) |
| Soak time | 0 seconds or more |
| Accumulated mass air flow | 6750 g or more |
| Fuel cut | Off |
| Engine coolant temperature sensor circuit fail (P0115, P0117, P0118, P0125) | Not detected |
| Intake air temperature sensor circuit fail (P0112, P0113) | Not detected |
| Thermostat fail (P0128) | Not detected |
| Difference between engine coolant temperature at engine start and intake air temperature | Less than 40°C (72°F) |
COLD START MONITOR
| All of the following conditions are met | |
|---|---|
| Battery voltage | 10.5 V or higher |
| Engine | Running |
| Soak time | 5 hours or more |
| Either of the following conditions is met | (a) or (b) |
| (a) Engine coolant temperature | 60°C (140°F) or higher |
| (b) Accumulated mass air flow | 13512 g or more |
| Engine coolant temperature sensor circuit fail (P0115, P0117, P0118, P0125) | Not detected |
| Intake air temperature sensor circuit fail (P0112, P0113) | Not detected |
| Thermostat fail (P0128) | Not detected |
| Soak timer circuit fail (P2610) | Not detected |
SOAK MONITOR
| Engine coolant temperature sensor value change | Less than 5°C (9°F) |
COLD START MONITOR
| Difference between current engine coolant temperature sensor value and previous engine coolant temperature sensor value when engine stopped | Less than 5°C (9°F) (varies with engine coolant temperature of last trip engine stop) |
SOAK MONITOR
| Engine coolant temperature | Engine coolant temperature sensor value changes in accordance with actual engine coolant temperature |
Scheme 133
- Connect the Techstream to the DLC3.
- Turn the engine switch on (IG) and turn the Techstream on.
- Enter the following menus: Powertrain / Engine and ECT / Data List / Primary / Coolant Temp.
- Check that the engine coolant temperature is 60°C (140°F) or less.
- Clear the DTCs (even if no DTCs are stored, perform the clear DTC procedure).
- Turn the engine switch off and wait for at least 30 seconds.
- Turn the engine switch on (IG) and turn the Techstream on [A].
- Start the engine and idle it for 5 minutes or more [B]. HINT: If the engine coolant temperature does not change by 5°C (9°F) or higher, the engine coolant temperature sensor is malfunctioning. It is not necessary to continue this procedure.
- Enter the following menus: Powertrain / Engine and ECT / Trouble Codes [C].
- Read the pending DTCs. HINT: If a pending DTC is output, the system is malfunctioning. If a pending DTC is not output, perform the following procedure.
- Enter the following menus: Powertrain / Engine and ECT / Utility / All Readiness.
- Input the DTC: P0116.
- Check the DTC judgment result. Techstream Display Description NORMAL DTC judgment completed System normal ABNORMAL DTC judgment completed System abnormal INCOMPLETE DTC judgment not completed Perform driving pattern after confirming DTC enabling conditions N/A Unable to perform DTC judgment Number of DTCs which do not fulfill DTC preconditions has reached ECU memory limit HINT: If the judgment result shows NORMAL, the system is normal. If the judgment result shows ABNORMAL, the system has a malfunction. If the judgment result shows INCOMPLETE or N/A, perform steps [D] and [E].
- Drive the vehicle at 40 km/h (25 mph) or more for a total of 5 minutes or more [D]. WARNING: When performing the confirmation driving pattern, obey all speed limits and traffic laws. HINT: In the event of the drive pattern being interrupted (possibly due to factors such as traffic conditions), the drive pattern can be resumed.
- Check the DTC judgment result again [E]. HINT: If the judgment result shows INCOMPLETE or N/A, perform steps [D] and [E] again.
- If no pending DTC is output, perform a universal trip and check for permanent DTCs. Refer to «DTC CHECK / CLEAR [04/2013 - ]»(ref-665554-S38092923772014102400000) HINT: If a permanent DTC is output, the system is malfunctioning. If no permanent DTC is output, the system is normal.
HINT
- If any of DTCs P0115, P0117, P0118 or P0125 are output simultaneously with DTC P0116, the engine coolant temperature sensor may have an open or a short circuit. Troubleshoot those DTCs first.
- Read freeze frame data using the Techstream. The ECM records vehicle and driving condition information as freeze frame data the moment a DTC is stored. When troubleshooting, freeze frame data can help determine if the vehicle was moving or stationary, if the engine was warmed up or not, if the air fuel ratio was lean or rich, and other data from the time the malfunction occurred.
- When the DTC is output, check the engine coolant temperature using the Techstream. Enter the following menus: Powertrain / Engine and ECT / Data List / Primary / Coolant Temp. If the Coolant Temp value is lower than the actual engine coolant temperature, the engine coolant temperature sensor circuit may be malfunctioning. In this case, check the wire harnesses and connectors (and those connections) between the ECM and the engine coolant temperature sensor first.
- CHECK ANY OTHER DTCS OUTPUT (IN ADDITION TO DTC P0116) Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Trouble Codes. Read the DTCs. Powertrain > Engine > Trouble Codes Result Result Proceed to DTC P0116 is output A DTC P0116 and other DTCs are output B HINT: If any DTCs and other than P0116 are output, troubleshoot those DTCs first. Result: 2 B GO TO DTC CHART. Refer to «DIAGNOSTIC TROUBLE CODE CHART [04/2013 - ]»(ref-665554-S03150692352014102400000) Result: 1 A See step 2
- INSPECT WATER INLET WITH THERMOSTAT SUB-ASSEMBLY Inspect the water inlet with thermostat sub-assembly (thermostat opening temperature). Refer to «INSPECTION [04/2013 - ]»(ref-665707-S39901403012014102400000) HINT: Perform "Inspection After Repair" after replacing the engine coolant temperature sensor. Refer to «INITIALIZATION [04/2013 - ]»(ref-665554-S39644640142014102400000) Result Proceed to OK NG Result: 1 OK REPLACE ENGINE COOLANT TEMPERATURE SENSOR. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S21288719452014102400000) Result: 2 NG REPLACE WATER INLET WITH THERMOSTAT SUB-ASSEMBLY. Refer to «REMOVAL [04/2013 - ]»(ref-665707-S24449388402014102400000)
| Related DTCs | P011B: Engine coolant temperature/Intake air temperature sensor correlation |
|---|---|
| Required Sensors/Components (Main) | Engine coolant temperature sensor Intake air temperature sensor |
| Required Sensors/Components (Related) | |
| Frequency of Operation | Once per driving cycle |
| Duration | |
| MIL Operation | 2 driving cycles |
| Sequence of Operation | None |
| Monitor runs whenever the following DTCs are not stored | None |
|---|---|
| All of the following conditions are met | |
| Soak Time | 7 hours or more |
| Battery voltage | 10.5 V or higher |
| Time after engine start | 20 seconds or more |
| Either of the following conditions is met | (a) or (b) |
| (a) Minimum intake air temperature after engine start | 10°C (14°F) or higher |
| (b) Engine coolant temperature before engine start | 10°C (14°F) or higher |
| Mass air flow meter circuit fail (P0102, P0103) | Not detected |
| Engine coolant temperature sensor circuit fail (P0115, P0117, P0118, P0125) | Not detected |
| Intake air temperature sensor circuit fail (P0112, P0113) | Not detected |
| Soak timer circuit fail (P2610) | Not detected |
| Deviated engine coolant temperature and intake air temperature | Less than -20°C (-36°F), or higher than 20°C (36°F) |
Scheme 134
- Connect the Techstream to the DLC3.
- Turn the engine switch on (IG) and turn the Techstream on [A].
- Clear the DTCs (even if no DTCs are stored, perform the clear DTC procedure).
- Turn the engine switch off.
- With the engine stopped, leave the vehicle as is for 7.5 hours or more [B].
- Turn the engine switch on (IG) and turn the Techstream on.
- Start the engine and wait 60 seconds or more [C].
- Enter the following menus: Powertrain / Engine and ECT / Trouble Codes [D].
- Read the pending DTCs. HINT: If a pending DTC is output, the system is malfunctioning. If a pending DTC is not output, perform the following procedure.
- Enter the following menus: Powertrain / Engine and ECT / Utility / All Readiness.
- Input the DTC: P011B.
- Check the DTC judgment result. Techstream Display Description NORMAL DTC judgment completed System normal ABNORMAL DTC judgment completed System abnormal INCOMPLETE DTC judgment not completed Perform driving pattern after confirming DTC enabling conditions N/A Unable to perform DTC judgment Number of DTCs which do not fulfill DTC preconditions has reached ECU memory limit HINT: If the judgment result shows NORMAL, the system is normal. If the judgment result shows ABNORMAL, the system has a malfunction. If the judgment result shows INCOMPLETE or N/A, perform steps [A] through [D] again.
- If no pending DTC is output, perform a universal trip and check for permanent DTCs. Refer to «DTC CHECK / CLEAR [04/2013 - ]»(ref-665554-S38092923772014102400000) HINT: If a permanent DTC is output, the system is malfunctioning. If no permanent DTC is output, the system is normal.
HINT
Read freeze frame data using the Techstream. The ECM records vehicle and driving condition information as freeze frame data the moment a DTC is stored. When troubleshooting, freeze frame data can help determine if the vehicle was moving or stationary, if the engine was warmed up or not, if the air fuel ratio was lean or rich, and other data from the time the malfunction occurred.
- CHECK ANY OTHER DTCS OUTPUT (IN ADDITION TO DTC P011B) Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Trouble Codes. Read the DTCs. Powertrain > Engine > Trouble Codes Result Result Proceed to DTC P011B is output A DTC P011B and other DTCs are output B HINT: If any DTCs other than P011B are output, troubleshoot those DTCs first. Result: 2 B GO TO DTC CHART. Refer to «DIAGNOSTIC TROUBLE CODE CHART [04/2013 - ]»(ref-665554-S03150692352014102400000) Result: 1 A See step 2
- READ VALUE USING TECHSTREAM (INTAKE AIR) Leave the vehicle for 7 hours or more. HINT: It is necessary to leave the vehicle for 7 hours or more to create conditions similar to the DTC detection conditions. Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Data List / Primary / Intake Air. Powertrain > Engine > Data List Tester Display Intake Air Read the value displayed on the Techstream. Standard Difference between the intake air temperature and the actual outside air temperature is within 10°C (18°F). HINT: Temperature readings on the outside temperature gauge of the vehicle (if equipped) are not suitable for comparing to the intake air temperature reading. The outside temperature gauge has a significant delay built in to prevent swings in the temperature display. Use an accurate thermometer to determine the outside air temperature. Perform "Inspection After Repair" after replacing the mass air flow meter sub-assembly. Refer to «INITIALIZATION [04/2013 - ]»(ref-665554-S39644640142014102400000) Result Proceed to OK NG Result: 2 NG REPLACE MASS AIR FLOW METER SUB-ASSEMBLY. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S23197549392014102400000) Result: 1 OK See step 3
- READ VALUE USING TECHSTREAM (COOLANT TEMP) Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Data List / Primary / Coolant Temp. Powertrain > Engine > Data List Tester Display Coolant Temp Read the value displayed on the Techstream. Standard The difference between the coolant temperature and the actual outside air temperature is within 10°C (18°F). HINT: If the result is not as specified, check that there are no heat sources such as a block heater in the engine compartment. Perform "Inspection After Repair" after replacing the engine coolant temperature sensor. Refer to «INITIALIZATION [04/2013 - ]»(ref-665554-S39644640142014102400000) Result Proceed to OK NG Result: 1 OK REPLACE ECM. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S41334133092014102400000) Result: 2 NG REPLACE ENGINE COOLANT TEMPERATURE SENSOR. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S21288719452014102400000)
| Related DTCs | P0120: Throttle position sensor 1 range check (chattering) P0121: Throttle position sensor rationality P0122: Throttle position sensor 1 range check (low voltage) P0123: Throttle position sensor 1 range check (high voltage) P0220: Throttle position sensor 2 range check (chattering) P0222: Throttle position sensor 2 range check (low voltage) P0223: Throttle position sensor 2 range check (high voltage) P2135: Throttle position sensor range check (correlation) |
|---|---|
| Required Sensors/Components (Main) | Throttle position sensor |
| Required Sensors/Components (Related) | |
| Frequency of Operation | Continuous |
| Duration | 2 seconds: P0120, P0122, P0123, P0220, P0222 and P0223 Within 2 seconds: P0121 0.5 seconds: P2135 (Case 1) 0.4 seconds: P2135 (Case 2) |
| MIL Operation | Immediate |
| Sequence of Operation | None |
| Monitor runs whenever the following DTCs are not stored | None |
ALL
| Either of the following conditions is met | A or B |
|---|---|
| A. Engine switch on (IG) | 0.012 seconds or more |
| B. Command to electronic throttle actuator power | On |
P0120, P0122, P0123, P0220, P0222, P0223 AND P2135
| Both of the following conditions are met | |
|---|---|
| Either of the following conditions is met | A or B |
| A. Engine switch | On (IG) |
| B. Command to electronic throttle actuator power | On |
| Throttle position sensor circuit fail (P0120, P0122, P0123, P0220, P0222, P0223, P2135) | Not detected |
P0121
| VTA voltage | 0.2 V or less, or 4.535 V or higher |
P0120
| Either of the following conditions is met | A or B |
|---|---|
| A. Difference of learned throttle position sensor opener position voltage between VTA2 and VTA | Higher than 1.6 V |
| B. Difference of learned throttle position sensor opener position voltage between VTA2 and VTA | Less than 0.8 V |
P0121
| VTA voltage | 0.2 V or less |
P0122
| VTA voltage | 4.535 V or higher |
P0123
| Either of the following conditions is met | A or B |
|---|---|
| A. VTA2 voltage | 1.75 V or less |
| B. VTA2 voltage when VTA 0.2 V to 2.02 V | 4.8 V or higher |
P0220
| VTA2 voltage | 1.75 V or less |
P0222
| VTA2 voltage when VTA 0.2 V to 2.02 V | 4.8 V or higher |
P0223
| Difference between VTA and VTA2 voltages | 0.02 V or less |
P2135 (CASE 1)
| Both of the following conditions are met | |
|---|---|
| VTA voltage | 0.2 V or less |
| VTA2 voltage | 1.75 V or less |
P2135 (CASE 2)
| All of the following conditions are met | |
|---|---|
| VTA voltage | Higher than 0.2 V, and less than 4.535 V |
| VTA2 voltage | Higher than 1.75 V, and less than 4.8 V |
| Difference between VTA and VTA2 voltages | Higher than 0.02 V |
Scheme 135
- Connect the Techstream to the DLC3.
