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Engine Control System (Sedan) (Diagnostics - Introduction): Diagnosis Toyota Yaris III

Testing & Diagnostics 20 illustrations ~16534 words

HOW TO PROCEED WITH TROUBLESHOOTING

HINT

*: Use the Techstream.

  1. VEHICLE BROUGHT TO WORKSHOP NEXT: Go to next step
  2. CUSTOMER PROBLEM ANALYSIS NEXT: Go to next step
  3. CONNECT TECHSTREAM TO DLC3* HINT: If the display indicates a communication fault in the Techstream, inspect the DLC3. When any CAN communication system DTCs are output, perform troubleshooting on the CAN communication system first. NEXT: Go to next step
  4. CHECK DTC AND FREEZE FRAME DATA* Check DTC. Refer to «DTC CHECK / CLEAR»(ref-472422-S30583444012012051500000). Check Freeze Frame Data. Refer to «FREEZE FRAME DATA»(ref-472422-S38991480352012051500000). HINT: Record or print DTCs and freeze frame data, if necessary. NEXT: Go to next step
  5. CLEAR DTC AND FREEZE FRAME DATA* HINT: Record or print DTCs and freeze frame data, if necessary. Clear DTCs and freeze frame data. Refer to «DTC CHECK / CLEAR»(ref-472422-S30583444012012051500000). NEXT: Go to next step
  6. CONDUCT VISUAL INSPECTION NEXT: Go to next step
  7. SELECT CHECK MODE DIAGNOSIS* Refer to «CHECK MODE PROCEDURE»(ref-472422-S04335344022012051500000). NEXT: Go to next step
  8. CONFIRM PROBLEM SYMPTOMS Refer to «PROBLEM SYMPTOMS TABLE»(ref-472422-S06319120112012051500000). HINT: If the engine does not start, perform steps 10 and 12 first. RESULT Result Proceed to Malfunction does not occur A Malfunction occurs B B --> GO TO 10 A: Go to next step
  9. SIMULATE SYMPTOMS NEXT: Go to next step
  10. CHECK DTC* Refer to «DTC CHECK / CLEAR»(ref-472422-S30583444012012051500000). RESULT Result Proceed to Trouble code output A No trouble code output B B --> GO TO 12 A: Go to next step
  11. REFER TO DTC CHART Refer to «DIAGNOSTIC TROUBLE CODE CHART»(ref-472422-S32475941322012051500000). NEXT --> GO TO 14
  12. CONDUCT BASIC INSPECTION Refer to «BASIC INSPECTION»(ref-472422-S39193972612012051500000). RESULT Result Proceed to Malfunctioning parts not confirmed A Malfunctioning parts confirmed B B --> GO TO 17 A: Go to next step
  13. REFER TO PROBLEM SYMPTOMS TABLE Refer to «PROBLEM SYMPTOMS TABLE»(ref-472422-S06319120112012051500000). RESULT Result Proceed to Malfunctioning circuit confirmed A Malfunctioning parts confirmed B B --> GO TO 17 A: Go to next step
  14. CHECK ECM POWER SOURCE CIRCUIT Refer to «ECM Power Source Circuit»(ref-472647-S18746788252012051500000). NEXT: Go to next step
  15. CONDUCT CIRCUIT INSPECTION RESULT Result Proceed to Malfunction not confirmed A Malfunction confirmed B B --> GO TO 18 A: Go to next step
  16. CHECK FOR INTERMITTENT PROBLEMS Refer to «CHECK FOR INTERMITTENT PROBLEMS»(ref-472422-S17330078392012051500000). NEXT --> GO TO 18
  17. CONDUCT PARTS INSPECTION NEXT: Go to next step
  18. IDENTIFY PROBLEM NEXT: Go to next step
  19. ADJUST AND/OR REPAIR NEXT: Go to next step
  20. CONDUCT CONFIRMATION TEST* NEXT --> END

BASIC INSPECTION

When a malfunction is not confirmed by the DTC check, troubleshooting should be carried out in all circuits considered to be possible causes of the problem. In many cases, by carrying out the basic engine check shown in the following flowchart, the location of the problem can be found quickly and efficiently. Therefore, using this check is essential when engine troubleshooting.

  1. CHECK BATTERY VOLTAGE NOTE: Conduct this check with the engine stopped and ignition switch off. Result Proceed to 11 V or more OK Below 11 V NG NG --> CHARGE OR REPLACE BATTERY OK: Go to next step
  2. CHECK WHETHER ENGINE CRANKS NG --> PROCEED TO «PROBLEM SYMPTOMS TABLE»(ref-472422-S06319120112012051500000) OK: Go to next step
  3. CHECK WHETHER ENGINE STARTS NG --> GO TO 6 OK: Go to next step
  4. CHECK AIR FILTER Visually check that the air filter is not excessively contaminated with dirt or oil. NG --> REPLACE AIR FILTER. Refer to «GENERAL MAINTENANCE - Step 8»(/toyota/yaris/iii-2010-2014/remont/procedures/#maintenance) OK: Go to next step
  5. CHECK IDLING SPEED Check the engine idling speed. Refer to «ON-VEHICLE INSPECTION - Step 8»(ref-472632-S26981098432012051500000). NG --> TROUBLESHOOT IDLING SPEED AND PROCEED TO NEXT STEP OK: Go to next step
  6. CHECK FUEL PRESSURE Check the fuel pressure. Refer to «ON-VEHICLE INSPECTION - Step 2»(/toyota/yaris/iii-2010-2014/remont/fuel-system/#fuel-system-sedan-inspection) . NG --> TROUBLESHOOT FUEL PRESSURE AND PROCEED TO NEXT STEP OK: Go to next step
  7. CHECK FOR SPARK Perform a spark test. Refer to «ON-VEHICLE INSPECTION - Step 1»(/toyota/yaris/iii-2010-2014/remont/ignition-system/#ignition-system-sedan-inspection). NG --> TROUBLESHOOT SPARK AND PROCEED TO NEXT STEP OK --> PROCEED TO «PROBLEM SYMPTOMS TABLE»(ref-472422-S06319120112012051500000)

PROBLEM SYMPTOMS TABLE

HINT

  1. Use the table below to help determine the cause of problem symptoms. If multiple suspected areas are listed, the potential causes of the symptoms are listed in order of probability in the "Suspected Area" column of the table. Check each symptom by checking the suspected areas in the order they are listed. Replace parts as necessary.
  2. Inspect the fuses and relays related to this system before inspecting the suspected areas below.
SymptomSuspected AreaSee
Engine does not crank (Does not start)BatteryRefer to ON-VEHICLE INSPECTION - Step 1
Starter (for except cold area)Refer to INSPECTION
Starter (for cold area)Refer to INSPECTION
Cranking holding function circuitRefer to Cranking Holding Function Circuit
Starter relayRefer to ON-VEHICLE INSPECTION - Step 1
Park/neutral position switchRefer to INSPECTION
Clutch start switchRefer to INSPECTION
No initial combustion (Does not start)ECM power source circuitRefer to ECM Power Source Circuit
Crankshaft position sensorRefer to PROCEDURE - Step 1
Camshaft position sensorRefer to PROCEDURE - Step 1
Ignition systemRefer to ON-VEHICLE INSPECTION
Fuel pump control circuitRefer to Fuel Pump Control Circuit
Fuel pumpRefer to INSPECTION
Fuel injector circuitRefer to Fuel Injector Circuit
Valve timingRefer to PROCEDURE - Step 4
VC output circuitRefer to VC Output Circuit
ECMRefer to TERMINALS OF ECM
Engine immobiliser systemRefer to HOW TO PROCEED WITH TROUBLESHOOTING
Engine cranks normally but difficult to startFuel pump control circuitRefer to Fuel Pump Control Circuit
Fuel pumpRefer to INSPECTION
Fuel injector circuitRefer to Fuel Injector Circuit
Cranking holding function circuitRefer to Cranking Holding Function Circuit
Engine coolant temperature sensorRefer to INSPECTION
Intake systemRefer to ON-VEHICLE INSPECTION
Ignition systemRefer to ON-VEHICLE INSPECTION
Spark plugRefer to ON-VEHICLE INSPECTION - Step 2
Electronic throttle control systemRefer to ON-VEHICLE INSPECTION
CompressionRefer to ON-VEHICLE INSPECTION - Step 9
ECM power source circuitRefer to ECM Power Source Circuit
Incomplete intermittent combustion occurs (Does not start)Fuel pump control circuitRefer to Fuel Pump Control Circuit
Fuel pumpRefer to INSPECTION
Fuel lineRefer to ON-VEHICLE INSPECTION
Ignition systemRefer to ON-VEHICLE INSPECTION
Fuel injector circuitRefer to Fuel Injector Circuit
ECM power source circuitRefer to ECM Power Source Circuit
Cranking holding function circuitRefer to Cranking Holding Function Circuit
Crankshaft position sensorRefer to PROCEDURE - Step 1
Camshaft position sensorRefer to PROCEDURE - Step 1
Valve timingRefer to PROCEDURE - Step 4
High engine idle speedElectronic throttle control systemRefer to ON-VEHICLE INSPECTION
Intake systemRefer to ON-VEHICLE INSPECTION
A/C signal circuitRefer to TERMINALS OF ECU
ECM power source circuitRefer to ECM Power Source Circuit
Engine coolant temperature sensorRefer to INSPECTION
PCV valve and hoseRefer to COMPONENTS
Low engine idle speed (Poor idling)Electronic throttle control systemRefer to ON-VEHICLE INSPECTION
A/C signal circuitRefer to TERMINALS OF ECU
Fuel pump control circuitRefer to Fuel Pump Control Circuit
Intake systemRefer to ON-VEHICLE INSPECTION
Fuel pumpRefer to INSPECTION
PCV valve and hoseRefer to COMPONENTS
Rough idlingCompressionRefer to ON-VEHICLE INSPECTION - Step 9
Ignition systemRefer to ON-VEHICLE INSPECTION
Spark plugRefer to ON-VEHICLE INSPECTION - Step 2
Fuel injector circuitRefer to Fuel Injector Circuit
ECM power source circuitRefer to ECM Power Source Circuit
Fuel pump control circuitRefer to Fuel Pump Control Circuit
Fuel pumpRefer to INSPECTION
Fuel lineRefer to ON-VEHICLE INSPECTION
Electronic throttle control systemRefer to ON-VEHICLE INSPECTION
Intake systemRefer to ON-VEHICLE INSPECTION
Purge VSVRefer to INSPECTION
PCV valve and hoseRefer to COMPONENTS
Air fuel ratio sensorRefer to INSPECTION PROCEDURE
Heated oxygen sensorRefer to INSPECTION PROCEDURE
Mass air flow meterRefer to ON-VEHICLE INSPECTION
Knock sensorRefer to INSPECTION
External part malfunction (Increase in load: A/C system, A/T system, etc.)
Idle huntingElectronic throttle control systemRefer to ON-VEHICLE INSPECTION - Step 1
Intake systemRefer to ON-VEHICLE INSPECTION
PCV valve and hoseRefer to COMPONENTS
Air fuel ratio sensorRefer to INSPECTION PROCEDURE
Mass air flow meterRefer to ON-VEHICLE INSPECTION
Hesitation/Poor accelerationFuel pump control circuitRefer to Fuel Pump Control Circuit
Fuel pumpRefer to INSPECTION
Fuel lineRefer to ON-VEHICLE INSPECTION
Spark plugRefer to ON-VEHICLE INSPECTION - Step 2
Ignition systemRefer to ON-VEHICLE INSPECTION
Fuel injector circuitRefer to Fuel Injector Circuit
ECM power source circuitRefer to ECM Power Source Circuit
Mass air flow meterRefer to ON-VEHICLE INSPECTION
Electronic throttle control systemRefer to ON-VEHICLE INSPECTION
Intake systemRefer to ON-VEHICLE INSPECTION
Valve timingRefer to PROCEDURE - Step 4
CompressionRefer to ON-VEHICLE INSPECTION - Step 9
Brake override systemRefer to Brake Override System
Surging (Poor driveability)Spark plugRefer to ON-VEHICLE INSPECTION - Step 2
Fuel pump control circuitRefer to Fuel Pump Control Circuit
Fuel pumpRefer to INSPECTION
Ignition systemRefer to ON-VEHICLE INSPECTION
Fuel injector circuitRefer to Fuel Injector Circuit
ECM power source circuitRefer to ECM Power Source Circuit
Mass air flow meterRefer to ON-VEHICLE INSPECTION
Variable valve timing systemRefer to INSPECTION
CompressionRefer to ON-VEHICLE INSPECTION - Step 9
Engine stalls soon after startingFuel pump control circuitRefer to Fuel Pump Control Circuit
Fuel pumpRefer to INSPECTION
Spark plugRefer to ON-VEHICLE INSPECTION - Step 2
Ignition systemRefer to ON-VEHICLE INSPECTION
Fuel injector circuitRefer to Fuel Injector Circuit
ECM power source circuitRefer to ECM Power Source Circuit
Mass air flow meterRefer to ON-VEHICLE INSPECTION
Variable valve timing systemRefer to INSPECTION
Electronic throttle control systemRefer to ON-VEHICLE INSPECTION
Intake systemRefer to ON-VEHICLE INSPECTION
PCV valve and hoseRefer to COMPONENTS
CompressionRefer to ON-VEHICLE INSPECTION - Step 9
Engine stalls only during A/C operationA/C signal circuitRefer to HOW TO PROCEED WITH TROUBLESHOOTING
ECMRefer to TERMINALS OF ECM
Unable/difficult to refuelFuel system (canister, refueling valve, fuel tank, etc.)Refer to INSPECTION