- Turn the engine switch on (IG) and turn the Techstream on.
- Clear the DTCs (even if no DTCs are stored, perform the clear DTC procedure).
- Turn the engine switch off and wait for at least 30 seconds.
- Turn the engine switch on (IG) and turn the Techstream on [A].
- Start the engine.
- With the vehicle stationary, fully depress and release the accelerator pedal [B].
- Idle the engine for 2 seconds or more [C].
- Enter the following menus: Powertrain / Engine and ECT / Trouble Codes [D].
- Read the pending DTCs. HINT: If a pending DTC is output, the system is malfunctioning. If a pending DTC is not output, perform the following procedure.
- Enter the following menus: Powertrain / Engine and ECT / Utility / All Readiness.
- Input the DTC: P0120, P0121, P0122, P0123, P0220, P0222, P0223 or P2135.
- Check the DTC judgment result. Techstream Display Description NORMAL DTC judgment completed System normal ABNORMAL DTC judgment completed System abnormal INCOMPLETE DTC judgment not completed Perform driving pattern after confirming DTC enabling conditions N/A Unable to perform DTC judgment Number of DTCs which do not fulfill DTC preconditions has reached ECU memory limit HINT: If the judgment result shows NORMAL, the system is normal. If the judgment result shows ABNORMAL, the system has a malfunction. If the judgment result shows INCOMPLETE or N/A, perform steps [B] through [D] again.
- If no pending DTC is output, perform a universal trip and check for permanent DTCs. Refer to «DTC CHECK / CLEAR [04/2013 - ]»(ref-665554-S38092923772014102400000) HINT: If a permanent DTC is output, the system is malfunctioning. If no permanent DTC is output, the system is normal.
FAIL-SAFE
When any of these DTCs or other DTCs relating to Electronic Throttle Control System (ETCS) malfunctions are stored, the ECM enters fail-safe mode. During fail-safe mode, the ECM cuts the current to the throttle actuator, and the throttle valve is returned to a 6° throttle valve opening angle by the return spring. The ECM then adjusts the engine output by controlling the fuel injection (intermittent fuel-cut) and ignition timing, in accordance with the accelerator pedal angle, to allow the vehicle to continue operating at a minimal speed. If the accelerator pedal is depressed firmly and gently, the vehicle can be driven slowly.
Fail-safe mode continues until a pass condition is detected, and the engine switch is turned off.
Scheme 136
HINT
Read freeze frame data using the Techstream. The ECM records vehicle and driving condition information as freeze frame data the moment a DTC is stored. When troubleshooting, freeze frame data can help determine if the vehicle was moving or stationary, if the engine was warmed up or not, if the air fuel ratio was lean or rich, and other data from the time the malfunction occurred.
- READ VALUE USING TECHSTREAM (THROTTLE POSITION SENSOR) Connect the Techstream to the DLC3. Start the engine. Turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Data List / Gas Throttle / Throttle Position No. 1 and Throttle Position No. 2. Powertrain > Engine > Data List Tester Display Throttle Position No. 1 Throttle Position No. 2 Read the values displayed on the Techstream. Result When Accelerator Pedal Fully Released When Accelerator Pedal Fully Depressed Trouble Area Proceed to Throttle Position No. 1(VTA) Throttle Position No. 2(VTA2) Throttle Position No. 1(VTA) Throttle Position No. 2(VTA2) 0 to 0.2 V 0 to 0.2 V 0 to 0.2 V 0 to 0.2 V VCTA circuit open A 4.5 to 4.98 V 4.5 to 4.98 V 4.5 to 4.98 V 4.5 to 4.98 V ETA circuit open 0 to 0.2 V, or 4.5 to 4.98 V 2.1 to 3.1 V (Fail-safe) 0 to 0.2 V, or 4.5 to 4.98 V 2.1 to 3.1 V (Fail-safe) VTA circuit open or shorted to ground 0.6 to 1.4 V (Fail-safe) 0 to 0.2 V, or 4.5 to 4.98 V 0.6 to 1.4 V (Fail-safe) 0 to 0.2 V, or 4.5 to 4.98 V VTA2 circuit open or shorted to ground 0.5 to 1.1 V 2.1 to 3.1 V 3.2 to 4.8 V (Not fail-safe) 4.6 to 4.98 V (Not fail-safe) Throttle position sensor circuit normal B HINT: DTC P0121 is stored when the VTA and VTA2 output voltages are not consistent with the sensor characteristics. Therefore, check the freeze frame data when this DTC is stored. Use the following formula to confirm the relative differences in voltage. Characteristic Sensor Output VTA2 x 0.8 is approximately equal to VTA + 1.11 V VTA: Throttle Position No. 1 VTA2: Throttle Position No. 2 If DTC P0121 is output, proceed to "Check Harness And Connector (Throttle Position Sensor - ECM)". Result: 2 B See step 5 Result: 1 A See step 2
- CHECK HARNESS AND CONNECTOR (THROTTLE POSITION SENSOR - ECM) Disconnect the throttle body with motor assembly connector. Disconnect the ECM connector. Measure the resistance according to the value(s) in the table below. Standard Resistance Tester Connection Condition Specified Condition F21-5 (VC) - F2-34 (VCTA) Always Below 1 ohms F21-6 (VTA) - F2-26 (VTA) Always Below 1 ohms F21-4 (VTA2) - F2-27 (VTA2) Always Below 1 ohms F21-3 (E2) - F2-35 (ETA) Always Below 1 ohms F21-5 (VC) or F2-34 (VCTA) - Body ground Always 10 kohms or higher F21-6 (VTA) or F2-26 (VTA) - Body ground Always 10 kohms or higher F21-4 (VTA2) or F2-27 (VTA2) - Body ground Always 10 kohms or higher Result Proceed to OK NG Result: 2 NG REPAIR OR REPLACE HARNESS OR CONNECTOR Result: 1 OK See step 3
- INSPECT ECM (VC VOLTAGE) Disconnect the throttle body with motor assembly connector. *a Front view of wire harness connector (to Throttle Body with Motor Assembly) Turn the engine switch on (IG). Measure the voltage according to the value(s) in the table below. Standard Voltage Tester Connection Condition Specified Condition F21-5 (VC) - F21-3 (E2) Engine switch on (IG) 4.5 to 5.5 V Result Proceed to OK NG Result: 2 NG REPLACE ECM. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S41334133092014102400000) Result: 1 OK See step 4
- REPLACE THROTTLE BODY WITH MOTOR ASSEMBLY Replace the throttle body with motor assembly. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S14046063072014102400000) HINT: Perform "Inspection After Repair" after replacing the throttle body with motor assembly. Refer to «INITIALIZATION [04/2013 - ]»(ref-665554-S39644640142014102400000) Result Proceed to NEXT Result: 1 NEXT See step 5
- CHECK WHETHER DTC OUTPUT RECURS (THROTTLE POSITION SENSOR DTCS) Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Clear the DTCs. Refer to «DTC CHECK / CLEAR [04/2013 - ]»(ref-665554-S38092923772014102400000) Powertrain > Engine > Clear DTCs Turn the engine switch off and wait for at least 30 seconds. Turn the engine switch on (IG). Turn the Techstream on. Drive the vehicle in accordance with the driving pattern described in Confirmation Driving Pattern. Enter the following menus: Powertrain / Engine and ECT / Trouble Codes. Read the DTCs. Powertrain > Engine > Trouble Codes Result Result Proceed to DTC P0120, P0121, P0122, P0123, P0220, P0222, P0223, and/or P2135 are output A DTCs are not output B Result: 1 A REPLACE ECM. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S41334133092014102400000) Result: 2 B END
| Related DTCs | P0125: Insufficient engine coolant temperature for closed loop fuel control |
|---|---|
| Required Sensors/Components (Main) | Engine coolant temperature sensor Water inlet with thermostat sub-assembly Cooling system |
| Required Sensors/Components (Related) | |
| Frequency of Operation | Once per driving cycle |
| Duration | 84 seconds: Engine coolant temperature at engine start -18.33°C (-0.994°F) or higher 164 seconds: Engine coolant temperature at engine start -29.44°C (-20.992°F) or higher, and less than -18.33°C (-0.994°F) 1200 seconds: Engine coolant temperature at engine start is less than -29.44°C (-20.992°F) |
| MIL Operation | 2 driving cycles |
| Sequence of Operation | None |
| Monitor runs whenever the following DTCs are not stored | None |
|---|---|
| All of the following conditions are met | |
| Thermostat fail (P0128) | Not detected |
| Intake air temperature sensor circuit fail (P0112, P0113) | Not detected |
| Engine coolant temperature sensor circuit fail (P0115, P0117, P0118) | Not detected |
| Mass air flow meter circuit fail (P0101, P0102, P0103) | Not detected |
| Time until actual engine coolant temperature reaches closed loop fuel control enabling temperature | 84 seconds: Engine coolant temperature at engine start -18.33°C (-0.994°F) or higher 164 seconds: Engine coolant temperature at engine start -29.44°C (-20.992°F) or higher, and less than -18.33°C (-0.994°F) 1200 seconds: Engine coolant temperature at engine start is less than -29.44°C (-20.992°F) |
- Leave the vehicle outside overnight.
- Connect the Techstream to the DLC3.
- Turn the engine switch on (IG) and turn the Techstream on.
- Enter the following menus: Powertrain / Engine and ECT / Data List / Primary / Coolant Temp.
- Check that the engine coolant temperature is 10°C (50°F) or less.
- Clear the DTCs (even if no DTCs are stored, perform the clear DTC procedure).
- Turn the engine switch off and wait for at least 30 seconds.
- Turn the engine switch on (IG) and turn the Techstream on.
- Start the engine.
- Wait 21 minutes or more.
- Enter the following menus: Powertrain / Engine and ECT / Trouble Codes.
- Read the pending DTCs. HINT: If a pending DTC is output, the system is malfunctioning. If a pending DTC is not output, perform the following procedure.
- Enter the following menus: Powertrain / Engine and ECT / Utility / All Readiness.
- Input the DTC: P0125.
- Check the DTC judgment result. Techstream Display Description NORMAL DTC judgment completed System normal ABNORMAL DTC judgment completed System abnormal INCOMPLETE DTC judgment not completed Perform driving pattern after confirming DTC enabling conditions N/A Unable to perform DTC judgment Number of DTCs which do not fulfill DTC preconditions has reached ECU memory limit HINT: If the judgment result shows NORMAL, the system is normal. If the judgment result shows ABNORMAL, the system has a malfunction.
- If the judgment result is INCOMPLETE or N/A and no pending DTC is output, perform a universal trip and check for permanent DTCs. Refer to «DTC CHECK / CLEAR [04/2013 - ]»(ref-665554-S38092923772014102400000) HINT: If a permanent DTC is output, the system is malfunctioning. If no permanent DTC is output, the system is normal.
HINT
- If any of DTCs P0115, P0116, P0117 or P0118 are output simultaneously with DTC P0125, the engine coolant temperature sensor may have an open or a short circuit. Troubleshoot those DTCs first.
- Read freeze frame data using the Techstream. The ECM records vehicle and driving condition information as freeze frame data the moment a DTC is stored. When troubleshooting, freeze frame data can help determine if the vehicle was moving or stationary, if the engine was warmed up or not, if the air fuel ratio was lean or rich, and other data from the time the malfunction occurred.
- CHECK ANY OTHER DTCS OUTPUT (IN ADDITION TO DTC P0125) Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Trouble Codes. Read the DTCs. Powertrain > Engine > Trouble Codes Result Result Proceed to DTC P0125 is output A DTC P0125 and other DTCs are output B HINT: If any DTCs other than P0125 are output, troubleshoot those DTCs first. Result: 2 B GO TO DTC CHART. Refer to «DIAGNOSTIC TROUBLE CODE CHART [04/2013 - ]»(ref-665554-S03150692352014102400000) Result: 1 A See step 2
- INSPECT WATER INLET WITH THERMOSTAT SUB-ASSEMBLY Inspect the water inlet with thermostat sub-assembly (thermostat opening temperature). Refer to «INSPECTION [04/2013 - ]»(ref-665707-S39901403012014102400000) Result Proceed to OK NG Result: 2 NG REPLACE WATER INLET WITH THERMOSTAT SUB-ASSEMBLY. Refer to «REMOVAL [04/2013 - ]»(ref-665707-S24449388402014102400000) Result: 1 OK See step 3
- CHECK COOLING SYSTEM Check for defects in the cooling system that might cause the system to be too cold, such as abnormal cooling fan operation or any modifications. HINT: Perform "Inspection After Repair" after replacing the engine coolant temperature sensor. Refer to «INITIALIZATION [04/2013 - ]»(ref-665554-S39644640142014102400000) Result Proceed to OK NG Result: 1 OK REPLACE ENGINE COOLANT TEMPERATURE SENSOR. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S21288719452014102400000) Result: 2 NG REPAIR OR REPLACE COOLING SYSTEM
| Related DTCs | P0128: Coolant thermostat |
|---|---|
| Required Sensors/Components (Main) | Water inlet with thermostat sub-assembly Engine coolant temperature sensor |
| Required Sensors/Components (Related) | Intake air temperature sensor Vehicle speed sensor |
| Frequency of Operation | Once per driving cycle |
| Duration | 1310 seconds |
| MIL Operation | 2 driving cycles |
| Sequence of Operation | None |
| Monitor runs whenever the following DTCs are not stored | P0010, P0020 (Camshaft timing oil control valve bank 1, 2) P0011, P0021 (VVT system bank 1, 2 - advance) P0012, P0022 (VVT system bank 1, 2 - retard) P0013, P0023 (Exhaust camshaft timing oil control valve bank 1, 2) P0014, P0024 (Exhaust VVT system bank 1, 2 - advance) P0015, P0025 (Exhaust VVT system bank 1, 2 - retard) P0016, P0018 (VVT system bank 1, 2 - misalignment) P0017, P0019 (Exhaust VVT system bank 1, 2 - misalignment) P0031, P0032, P0051, P0052, P101D, P103D (Air fuel ratio sensor heater) P0102, P0103 (Mass air flow meter) P0112, P0113 (Intake air temperature sensor) P0115, P0117, P0118 (Engine coolant temperature sensor) P0120, P0121, P0122, P0123, P0220, P0222, P0223, P2135 (Throttle position sensor) P014C, P014D, P014E, P014F, P015A, P015B, P015C, P015D, P2195, P2196, P2197, P2198, P2237, P2238, P2239, P2240, P2241, P2242, P2252, P2253, P2255, P2256 (Air fuel ratio sensor) P0171, P0172, P0174, P0175 (Fuel system) P0301, P0302, P0303, P0304, P0305, P0306 (Misfire) P0335 (Crankshaft position sensor) P0351, P0352, P0353, P0354, P0355, P0356 (Igniter) P0365, P0367, P0368, P0390, P0392, P0393 (Exhaust VVT sensor) P0500 (Vehicle speed sensor) P219A, P219B, P219C, P219D, P219E, P219F, P21A0, P21A1 (Air-fuel ratio imbalance) |
|---|---|
| Battery voltage | 11 V or higher |
| Either of the following conditions is met | 1 or 2 |
| 1. All of the following conditions are met | |
| Engine coolant temperature at engine start - Intake air temperature at engine start | 15 to 7°C (-27 to 12.6°F) |
| Engine coolant temperature at engine start | 10 to 56°C (14 to 133°F) |
| Intake air temperature at engine start | 10 to 56°C (14 to 133°F) |
| 2. All of the following conditions are met | |
| Engine coolant temperature at engine start - Intake air temperature at engine start | Higher than 7°C (12.6°F) |
| Engine coolant temperature at engine start | 56°C (133°F) or less |
| Intake air temperature at engine start | 10°C (14°F) or higher |
| Accumulated time that vehicle speed is 128 km/h (80 mph) or more | Less than 20 seconds |
| Duration that all of the following conditions are met | 5 seconds or more |
|---|---|
| Estimated engine coolant temperature | 75°C (167°F) or higher |
| Engine coolant temperature sensor output | Less than 75°C (167°F) |
Scheme 137
- Stop the engine and allow it to soak.
- Connect the Techstream to the DLC3.
- Turn the engine switch on (IG) and turn the Techstream on [A].
- Enter the following menus: Powertrain / Engine and ECT / Data List / Primary / Coolant Temp and Intake Air.
- Check that "Coolant Temp" is 56°C (133°F) or less and "Intake Air" is between 0 and 35°C (32 and 95°F).
- Set the heater to MAX HOT with fresh air mode selected and turn the A/C off.
- Start the engine and drive the vehicle at 80 km/h (50 mph) for 15 minutes [B]. WARNING: When performing the confirmation driving pattern, obey all speed limits and traffic laws. HINT: Data can be captured relatively easily by using the snapshot function in the Data List. Enter the following menus: Data List / Function / Snapshot Configure / Duration / 5 min. Data capture can be started by using the target point function. For example, setting the target point to an engine speed of 4000 rpm and then racing the engine, etc. to raise the engine speed to a speed of 4000 rpm or higher will cause data capture to start.
- After "Coolant Temp" stabilizes, check that "Coolant Temp" is 75°C (167°F) or higher [C]. HINT: If "Coolant Temp" is less than 75°C (167°F) while driving the vehicle at 80 km/h (50 mph), inspect the cooling system and water inlet with thermostat sub-assembly.
HINT
- Read freeze frame data using the Techstream. The ECM records vehicle and driving condition information as freeze frame data the moment a DTC is stored. When troubleshooting, freeze frame data can help determine if the vehicle was moving or stationary, if the engine was warmed up or not, if the air fuel ratio was lean or rich, and other data from the time the malfunction occurred.
- When the DTC is output, check the engine coolant temperature using the Techstream. Enter the following menus: Powertrain / Engine and ECT / Data List / Primary / Coolant Temp. If the Coolant Temp value is lower than the actual engine coolant temperature, the engine coolant temperature sensor circuit may be malfunctioning. In this case, check the wire harnesses and connectors (and those connections) between the ECM and the engine coolant temperature sensor first.
- CHECK ANY OTHER DTCS OUTPUT (IN ADDITION TO DTC P0128) Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Trouble Codes. Read the DTCs. Powertrain > Engine > Trouble Codes Result Result Proceed to DTC P0128 is output A DTC P0128 and other DTCs are output B HINT: If any DTCs other than P0128 are output, troubleshoot those DTCs first. Result: 2 B GO TO DTC CHART. Refer to «DIAGNOSTIC TROUBLE CODE CHART [04/2013 - ]»(ref-665554-S03150692352014102400000) Result: 1 A See step 2
- CHECK COOLING SYSTEM Check for defects in the cooling system that might cause the system to be too cold, such as abnormal cooling fan operation or any modifications. Result Proceed to OK NG Result: 2 NG REPAIR OR REPLACE COOLING SYSTEM Result: 1 OK See step 3
- INSPECT WATER INLET WITH THERMOSTAT SUB-ASSEMBLY Inspect the water inlet with thermostat sub-assembly (thermostat opening temperature). Refer to «INSPECTION [04/2013 - ]»(ref-665707-S39901403012014102400000) Result Proceed to OK NG Result: 1 OK REPLACE ECM. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S41334133092014102400000) Result: 2 NG REPLACE WATER INLET WITH THERMOSTAT SUB-ASSEMBLY. Refer to «REMOVAL [04/2013 - ]»(ref-665707-S24449388402014102400000)
| Related DTCs | P0136: Heated oxygen sensor (bank 1) voltage check (voltage malfunction) P0136: Heated oxygen sensor (bank 1) circuit continuity check (circuit short) P0137: Heated oxygen sensor (bank 1) voltage check (low voltage) P0137: Heated oxygen sensor (bank 1) circuit continuity check (circuit open) P0138: Heated oxygen sensor (bank 1) circuit continuity check (out of range) P0139: Heated oxygen sensor (bank 1) response rate during fuel cut P013A: Heated oxygen sensor (bank 1) response rate during fuel cut from rich condition P013C: Heated oxygen sensor (bank 2) response rate during fuel cut from rich condition P0156: Heated oxygen sensor (bank 2) voltage check (voltage malfunction) P0156: Heated oxygen sensor (bank 2) circuit continuity check (circuit short) P0157: Heated oxygen sensor (bank 2) voltage check (low voltage) P0157: Heated oxygen sensor (bank 2) circuit continuity check (circuit open) P0158: Heated oxygen sensor (bank 2) circuit continuity check (out of range) P0159: Heated oxygen sensor (bank 2) response rate during fuel cut |
|---|---|
| Required Sensors/Components (Main) | Heated oxygen sensor (sensor 2) |
| Required Sensors/Components (Related) | Crankshaft position sensor Engine coolant temperature sensor Mass air flow meter sub-assembly Throttle position sensor Air fuel ratio sensor |
| Frequency of Operation | Once per driving cycle: Active air fuel ratio control detection, heated oxygen sensor abnormal voltage during fuel cut. Continuous: Other |
| Duration | 20 seconds: Heated oxygen sensor voltage check 30 seconds: Heated oxygen sensor circuit continuity check (circuit short) 90 seconds: Heated oxygen sensor circuit continuity check (circuit open) 10 seconds: Heated oxygen sensor circuit continuity check (out of range) 7 seconds: Heated oxygen sensor response rate during fuel cut, heated oxygen sensor response rate during fuel cut from rich condition |
| MIL Operation | 2 driving cycles: P0136, P0137, P0138, P0139, P0156, P0157, P0158 and P0159 1 driving cycle: P013A and P013C |
| Sequence of Operation | None |
| Monitor runs whenever the following DTCs are not stored | P0016, P0018 (VVT system - misalignment) P0017, P0019 (Exhaust VVT system - misalignment) P0031, P0032, P0051, P0052, P101D, P103D (Air fuel ratio sensor heater) P0037, P0038, P0057, P0058, P102D, P105D (Heated oxygen sensor heater) P0102, P0103 (Mass air flow meter) P0112, P0113 (Intake air temperature sensor) P0115, P0117, P0118 (Engine coolant temperature sensor) P0120, P0121, P0122, P0123, P0220, P0222, P0223, P2135 (Throttle position sensor) P0125 (Insufficient engine coolant temperature for closed loop fuel control) P0128 (Thermostat) P014C, P014D, P014E, P014F, P015A, P015B, P015C, P015D, P2195, P2196, P2197, P2198, P2237, P2238, P2239, P2240, P2241, P2242, P2252, P2253, P2255, P2256 (Air fuel ratio sensor) P0171, P0172, P0174, P0175 (Fuel system) P0301, P0302, P0303, P0304, P0305, P0306 (Misfire) P0335 (Crankshaft position sensor) P0451, P0452, P0453 (EVAP system) P0500 (Vehicle speed sensor) P219A, P219B, P219C, P219D, P219E, P219F, P21A0, P21A1 (Air-fuel ratio imbalance) |
ALL
| Battery voltage | 11 V or higher |
|---|---|
| Intake air temperature | 10°C (14°F) or higher |
| Engine coolant temperature | 75°C (167°F) or higher |
| Atmospheric pressure | 76 kPa(abs) [570 mmHg(abs)] or higher |
| Idling | Off |
| Engine speed | Less than 4000 rpm |
| Air fuel ratio sensor status | Activated |
| Fuel system status | Closed loop |
| Engine load | 10% or higher, and less than 85% |
| Shift position | 4th or higher |
P0136, P0137, P0156 AND P0157: HEATED OXYGEN SENSOR VOLTAGE CHECK (VOLTAGE MALFUNCTION AND LOW VOLTAGE)
| Battery voltage | 11 V or higher |
|---|---|
| Estimated sensor temperature | Less than 700°C (1292°F) |
| ECM monitor | Completed |
| DTC P0607 | Not set |
P0136 AND P0156: HEATED OXYGEN SENSOR CIRCUIT CONTINUITY CHECK (CIRCUIT SHORT)
| Battery voltage | 11 V or higher |
|---|---|
| Estimated sensor temperature | 450°C (842°F) or higher, and less than 750°C (1382°F) |
| DTC P0607 | Not set |
P0137 AND P0157: HEATED OXYGEN SENSOR CIRCUIT CONTINUITY CHECK (CIRCUIT OPEN)
| Battery voltage | 11 V or higher |
|---|---|
| Time after engine start | 2 seconds or more |
P0138 AND P0158: HEATED OXYGEN SENSOR CIRCUIT CONTINUITY CHECK (OUT OF RANGE)
| Engine coolant temperature | 70°C (167°F) or higher |
|---|---|
| Catalyst temperature | 630°C (1166°F) or higher |
| Fuel cut | On |
P0139 AND P0159: HEATED OXYGEN SENSOR RESPONSE RATE DURING FUEL CUT
| Battery voltage | 11 V or higher |
|---|---|
| Engine coolant temperature | 70°C (167°F) or higher |
| Catalyst temperature | 630°C (1166°F) or higher |
| Fuel cut | On |
P013A AND P013C: HEATED OXYGEN SENSOR RESPONSE RATE DURING FUEL CUT FROM RICH CONDITION
| All of following conditions (a), (b) and (c) met | |
|---|---|
| (a) OSC (Oxygen Storage Capacity) of catalyst | 2 g or more |
| (b) Commanded air fuel ratio | 14.2 or less |
| (c) Heated oxygen sensor voltage | 0.21 V or higher, and less than 0.66 V |
P0136 AND P0156: HEATED OXYGEN SENSOR VOLTAGE CHECK (VOLTAGE MALFUNCTION)
| All of following conditions (a), (b) and (c) met | |
|---|---|
| (a) OSC (Oxygen Storage Capacity) of catalyst | 2 g or more |
| (b) Commanded air fuel ratio | 14.2 or less |
| (c) Heated oxygen sensor voltage | Less than 0.21 V |
P0137 AND P0157: HEATED OXYGEN SENSOR VOLTAGE CHECK (LOW VOLTAGE)
| Duration of following condition | 30 seconds or more |
|---|---|
| Heated oxygen sensor impedance | Less than 5 ohms |
P0136 AND P0156: HEATED OXYGEN SENSOR CIRCUIT CONTINUITY CHECK (CIRCUIT SHORT)
| Duration of following condition | 90 seconds or more |
|---|---|
| Heated oxygen sensor impedance | 15 kohms or higher |
P0137 AND P0157: HEATED OXYGEN SENSOR CIRCUIT CONTINUITY CHECK (CIRCUIT OPEN)
| Duration of following condition | 10 seconds or more |
|---|---|
| Heated oxygen sensor voltage | 1.2 V or higher |
P0138 AND P0158: HEATED OXYGEN SENSOR CIRCUIT CONTINUITY CHECK (OUT OF RANGE)
| Total airflow volume reached after start of fuel-cut while heated oxygen sensor voltage remains at 0.2 V or higher | More than 12.3 g |
P0139 AND P0159: HEATED OXYGEN SENSOR RESPONSE RATE DURING FUEL CUT
| Duration until rear heated oxygen sensor voltage drops from 0.35 V to 0.2 V during fuel cut (Normalized) | 1 second or more |
P013A AND P013C: HEATED OXYGEN SENSOR RESPONSE RATE DURING FUEL CUT FROM RICH CONDITION
Refer to detailed information in Checking Monitor Status.