SFI SYSTEM

Scheme 1

Scheme 1: TERMINALS OF ECM

HINT

The standard normal voltage between each pair of ECM terminals is shown in the table below. The appropriate conditions for checking each pair of terminals are also indicated. The result of checks should be compared with the standard normal voltage for that pair of terminals, displayed in the Specified Condition column. The illustration above can be used as a reference to identify the ECM terminal locations.

Symbol (Terminal No.)Wiring ColorTerminal DescriptionConditionSpecified Condition
BATT (A21-20) - E1 (C20-104)Y - WBattery (for measuring battery voltage and for ECM memory)Always11 to 14 V
+BM (A21-3) - ME01 (C20-43)GR - BRPower source of throttle actuatorAlways11 to 14 V
IGSW (A21-28) - E1 (C20-104)R - WIgnition switchIgnition switch ON11 to 14 V
+B (A21-2) - E1 (C20-104)B - WPower source of ECMIgnition switch ON11 to 14 V
+B2 (A21-1) - E1 (C20-104)B - WPower source of ECMIgnition switch ON11 to 14 V
OC1+ (C20-100) - OC1- (C20-123)BR - RCamshaft timing oil control valve (OCV)IdlingPulse generation (See waveform 1)
MREL (A21-44) - E1 (C20-104)GR - WEFI relayIgnition switch ON11 to 14 V
VG (C20-118) - E2G (C20-116)GR - LGMass air flow meterIdling, Transmission gear neutral, A/C switch OFF0.5 to 3.0 V
THA (C20-65) - ETHA (C20-88)P - BEIntake air temperature sensorIdling, Intake air temperature 20°C (68°F)0.5 to 3.4 V
THW (C20-97) - ETHW (C20-96)L - PEngine coolant temperature sensorIdling, Engine coolant temperature 80°C (176°F)0.2 to 1.0 V
VCTA (C20-67) - ETA (C20-91)W - VPower source of throttle position sensor (specific voltage)Ignition switch ON4.5 to 5.5 V
VTA1 (C20-115) - ETA (C20-91)Y - VThrottle position sensor (for engine control)Ignition switch ON, Throttle valve fully closed0.5 to 1.1 V
Ignition switch ON, Throttle valve fully open3.2 to 4.8 V
VTA2 (C20-114) - ETA (C20-91)GR - VThrottle position sensor (for sensor malfunction detection)Ignition switch ON, Throttle valve fully closed2.1 to 3.1 V
Ignition switch ON, Throttle valve fully open4.6 to 5.0 V
VPA (A21-55) - EPA (A21-59)R - GAccelerator pedal position sensor (for engine control)Ignition switch ON, Accelerator pedal released0.5 to 1.1 V
Ignition switch ON, Accelerator pedal fully depressed2.6 to 4.5 V
VPA2 (A21-56) - EPA2 (A21-60)L - BRAccelerator pedal position sensor (for sensor malfunctioning detection)Ignition switch ON, Accelerator pedal released1.2 to 2.0 V
Ignition switch ON, Accelerator pedal fully depressed3.4 to 4.7 V
VCPA (A21-57) - EPA (A21-59)B - GPower source of accelerator pedal position sensor (for VPA)Ignition switch ON4.5 to 5.5 V
VCP2 (A21-58) - EPA2 (A21-60)W - BRPower source of accelerator pedal position sensor (for VPA2)Ignition switch ON4.5 to 5.5 V
HA1A (C20-109) - E04 (C20-46)G - W-BA/F sensor heaterIdling with warm enginePulse generation (See waveform 2)
Ignition switch ON11 to 14 V
A1A+ (C20-112) - E1 (C20-104)V -WA/F sensorIgnition switch ON3.3 V*
A1A- (C20-113) - E1 (C20-104)LG - WA/F sensorIgnition switch ON2.9 V*
HT1B (C20-47) - E03 (C20-86)LG - W-BHeated oxygen sensor heaterIdlingBelow 3.0 V
Ignition switch ON11 to 14 V
OX1B (C20-64) - EX1B (C20-87)G - GRHeated oxygen sensorEngine speed maintained at 2500 rpm for 2 minutes after warming up sensorPulse generation (See waveform 3)
#10 (C20-108) - E01 (C20-45) #20 (C20-107) - E01 (C20-45) #30 (C20-106) - E01 (C20-45) #40 (C20-105) - E01 (C20-45)SB - BR GR - BR P - BR L - BRFuel injectorIgnition switch ON11 to 14 V
IdlingPulse generation (See waveform 4)
KNK1 (C20-110) - EKNK (C20-111)R - GKnock sensorEngine speed maintained at 4000 after warming up enginePulse generation (See waveform 5)
G2+ (C20-99) - NE- (C20-121)B - PCamshaft position sensorIdlingPulse generation (See waveform 6)
NE+ (C20-122) - NE- (C20-121)L - PCrankshaft position sensorIdlingPulse generation (See waveform 6)
IGT1 (C20-85) - E1 (C20-104) IGT2 (C20-84) - E1 (C20-104) IGT3 (C20-83) - E1 (C20-104) IGT4 (C20-82) - E1 (C20-104)W - W BE - W G - W LG - WIgnition coil (ignition signal)IdlingPulse generation (See waveform 7)
IGF1 (C20-81) - E1 (C20-104)Y - WIgnition coil (ignition confirmation signal)Ignition switch ON4.5 to 5.5 V
IdlingPulse generation (See waveform 7)
PRG (C20-49) - E01 (C20-45)L - BRPurge VSVIgnition switch ON11 to 14 V
Idling, during purge controlPulse generation (See waveform 8)
SPD (A21-8) - E1 (C20-104)V - WSpeed signal from combination meterDriving at 20 km/h (12 mph)Pulse generation (See waveform 9)
STA (A21-48) - E1 (C20-104)BR - WStarter signalCranking11 to 14 V
STAR (C20-52) - E1 (C20-104)BE - WStarter relay controlIgnition switch ON, Shift position P or N (for A/T), Clutch pedal fully depressed (for M/T)Below 1.5 V
Cranking6.0 V or more
ACCR (A21-13) - E01 (C20-45)G - BRACC (Accessory) Cut relay control signalCrankingBelow 1.5 V
STSW (A21-14) - E1 (C20-104)B - WIgnition switch signalIgnition switch START position6.0 V or more
STP (A21-36) - E1 (C20-104)G - WStop light switchBrake pedal depressed7.5 to 14 V
Brake pedal releasedBelow 1.5 V
ST1- (A21-35) - E1 (C20-104)Y - WStop light switch (opposite to STP terminal)Ignition switch ON, Brake pedal depressedBelow 1.5 V
Ignition switch ON, Brake pedal released7.5 to 14 V
M+ (C20-42) - ME01 (C20-43)G - BRThrottle actuatorIdling with warm enginePulse generation (See waveform 10)
M- (C20-41) - ME01 (C20-43)R - BRThrottle actuatorIdling with warm enginePulse generation (See waveform 11)
FC (A21-7) - E01 (C20-45)V - BRFuel pump controlIgnition switch ON11 to 14 V
IdlingBelow 1.5 V
W (A21-24) - E1 (C20-104)B - WMILIgnition switch ON (MIL goes on)Below 1.5 V
Idling (MIL goes off)11 to 14 V
TC (A21-27) - E1 (C20-104)P - WTerminal TC of DLC 3Ignition switch ON11 to 14 V
TACH (A21-15) - E1 (C20-104)LG - WEngine speedIdlingPulse generation (See waveform 12)
VPMP (A21-42) - E1 (C20-104)P - WVent valve (built into canister pump module)Ignition switch ON11 to 14 V
MPMP (A21-34) - E1 (C20-104)V - WLeak detection pump (built into canister pump module)Leak detection pump OFFBelow 3 V
Leak detection pump ON11 to 14 V
VCPP (C20-70) - EPPM (C20-94)V - BEPower source for canister pressure sensor (specific voltage)Ignition switch ON4.5 to 5.5 V
PPMP (C20-71) - EPPM (C20-94)L - BECanister pressure sensor (built into canister pump module)Ignition switch ON3 to 3.6 V
ELS (A21-31) - E1 (C20-104)G - WElectric loadTail light switch ON7.5 to 14 V
Tail light switch OFFBelow 1.5 V
ELS3 (A21-33) - E1 (C20-104)V - WElectric loadDefogger switch ON7.5 to 14 V
Defogger switch OFFBelow 1.5 V
FAN (A21-21) - E1 (C20-104)BE - WFan No. 1 relayIgnition switch ON11 to 14 V
Idling with A/C ON, or high engine coolant temperatureBelow 1.5 V
FAN2 (A21-22) - E1 (C20-104)LG - WFan No. 2 relayIdling with high engine coolant temperatureBelow 1.5 V
ALT (C20-50) - E1 (C20-104)P - WGeneratorIgnition switch ON11 to 14 V
CANH (A21-41) - E1 (C20-104)L - WCAN communication lineIgnition switch ONPulse generation (See waveform 13)
CANL (A21-49) - E1 (C20-104)W - WCAN communication lineIgnition switch ONPulse generation (See waveform 14)

HINT

*: The ECM terminal voltage is constant regardless of the output voltage from the sensor.

Scheme 2

Scheme 2

Scheme 3

Scheme 3

Scheme 4

Scheme 4

Scheme 5

Scheme 5

Scheme 6

Scheme 6

Scheme 7

Scheme 7

Scheme 8

Scheme 8

Scheme 9

Scheme 9

Scheme 10

Scheme 10

Scheme 11

Scheme 11

Scheme 12

Scheme 12

Scheme 13

Scheme 13

Scheme 14

Scheme 14

Scheme 15

Scheme 15
  1. WAVEFORM 1 CAMSHAFT TIMING OIL CONTROL VALVE (OCV) ECM Terminal Names Between OC1+ and OC1- Tester Ranges 5 V/DIV, 1 msec./DIV Conditions Idling
  2. WAVEFORM 2 AIR-FUEL RATIO SENSOR HEATER ECM Terminal Names Between HA1A and E04 Tester Ranges 5 V/DIV, 10 msec./DIV Conditions Idling with warm engine HINT: The wavelength varies in accordance with the engine operating condition.
  3. WAVEFORM 3 HEATED OXYGEN SENSOR ECM Terminal Names Between OX1B and EX1B Tester Ranges 0.2 V/DIV, 200 msec./DIV Conditions Engine speed maintained at 2500 rpm for 2 minutes after warming up sensor HINT: In DATA LIST, item O2S B1S2 shows the ECM input values from the heated oxygen sensor.
  4. WAVEFORM 4 FUEL INJECTOR NO. 1 (TO NO. 4) INJECTION SIGNAL ECM Terminal Names Between #10 (to #40) and E01 Tester Ranges 20 V/DIV, 20 msec./DIV Conditions Idling HINT: The wavelength becomes shorter as the engine speed increases.
  5. WAVEFORM 5 KNOCK SENSOR ECM Terminal Names Between KNK1 and EKNK Tester Ranges 1 V/DIV, 1 msec./DIV Conditions Engine speed maintained at 4000 rpm after warming up engine HINT: The waveforms and amplitudes displayed differ slightly depending on the vehicle.
  6. WAVEFORM 6 CRANKSHAFT POSITION SENSOR AND CAMSHAFT POSITION SENSOR ECM Terminal Names CH1: Between G2+ and NE- CH2: Between NE+ and NE- Tester Ranges 5 V/DIV, 20 msec./DIV Conditions Idling HINT: The wavelength becomes shorter as the engine speed increases.
  7. WAVEFORM 7 IGNITER IGT SIGNAL (FROM ECM TO IGNITER) AND IGNITER IGF SIGNAL (FROM IGNITER TO ECM) ECM Terminal Names Between IGT (1 to 4) and E1 Between IGF1 and E1 Tester Ranges 2 V/DIV, 20 msec./DIV Conditions Idling HINT: The wavelength becomes shorter as the engine speed increases.
  8. WAVEFORM 8 PURGE VSV ECM Terminal Names Between PRG and E01 Tester Ranges 10 V/DIV, 20 msec./DIV Conditions Idling, during purge control HINT: If the waveform is not similar to the illustration, check the waveform again after idling for 10 minutes or more.
  9. WAVEFORM 9 VEHICLE SPEED SIGNAL ECM Terminal Names Between SPD and E1 Tester Ranges 2 to 5 V/DIV, 20 msec./DIV Conditions Driving at 20 km/h (12 mph) HINT: The wavelength becomes shorter as the vehicle speed increases.
  10. WAVEFORM 10 THROTTLE ACTUATOR POSITIVE TERMINAL ECM Terminal Names Between M+ and ME01 Tester Ranges 5 V/DIV, 1 msec./DIV Conditions Idling with warm engine HINT: The duty ratio varies depending on the throttle actuator operation.
  11. WAVEFORM 11 THROTTLE ACTUATOR NEGATIVE TERMINAL ECM Terminal Names Between M- and ME01 Tester Ranges 5 V/DIV, 1 msec./DIV Conditions Idling with warm engine HINT: The duty ratio varies depending on the throttle actuator operation.
  12. WAVEFORM 12 ENGINE SPEED SIGNAL ECM Terminal Names Between TACH and E1 Tester Ranges 5 V/DIV, 10 msec./DIV Conditions Idling HINT: The wavelength becomes shorter as the engine speed increases.
  13. WAVEFORM 13 REFERENCE: CAN COMMUNICATION SIGNAL ECM Terminal Names Between CANH and E1 Tester Ranges 1 V/DIV, 10 μsec./DIV. Conditions Engine stops and ignition switch ON HINT: The waveform varies depending on the CAN communication signal.
  14. WAVEFORM 14 REFERENCE: CAN COMMUNICATION SIGNAL ECM Terminal Names Between CANL and E1 Tester Ranges 1 V/DIV, 10 μsec./DIV. Conditions Engine stops and ignition switch ON HINT: The waveform varies depending on the CAN communication signal.

Scheme 16

Scheme 16: DIAGNOSIS SYSTEM
  1. DESCRIPTION When troubleshooting OBD II (On-Board Diagnostics) vehicles, the Techstream (complying with SAE J1987) must be connected to the DLC3 (Data Link Connector 3) of the vehicle. Various data in the vehicle's ECM (Engine Control Module) can be then read. OBD II regulations require that the vehicle's on-board computer illuminate the MIL (Malfunction Indicator Lamp) on the instrument panel when the computer detects a malfunction in: The emission control system components. The powertrain control components (which affect vehicle emissions). The computer itself. In addition, the applicable DTCs prescribed by SAE J2012 are stored in the ECM memory. If the malfunction does not recur in 3 consecutive trips, the MIL turns off automatically but the DTCs remain stored in the ECM memory. To check the DTCs, connect the Techstream to the DLC3. The Techstream displays output DTCs, freeze frame data, and a variety of engine data. The DTCs and freeze frame data can be cleared with the Techstream. Refer to «DTC CHECK / CLEAR»(ref-472422-S30583444012012051500000). In order to enhance OBD function on vehicles and develop the Off-Board diagnosis system, Controller Area Network (CAN) communication is used in this system. CAN is a network which uses a pair of data transmission lines spanning multiple computers and sensors. It allows for high speed communications between the systems and simplification of the wire harness connections.
  2. NORMAL MODE AND CHECK MODE The diagnosis system operates in normal mode during normal vehicle use. In normal mode, 2 trip detection logic is used to ensure accurate detection of malfunctions. Check mode is also available as an option for technicians. In check mode, 1 trip detection logic is used for simulating malfunction symptoms and increasing the system's ability to detect malfunctions, including intermittent problems (Techstream only). Refer to «CHECK MODE PROCEDURE»(ref-472422-S04335344022012051500000).
  3. 2 TRIP DETECTION LOGIC When a malfunction is first detected, the malfunction is temporarily stored in the ECM memory (1st trip). If the same malfunction is detected during the next subsequent drive cycle, the MIL is illuminated (2nd trip).
  4. FREEZE FRAME DATA Freeze frame data records the engine conditions (fuel system, calculated engine load, engine coolant temperature, fuel trim, engine speed, vehicle speed, etc.) when malfunctions are detected. 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.
  5. DLC3 (Data Link Connector 3) Check the DLC3. Refer to «GENERAL INFORMATION»(ref-472421-S01944066752012051500000).
  6. BATTERY VOLTAGE Standard voltage 11 to 14 V If the voltage is below 11 V, replace or recharge the battery before proceeding
  7. MIL (Malfunction Indicator Lamp) The MIL is illuminated when the ignition switch is first turned to ON (the engine is not running). The MIL should turn off when the engine is started. If the MIL remains illuminated, the diagnosis system has detected a malfunction or abnormality in the system. HINT: If the MIL is not illuminated when the ignition switch is first turned to ON, check the MIL circuit. Refer to «MIL Circuit»(ref-472647-S39677999762012051500000).
  8. ALL READINESS HINT: With All Readiness you can check whether or not the DTC judgment has been completed by using the Techstream. You should check All Readiness after simulating malfunction symptoms or for validation after finishing repairs. Connect the Techstream to the DLC3. Turn the ignition switch to ON. Turn the Techstream on. Clear DTCs. Refer to «DTC CHECK / CLEAR»(ref-472422-S30583444012012051500000). Turn the ignition switch off and wait for at least 30 seconds. Turn the ignition switch to ON and turn the Techstream on. Perform the DTC judgment driving pattern to run the DTC judgment. Enter the following menus: Powertrain / Engine and ECT / Utility / All Readiness. Input the DTCs to be confirmed. Check the DTC judgment result. TECHSTREAM 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's memory limit

DTC CHECK / CLEAR

Note. When the diagnosis system is changed from normal mode to check mode or vice versa, all DTCs and freeze frame data recorded in normal mode are erased. Before changing modes, always check and make a note of DTCs and freeze frame data.