Refer to CHECKING MONITOR STATUS [04/2013 - ]
| Monitor ID | Test ID | Scaling | Unit | Description |
|---|---|---|---|---|
| $02 | $08 | Multiply by 0.001 | V | Maximum sensor voltage |
P0137: O2 SENSOR / MAX VOL B1S2
| Monitor ID | Test ID | Scaling | Unit | Description |
|---|---|---|---|---|
| $02 | $8D | Multiply by 0.001 | Seconds | Duration that sensor voltage drops to 0.2 V during fuel-cut |
P0139: O2 SENSOR / F/C TIME B1S2
| Monitor ID | Test ID | Scaling | Unit | Description |
|---|---|---|---|---|
| $02 | $8F | Multiply by 0.0003 | G | Maximum oxygen storage capacity |
P0136: O2 SENSOR / MAX OSC B1S2
| Monitor ID | Test ID | Scaling | Unit | Description |
|---|---|---|---|---|
| $02 | $90 | Multiply by 0.001 | No dimension | Response rate during fuel cut from rich condition (Normalized) |
P013A: O2 SENSOR / RL F/C B1S2
| Monitor ID | Test ID | Scaling | Unit | Description |
|---|---|---|---|---|
| $06 | $90 | Multiply by 0.001 | No dimension | Response rate during fuel cut from rich condition (Normalized) |
P013C: O2 SENSOR / RL F/C B2S2
| Monitor ID | Test ID | Scaling | Unit | Description |
|---|---|---|---|---|
| $06 | $08 | Multiply by 0.001 | V | Maximum sensor voltage |
P0157: O2 SENSOR / MAX VOL B2S2
| Monitor ID | Test ID | Scaling | Unit | Description |
|---|---|---|---|---|
| $06 | $8D | Multiply by 0.001 | Seconds | Duration that sensor voltage drops to 0.2 V during fuel-cut |
P0159: O2 SENSOR / F/C TIME B2S2
| Monitor ID | Test ID | Scaling | Unit | Description |
|---|---|---|---|---|
| $06 | $8F | Multiply by 0.0003 | G | Maximum oxygen storage capacity |
P0156: O2 SENSOR / MAX OSC B2S2
HINT
- This confirmation driving pattern is used in the "Perform Confirmation Driving Pattern" procedure of the following diagnostic troubleshooting procedure.
- Performing this confirmation driving pattern will activate the heated oxygen sensor monitor (The catalyst monitor is performed simultaneously). This is very useful for verifying the completion of a repair.
P0136, P0137, P0138, P0156, P0157 and P0158
Scheme 138
- Connect the Techstream to the DLC3.
- Turn the engine switch on (IG) and turn the Techstream on.
- Clear the DTCs (even if no DTCs are stored, perform the clear DTC procedure).
- Turn the engine switch off and wait for at least 30 seconds.
- Turn the engine switch on (IG) and turn the Techstream on [A].
- Start the engine and warm it up until the engine coolant temperature reaches 75°C (167°F) or higher [B].
- With the shift lever in D, drive the vehicle at 60 to 120 km/h (37 to 75 mph) for 10 minutes or more [C]. WARNING: When performing the confirmation driving pattern, obey all speed limits and traffic laws.
- Enter the following menus: Powertrain / Engine and ECT / Trouble Codes [D].
- Read the pending DTCs. HINT: If a pending DTC is output, the system is malfunctioning. If a pending DTC is not output, perform the following procedure.
- Enter the following menus: Powertrain / Engine and ECT / Utility / All Readiness.
- Input the DTC: P0136, P0137, P0138, P0156, P0157 or P0158.
- Check the DTC judgment result. Techstream Display Description NORMAL DTC judgment completed System normal ABNORMAL DTC judgment completed System abnormal INCOMPLETE DTC judgment not completed Perform driving pattern after confirming DTC enabling conditions N/A Unable to perform DTC judgment Number of DTCs which do not fulfill DTC preconditions has reached ECU memory limit HINT: If the judgment result shows NORMAL, the system is normal. If the judgment result shows ABNORMAL, the system has a malfunction. If the judgment result shows INCOMPLETE or N/A, perform steps [C] and [D] again.
- If no pending DTC is output, perform a universal trip and check for permanent DTCs. Refer to «DTC CHECK / CLEAR [04/2013 - ]»(ref-665554-S38092923772014102400000) HINT: If a permanent DTC is output, the system is malfunctioning. If no permanent DTC is output, the system is normal.
P0139, P013A, P013C and P0159
Scheme 139
- Connect the Techstream to the DLC3.
- Turn the engine switch on (IG).
- Turn the Techstream on.
- Clear the DTCs (even if no DTCs are stored, perform the clear DTC procedure).
- Turn the engine switch off and wait for at least 30 seconds.
- Turn the engine switch on (IG) and turn the Techstream on.
- Enter the following menus: Powertrain / Engine and ECT / Monitor / Current Monitor.
- Check that Catalyst Efficiency / Current is Incomplete.
- Start the engine and warm it up until the engine coolant temperature is 75°C (167°F) or higher with the shift lever in P [A]. HINT: In order to keep the idling stable, turn off the A/C and all other electric loads and do not perform any shift operations.
- Drive the vehicle at approximately 60 km/h (37 mph) for 10 minutes or more [B]. WARNING: When performing the confirmation driving pattern, obey all speed limits and traffic laws. HINT: Drive the vehicle while keeping the engine load as constant as possible.
- With the shift lever in M, drive the vehicle at 60 km/h (37 mph), and then decelerate the vehicle by releasing the accelerator pedal for 5 seconds or more to perform the fuel-cut [C]. WARNING: When performing the confirmation driving pattern, obey all speed limits and traffic laws.
- Enter the following menus: Powertrain / Engine and ECT / Monitor / Current Monitor / O2 Sensor / RL F/C B1S2, RL F/C B2S2 [D].
- Check the Test Value for RL F/C B1S2, RL F/C B2S2. HINT: If Test Value displays 0, perform step [C] until it displays a value larger than 0, as the O2 sensor monitor is not finished.
- Repeat step [C] 2 times or more in one driving cycle.
- Enter the following menus: Powertrain / Engine and ECT / Trouble Codes.
- Read the pending DTCs. HINT: If a pending DTC is output, the system is malfunctioning. If a pending DTC is not output, perform the following procedure.
- Enter the following menus: Powertrain / Engine and ECT / Utility / All Readiness.
- Input the DTC: P0139, P013A, P013C or P0159.
- Check the DTC judgment result. Techstream Display Description NORMAL DTC judgment completed System normal ABNORMAL DTC judgment completed System abnormal INCOMPLETE DTC judgment not completed Perform driving pattern after confirming DTC enabling conditions N/A Unable to perform DTC judgment Number of DTCs which do not fulfill DTC preconditions has reached ECU memory limit HINT: If the judgment result shows NORMAL, the system is normal. If the judgment result shows ABNORMAL, the system has a malfunction. If the judgment result shows INCOMPLETE or N/A, drive the vehicle with the shift lever in M, and then perform step [C] again.
- If no pending DTC is output, perform a universal trip and check for permanent DTCs. Refer to «DTC CHECK / CLEAR [04/2013 - ]»(ref-665554-S38092923772014102400000) HINT: If a permanent DTC is output, the system is malfunctioning. If no permanent DTC is output, the system is normal.
Scheme 140
HINT
Malfunctioning areas can be identified by performing the Control the Injection Volume for A/F Sensor function provided in the Active Test. The Control the Injection Volume for A/F Sensor function can help to determine whether the air fuel ratio sensor, heated oxygen sensor and other potential trouble areas are malfunctioning.
The following instructions describe how to conduct the Control the Injection Volume for A/F Sensor operation using the Techstream.
- Connect the Techstream to the DLC3.
- Start the engine.
- Turn the Techstream on.
- Warm up the engine at an engine speed of 2500 rpm for approximately 90 seconds.
- 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 or AFS Voltage B2S1 and O2S B2S2.
- Perform the Active Test operation with the engine idling (press the RIGHT or LEFT button to change the fuel injection volume).
- Monitor the output voltages of the air fuel ratio and heated oxygen sensors (AFS Voltage B1S1 and O2S B1S2 or AFS Voltage B2S1 and O2S B2S2) displayed on the Techstream.
HINT
- The Control the Injection Volume for A/F Sensor operation lowers the fuel injection volume by 12.5% or increases the injection volume by 12.5%.
- Each sensor reacts in accordance with increases and decreases in the fuel injection volume.
| Techstream Display (Sensor) | Injection Volume | Status | Voltage |
|---|---|---|---|
| AFS Voltage B1S1 AFS Voltage B2S1 (Air fuel ratio) | 12.5% | Rich | Below 3.1 V |
| 12.5% | Lean | Higher than 3.4 V | |
| O2S B1S2 O2S B2S2 (Heated oxygen) | 12.5% | Rich | Higher than 0.55 V |
| 12.5% | Lean | Below 0.4 V |
Note. 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.
Scheme 141
- Following the Control the Injection Volume for A/F Sensor procedure enables technicians to check and graph the voltage outputs of both the air fuel ratio and heated oxygen sensors.
- To display the graph, 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 or AFS Voltage B2S1 and O2S B2S2; and then press the graph button on the Data List view.
Note. Inspect the fuses for circuits related to this system before performing the following procedure.
HINT
- Bank 1 refers to the bank that includes the No. 1 cylinder*. *: The No. 1 cylinder is the cylinder which is farthest from the transmission.
- Bank 2 refers to the bank that does not include the No. 1 cylinder.
- Sensor 1 refers to the sensor closest to the engine assembly.
- Sensor 2 refers to the sensor farthest away from the engine assembly.
- If other DTCs relating to different systems that have terminal E2 as the ground terminal are output simultaneously, terminal E2 may have an open circuit.
- Read freeze frame data using the Techstream. The ECM records vehicle and driving condition information as freeze frame data the moment a DTC is stored. When troubleshooting, freeze frame data can help determine if the vehicle was moving or stationary, if the engine was warmed up or not, if the air fuel ratio was lean or rich, and other data from the time the malfunction occurred.