HINT

  1. DTCs which are stored in the ECM can be displayed on the Techstream. The Techstream can display the current, pending and permanent DTCs.
  2. If a malfunction is detected during the current driving cycle, current and permanent DTCs are stored.
  3. Some DTCs are not stored if the ECM does not detect the same malfunction again during a second consecutive driving cycle. However, such malfunctions, detected on only one occasion, are stored as pending DTCs.
  4. Current and pending DTCs can be cleared by using the Techstream or by disconnecting the cable from the negative battery terminal. However, permanent DTCs cannot be cleared using either of these two methods.
  5. After clearing current DTCs using the Techstream (or by disconnecting the cable from the negative battery terminal), permanent DTCs can be cleared when the system is determined to be normal for the relevant DTCs and then the universal trip is performed. The driving pattern to obtain a normal judgment is described under the "Confirmation Driving Pattern" for the respective DTC.
Pending DTCStore conditionMalfunction detected
Clear conditionSystem determined to be normal or DTCs cleared using Techstream or Cable disconnected from negative battery terminal
Current DTCStore conditionMalfunction detected (2nd trip)
Clear conditionNo malfunctions in 40 driving cycles or DTCs cleared using Techstream or Cable disconnected from negative battery terminal
Permanent DTCStore conditionMalfunction detected (2nd trip)
Clear conditionIgnition switch turned to ON after normal judgment obtained in 3 consecutive driving cycles or After DTCs cleared using Techstream or cable disconnected from negative battery terminal, normal judgment obtained and universal trip performed (not for misfire and fuel system DTCs) or After DTCs cleared using Techstream or cable disconnected from negative battery terminal, malfunction not detected when universal trip driving performed (misfire and fuel system DTCs)
MILONMalfunction detected (2nd trip)
OFFIgnition switch turned to ON after normal judgment obtained in 3 consecutive driving cycles or DTCs cleared using Techstream or Cable disconnected from negative battery terminal

2 TRIP DETECTION EXAMPLES

Scheme 17

Scheme 17

Scheme 18

Scheme 18

HINT

  1. Obtaining a normal judgment and performing a universal trip driving pattern can be done in the same driving cycle or in different driving cycles.
  2. It is unnecessary to obtain a normal judgment if the DTCs are misfire or fuel system DTCs.

Scheme 19

Scheme 19
  1. CHECK DTC Connect the Techstream to the DLC3. Turn the ignition switch to ON. Turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Trouble Codes. Check DTCs and freeze frame data, and then write them down. Check the details of DTCs. Refer to «DIAGNOSTIC TROUBLE CODE CHART»(ref-472422-S32475941322012051500000).
  2. CLEAR DTC Connect the Techstream to the DLC3. Turn the ignition switch to ON. Turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Trouble Codes. Clear DTCs.
  3. CLEAR DTC (Without using Techstream) Perform either of the following operations: NOTE: After turning ignition switch off, waiting time may be required before disconnecting the cable from the negative (-) battery terminal. Therefore, make sure to read the disconnecting the cable from the negative (-) battery terminal notices before proceeding with work. Refer to «PRECAUTION»(ref-472421-S19964979412012051500000). Disconnect the cable from the negative battery terminal for more than 1 minute. Remove the EFI and ETCS fuses from the engine room relay block located inside the engine compartment for more than 1 minute.
  4. CLEAR PERMANENT DTC HINT: Even if the following procedure is not performed, permanent DTCs are cleared by obtaining a normal judgment during 3 consecutive driving cycles. Connect the Techstream to the DLC3. Turn the ignition switch to ON. Turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Trouble Codes. Check if permanent DTCs are stored. HINT: If permanent DTCs are not output, it is not necessary to continue this procedure. Clear DTCs. Perform the respective confirmation driving patterns in order to obtain a normal judgment for the output DTCs. HINT: Confirmation driving patterns do not need to be performed for misfire and fuel system DTCs. For the confirmation driving pattern, refer to the procedures for the relevant DTC. Refer to «DIAGNOSTIC TROUBLE CODE CHART»(ref-472422-S32475941322012051500000). Perform the universal trip. HINT: The driving pattern to obtain a normal judgment and the universal trip driving pattern can be performed consecutively in the same driving cycle. Idle the engine for 30 seconds or more. Drive the vehicle at 40 km/h (25 mph) or more for a total of 5 minutes or more. HINT: It is possible to complete the drive pattern even if the vehicle decelerates to less than 40 km/h (25 mph) during the driving cycle provided that the vehicle is driven at 40 km/h (25 mph) or more for a total of 5 minutes. Allow 10 minutes or more to elapse from the time the engine is started. Enter the following menus: Powertrain / Engine and ECT / Trouble Codes. Check that the permanent DTCs have been cleared. HINT: The permanent DTCs are cleared when the universal trip is completed.