Scheme 142
- READ OUTPUT DTC (DTC P0136, P0137, P0138, P0139, P013A, P013C, P0156, P0157, P0158 OR P0159) Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Trouble Codes. Read the DTCs. Powertrain > Engine > Trouble Codes Result Result Proceed to DTC P0138 or P0158 is output A DTC P0137 or P0157 is output B DTC P0136 or P0156 is output C DTC P0139, P013A, P013C or P0159 is output D DTC P0136, P0137, P0138, P0156, P0157 or P0158 and other DTCs are output E HINT: If any DTCs other than P0136, P0137, P0138, P0139, P013A, P013C, P0156, P0157, P0158 and P0159 are output, troubleshoot those DTCs first. Result: 2 B See step 9 Result: 3 C See step 4 Result: 4 D See step 15 Result: 5 E GO TO DTC CHART. Refer to «DIAGNOSTIC TROUBLE CODE CHART [04/2013 - ]»(ref-665554-S03150692352014102400000) Result: 1 A See step 2
- INSPECT HEATED OXYGEN SENSOR (CHECK FOR SHORT) Disconnect the heated oxygen sensor connector. *a Component without harness connected (Heated Oxygen Sensor) *b Bank 1 *c Bank 2 Measure the resistance according to the value(s) in the table below. Standard Resistance Tester Connection Condition Specified Condition 2 (+B) - 4 (E2) Always 10 kohms or higher 2 (+B) - 3 (OX1B) Always 10 kohms or higher 2 (+B) - 4 (E2) Always 10 kohms or higher 2 (+B) - 3 (OX2B) Always 10 kohms or higher HINT: Perform "Inspection After Repair" after replacing the heated oxygen sensor. Refer to «INITIALIZATION [04/2013 - ]»(ref-665554-S39644640142014102400000) Result Proceed to OK NG Result: 2 NG REPLACE HEATED OXYGEN SENSOR. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S00952357372014102400000) Result: 1 OK See step 3
- CHECK HARNESS AND CONNECTOR (CHECK FOR SHORT) Turn the engine switch to off and wait for 5 minutes or more. Disconnect the ECM connector. Measure the resistance according to the value(s) in the table below. Standard Resistance Tester Connection Condition Specified Condition A77-4 (HT1B) - A77-26 (OX1B) Always 10 kohms or higher A77-3 (HT2B) - A77-27 (OX2B) Always 10 kohms or higher Result Proceed to OK NG Result: 1 OK REPLACE ECM. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S41334133092014102400000) Result: 2 NG REPAIR OR REPLACE HARNESS OR CONNECTOR
- PERFORM ACTIVE TEST USING TECHSTREAM (CONTROL THE INJECTION VOLUME FOR A/F SENSOR) Connect the Techstream to the DLC3. Start the engine. Turn the Techstream on. Warm up the engine. Enter the following menus: Powertrain / Engine and ECT / Active Test / Control the Injection Volume for A/F Sensor / Gas AF Control / O2S B1S2 or O2S B2S2. Powertrain > Engine > Active Test Active Test Display Control the Injection Volume for A/F Sensor Data List Display O2S B1S2 O2S B2S2 Change the fuel injection volume using the Techstream, and monitor the voltage output of the heated oxygen sensor displayed on the Techstream. HINT: The Control the Injection Volume for A/F Sensor operation lowers the fuel injection volume by 12.5% or increases the injection volume by 12.5%. The heated oxygen sensor has a maximum output delay of approximately 20 seconds. Standard Voltage Fluctuates between 0.4 V or less, and 0.55 V or higher. Result Proceed to OK NG Result: 2 NG See step 9 Result: 1 OK See step 5
- PERFORM ACTIVE TEST USING TECHSTREAM (CONTROL THE INJECTION VOLUME FOR A/F SENSOR) Connect the Techstream to the DLC3. Start the engine. Turn the Techstream on. Warm up the engine. 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 or AFS Voltage B2S1 and O2S B2S2. Powertrain > Engine > Active Test Active Test Display Control the Injection Volume for A/F Sensor Data List Display AFS Voltage B1S1 AFS Voltage B2S1 O2S B1S2 O2S B2S2 Change the fuel injection volume using the Techstream, and monitor the voltage output of the air fuel ratio and heated oxygen sensors displayed on the Techstream. HINT: The Control the Injection Volume for A/F Sensor operation lowers the fuel injection volume by 12.5% or increases the injection volume by 12.5%. The air fuel ratio sensor is displayed as AFS Voltage B1S1 or AFS Voltage B2S1, and the heated oxygen sensor is displayed as O2S B1S2 or O2S B2S2 on the Techstream. 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 sensor output voltage does not change (almost no reaction) while performing the Active Test, the sensor may be malfunctioning. Result Techstream Display (Sensor) Voltage Variation Proceed to AFS Voltage B1S1 AFS Voltage B2S1 (Air fuel ratio) Alternates between higher and less than 3.3 V OK Remains at higher than 3.3 V NG Remains at less than 3.3 V HINT: A normal heated oxygen sensor voltage (O2S B1S2 or O2S B2S2) reacts in accordance with increases and decreases in fuel injection volumes. When the air fuel ratio sensor voltage (AFS Voltage B1S1 or AFS Voltage B2S1) remains at either less or higher than 3.3 V despite the heated oxygen sensor indicating a normal reaction, the air fuel ratio sensor is malfunctioning. Result: 1 OK CHECK ENGINE TO DETERMINE CAUSE OF EXTREMELY RICH OR LEAN ACTUAL AIR FUEL RATIO (FUEL INJECTOR ASSEMBLY, FUEL SYSTEM, INTAKE SYSTEM, ETC.). Refer to «DTC P0171: System Too Lean (Bank 1); DTC P0172: System Too Rich (Bank 1); DTC P0174: System Too Lean (Bank 2); DTC P0175: System Too Rich (Bank 2) [04/2013 - ]»(ref-665747-S03125989152014102400000) Result: 2 NG See step 6
- REPLACE AIR FUEL RATIO SENSOR Replace the air fuel ratio sensor. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S18498474432014102400000) HINT: Perform "Inspection After Repair" after replacing the air fuel ratio sensor. Refer to «INITIALIZATION [04/2013 - ]»(ref-665554-S39644640142014102400000) Result Proceed to NEXT Result: 1 NEXT See step 7
- PERFORM CONFIRMATION DRIVING PATTERN Perform the Confirmation Driving Pattern (P0136, P0137, P0138, P0156, P0157 and P0158). Result Proceed to NEXT Result: 1 NEXT See step 8
- CHECK WHETHER DTC OUTPUT RECURS (DTC P0136 OR P0156) Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Utility / All Readiness. Powertrain > Engine > Utility Tester Display All Readiness Input the DTC: P0136 or P0156. Check that the DTC monitor is NORMAL. If the DTC monitor is INCOMPLETE, perform the drive pattern again but increase the vehicle speed. Result Result Proceed to NORMAL (DTCs are not output) A ABNORMAL (DTC P0136 or P0156 is output) B HINT: Perform "Inspection After Repair" after replacing the heated oxygen sensor. Refer to «INITIALIZATION [04/2013 - ]»(ref-665554-S39644640142014102400000) Result: 1 A END Result: 2 B REPLACE HEATED OXYGEN SENSOR. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S00952357372014102400000)
- CHECK FOR EXHAUST GAS LEAK Check for exhaust gas leaks. OK No gas leaks. HINT: Perform "Inspection After Repair" after repairing or replacing the exhaust system. Refer to «INITIALIZATION [04/2013 - ]»(ref-665554-S39644640142014102400000) Result Proceed to OK NG Result: 2 NG REPAIR OR REPLACE EXHAUST GAS LEAK POINT Result: 1 OK See step 10
- INSPECT HEATED OXYGEN SENSOR (HEATER RESISTANCE) See step 1 Result Proceed to OK NG Result: 2 NG REPLACE HEATED OXYGEN SENSOR. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S00952357372014102400000) Result: 1 OK See step 11
- CHECK HARNESS AND CONNECTOR (HEATED OXYGEN SENSOR - ECM) Disconnect the heated oxygen 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 K101-1 (HT1B) - A77-4 (HT1B) Always Below 1 ohms K101-3 (OX1B) - A77-26 (OX1B) Always Below 1 ohms K101-4 (E2) - F1-28 (E2) Always Below 1 ohms K100-1 (HT2B) - A77-3 (HT2B) Always Below 1 ohms K100-3 (OX2B) - A77-27 (OX2B) Always Below 1 ohms K100-4 (E2) - F1-28 (E2) Always Below 1 ohms Q33-1 (HT2B) - A77-3 (HT2B) Always Below 1 ohms Q33-3 (OX2B) - A77-27 (OX2B) Always Below 1 ohms Q33-4 (E2) - F1-28 (E2) Always Below 1 ohms K101-1 (HT1B) or A77-4 (HT1B) - Body ground Always 10 kohms or higher K101-3 (OX1B) or A77-26 (OX1B) - Body ground Always 10 kohms or higher K100-1 (HT2B) or A77-3 (HT2B) - Body ground Always 10 kohms or higher K100-3 (OX2B) or A77-27 (OX2B) - Body ground Always 10 kohms or higher Q33-1 (HT2B) or A77-3 (HT2B) - Body ground Always 10 kohms or higher Q33-3 (OX2B) or A77-27 (OX2B) - Body ground Always 10 kohms or higher Result Proceed to OK NG Result: 2 NG REPAIR OR REPLACE HARNESS OR CONNECTOR Result: 1 OK See step 12
- REPLACE HEATED OXYGEN SENSOR Replace the heated oxygen sensor. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S00952357372014102400000) HINT: Perform "Inspection After Repair" after replacing the heated oxygen sensor. Refer to «INITIALIZATION [04/2013 - ]»(ref-665554-S39644640142014102400000) Result Proceed to NEXT Result: 1 NEXT See step 13
- PERFORM CONFIRMATION DRIVING PATTERN Perform the Confirmation Driving Pattern (P0136, P0137, P0138, P0156, P0157 and P0158). Result Proceed to NEXT Result: 1 NEXT See step 14
- CHECK WHETHER DTC OUTPUT RECURS (DTC P0136, P0137, P0156 OR P0157) Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Utility / All Readiness. Powertrain > Engine > Utility Tester Display All Readiness Input the DTC: P0136, P0137, P0156 or P0157. Check that the DTC monitor is NORMAL. If the DTC monitor is INCOMPLETE, perform the drive pattern again but increase the vehicle speed. Result Result Proceed to ABNORMAL (DTC P0136, P0137, P0156 or P0157 is output) A NORMAL (DTCs are not output) B HINT: Perform "Inspection After Repair" after replacing the air fuel ratio sensor. Refer to «INITIALIZATION [04/2013 - ]»(ref-665554-S39644640142014102400000) Result: 1 A REPLACE AIR FUEL RATIO SENSOR. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S18498474432014102400000) Result: 2 B END
- CHECK FOR EXHAUST GAS LEAK Check for exhaust gas leaks. OK No gas leaks. HINT: Perform "Inspection After Repair" after repairing or replacing the exhaust system. Refer to «INITIALIZATION [04/2013 - ]»(ref-665554-S39644640142014102400000) Result Proceed to OK NG Result: 2 NG REPAIR OR REPLACE EXHAUST GAS LEAK POINT Result: 1 OK See step 16
- INSPECT HEATED OXYGEN SENSOR (CHECK FOR SHORT) Turn the engine switch off and wait for 5 minutes or more. Disconnect the ECM connector. Measure the resistance according to the value(s) in the table below. Standard Resistance Tester Connection Condition Specified Condition A77-4 (HT1B) - A77-26 (OX1B) Always 10 kohms or higher A77-3 (HT2B) - A77-27 (OX2B) Always 10 kohms or higher Result Proceed to OK NG Result: 2 NG REPAIR OR REPLACE HARNESS OR CONNECTOR Result: 1 OK See step 17
- PERFORM CONFIRMATION DRIVING PATTERN Perform the Confirmation Driving Pattern (P0139, P013A, P013C and P0159). Result Proceed to NEXT Result: 1 NEXT See step 18
- READ OUTPUT DTC (DTC P0139, P013A, P013C OR P0159 IS OUTPUT AGAIN) Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Utility / All Readiness. Powertrain > Engine > Utility Tester Display All Readiness Input the DTC: P0139, P013A, P013C or P0159. Check that the DTC monitor is NORMAL. If the DTC monitor is INCOMPLETE, perform the drive pattern again but increase the vehicle speed. Result Result Proceed to ABNORMAL (DTC P0139, P013A, P013C or P0159 is output) A NORMAL (DTCs are not output) B HINT: Perform "Inspection After Repair" after replacing the heated oxygen sensor. Refer to «INITIALIZATION [04/2013 - ]»(ref-665554-S39644640142014102400000) Result: 1 A REPLACE HEATED OXYGEN SENSOR. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S00952357372014102400000) Result: 2 B CHECK FOR INTERMITTENT PROBLEMS. Refer to «CHECK FOR INTERMITTENT PROBLEMS [04/2013 - ]»(ref-665554-S41014724152014102400000)
| Related DTCs | P014C: Air fuel ratio sensor (bank 1) response rate (rich to lean response rate) P014D: Air fuel ratio sensor (bank 1) response rate (lean to rich response rate) P014E: Air fuel ratio sensor (bank 2) response rate (rich to lean response rate) P014F: Air fuel ratio sensor (bank 2) response rate (lean to rich response rate) P015A: Air fuel ratio sensor (bank 1) response rate (rich to lean delay) P015B: Air fuel ratio sensor (bank 1) response rate (lean to rich delay) P015C: Air fuel ratio sensor (bank 2) response rate (rich to lean delay) P015D: Air fuel ratio sensor (bank 2) response rate (lean to rich delay) |
|---|---|
| Required Sensors/Components (Main) | Air fuel ratio sensor |
| Required Sensors/Components (Related) | Vehicle speed sensor Crankshaft position sensor |
| Frequency of Operation | Once per driving cycle |
| Duration | 10 to 15 seconds |
| MIL Operation | 2 driving cycles |
| Sequence of Operation | None |
| Monitor runs whenever the following DTCs are not stored | None |
|---|---|
| Active air fuel ratio control | Performing |
| Active air fuel ratio control is performed when the following conditions met | |
| Battery voltage | 11 V or higher |
| Engine coolant temperature | 70°C (167°F) or higher |
| Idle | Off |
| Engine speed | 1500 rpm or higher, and less than 4000 rpm |
| Air fuel ratio sensor status | Activated |
| Fuel-cut | Off |
| Engine load | 25% or higher, and less than 75% |
| Shift position | 2nd or more |
| Catalyst monitor | Not yet |
| Mass air flow | 9 gm/sec. or more, and less than to 18 gm/sec. |
| Rich to Lean response rate deterioration level | 0.03 V or less |
P014C AND P014E: AIR FUEL RATIO SENSOR (BANK 1, 2) RESPONSE RATE (RICH TO LEAN RESPONSE RATE)
| Lean to Rich response rate deterioration level | 0.034 V or higher |
P014D AND P014F: AIR FUEL RATIO SENSOR (BANK 1, 2) RESPONSE RATE (LEAN TO RICH RESPONSE RATE)
| Rich to Lean delay level | 343 ms or more |
P015A AND P015C: AIR FUEL RATIO SENSOR (BANK 1, 2) RESPONSE RATE (RICH TO LEAN DELAY)
| Lean to Rich delay level | 343 ms or more |
P015B AND P015D: AIR FUEL RATIO SENSOR (BANK 1, 2) RESPONSE RATE (LEAN TO RICH DELAY)
Refer to detailed information in Checking Monitor Status.