Scheme 20

Scheme 20: FREEZE FRAME DATA
  1. DESCRIPTION Freeze frame data records the engine conditions (fuel system, calculated load, engine coolant temperature, fuel trim, engine speed, vehicle speed, etc.) when a malfunction is detected. When troubleshooting, it can help determine if the vehicle was running or stopped, the engine was warmed up or not, the air-fuel ratio was Lean or Rich, and other data, from the time the malfunction occurred. HINT: If it is impossible to duplicate the problem even though a DTC is detected, confirm the freeze frame data. The ECM records engine conditions in the form of freeze frame data every 0.5 seconds. Using a Techstream, five separate sets of freeze frame data, including the data values at the time when the DTC was stored, can be checked. 3 data sets before the DTC was stored. 1 data set when the DTC was stored. 1 data set after the DTC was stored. These data sets can be used to simulate the condition of the vehicle around the time of the occurrence of the malfunction. The data may assist in identifying the cause of the malfunction, and in judging whether it was temporary or not.
  2. LIST OF FREEZE FRAME DATA Tester Display Measurement Item Diagnostic Note Vehicle Speed Vehicle speed Speed indicated on speedometer Engine Speed Engine speed - Calculate Load Calculated load by ECM - Vehicle Load Vehicle load - MAF Air flow rate from Mass Air Flow (MAF) meter If value approximately 0.0 gm/sec: MAF meter power source circuit open VG circuit open or short If value 160.0 gm/sec or more: E2G circuit open Atmosphere Pressure Atmospheric pressure - Coolant Temp Engine coolant temperature If -40°C (-40°F): sensor circuit open If 135°C (275°F) or more: sensor circuit shorted Intake Air Intake air temperature If -40°C (-40°F): sensor circuit open If 128°C (262°F) or more: sensor circuit shorted Ambient Temperature Ambient air temperature - Engine Run Time Engine run time - Initial Engine Coolant Temp Engine coolant temperature at engine start - Initial Intake Air Temp Intake air temperature at engine start - Battery Voltage Battery voltage - Accel Sens. No. 1 Volt % Absolute Accelerator Pedal Position (APP) No. 1 Read value with ignition switch ON (Do not start engine) Accel Sens. No. 2 Volt % Absolute APP No. 2 Read value with ignition switch ON (Do not start engine) Throttle Sensor Volt % Throttle position sensor Calculated value based on VTA1 Read value with ignition switch ON (Do not start engine) Throttle Sensor #2 Volt % Throttle position No. 2 sensor Calculated value based on VTA2 Read value with ignition switch ON (Do not start engine) Throttle Sensor Position Throttle position Recognition value for throttle opening angle on ECM Read value with ignition switch ON (Do not start engine) Throttle Motor DUTY Throttle actuator - Throttle Position Throttle valve opening angle Reference: Check the value when the engine stalls, is difficult to start, or idles roughly ISC Flow Flow rate calculated using information from each sensor Reference: Check the value when the engine stalls, is difficult to start, or idles roughly ISC Position Requested opening amount calculated using ISC control Reference: Check the value when the engine stalls, is difficult to start, or idles roughly ISC Feedback Value ISC feedback compensation amount Reference: Check the value when the engine stalls, is difficult to start, or idles roughly ISC Learning Value ISC learned compensation amount Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Electric Load Feedback Val Compensation flow rate according to electrical load Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Air Conditioner FB Val Compensation flow rate according to air conditioner load Reference: Check the value when the engine stalls, is difficult to start, or idles roughly PS Feedback Val Compensation flow rate according to power steering load Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Low Revolution Control Low engine speed control operation state Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Neutral Control Neutral control operation state Reference: Check the value when the engine stalls, is difficult to start, or idles roughly N Range Status Shift lever N status Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Eng Stall Control FB Flow Intake air compensation flow rate Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Deposit Loss Flow Flow loss due to deposits Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Injector (Port) Injection period of No. 1 cylinder - Injection Volum (Cylinder1) Injection volume (Cylinder 1) Quantity of fuel injection volume for 10 times Fuel Pump/Speed Status Fuel pump status - Vacuum Pump Key-off EVAP system leak detection pump status Refer to «EVAP System»(ref-472647-S11740967722012051500000) EVAP (Purge) VSV EVAP (PURGE) VSV control duty Order signal from ECM Evap Purge Flow Ratio of evaporative purge flow to intake air volume - Purge Density Learn Value Learning value of purge density - EVAP System Vent Valve Key-off EVAP system vent valve status - EVAP Purge VSV Purge VSV status - Purge Cut VSV Duty Purge VSV actuate duty - Target Air-Fuel Ratio Ratio compared to stoichiometric level - AF Lambda B1S1 Short-term fuel trim associated with sensor 1 - AFS Voltage B1S1 A/F sensor output voltage for sensor 1 Performing the Control the Injection Volume or Control the Injection Volume for A/F Sensor function of the Active Test enables the technician to check voltage output of the sensor. AFS Current B1S1 A/F sensor output current for sensor 1 Performing the Control the Injection Volume or Control the Injection Volume for A/F Sensor function of the Active Test enables the technician to check voltage output of the sensor. A/F Heater Duty #1 A/F heater duty ratio (for Bank 1) - O2S B1S2 Heated oxygen sensor output voltage for sensor 2 Performing the Control the Injection Volume or Control the Injection Volume for A/F Sensor function of the Active Test enables the technician to check voltage output of the sensor. O2S Impedance B1S2 Sub heated oxygen sensor impedance (sensor 2) - O2 Heater B1S2 Heated oxygen sensor heater (for Bank 1 Sensor 2) - O2 Heater Curr Val B1S2 Heated oxygen sensor current (for Bank 1 Sensor 2) - Short FT #1 Short-term fuel trim Short-term fuel compensation used to maintain air-fuel ratio at stoichiometric air-fuel ratio Long FT #1 Long-term fuel trim Overall fuel compensation carried out in long-term to compensate for continual deviation of short-term fuel trim from central value Total FT #1 Total fuel trim value for fuel system - Fuel System Status #1 Fuel system status bank 1 OL (Open Loop): Has not yet satisfied conditions to go closed loop CL (Closed Loop): Using A/F sensor as feedback for fuel control OLDrive: Open loop due to driving conditions (fuel enrichment) OLFault: Open loop due to detected system fault CLFault: Closed loop but A/F sensor, used for fuel control malfunctioning IGN Advance Ignition timing advance for No. 1 cylinder - Knock Feedback Value Knock feedback value Service data Knock Correct Learn Value Knock correction learning value Service data Idle Spark Advn Ctrl #1 Individual cylinder timing advance compensation amount (No. 1) Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Idle Spark Advn Ctrl #2 Individual cylinder timing advance compensation amount (No. 2) Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Idle Spark Advn Ctrl #3 Individual cylinder timing advance compensation amount (No. 3) Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Idle Spark Advn Ctrl #4 Individual cylinder timing advance compensation amount (No. 4) Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Actual VVT Angle #1 Actual VVT displacement angle (bank 1) This item is used for freeze frame data only. VVT Control Status #1 VVT control #1 status - VVT Advance Fail VVT control failure status - Catalyst Temp B1S1 Estimated catalyst temperature (sensor 1) - Catalyst Temp B1S2 Estimated catalyst temperature (sensor 2) - Starter Signal Starter relay (STA) signal status - Starter Control Starter switch (STSW) signal status - Power Steering Signal Power steering signal status - Starter Relay Starter control (STAR) signal status - ACC Relay ACC CUT relay status - Neutral Position SW Signal PNP switch status - Clutch Switch Clutch switch status Clutch switch (upper) signal status for Cruise Control System Clutch Start SW Clutch switch status Clutch start switch (lower) signal status for engine cranking Stop Light Switch Stop light switch status - A/C Signal A/C signal status - Closed Throttle Position SW Closed throttle position switch - Fuel Cut Condition Fuel cut condition - Immobiliser Communication Immobiliser communication OFF: Communication malfunctioning, or engine immobiliser system set ON: Communication normal TC Terminal TC terminal status - Time after DTC Cleared Time after DTC cleared - Distance from DTC Cleared Distance traveled since DTCs cleared - Warm up Cycle Cleared DTC Warm-up cycle after DTC cleared - Dist Batt Cable Disconnect Distance after battery cable disconnected - IG OFF Elapsed Time Time after ignition switch off - TC and TE1 TC and CG (TE1) terminal of DLC3 - Ignition Trig. Count Ignition counter - Cylinder #1 Misfire Count Misfire count of cylinder 1 - Cylinder #2 Misfire Count Misfire count of cylinder 2 - Cylinder #3 Misfire Count Misfire count of cylinder 3 - Cylinder #4 Misfire Count Misfire count of cylinder 4 - All Cylinders Misfire Count All cylinders misfire - Misfire RPM Engine speed when misfire occur - Misfire Load Engine load when misfire occur - Misfire Margin Margin to detect engine misfire Misfire detecting margin Catalyst OT MF F/C Catalyst over temperature misfire prevention F/C - Cat OT MF F/C History Catalyst over temperature misfire prevention F/C history - Cat OT MF F/C Cylinder #1 Display of fuel cut operation in No. 1 cylinder (if certain level of misfire malfunction is detected) - Cat OT MF F/C Cylinder #2 Display of fuel cut operation in No. 2 cylinder (if certain level of misfire malfunction is detected) - Cat OT MF F/C Cylinder #3 Display of fuel cut operation in No. 3 cylinder (if certain level of misfire malfunction is detected) - Cat OT MF F/C Cylinder #4 Display of fuel cut operation in No. 4 cylinder (if certain level of misfire malfunction is detected) - Engine Speed (Starter Off) Engine speed when starter off Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Starter Count Number of times starter turned on after ignition switch turned to ON Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Run Dist of Previous Trip Distance driven during previous trip Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Before 5 seconds elapse after starting the engine, which is DTC P1604 (Startability Malfunction) detection duration, this parameter indicates the distance driven during the previous trip. After 5 seconds elapse after starting the engine, this parameter indicates the distance driven during the current trip calculated from the vehicle speed signal. Engine Starting Time Time elapsed after engine started (interval between ignition switch ON and off) Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Previous Trip Coolant Temp Engine coolant temperature during previous trip Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Previous Trip Intake Temp Intake air temperature during previous trip Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Engine Oil Temperature Engine oil temperature (estimated temperature) Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Previous Trip Eng Oil Temp Engine oil temperature during previous trip Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Ambient Temp for A/C Ambient temperature for A/C Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Previous Trip Ambient Temp Ambient temperature during previous trip Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Engine Start Hesitation History of hesitation during engine start Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Low Rev for Eng Start History of low engine speed after engine start Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Minimum Engine Speed Minimum engine speed Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Fuel Cut Elps Time Elapsed time since Fuel Cut due to high engine speed. The time elapsed after high engine speed has occurred (More than the rpm at which fuel cut occurs + 500 rpm). Electric Fan Motor Electric fan motor - Idle Fuel Cut Prohibit Idle fuel cut control prohibition status See Active Test item "Control the Idle Fuel Cut Prohibit" Idle Fuel Cut Fuel cut idle Idle Fuel Cut = "ON" when throttle valve fully closed and engine speed over 3500 rpm FC TAU Fuel cut TAU (Fuel cut during very light load) Fuel cut being performed under very light load to prevent engine combustion from becoming incomplete Immobiliser Fuel Cut Status of the immobiliser fuel cut - Electrical Load Signal 1 Electrical load signal (ELS terminal input) - Electrical Load Signal 2 Electrical load signal (ELS3 terminal input) - SPD (NT) Input shaft speed (inside the transaxle) Only for A/T models Shift SW Status (P Range) PNP switch status (P Range) Only for A/T models: When shift lever position displayed on Techstream differs from actual position, adjustment of PNP switch or shift cable may be incorrect Shift SW Status (R Range) PNP switch status (R Range) Only for A/T models: When shift lever position displayed on Techstream differs from actual position, adjustment of PNP switch or shift cable may be incorrect Shift SW Status (2 Range) PNP switch status (2nd Range) Only for A/T models: When shift lever position displayed on Techstream differs from actual position, adjustment of PNP switch or shift cable may be incorrect Shift SW Status (L Range) PNP switch status (L Range) Only for A/T models: When shift lever position displayed on Techstream differs from actual position, adjustment of PNP switch or shift cable may be incorrect Shift SW Status (N Range) PNP switch status (N Range) Only for A/T models: When shift lever position displayed on Techstream differs from actual position, adjustment of PNP switch or shift cable may be incorrect Shift SW Status (D Range) PNP switch status (D Range) Only for A/T models: When shift lever position displayed on Techstream differs from actual position, adjustment of PNP switch or shift cable may be incorrect Shift SW Status (3 Range) PNP switch status (3rd Range) Only for A/T models: When shift lever position displayed on Techstream differs from actual position, adjustment of PNP switch or shift cable may be incorrect A/T Oil Temperature 1 No. 1 ATF temperature sensor value If value is -40°C (-40°F) or 215°C (419°F), No. 1 ATF temperature sensor circuit is open or shorted Lock Up Transaxle lock-up status - ST Solenoid Status Shift Solenoid ST Status - Shift Status ECM Gearshift Command - SLT Solenoid Status Shift Solenoid SLT Status - SLU Solenoid Status Shift Solenoid SLU Status - AT Fluid Flex lock-up judder judgment - FOR MEXICO MODELS Tester Display Measure Item Diagnostic Note Vehicle Speed Vehicle speed Speed indicated on speedometer Engine Speed Engine speed - Calculate Load Calculated load Calculated load by ECM Vehicle Load Vehicle load - MAF Mass air flow volume If approximately 0.0 g/sec: Mass air flow meter power source circuit open or short VG circuit open or short If 271.0 g/sec or more: E2G circuit open Atmosphere Pressure Atmospheric pressure Equivalent to atmospheric pressure Coolant Temp Engine coolant temperature If -40°C, sensor circuit open If 135°C or more, sensor circuit shorted Intake Air Intake air temperature If -40°C, sensor circuit open If 128°C or more, sensor circuit shorted Engine Run Time Accumulated engine running time - Initial Engine Coolant Temp Engine coolant temperature at engine start - Initial Intake Air Temp Intake air temperature at engine start - Battery Voltage Battery voltage - Accel Sens. No. 1 Volt % Absolute Accelerator Pedal Position (APP) No. 1 - Accel Sens. No. 2 Volt % Absolute APP No. 2 - Throttle Sensor Volt % Throttle sensor positioning - Throttle Sensor #2 Volt % Throttle sensor positioning #2 - Throttle Sensor Position Throttle position - Throttle Motor DUTY Throttle motor - Injector (Port) Injection period of No. 1 cylinder - Injection Volum (Cylinder1) Injection volume - Fuel Pump/Speed Status Fuel pump status - EVAP (Purge) VSV EVAP purge VSV duty ratio - Evap Purge Flow Ratio of evaporative purge flow to intake air volume - Purge Density Learn Value Learning value of purge density - EVAP Purge VSV EVAP Purge VSV - Target Air-Fuel Ratio Ratio compared to stoichiometric level - AF Lambda B1S1 Fuel trim at A/F sensor - AFS Voltage B1S1 A/F sensor output Performing Control the Injection Volume or Control the Injection Volume for A/F Sensor function of Active Test enables technician to check output voltage of sensor. AFS Current B1S1 A/F sensor output current for sensor 1 Performing Control the Injection Volume or Control the Injection Volume for A/F Sensor function of Active Test enables technician to check output voltage of sensor. O2S B1S2 Heated oxygen sensor output Performing Control the Injection Volume or Control the Injection Volume for A/F Sensor function of Active Test enables technician to check output voltage of sensor. Short FT #1 Short-term fuel trim Short-term fuel compensation used to maintain air-fuel ratio at stoichiometric air-fuel ratio Long FT #1 Long-term fuel trim Overall fuel compensation carried out in long-term to compensate a continual deviation of short-term fuel trim from central value Total FT #1 Total fuel trim - Fuel System Status #1 Fuel system status #1 OL (Open Loop): Has not yet satisfied conditions to go closed loop CL (Closed Loop): Using A/F sensor as feedback for fuel control OLDrive: Open loop due to driving conditions (fuel enrichment) OLFault: Open loop due to detected system fault CLFault: Closed loop but A/F sensor, used for fuel control malfunctioning IGN Advance Ignition advance - Knock Feedback Value Feedback value of knocking - Knock Correct Learn Value Correction learning value of knocking - VVT Control Status #1 VVT control status - Catalyst Temp (B1S1) Estimated catalyst temperature (sensor 1) - Catalyst Temp (B1S2) Estimated catalyst temperature (sensor 2) - Starter Signal Starter switch (STSW) signal status - Starter Control Starter control (STAR) signal - Power Steering Signal Power steering signal - Starter Relay Starter relay (STA) signal - Power Steer. Sig. Record Power steering signal (history) Signal status usually ON until ignition switch turned off ACC Relay ACC CUT relay status - Neutral Position SW Signal Park/Neutral Position (PNP) switch signal status - Stop Light Switch Stop light switch status - A/C Signal A/C signal status - Closed Throttle Position SW Closed throttle position switch - Fuel Cut Condition Fuel cut condition ON: Any fuel cut operation executed Immobiliser Communication Immobiliser communication OFF: Communication malfunctioning, or engine immobiliser system set ON: Communication normal Electrical Load Signal Electrical load signal - Time after DTC Cleared Cumulative time after DTC cleared - Distance from DTC Cleared Accumulated distance from DTC cleared - Warm up Cycle Cleared DTC Warm-up cycle after DTC cleared - TC and TE1 TC and CG (TE1) terminals of DLC3 - Ignition Trig. Count Ignition counter - Cylinder #1 Misfire Count Cylinder #1 misfire count - Cylinder #2 Misfire Count Cylinder #2 misfire count - Cylinder #3 Misfire Count Cylinder #3 misfire count - Cylinder #4 Misfire Count Cylinder #4 misfire count - All Cylinders Misfire Count All cylinders misfire count - Misfire RPM Engine speed when misfire occurred - Misfire Load Engine load when misfire occurred - Misfire Margin Margin to detect engine misfire - Catalyst OT MF F/C Catalyst over temperature Misfire prevention fuel cut - Cat OT MF F/C History Catalyst over temperature Misfire prevention fuel cut history: - Cat OT MF F/C Cylinder #1 Display of fuel cut operation in No. 1 cylinder (if certain level of misfire malfunction is detected) - Cat OT MF F/C Cylinder #2 Display of fuel cut operation in No. 2 cylinder (if certain level of misfire malfunction is detected) - Cat OT MF F/C Cylinder #3 Display of fuel cut operation in No. 3 cylinder (if certain level of misfire malfunction is detected) - Cat OT MF F/C Cylinder #4 Display of fuel cut operation in No. 4 cylinder (if certain level of misfire malfunction is detected) - Electric Fan Motor Electric fan motor - Idle Fuel Cut Fuel cut idle ON: when throttle valve fully closed and engine speed over 3500 rpm FC TAU Fuel cut during very light load Fuel cut being performed under very light load to prevent engine combustion from becoming incomplete