Refer to CHECKING MONITOR STATUS [04/2013 - ]
| Monitor ID | Test ID | Scaling | Unit | Description |
|---|---|---|---|---|
| $01 | $93 | Multiply by 0.00012 | V | Rich to Lean response rate deterioration level |
P014C: O2 SENSOR / RL RES RATE B1S1
| Monitor ID | Test ID | Scaling | Unit | Description |
|---|---|---|---|---|
| $01 | $94 | Multiply by 0.00012 | V | Lean to Rich response rate deterioration level |
P014D: O2 SENSOR / LR RES RATE B1S1
| Monitor ID | Test ID | Scaling | Unit | Description |
|---|---|---|---|---|
| $05 | $93 | Multiply by 0.00012 | V | Rich to Lean response rate deterioration level |
P014E: O2 SENSOR / RL RES RATE B2S1
| Monitor ID | Test ID | Scaling | Unit | Description |
|---|---|---|---|---|
| $05 | $94 | Multiply by 0.00012 | V | Lean to Rich response rate deterioration level |
P014F: O2 SENSOR / LR RES RATE B2S1
| Monitor ID | Test ID | Scaling | Unit | Description |
|---|---|---|---|---|
| $01 | $95 | Multiply by 0.001 | Second | Rich to Lean delay level |
P015A: O2 SENSOR / RL DELAY B1S1
| Monitor ID | Test ID | Scaling | Unit | Description |
|---|---|---|---|---|
| $01 | $96 | Multiply by 0.001 | Second | Lean to Rich delay level |
P015B: O2 SENSOR / LR DELAY B1S1
| Monitor ID | Test ID | Scaling | Unit | Description |
|---|---|---|---|---|
| $05 | $95 | Multiply by 0.001 | Second | Rich to Lean delay level |
P015C: O2 SENSOR / RL DELAY B2S1
| Monitor ID | Test ID | Scaling | Unit | Description |
|---|---|---|---|---|
| $05 | $96 | Multiply by 0.001 | Second | Lean to Rich delay level |
P015D: O2 SENSOR / LR DELAY B2S1
HINT
Performing this confirmation pattern will activate the air fuel ratio sensor response monitor.
Scheme 143
- Connect the Techstream to the DLC3.
- Turn the engine switch on (IG).
- Turn the Techstream on.
- Clear the DTCs (even if no DTCs are stored, perform the clear DTC procedure).
- Turn the engine switch off and wait for at least 30 seconds.
- Turn the engine switch on (IG) and turn the Techstream on.
- Enter the following menus: Powertrain / Engine and ECT / Monitor / Current Monitor.
- Check that O2 Sensor / Current is Incomplete. HINT: The test values for the test items RL RES RATE B1S1, LR RES RATE B1S1, RL DELAY B1S1, LR DELAY B1S1, RL RES RATE B2S1, LR RES RATE B2S1, RL DELAY B2S1 and LR DELAY B2S1 do not exist in the Detail of O2 Sensor monitor at this time (the initial value of "0.000" is indicated in each test item).
- Start the engine and warm it up (until the engine coolant temperature is 75°C (167°F) or higher) [A].
- Drive the vehicle at a constant speed between 75 and 100 km/h (47 and 62 mph) for 10 minutes [B]. WARNING: When performing the confirmation driving pattern, obey all speed limits and traffic laws.
- Check that O2 Sensor / Current becomes Complete. HINT: Check the test values on the Techstream by entering the following menus: Powertrain / Engine and ECT / Monitor / Current Monitor / O2 Sensor / Details / RL RES RATE B1S1, LR RES RATE B1S1, RL DELAY B1S1, LR DELAY B1S1, RL RES RATE B2S1, LR RES RATE B2S1, RL DELAY B2S1 and LR DELAY B2S1.
- If the monitor item O2 Sensor / Current does not become Complete (if the test values indicated on the Techstream do not change), perform Readiness Monitor Drive Pattern for the air fuel ratio sensor and heated oxygen sensor. Refer to «READINESS MONITOR DRIVE PATTERN [04/2013 - ]»(ref-665554-S35810252362014102400000)
- Enter the following menus: Powertrain / Engine and ECT / Trouble Codes [C].
- Read the pending DTCs. HINT: If a pending DTC is output, the system is malfunctioning. If a pending DTC is not output, perform the following procedure.
- Enter the following menus: Powertrain / Engine and ECT / Utility / All Readiness.
- Input the DTC: P014C, P014D, P014E, P014F, P015A, P015B, P015C or P015D.
- Check the DTC judgment result. Techstream Display Description NORMAL DTC judgment completed System normal ABNORMAL DTC judgment completed System abnormal INCOMPLETE DTC judgment not completed Perform driving pattern after confirming DTC enabling conditions N/A Unable to perform DTC judgment Number of DTCs which do not fulfill DTC preconditions has reached ECU memory limit HINT: If the judgment result shows NORMAL, the system is normal. If the judgment result shows ABNORMAL, the system has a malfunction.
- If the judgment result is INCOMPLETE or N/A and no pending DTC is output, perform a universal trip and check for permanent DTCs. Refer to «DTC CHECK / CLEAR [04/2013 - ]»(ref-665554-S38092923772014102400000) HINT: If a permanent DTC is output, the system is malfunctioning. If no permanent DTC is output, the system is normal.
Note. Inspect the fuses for circuits related to this system before performing the following procedure.
HINT
- A low air fuel ratio sensor voltage could be caused by a rich air fuel mixture. Check for conditions that would cause the engine to run rich.
- A high air fuel ratio sensor voltage could be caused by a lean air fuel mixture. Check for conditions that would cause the engine to run lean.
- Read freeze frame data using the Techstream. The ECM records vehicle and driving condition information as freeze frame data the moment a DTC is stored. When troubleshooting, freeze frame data can be helpful in determining whether the vehicle was moving or stationary, whether the engine was warmed up or not, whether the air fuel ratio was lean or rich, as well as other data recorded at the time of a malfunction.
- Bank 1 refers to the bank that includes the No. 1 cylinder*. *: The No. 1 cylinder is the cylinder which is farthest from the transmission.
- Bank 2 refers to the bank that does not include the No. 1 cylinder.
- Sensor 1 refers to the sensor closest to the engine assembly.
- Sensor 2 refers to the sensor farthest away from the engine assembly.
- CHECK ANY OTHER DTCS OUTPUT (IN ADDITION TO DTC P014C, P014D, P014E, P014F, P015A, P015B, P015C OR P015D) Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Trouble Codes. Read the DTCs. Powertrain > Engine > Trouble Codes Result Result Proceed to DTC P014C, P014D, P014E, P014F, P015A, P015B, P015C or P015D is output A DTC P014C, P014D, P014E, P014F, P015A, P015B, P015C or P015D and other DTCs are output B HINT: If any DTCs other than P014C, P014D, P014E, P014F, P015A, P015B, P015C or P015D are output, troubleshoot those DTCs first. Result: 2 B GO TO DTC CHART. Refer to «DIAGNOSTIC TROUBLE CODE CHART [04/2013 - ]»(ref-665554-S03150692352014102400000) Result: 1 A See step 2
- INSPECT AIR FUEL RATIO SENSOR (HEATER RESISTANCE) See step 1 Result Proceed to OK NG Result: 2 NG REPLACE AIR FUEL RATIO SENSOR. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S18498474432014102400000) Result: 1 OK See step 3
- CHECK HARNESS AND CONNECTOR (AIR FUEL RATIO SENSOR - ECM) See step 3 Result Proceed to OK NG Result: 2 NG REPAIR OR REPLACE HARNESS OR CONNECTOR Result: 1 OK See step 4
- CHECK AIR FUEL RATIO SENSOR Check that the proper air fuel ratio sensor is installed to the vehicle. HINT: Perform "Inspection After Repair" after replacing the air fuel ratio sensor. Refer to «INITIALIZATION [04/2013 - ]»(ref-665554-S39644640142014102400000) Result Proceed to OK NG Result: 2 NG REPLACE AIR FUEL RATIO SENSOR. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S18498474432014102400000) Result: 1 OK See step 5
- PERFORM CONFIRMATION DRIVING PATTERN Drive the vehicle according to Confirmation Driving Pattern. Result Proceed to NEXT Result: 1 NEXT See step 6
- CHECK WHETHER DTC OUTPUT RECURS (DTC P014C, P014D, P014E, P014F, P015A, P015B, P015C OR P015D) Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Trouble Codes / Pending. Read the pending DTCs. Powertrain > Engine > Trouble Codes Result Result Proceed to DTC P014C, P014D, P014E, P014F, P015A, P015B, P015C or P015D is output A DTCs are not output B Result: 2 B CHECK FOR INTERMITTENT PROBLEMS. Refer to «CHECK FOR INTERMITTENT PROBLEMS [04/2013 - ]»(ref-665554-S41014724152014102400000) Result: 1 A See step 7
- REPLACE AIR FUEL RATIO SENSOR Replace the air fuel ratio sensor. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S18498474432014102400000) HINT: Perform "Inspection After Repair" after replacing the air fuel ratio sensor. Refer to «INITIALIZATION [04/2013 - ]»(ref-665554-S39644640142014102400000) Result Proceed to NEXT Result: 1 NEXT See step 8
- PERFORM CONFIRMATION DRIVING PATTERN Drive the vehicle according to Confirmation Driving Pattern. Result Proceed to NEXT Result: 1 NEXT See step 9
- CHECK WHETHER DTC OUTPUT RECURS (DTC P014C, P014D, P014E, P014F, P015A, P015B, P015C OR P015D) Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Trouble Codes / Pending. Read the pending DTCs. Powertrain > Engine > Trouble Codes Result Result Proceed to DTCs are not output A DTC P014C, P014D, P014E, P014F, P015A, P015B, P015C or P015D is output B Result: 1 A END Result: 2 B CHECK ENGINE TO DETERMINE CAUSE OF EXTREMELY RICH OR LEAN ACTUAL AIR FUEL RATIO. Refer to «DTC P0171: System Too Lean (Bank 1); DTC P0172: System Too Rich (Bank 1); DTC P0174: System Too Lean (Bank 2); DTC P0175: System Too Rich (Bank 2) [04/2013 - ]»(ref-665747-S03125989152014102400000)
| Related DTCs | P0171: Fuel trim lean (bank 1) P0172: Fuel trim rich (bank 1) P0174: Fuel trim lean (bank 2) P0175: Fuel trim rich (bank 2) |
|---|---|
| Required Sensors/Components (Main) | Fuel system |
| Required Sensors/Components (Related) | Air fuel ratio sensor Mass air flow meter sub-assembly Crankshaft position sensor |
| Frequency of Operation | Continuous |
| Duration | Within 10 seconds |
| MIL Operation | 2 driving cycles |
| Sequence of Operation | None |
| Monitor runs whenever the following DTCs are not stored | P0010, P0020 (Camshaft timing oil control valve bank 1, 2) P0011, P0021 (VVT system bank 1, 2 - advance) P0012, P0022 (VVT system bank 1, 2 - retard) P0013, P0023 (Exhaust camshaft timing oil control valve bank 1, 2) P0014, P0024 (Exhaust VVT system bank 1, 2 - advance) P0015, P0025 (Exhaust VVT system bank 1, 2 - retard) P0016, P0018 (VVT system bank 1, 2 - misalignment) P0017, P0019 (Exhaust VVT system bank 1, 2 - misalignment) P0031, P0032, P0051, P0052, P101D, P103D (Air fuel ratio sensor heater) P0102, P0103 (Mass air flow meter) P0115, P0117, P0118 (Engine coolant temperature sensor) P0120, P0121, P0122, P0123, P0220, P0222, P0223, P2135 (Throttle position sensor) P0125 (Insufficient coolant temperature for closed loop fuel control) P0335 (Crankshaft position sensor) P0351, P0352, P0353, P0354, P0355, P0356 (Igniter) P0365, P0367, P0368, P0390, P0392, P0393 (Exhaust VVT sensor) P0500 (Vehicle speed sensor) P219A, P219B, P219C, P219D, P219E, P219F, P21A0, P21A1 (Air-fuel ratio imbalance) |
|---|---|
| Fuel system status | Closed loop |
| Battery voltage | 11 V or higher |
| Either of the following conditions is met | 1 or 2 |
| 1. Engine speed | Less than 1100 rpm |
| 2. Engine load | 13.3% or higher |
| Catalyst monitor | Not executed |
| EVAP purge-cut | Executing |
|---|---|
| Either of the following conditions is met | 1 or 2 |
| 1. Average between short-term fuel trim and long-term fuel trim | 35% or higher (varies with engine coolant temperature) |
| 2. Average between short-term fuel trim and long-term fuel trim | 35% or less (varies with engine coolant temperature) |
FUEL TRIM
Scheme 144
- Connect the Techstream to the DLC3.
- Turn the engine switch on (IG) and turn the Techstream on.
- Clear the DTCs (even if no DTCs are stored, perform the clear DTC procedure).
- Turn the engine switch off and wait for at least 30 seconds.
- Turn the engine switch on (IG) and turn the Techstream on [A].
- Start the engine and warm it up until the engine coolant temperature is 75°C (167°F) or higher with all the accessories switched off [B].
- With the engine warmed up, idle the engine for 2 minutes or more [C].
- Drive the vehicle at a speed between 60 and 120 km/h (37 and 75 mph) for 5 minutes or more [D]. WARNING: When performing the confirmation driving pattern, obey all speed limits and traffic laws.
- Enter the following menus: Powertrain / Engine and ECT / Trouble Codes [E].
- Read the pending DTCs. HINT: If a pending DTC is output, the system is malfunctioning.
- If no pending DTC is output, perform a universal trip and check for permanent DTCs. Refer to «DTC CHECK / CLEAR [04/2013 - ]»(ref-665554-S38092923772014102400000) HINT: If a permanent DTC is output, the system is malfunctioning. If no permanent DTC is output, the system is normal.
Note. Inspect the fuses for circuits related to this system before performing the following procedure.
HINT
- Bank 1 refers to the bank that includes the No. 1 cylinder*. *: The No. 1 cylinder is the cylinder which is farthest from the transmission.
- Bank 2 refers to the bank that does not include the No. 1 cylinder.
- Sensor 1 refers to the sensor closest to the engine assembly.
- Sensor 2 refers to the sensor farthest away from the engine assembly.
- Read freeze frame data using the Techstream. The ECM records vehicle and driving condition information as freeze frame data the moment a DTC is stored. When troubleshooting, freeze frame data can help determine if the vehicle was moving or stationary, if the engine was warmed up or not, if the air fuel ratio was lean or rich, and other data from the time the malfunction occurred.
- A low air fuel ratio sensor voltage could be caused by a rich air fuel mixture. Check for conditions that would cause the engine to run rich.
- A high air fuel ratio sensor voltage could be caused by a lean air fuel mixture. Check for conditions that would cause the engine to run lean.
- CHECK ANY OTHER DTCS OUTPUT (IN ADDITION TO DTC P0171, P0172, P0174 OR P0175) Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Trouble Codes. Read the DTCs. Powertrain > Engine > Trouble Codes Result Result Proceed to DTC P0171, P0172, P0174 or P0175 is output A DTC P0171, P0172, P0174 or P0175 and other DTCs are output B HINT: If any DTCs other than P0171, P0172, P0174 or P0175 are output, troubleshoot those DTCs first. Result: 2 B GO TO DTC CHART. Refer to «DIAGNOSTIC TROUBLE CODE CHART [04/2013 - ]»(ref-665554-S03150692352014102400000) Result: 1 A See step 2
- CHECK PCV HOSE CONNECTIONS Check the PCV hose connections. Refer to «COMPONENTS [04/2013 - ]»(ref-665713-S36646338582014102400000) OK PCV valve and hose are connected correctly and are not damaged. Result Proceed to OK NG Result: 2 NG REPAIR OR REPLACE PCV HOSE Result: 1 OK See step 3
- CHECK INTAKE SYSTEM Check the intake system for vacuum leaks. Refer to «ON-VEHICLE INSPECTION [04/2013 - ]»(ref-665753-S17965231612014102400000) OK No leaks in intake system. HINT: Perform "Inspection After Repair" after repairing or replacing the intake system. Refer to «INITIALIZATION [04/2013 - ]»(ref-665554-S39644640142014102400000) Result Proceed to OK NG Result: 2 NG REPAIR OR REPLACE INTAKE SYSTEM Result: 1 OK See step 4
- PERFORM ACTIVE TEST USING TECHSTREAM (CONTROL THE INJECTION VOLUME FOR A/F SENSOR) Connect the Techstream to the DLC3. Start the engine. Turn the Techstream on. Warm up the engine and run the engine at an engine speed of 2500 rpm for approximately 90 seconds. 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 or AFS Voltage B2S1 and O2S B2S2. Powertrain > Engine > Active Test Active Test Display Control the Injection Volume for A/F Sensor Data List Display AFS Voltage B1S1 AFS Voltage B2S1 O2S B1S2 O2S B2S2 Perform the Control the Injection Volume for A/F Sensor operation with the engine idling (press the RIGHT or LEFT button to change the fuel injection volume). Monitor the voltage outputs of the air fuel ratio sensor and the heated oxygen sensor (AFS Voltage B1S1 and O2S B1S2 or AFS Voltage B2S1 and O2S B2S2) displayed on the Techstream. HINT: The Control the Injection Volume for A/F Sensor operation lowers the fuel injection volume by 12.5% or increases the injection volume by 12.5% 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 sensor output voltage does not change (almost no reaction) while performing the Active Test, the sensor may be malfunctioning. Standard Techstream Display (Sensor) Injection Volume Status Voltage AFS Voltage B1S1 AFS Voltage B2S1 (Air fuel ratio) 12.5% Rich Below 3.1 V -12.5% Lean Higher than 3.4 V O2S B1S2 O2S B2S2 (Heated oxygen) 12.5% Rich Higher than 0.55 V -12.5% Lean Below 0.4 V Result Status AFS Voltage B1S1 or AFS Voltage B2S1 Status O2S B1S2 or O2S B2S2 Air Fuel Ratio Condition and Air Fuel Ratio Sensor Condition Suspected Trouble Area Proceed to Lean/Rich Lean/Rich Normal - A Lean Lean Actual air fuel ratio lean PCV valve and hose PCV hose connections Fuel injector assembly blockage Gas leak from exhaust system Intake system Fuel pressure Mass air flow meter sub-assembly Engine coolant temperature sensor Rich Rich Actual air fuel ratio rich Fuel injector assembly leak or blockage Gas leak from exhaust system Ignition system Fuel pressure Mass air flow meter sub-assembly Engine coolant temperature sensor Lean Lean/Rich Air fuel ratio sensor malfunction Air fuel ratio sensor B Rich Lean/Rich Air fuel ratio sensor malfunction Air fuel ratio sensor Lean: During Control the Injection Volume for A/F Sensor, the air fuel ratio sensor output voltage (AFS Voltage B1S1 or AFS Voltage B2S1) is consistently higher than 3.4 V, and the heated oxygen sensor output voltage (O2S B1S2 or O2S B2S2) is consistently below 0.4 V. Rich: During Control the Injection Volume for A/F Sensor, the AFS Voltage B1S1 or AFS Voltage B2S1 is consistently below 3.1 V, and the O2S B1S2 or O2S B2S2 is consistently higher than 0.55 V. Lean/Rich: During Control the Injection Volume for A/F Sensor of the Active Test, the output voltage of the heated oxygen sensor alternates correctly. HINT: Refer to "Data List / Active Test" [AFS Voltage B1S1, AFS Voltage B2S1, O2S B1S2 and O2S B2S2]. Refer to «DATA LIST / ACTIVE TEST [04/2013 - ]»(ref-665554-S28506335252014102400000) Result: 2 B See step 13 Result: 1 A See step 5
- READ VALUE USING TECHSTREAM (COOLANT TEMP) Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Data List / Primary / Coolant Temp. Powertrain > Engine > Data List Tester Display Coolant Temp Read the Data List twice, when the engine is both cold and warmed up. Standard Techstream Display Condition Specified Condition Coolant Temp Cold engine Same as ambient air temperature Warm engine Between 75 and 100°C (167 and 212°F) HINT: Perform "Inspection After Repair" after replacing the engine coolant temperature sensor. Refer to «INITIALIZATION [04/2013 - ]»(ref-665554-S39644640142014102400000) Result Proceed to OK NG Result: 2 NG REPLACE ENGINE COOLANT TEMPERATURE SENSOR. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S21288719452014102400000) Result: 1 OK See step 6
- READ VALUE USING TECHSTREAM (MAF) Connect the Techstream to the DLC3. Start the engine. Turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Data List / Primary / MAF, Coolant Temp and Engine Speed. Powertrain > Engine > Data List Tester Display Engine Speed MAF Coolant Temp Allow the engine to idle until Coolant Temp reaches 75°C (167°F) or higher. Read MAF with the engine speed at 3000 rpm. Standard Techstream Display Condition Specified Condition MAF Shift lever position: N A/C: Off Engine Speed: 3000 rpm Between 7.60 gm/sec and 11.40 gm/sec Result Proceed to OK NG Result: 2 NG See step 18 Result: 1 OK See step 7
- CHECK FUEL PRESSURE (LOW PRESSURE SIDE) Check the fuel pressure (low pressure side). Refer to «PROCEDURE - Step 2»(ref-665746-S18024150712014102400000) Result Proceed to OK NG Result: 2 NG REPAIR OR REPLACE FUEL SYSTEM (LOW PRESSURE SIDE) Result: 1 OK See step 8
- CHECK FUEL PRESSURE SENSOR Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Start the engine. Enter the following menus: Powertrain / Engine and ECT / Data List / Gas General / Fuel Press. Powertrain > Engine > Data List Tester Display Fuel Press While revving the engine, check that the fuel pressure fluctuates. Standard Idling 3500 to 4500 kPag. 2000 rpm (Depress accelerator pedal fully) 7000 to 9000 kPag. HINT: The A/C switch and all accessory switches should be off, and the shift lever should be in the N or P position, and the engine should be fully warmed up. Result Proceed to OK NG Result: 2 NG REPLACE FUEL PRESSURE SENSOR. Refer to «REMOVAL [04/2013 - ]»(ref-665752-S08165459162014102400000) Result: 1 OK See step 9
- CHECK FUEL PRESSURE (HIGH PRESSURE SIDE) Check the fuel pressure (high pressure side). Refer to «PROCEDURE - Step 3»(ref-665746-S18024150712014102400000) Result Proceed to OK NG Result: 2 NG REPAIR OR REPLACE FUEL SYSTEM (HIGH PRESSURE SIDE) Result: 1 OK See step 10
- CHECK FOR EXHAUST GAS LEAK Check for exhaust gas leaks. OK No gas leaks. HINT: Perform "Inspection After Repair" after repairing or replacing the exhaust system. Refer to «INITIALIZATION [04/2013 - ]»(ref-665554-S39644640142014102400000) Result Proceed to OK NG Result: 2 NG REPAIR OR REPLACE EXHAUST SYSTEM Result: 1 OK See step 11
- CHECK FOR SPARK (SPARK TEST) Perform a spark test. Refer to «PROCEDURE - Step 1»(ref-665709-S31931343232014102400000) HINT: If the result of the spark test is normal, proceed to the next step. Perform "Inspection After Repair" after repairing or replacing the ignition system. Refer to «INITIALIZATION [04/2013 - ]»(ref-665554-S39644640142014102400000) Result Proceed to NEXT Result: 1 NEXT See step 12
- INSPECT FUEL INJECTOR ASSEMBLY (INJECTION AND VOLUME) Check the injection and volume. HINT: Refer to the fuel injector assembly inspection procedure. Refer to «INSPECTION [04/2013 - ]»(ref-665752-S34157530832014102400000) If the fuel injector assemblies malfunction, engine misfire may occur. The misfire count can be read using the Techstream. Enter the following menus: Powertrain / Engine and ECT / Data List / Gas Misfire / Cylinder #1 Misfire Count (to Cylinder #6 Misfire Count). Inspect the cold start fuel injector assembly. HINT: Perform "Inspection After Repair" after replacing the fuel injector assembly or cold start fuel injector assembly. Refer to «INITIALIZATION [04/2013 - ]»(ref-665554-S39644640142014102400000) Result Proceed to OK NG Result: 1 OK See step 17 Result: 2 NG REPLACE FUEL INJECTOR ASSEMBLY Fuel Injector Assembly: Refer to «REMOVAL [04/2013 - ]»(ref-665752-S02581426282014102400000) Cold Start Fuel Injector Assembly: Refer to «REMOVAL [04/2013 - ]»(ref-665752-S41190021672014102400000)
- INSPECT AIR FUEL RATIO SENSOR (HEATER RESISTANCE) See step 1 Result Proceed to OK NG Result: 2 NG REPLACE AIR FUEL RATIO SENSOR. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S18498474432014102400000) Result: 1 OK See step 14
- CHECK TERMINAL VOLTAGE (POWER SOURCE OF AIR FUEL RATIO SENSOR) See step 2 Result Proceed to OK NG Result: 2 NG See step 23 Result: 1 OK See step 15
- CHECK HARNESS AND CONNECTOR (AIR FUEL RATIO SENSOR - ECM) See step 3 Result Proceed to OK NG Result: 2 NG REPAIR OR REPLACE HARNESS OR CONNECTOR Result: 1 OK See step 16