DATA LIST / ACTIVE TEST

  1. DATA LIST HINT: By reading the Data List displayed on a Techstream, values can be checked, including those of the switches, sensors, and actuators, without removing any parts. Reading the Data List as the first step of troubleshooting is one method of shortening diagnostic time. NOTE: In the table below, the values listed under Normal Condition are for reference only. Do not depend solely on these values when determining whether or not a part is faulty. Warm up the engine. Turn the ignition switch off. Connect the Techstream to the DLC3. Turn the ignition switch to ON. Turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Data List. Check the values by referring to the table below. Tester Display Measurement Item/Range Normal Condition *1 Diagnostic Note Vehicle Speed Vehicle speed: Min.: 0 km/h (0 mph), Max.: 255 km/h (158.4 mph) Actual vehicle speed Speed indicated on speedometer Engine Speed Engine speed: Min.: 0 rpm, Max.: 16383.75 rpm 550 to 650 rpm: Idling (for M/T) 650 to 750 rpm: Idling (for A/T) - Calculate Load Calculated load by ECM: Min.: 0%, Max.: 100% 15 to 35%: Idling 15 to 35%: Running without load at 2500 rpm - Vehicle Load Vehicle load: Min.: 0%, Max.: 25700% Actual vehicle load - MAF Air flow rate from Mass Air Flow (MAF) meter: Min.: 0 gm/sec, Max.: 655.35 gm/sec 1 to 3 gm/sec: Idling 2 to 6 gm/sec: Running without load at 2500 rpm If value approximately 0.0 gm/sec: MAF meter power source circuit open VG circuit open or short If value 160.0 gm/sec or more: E2G circuit open Atmosphere Pressure Atmospheric pressure: Min.: 0 kPa, Max.: 255 kPa Approximately 100 kPa: Ignition switch ON - Coolant Temp Engine coolant temperature: Min.: -40°C, Max.: 140°C 80 to 100°C (176 to 212°F): After warming up If -40°C (-40°F): sensor circuit open If 135°C (275°F) or more: sensor circuit shorted Intake Air Intake air temperature: Min.: -40°C, Max.: 140°C Equivalent to ambient air temperature If -40°C (-40°F): sensor circuit open If 128°C (262°F) or more: sensor circuit shorted Ambient Temperature Ambient air temperature Min.: -40°C, Max.: 215°C Equivalent to ambient air temperature: Ignition switch ON - Engine Run Time Engine run time: Min.: 0 second, Max.: 65535 s Time after engine start - Initial Engine Coolant Temp Engine coolant temperature at engine start: Min.: -40°C, Max.: 119.3°C Close to ambient air temperature - Initial Intake Air Temp Intake air temperature at engine start: Min.: -40°C, Max.: 119.3°C Close to ambient air temperature - Battery Voltage Battery voltage: Min.: 0 V, Max.: 65.535 V 11 to 14 V: Ignition switch ON - Accelerator Position Accelerator pedal position: Min.: 0%, Max.: 399.9% Actual accelerator pedal position - Accel Sens. No. 1 Volt % Absolute Accelerator Pedal Position (APP) No. 1: Min.: 0%, Max.: 100% 10 to 22%: Accelerator pedal released 52 to 90%: Accelerator pedal fully depressed Read value with ignition switch ON (Do not start engine) Accel Sens. No. 2 Volt % Absolute APP No. 2: Min.: 0%, Max.: 100% 24 to 40%: Accelerator pedal released 68 to 100%: Accelerator pedal fully depressed Read value with ignition switch ON (Do not start engine) Accel Sensor Out No. 1 APP sensor No. 1 voltage: Min.: 0 V, Max.: 4.98 V 0.5 to 1.1 V: Accelerator pedal released 2.6 to 4.5 V: Accelerator pedal fully depressed Read value with ignition switch ON (Do not start engine) Accel Sensor Out No. 2 APP sensor No. 2 voltage: Min.: 0 V, Max.: 4.98 V 1.2 to 2.0 V: Accelerator pedal released 3.4 to 4.7 V: Accelerator pedal fully depressed Read value with ignition switch ON (Do not start engine) Accelerator Idle Position Whether or not accelerator pedal position sensor detecting idle: ON or OFF ON: Idling - Accel Fully Close Learn #1 Accelerator fully closed learning value No. 1: Min.: 0 deg, Max.: 124.5 deg - ETCS service data Accel Fully Close Learn #2 Accelerator fully closed learning value No. 2: Min.: 0 deg, Max.: 124.5 deg - ETCS service data Throttle Sensor Volt % Throttle position sensor: Min.: 0%, Max.: 100% 10 to 22%: Throttle fully closed 64 to 96%: Throttle fully open Calculated value based on VTA1 Read value with ignition switch ON (Do not start engine) Throttle Sensor #2 Volt % Throttle position No. 2 sensor: Min.: 0%, Max.: 100% 42 to 62%: Throttle fully closed 92 to 100%: Throttle fully open Calculated value based on VTA2 Read value with ignition switch ON (Do not start engine) ST1 Brake pedal signal: ON or OFF ON: Brake pedal depressed - System Guard System guard: ON or OFF - ETCS service data Open Side Malfunction Open side malfunction: ON or OFF - ETCS service data Throttle Idle Position Whether or not throttle position sensor detecting idle: ON or OFF ON: Idling - Throttle Require Position Throttle requirement position: Min.: 0 V, Max.: 4.98 V 0.5 to 1.1 V: Idling - Throttle Sensor Position *2 Throttle position: Min.: 0%, Max.: 100% 0%: Throttle fully closed 50 to 80%: Throttle fully open Recognition value for throttle opening angle on ECM Read value with ignition switch ON (Do not start engine) Throttle Position No. 1 Throttle position sensor No. 1 output voltage: Min.: 0 V, Max.: 4.98 V 0.5 to 1.1 V: Throttle fully closed 3.2 to 4.8 V: Throttle fully open 0.6 to 1.4 V: Fail-safe operating Read value with ignition switch ON (Do not start engine) Throttle Position No. 2 Throttle position sensor No. 2 output voltage: Min.: 0 V, Max.: 4.98 V 2.1 to 3.1 V: Throttle fully closed 4.6 to 5.0 V: Throttle fully open 2.1 to 3.1 V: Fail-safe operating Read value with ignition switch ON (Do not start engine) Throttle Position Command Throttle position command value: Min.: 0 V, Max.: 4.98 V 0.5 to 4.8 V Read value with ignition switch ON (Do not start engine) Throttle Sens Open Pos #1 Throttle sensor opener position No. 1: Min.: 0 V, Max.: 4.98 V 0.6 to 1.4 V ETCS service data Throttle Sens Open Pos #2 Throttle sensor opener position No. 2: Min.: 0 V, Max.: 4.98 V 1.7 to 2.5 V ETCS service data Throttle Motor Current Throttle actuator current: Min.: 0 A, Max.: 19.9 A 0 to 3.0 A: Idling - Throttle Motor DUTY Throttle actuator: Min.: 0%, Max.: 100% 0.5 to 40%: Idling - Throttle Motor Current Throttle actuator current: Min.: 0 A, Max.: 19.9 A - ETCS service data Normal: Fixed at 0.000 A Throttle Motor Open Duty Throttle actuator opening duty ratio: Min.: 0%, Max.: 255% - ETCS service data Normal: Fixed at 0% Throttle Motor Close Duty Throttle actuator closed duty ratio: Min.: 0%, Max.: 255% - ETCS service data Normal: Fixed at 0% Throttle Motor Duty (Open) Throttle actuator duty ratio (open): Min.: 0%, Max.: 255% 0 to 40%: During idling ETCS service data Throttle Motor Duty (Close) Throttle actuator duty ratio (closed): Min.: 0%, Max.: 255% 0 to 40%: During idling ETCS service data Throttle Fully Close Learn Throttle valve fully closed (learned value): Min.: 0 V, Max.: 4.98 V 0.4 to 1.0 V: Accelerator pedal released - +BM Voltage +BM voltage: Min.: 0 V, Max.: 79.998 V 11 to 14 V: Ignition switch ON and system normal ETCS service data Actuator Power Supply Actuator power supply: ON or OFF ON: Idling ETCS service data Throttle Position Throttle valve opening angle: Min.: 0 deg, Max.: 499.99 deg - Reference: Check the value when the engine stalls, is difficult to start, or idles roughly ISC Flow Flow rate calculated using information from each sensor: Min.: 0 L/s, Max.: 79.99 L/s - Reference: Check the value when the engine stalls, is difficult to start, or idles roughly ISC Position Requested opening amount calculated using ISC control: Min.: 0 deg, Max.: 499.99 deg - Reference: Check the value when the engine stalls, is difficult to start, or idles roughly This is the throttle valve opening amount while the engine is idling (the throttle valve opening amount necessary to maintain ISC air flow). ISC Feedback Value ISC feedback compensation amount: Min.: -40 L/s, Max.: 39.99 L/s - Reference: Check the value when the engine stalls, is difficult to start, or idles roughly ISC Learning Value ISC learned compensation amount: Min.: -40 L/s, Max.: 39.99 L/s - Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Electric Load Feedback Val Compensation flow rate according to electrical load: Min.: -40 L/s, Max.: 39.99 L/s - Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Air Conditioner FB Val Compensation flow rate according to air conditioner load: Min.: -40 L/s, Max.: 39.99 L/s - Reference: Check the value when the engine stalls, is difficult to start, or idles roughly PS Feedback Val Compensation flow rate according to power steering load: Min.: -40 L/s, Max.: 39.99 L/s - Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Low Revolution Control Low engine speed control operation state: ON or OFF - Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Neutral Control Neutral control operation state: ON or OFF - Reference: Check the value when the engine stalls, is difficult to start, or idles roughly N Range Status Shift lever N status: ON or OFF - Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Eng Stall Control FB Flow Intake air compensation flow rate: Min.: -40 L/s, Max.: 39.99 L/s - Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Deposit Loss Flow Flow loss due to deposits: Min.: -40 L/s, Max.: 39.99 L/s - Reference: Check the value when the engine stalls, is difficult to start, or idles roughly This value indicates the amount of compensation for a decrease in flow passage area due to the buildup of deposits on the throttle valve. *3 Injector (Port) Injection period of No. 1 cylinder: Min.: 0 μs, Max.: 65535 μs 1000 to 3000 μs: Idling - Injection Volum (Cylinder1) Injection volume (Cylinder 1): Min.: 0 ml, Max.: 2.047 ml 0 to 0.15 ml: Idling Quantity of fuel injection volume for 10 times Fuel Pump/Speed Status Fuel pump status: ON or OFF ON: Engine running - Vacuum Pump Key-off EVAP system leak detection pump status: ON or OFF - - EVAP (Purge) VSV EVAP (PURGE) VSV control duty: Min.: 0%, Max.: 100% 10 to 50%: Idling Order signal from ECM Evap Purge Flow Ratio of evaporative purge flow to intake air volume: Min.: 0%, Max.: 399.9% 0 to 10%: Idling - Purge Density Learn Value Learning value of purge density: Min.: -200, Max.: 199.993 -40 to 10: Idling - Vapor Pressure Pump Vapor pressure: Min.: 0 kPa (0 mmHg), Max.: 1441.77 kPa (10814.17 mmHg) Nearly atmospheric pressure: Fuel tank cap removed EVAP system pressure monitored by canister pressure sensor Vapor pressure (calculated) Vapor pressure (calculated): Min.: -720.896 kPa (-5407.167 mmHg), Max.: 720.874 kPa (5407.002 mmHg) Nearly atmospheric pressure: Fuel tank cap removed EVAP system pressure monitored by canister pressure sensor EVAP System Vent Valve Key-off EVAP system vent valve status: ON or OFF - - EVAP Purge VSV Purge VSV status: ON or OFF - - Purge Cut VSV Duty Purge VSV actuate duty: Min.: 0%, Max.: 399.9% - - Target Air-Fuel Ratio Ratio compared to stoichiometric level: Min.: 0, Max.: 1.999 0.8 to 1.2: Idling - AF Lambda B1S1 Short-term fuel trim associated with sensor 1: Min.: 0, Max.: 1.999 Value less than 1 (0.000 to 0.999) = Rich Stoichiometric air-fuel ratio=1 Value greater than 1 (1.001 to 1.999) = Lean - AFS Voltage B1S1 A/F sensor output voltage for sensor 1: Min.: 0 V Max.: 7.999 V 2.8 to 3.8 V: Idling Performing the Control the Injection Volume or Control the Injection Volume for A/F Sensor function of the Active Test enables the technician to check voltage output of the sensor. AFS Current B1S1 A/F sensor output current for sensor 1: Min.: -128 mA, Max.: 127.99 mA - Performing the Control the Injection Volume or Control the Injection Volume for A/F Sensor function of the Active Test enables the technician to check voltage output of the sensor. A/F Heater Duty #1 A/F heater duty ratio (for Bank 1): Min.: 0%, Max.: 399.9% 0 to 100% - O2S B1S2 Heated oxygen sensor output voltage for sensor 2: Min.: 0 V Max.: 1.275 V 0.1 to 0.9 V: Driving at 70 km/h (44 mph) Performing the Control the Injection Volume or Control the Injection Volume for A/F Sensor function of the Active Test enables the technician to check voltage output of the sensor. O2S Impedance B1S2 Sub heated oxygen sensor impedance (sensor 2): Min.: 0 ohm, Max.: 21247.68 ohm 5 to 15000 ohm: While vehicle is being driven and engine is warmed up - O2 Heater B1S2 Heated oxygen sensor heater (for Bank 1 Sensor 2): Active or Not Act - - O2 Heater Curr Val B1S2 Heated oxygen sensor current (for Bank 1 Sensor 2): Min.: 0 A, Max.: 4.9 A - - Short FT #1 Short-term fuel trim: Min.: -100%, Max.: 99.2% -20 to 20% Short-term fuel compensation used to maintain air-fuel ratio at stoichiometric air-fuel ratio Long FT #1 Long-term fuel trim: Min.: -100%, Max.: 99.2% -20 to 20% Overall fuel compensation carried out in long-term to compensate for continual deviation of short-term fuel trim from central value Total FT #1 Total fuel trim value for fuel system: Min.: -0.5, Max.: 0.496 -0.2 to 0.2 - Fuel System Status #1 Fuel system status bank 1: OL, CL, OLDrive, OLFault or CLFault CL: Idling after warming up OL (Open Loop): Has not yet satisfied conditions to go closed loop CL (Closed Loop): Using A/F sensor as feedback for fuel control OLDrive: Open loop due to driving conditions (fuel enrichment) OLFault: Open loop due to detected system fault CLFault: Closed loop but A/F sensor, used for fuel control malfunctioning IGN Advance Ignition timing advance for No. 1 cylinder: Min.: -64 deg, Max.: 63.5 deg BTDC 0 to 14 deg: Idling - Knock Feedback Value Knock feedback value: Min.: -1024° CA, Max.: 1023.9° CA -20 to 0°CA: Driving at 70 km/h (44 mph) Service data Knock Correct Learn Value Knock correction learning value: Min.: -1024° CA, Max.: 1023.9° CA 0 to 20°CA: Driving at 70 km/h (44 mph) Service data Idle Spark Advn Ctrl #1 Individual cylinder timing advance compensation amount (No. 1): Min.: 0° CA, Max.: 15.93° CA - Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Idle Spark Advn Ctrl #2 Individual cylinder timing advance compensation amount (No. 2): Min.: 0° CA, Max.: 15.93° CA - Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Idle Spark Advn Ctrl #3 Individual cylinder timing advance compensation amount (No. 3): Min.: 0° CA, Max.: 15.93° CA - Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Idle Spark Advn Ctrl #4 Individual cylinder timing advance compensation amount (No. 4): Min.: 0° CA, Max.: 15.93° CA - Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Actual VVT Angle #1 Actual VVT displacement angle (bank 1): Min.: 0°FR, Max.: 639.99° CA - This item used for freeze frame data only. VVT Control Status #1 VVT control #1 status: ON or OFF - - VVT Advance Fail VVT control failure status: ON or OFF ON: VVT control failure - VVT Aim Angle #1 *4 VVT aim angle (bank 1): Min.: 0%, Max.: 399.9% 0 to 100% VVT duty signal value during intrusive operation VVT Change Angle #1 *4 VVT change angle (bank 1): Min.: 0 degFR, Max.: 639.9 degFR 0 to 56 degFR Displacement angle during intrusive operation VVT OCV Duty #1 *4 VVT OCV operation duty: Min.: 0%, Max.: 399.9% 0 to 100% Requested duty value for intrusive operation VN Turbo Type VN turbo type Not Avl, Commo, Vacuum or CAN Com Not Avl - Catalyst Temp B1S1 Estimated catalyst temperature (sensor 1): Min.: -40°C, Max.: 6513.5°C - - Catalyst Temp B1S2 Estimated catalyst temperature (sensor 2): Min.: -40°C, Max.: 6513.5°C - - Starter Signal Starter relay (STA) signal: ON or OFF ON: Cranking - Starter Control Starter switch (STSW) signal: Open or Close Open: Cranking - Power Steering Signal Power steering signal: ON or OFF ON: Power steering operation - Starter Relay Starter control (STAR) signal: ON or OFF ON: Cranking - ACC Relay ACC CUT relay status: ON or OFF ON: Cranking - Neutral Position SW Signal PNP switch status: ON or OFF ON: P or N position - Clutch Switch Clutch switch status: ON or OFF ON: Clutch pedal depressed Clutch switch (upper) signal status for Cruise Control System Clutch Start SW Clutch switch status: ON or OFF ON: Clutch pedal fully depressed Clutch start switch (lower) signal status for engine cranking Stop Light Switch Stop light switch: ON or OFF ON: Brake pedal depressed - A/C Signal A/C signal: ON or OFF ON: A/C ON - Closed Throttle Position SW Closed throttle position switch: ON or OFF ON: Throttle fully closed OFF: Throttle open - Fuel Cut Condition Fuel cut condition: ON or OFF ON: Any fuel cut operation executed - Immobiliser Communication Immobiliser communication: ON or OFF - OFF: Communication malfunctioning, or engine immobiliser system set ON: Communication normal Check Mode Check mode: ON or OFF ON: Check mode ON Refer to «CHECK MODE PROCEDURE»(ref-472422-S04335344022012051500000) SPD Test Result Check mode result for vehicle speed sensor: Compl or Incmpl - - Misfire Test Result Check mode result for misfire monitor: Compl or Incmpl - - OXS1 Test Result Check mode result for HO2 sensor: Compl or Incmpl - - A/F Test Results #1 Check mode result for air-fuel ratio sensor: Compl or Incmpl - - Complete Parts Monitor Comprehensive component monitor: Not Avl or Avail - - Fuel System Monitor Fuel system monitor: Not Avl or Avail - - Misfire Monitor Misfire monitor: Not Avl or Avail - - EGR/VVT Monitor EGR/VVT Monitor: Not Avl or Avail - - EGR/VVT Monitor EGR/VVT Monitor: Compl or Incmpl - - O2S(A/FS) Heater Monitor O2S (A/FS) heater monitor: Not Avl or Avail - - O2S(A/FS) Heater Monitor O2S (A/FS) heater monitor: Compl or Incmpl - - O2S(A/FS) Monitor O2S (A/FS) monitor: Not Avl or Avail - - O2S(A/FS) Monitor O2S (A/FS) monitor: Compl or Incmpl - - A/C Monitor A/C monitor: Not Avl or Avail - - A/C Monitor A/C monitor: Compl or Incmpl - - 2nd Air Monitor 2nd air monitor: Not Avl or Avail - - 2nd Air Monitor 2nd air monitor: Compl or Incmpl - - EVAP Monitor EVAP monitor: Not Avl or Avail - - EVAP Monitor EVAP monitor: Compl or Incmpl - - Heated Catalyst Monitor Heated catalyst monitor: Not Avl or Avail - - Heated Catalyst Monitor Heated catalyst monitor: Compl or Incmpl - - Catalyst Monitor Catalyst monitor: Not Avl or Avail - - Catalyst Monitor Catalyst monitor: Compl or Incmpl - - Component Monitor ENA Comprehensive component monitor: Unable or Enable - - Component Monitor CMPL Comprehensive component monitor: Compl or Incmpl - - Fuel System Monitor ENA Fuel system monitor: Unable or Enable - - Fuel System Monitor CMPL Fuel system monitor: Compl or Incmpl - - Misfire Monitor ENA Misfire monitor: Unable or Enable - - Misfire Monitor CMPL Misfire monitor: Compl or Incmpl - - EGR/VVT Monitor ENA EGR monitor: Unable or Enable - - EGR/VVT Monitor CMPL EGR monitor: Compl or Incmpl - - Heater Monitor ENA O2S (A/FS) heater monitor: Unable or Enable - - Heater Monitor CMPL O2S (A/FS) heater monitor: Compl or Incmpl - - O2S(A/FS) Monitor ENA O2S (A/FS) monitor: Unable or Enable - - O2S(A/FS) Monitor CMPL O2S (A/FS) monitor: Compl or Incmpl - - A/C Monitor ENA A/C monitor: Unable or Enable - - A/C Monitor CMPL A/C monitor: Compl or Incmpl - - 2nd Air Monitor ENA 2nd air monitor: Unable or Enable - - 2nd