- REPLACE AIR FUEL RATIO SENSOR Replace the air fuel ratio sensor. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S18498474432014102400000) HINT: Perform "Inspection After Repair" after replacing the air fuel ratio sensor. Refer to «INITIALIZATION [04/2013 - ]»(ref-665554-S39644640142014102400000) Result Proceed to NEXT Result: 1 NEXT See step 17
- CHECK WHETHER DTC OUTPUT RECURS (DTC P0171, P0172, P0174 OR P0175) Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Clear the DTCs. Refer to «DTC CHECK / CLEAR [04/2013 - ]»(ref-665554-S38092923772014102400000) Powertrain > Engine > Clear DTCs Turn the engine switch off and wait for at least 30 seconds. Turn the engine switch on (IG). Turn the Techstream on. Start the engine and warm it up. Drive the vehicle in accordance with the driving pattern described in Confirmation Driving Pattern. Enter the following menus: Powertrain / Engine and ECT / Trouble Codes. Read the DTCs. Powertrain > Engine > Trouble Codes Result Result Proceed to DTC P0171, P0172, P0174 or P0175 is output A DTCs are not output B Result: 2 B END Result: 1 A See step 18
- CHECK HARNESS AND CONNECTOR (MASS AIR FLOW METER SUB-ASSEMBLY CONNECTOR CONNECTION) Check the connection and terminal contact pressure of connectors and wire harnesses between the mass air flow meter sub-assembly and ECM. Refer to «ELECTRONIC CIRCUIT INSPECTION PROCEDURE [04/2013 - ]»(ref-665529-S31239628642014102400000) HINT: Repair any problems. Result Proceed to NEXT Result: 1 NEXT See step 19
- CHECK WHETHER DTC OUTPUT RECURS (DTC P0171, P0172, P0174 OR P0175) Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Clear the DTCs. Refer to «DTC CHECK / CLEAR [04/2013 - ]»(ref-665554-S38092923772014102400000) Powertrain > Engine > Clear DTCs Turn the engine switch off and wait for at least 30 seconds. Turn the engine switch on (IG). Turn the Techstream on. Start the engine and warm it up. Drive the vehicle in accordance with the driving pattern described in Confirmation Driving Pattern. Enter the following menus: Powertrain / Engine and ECT / Trouble Codes. Read the DTCs. Powertrain > Engine > Trouble Codes Result Result Proceed to DTC P0171, P0172, P0174 or P0175 is output A DTCs are not output B Result: 2 B END Result: 1 A See step 20
- CHECK HARNESS AND CONNECTOR (MASS AIR FLOW METER SUB-ASSEMBLY - ECM) See step 3 Result Proceed to OK NG Result: 2 NG REPAIR OR REPLACE HARNESS OR CONNECTOR Result: 1 OK See step 21
- REPLACE MASS AIR FLOW METER SUB-ASSEMBLY Replace the mass air flow meter sub-assembly. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S23197549392014102400000) HINT: If the result of the inspection performed in step 6 indicated no problem, proceed to the next step without replacing the mass air flow meter sub-assembly. Perform "Inspection After Repair" after replacing the mass air flow meter sub-assembly. Refer to «INITIALIZATION [04/2013 - ]»(ref-665554-S39644640142014102400000) Result Proceed to NEXT Result: 1 NEXT See step 22
- CONFIRM WHETHER MALFUNCTION HAS BEEN SUCCESSFULLY REPAIRED Connect the Techstream to the DLC3. Turn the engine switch on (IG). Turn the Techstream on. Clear the DTCs. Refer to «DTC CHECK / CLEAR [04/2013 - ]»(ref-665554-S38092923772014102400000) Powertrain > Engine > Clear DTCs Turn the engine switch off and wait for at least 30 seconds. Turn the engine switch on (IG). Turn the Techstream on. Start the engine and warm it up. Drive the vehicle in accordance with the driving pattern described in Confirmation Driving Pattern. Enter the following menus: Powertrain / Engine and ECT / Trouble Codes. Read the DTCs. Powertrain > Engine > Trouble Codes Result Result Proceed to DTCs are not output A DTC P0171, P0172, P0174 or P0175 is output B Result: 1 A END Result: 2 B REPLACE ECM. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S41334133092014102400000)
- CHECK HARNESS AND CONNECTOR (AIR FUEL RATIO SENSOR - SEMICONDUCTOR PWR INTEGRATION ECU) See step 5 Result Proceed to OK NG Result: 1 OK REPLACE SEMICONDUCTOR PWR INTEGRATION ECU. Refer to «REMOVAL [04/2013 - ]»(ref-665734-S38821131362014102400000) Result: 2 NG REPAIR OR REPLACE HARNESS OR CONNECTOR
Scheme 145
The fuel pressure sensor is installed on the delivery pipe. The sensor changes fuel pressure to an electrical signal and sends the signal to the ECM. Then the ECM controls the pump discharge using this feedback to maintain the fuel's target pressure between 4 and 13 MPa (40.8 and 132.6 kgf/cm 2 , 580 and 1886 psi). If the sensor output stops, the ECM will stop the high pressure side fuel pump and supply fuel using the low pressure side fuel pump.
| DTC No. | Detection Item | DTC Detection Condition | Trouble Area | MIL | Memory |
|---|---|---|---|---|---|
| P0190 | Fuel Rail Pressure Sensor Circuit | Open or short in fuel pressure sensor circuit for 5 seconds or more (1 trip detection logic). | Open or short in fuel pressure sensor circuit Fuel pressure sensor ECM | Comes on | DTC stored |
| P0192 | Fuel Rail Pressure Sensor Circuit Low Input | Open or short in fuel pressure sensor circuit for 5 seconds or more (1 trip detection logic). | Open or short in fuel pressure sensor circuit Fuel pressure sensor ECM | Comes on | DTC stored |
| P0193 | Fuel Rail Pressure Sensor Circuit High Input | Open or short in fuel pressure sensor circuit for 5 seconds or more (1 trip detection logic). | Open or short in fuel pressure sensor circuit Fuel pressure sensor ECM | Comes on | DTC stored |
HINT
After confirming DTC P0190, P0192 and P0193 use the Techstream to confirm the fuel pressure in the delivery pipe by entering the following menus: Powertrain / Engine and ECT / Data List / Gas General / Fuel Press.
| Fuel Pressure (kPag) | Malfunction |
|---|---|
| Approximately 0 | PR, E2 circuit short |
| Approximately 19600 or higher | PR, VC circuit short PR circuit open E2 circuit open |
| Related DTCs | P0190: Fuel rail pressure sensor range check (Chattering) P0192: Fuel rail pressure sensor range check (Low voltage) P0193: Fuel rail pressure sensor range check (High voltage) |
|---|---|
| Required Sensors/Components (Main) | Fuel pressure sensor |
| Required Sensors/Components (Related) | |
| Frequency of Operation | Continuous |
| Duration | 5 seconds |
| MIL Operation | Immediately |
| Sequence of Operation | None |
| Monitor runs whenever the following DTCs are not stored | None |
|---|---|
| Time after engine start | 5 seconds or more |
| Fuel rail pressure sensor voltage | Less than 0.25 V, or higher than 4.5 V |
P0190
| Fuel rail pressure sensor voltage | Less than 0.25 V |
P0192
| Fuel rail pressure sensor voltage | Higher than 4.5 V |
P0193
| Fuel rail pressure sensor voltage | 0.25 to 4.5 V |
- Connect the Techstream to the DLC3.
- Turn the engine switch on (IG) and turn the Techstream on.
- Clear the DTCs (even if no DTCs are stored, perform the clear DTC procedure).
- Turn the engine switch off and wait for at least 30 seconds.
- Turn the engine switch on (IG) and turn the Techstream on.
- Wait 3 seconds or more.
- Start the engine..
- Idle the engine for 10 seconds [A].
- Enter the following menus: Powertrain / Engine and ECT / Trouble Codes.
- Read the pending DTCs [B]. HINT: If a pending DTC is output, the system is malfunctioning. If a pending DTC is not output, perform the following procedure.
- Enter the following menus: Powertrain / Engine and ECT / Utility / All Readiness.
- Input the DTC: P0190, P0192 or P0193.
- Check the DTC judgment result. Techstream Display Description NORMAL DTC judgment completed System normal ABNORMAL DTC judgment completed System abnormal INCOMPLETE DTC judgment not completed Perform driving pattern after confirming DTC enabling conditions N/A Unable to perform DTC judgment Number of DTCs which do not fulfill DTC preconditions has reached ECU memory limit HINT: If the judgment result shows NORMAL, the system is normal. If the judgment result shows ABNORMAL, the system has a malfunction. If the judgment result shows INCOMPLETE or N/A, perform steps [A] and [B] again.
- If the judgment result is INCOMPLETE or N/A and no pending DTC is output, perform a universal trip and check for permanent DTCs. Refer to «DTC CHECK / CLEAR [04/2013 - ]»(ref-665554-S38092923772014102400000) HINT: If a permanent DTC is output, the system is malfunctioning. If no permanent DTC is output, the system is normal.
Scheme 146
HINT
- If other DTCs relating to different systems that have terminal E2 as the ground terminal are output simultaneously, terminal E2 may have an open circuit.
- Read freeze frame data using the Techstream. The ECM records vehicle and driving condition information as freeze frame data the moment a DTC is stored. When troubleshooting, freeze frame data can help determine if the vehicle was moving or stationary, if the engine was warmed up or not, if the air fuel ratio was lean or rich, and other data from the time the malfunction occurred.
Scheme 147
- READ VALUE USING TECHSTREAM (FUEL PRESS) Connect the Techstream to the DLC3. Start the engine. Turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Data List / Gas General / Fuel Press. Powertrain > Engine > Data List Tester Display Fuel Press Read the values. OK 3500 to 4500 kPag (Idling warmed up engine) Result Fuel Pressure (kPag) Proceed to Approximately 19600 or higher A Approximately 0 (3500 to 4500)* B HINT: *: The value must change when the engine is moving or stationary. Result: 2 B CHECK FOR INTERMITTENT PROBLEMS. Refer to «CHECK FOR INTERMITTENT PROBLEMS [04/2013 - ]»(ref-665554-S41014724152014102400000) Result: 1 A See step 2
- INSPECT FUEL PRESSURE SENSOR (VC VOLTAGE) Disconnect the fuel pressure sensor connector. *a Front view of wire harness connector (to Fuel Pressure Sensor) Turn the engine switch on (IG). Measure the voltage according to the value(s) in the table below. Standard Voltage Tester Connection Condition Specified Condition F45-3 (VC) - Body ground Engine switch on (IG) 4.5 to 5.5 V Result Proceed to OK NG Result: 2 NG See step 6 Result: 1 OK See step 3
- INSPECT FUEL PRESSURE SENSOR Inspect the fuel pressure sensor. Refer to «INSPECTION [04/2013 - ]»(ref-665752-S41291694812014102400000) Result Proceed to OK NG Result: 2 NG REPLACE FUEL PRESSURE SENSOR. Refer to «REMOVAL [04/2013 - ]»(ref-665752-S08165459162014102400000) Result: 1 OK See step 4
- INSPECT ECM (PR VOLTAGE) Start the engine. *a Component with harness connected (ECM) Measure the voltage according to the value(s) in the table below. Standard Voltage Tester Connection Condition Specified Condition F4-27 (PR) - F1-28 (E2) Idling with warm engine 1.0 to 1.7 V HINT: The fuel pressure in the delivery pipe is 3.5 to 4.5 MPa. Result Proceed to OK NG Result: 1 OK REPLACE ECM. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S41334133092014102400000) Result: 2 NG See step 5
- CHECK HARNESS AND CONNECTOR (ECM - FUEL PRESSURE SENSOR) Disconnect the ECM connector. Disconnect the fuel pressure sensor connector. Measure the resistance according to the value(s) in the table below. Standard Resistance Tester Connection Condition Specified Condition F4-27 (PR) - F45-2 (PR) Always Below 1 ohms F1-28 (E2) - F45-1 (E2) Always Below 1 ohms F4-27 (PR) or F45-2 (PR) - Body ground Always 10 kohms or higher Result Proceed to OK NG Result: 1 OK REPLACE FUEL PRESSURE SENSOR. Refer to «REMOVAL [04/2013 - ]»(ref-665752-S08165459162014102400000) Result: 2 NG REPAIR OR REPLACE HARNESS OR CONNECTOR
- CHECK HARNESS AND CONNECTOR (ECM - FUEL PRESSURE SENSOR) Disconnect the fuel pressure 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 F1-18 (VC) - F45-3 (VC) Always Below 1 ohms F1-18 (VC) or F45-3 (VC) - Body ground Always 10 kohms or higher Result Proceed to OK NG Result: 1 OK REPLACE ECM. Refer to «REMOVAL [04/2013 - ]»(ref-665751-S41334133092014102400000) Result: 2 NG REPAIR OR REPLACE HARNESS OR CONNECTOR