Air Monitor CMPL 2nd air monitor: Compl or Incmpl - - EVAP Monitor ENA EVAP monitor: Unable or Enable - - EVAP Monitor CMPL EVAP monitor: Compl or Incmpl - - Heated Cat Monitor ENA Heated catalyst monitor: Unable or Enable - - Heated Cat Monitor CMPL Heated catalyst monitor: Compl or Incmpl - - Catalyst Monitor ENA Catalyst monitor: Unable or Enable - - Catalyst Monitor CMPL Catalyst monitor: Compl or Incmpl - - TC Terminal TC terminal status: ON or OFF OFF: TC and CG terminals of the DLC3 are unconnected - # Codes (Include History) Number of detected DTCs: Min.: 0, Max.: 255 - - MIL MIL status: ON or OFF ON: MIL ON - MIL ON Run Distance MIL ON Run Distance: Min.: 0 km, Max.: 65535 km Distance after DTC detected - Running Time from MIL ON Running time from MIL ON: Min.: 0 minute, Max.: 65535 min Equivalent to running time after MIL ON - Time after DTC Cleared Time after DTC cleared: Min.: 0 minute, Max.: 65535 min Equivalent to time after DTCs cleared - Distance from DTC Cleared Distance traveled since DTCs cleared: Min.: 0 km, Max.: 65535 km Equivalent to drive distance after DTCs cleared - Warm up Cycle Cleared DTC Warm-up cycle after DTC cleared: Min.: 0, Max.: 255 - - Dist Batt Cable Disconnect Distance after battery cable disconnected: Min.: 0 km, Max.: 65535 km Total distance vehicle driven after battery cable disconnected - IG OFF Elapsed Time Time after ignition switch off: Min.: 0 minutes, Max.: 655350 min Cumulative time after ignition switch off - OBD Requirements OBD requirement OBD2 - Number of Emission DTC Number of emission-related DTCs Min.: 0, Max.: 127 - - TC and TE1 TC and CG (TE1) terminal of DLC3: ON or OFF - - Ignition Trig. Count Ignition counter: Min.: 0, Max.: 65535 0 to 400 - Cylinder #1 Misfire Count Misfire count of cylinder 1: Min.: 0, Max.: 255 0 - Cylinder #2 Misfire Count Misfire count of cylinder 2: Min.: 0, Max.: 255 0 - Cylinder #3 Misfire Count Misfire count of cylinder 3: Min.: 0, Max.: 255 0 - Cylinder #4 Misfire Count Misfire count of cylinder 4: Min.: 0, Max.: 255 0 - All Cylinders Misfire Count All cylinders misfire: Min.: 0, Max.: 255 0 - Misfire RPM Engine speed when misfire occur: Min.: 0 rpm, Max.: 6375 rpm - - Misfire Load Engine load when misfire occur: Min.: 0 g/rev, Max.: 3.98 g/rev - - Misfire Margin Margin to detect engine misfire: Min.: -128%, Max.: 127% -100 to 99.22% Misfire detecting margin Catalyst OT MF F/C Catalyst over temperature misfire prevention F/C: Not Avl or Avail Avail: Cat OT MF F/C available Not Avl: Cat OT MF F/C not available - Cat OT MF F/C History Catalyst over temperature misfire prevention F/C history: ON or OFF ON: Fuel cut operation history exists - Cat OT MF F/C Cylinder #1 Display of fuel cut operation in No. 1 cylinder (if certain level of misfire malfunction is detected): ON or OFF ON: Fuel cut is operating - Cat OT MF F/C Cylinder #2 Display of fuel cut operation in No. 2 cylinder (if certain level of misfire malfunction is detected): ON or OFF ON: Fuel cut is operating - Cat OT MF F/C Cylinder #3 Display of fuel cut operation in No. 3 cylinder (if certain level of misfire malfunction is detected): ON or OFF ON: Fuel cut is operating - Cat OT MF F/C Cylinder #4 Display of fuel cut operation in No. 4 cylinder (if certain level of misfire malfunction is detected): ON or OFF ON: Fuel cut is operating - Engine Speed (Starter Off) Engine speed when starter off: Min.: 0 rpm, Max.: 51199 rpm - Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Starter Count Number of times starter turned on after ignition switch turned to ON: Min.: 0, Max.: 255 - Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Run Dist of Previous Trip Distance driven during previous trip: Min.: 0 km, Max.: 655.35 km - Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Before 5 seconds elapse after starting the engine, which is DTC P1604 (Startability Malfunction) detection duration, this parameter indicates the distance driven during the previous trip. After 5 seconds elapse after starting the engine, this parameter indicates the distance driven during the current trip calculated from the vehicle speed signal. *5 Engine Starting Time Time elapsed after engine started (interval between ignition switch ON and off): Min.: 0 ms, Max.: 655350 ms - Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Previous Trip Coolant Temp Engine coolant temperature during previous trip: Min.: -40°C, Max.: 215°C - Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Previous Trip Intake Temp Intake air temperature during previous trip: Min.: -40°C, Max.: 215°C - Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Engine Oil Temperature Engine oil temperature (estimated temperature): Min.: -40°C, Max.: 215°C - Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Previous Trip Eng Oil Temp Engine oil temperature during previous trip: Min.: -40°C, Max.: 215°C - Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Ambient Temp for A/C Ambient temperature for A/C: Min.: -40°C, Max.: 215°C - Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Previous Trip Ambient Temp Ambient temperature during previous trip: Min.: -40°C, Max.: 215°C - Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Engine Start Hesitation History of hesitation during engine start: ON or OFF - Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Low Rev for Eng Start History of low engine speed after engine start: ON or OFF - Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Minimum Engine Speed Minimum engine speed: Min.: 0 rpm, Max.: 51199 rpm - Reference: Check the value when the engine stalls, is difficult to start, or idles roughly Fuel Cut Elps Time Elapsed time since Fuel Cut due to high engine speed. Min.: 0 sec, Max.: 68746 sec - The time elapsed after high engine speed has occurred (More than the rpm at which fuel cut occurs + 500 rpm). Electric Fan Motor Electric fan motor: ON or OFF ON: Electric fan motor operating - Idle Fuel Cut Prohibit Idle fuel cut control prohibition status: ON or OFF OFF: Normal engine operation See Active Test item "Control the Idle Fuel Cut Prohibit" Idle Fuel Cut Fuel cut idle: ON or OFF ON: Fuel cut operation Idle Fuel Cut = "ON" when throttle valve fully closed and engine speed over 3500 rpm FC TAU Fuel cut TAU (Fuel cut during very light load): ON or OFF ON: Fuel cut operating Fuel cut being performed under very light load to prevent engine combustion from becoming incomplete Immobiliser Fuel Cut Status of the immobiliser fuel cut: ON or OFF OFF: Engine running - Electrical Load Signal 1 Electrical load signal (ELS terminal input): ON or OFF ON: Tail light switch ON - Electrical Load Signal 2 Electrical load signal (ELS3 terminal input): ON or OFF ON: Defogger switch ON - Model Code Identifying model code NCP9# - Engine Type Identifying engine type 1NZFE - Transmission Type Identifying transmission type MT or ECT 4th - Cylinder Number Identifying cylinder number: Min.: 0, Max.: 255 4 - Destination Identifying destination A (America) - Model Year Identifying model year: Min.: 1900, Max.: 2155 20## - System Identification System identification Gasoline (gasoline engine) - Engine Speed of Cyl #1 Engine RPM for cylinder 1: Min.: 0 rpm, Max.: 51199 rpm - Output only when Check the Cylinder Compression performed using Active Test 51199 rpm: Not performed Active Test Engine Speed of Cyl #2 Engine RPM for cylinder 2: Min.: 0 rpm, Max.: 51199 rpm - Output only when Check the Cylinder Compression performed using Active Test 51199 rpm: Not performed Active Test Engine Speed of Cyl #3 Engine RPM for cylinder 3: Min.: 0 rpm, Max.: 51199 rpm - Output only when Check the Cylinder Compression performed using Active Test 51199 rpm: Not performed Active Test Engine Speed of Cyl #4 Engine RPM for cylinder 4: Min.: 0 rpm, Max.: 51199 rpm - Output only when Check the Cylinder Compression performed using Active Test 51199 rpm: Not performed Active Test Av Engine Speed of All Cyl Engine RPM for all cylinders: Min.: 0 rpm, Max.: 51199 rpm - Output only when Check the Cylinder Compression performed using Active Test 51199 rpm: Not performed Active Test SPD (NT) Input shaft speed (inside the transaxle): Min.: 0 rpm, Max.: 12750 rpm Equal to engine speed: Lock-Up ON (After warming up engine) Nearly equal to engine speed: Lock-Up OFF (Idling at P or N position) 0 rpm: Vehicle stopped in D position Only for A/T models Shift SW Status (P Range) PNP switch status (P Range): ON or OFF Shift lever is: In P: ON Not in P: OFF Only for A/T models When shift lever position displayed on Techstream differs from actual position, adjustment of PNP switch or shift cable may be incorrect Shift SW Status (R Range) PNP switch status (R Range): ON or OFF Shift lever is: In R: ON Not in R: OFF Only for A/T models When shift lever position displayed on Techstream differs from actual position, adjustment of PNP switch or shift cable may be incorrect Shift SW Status (2 Range) PNP switch status (2nd Range): ON or OFF Shift lever is: In 2: ON Not in 2: OFF Only for A/T models When shift lever position displayed on Techstream differs from actual position, adjustment of PNP switch or shift cable may be incorrect Shift SW Status (L Range) PNP switch status (L Range): ON or OFF Shift lever is: In L: ON Not in L: OFF Only for A/T models When shift lever position displayed on Techstream differs from actual position, adjustment of PNP switch or shift cable may be incorrect Shift SW Status (N Range) PNP switch status (N Range): ON or OFF Shift lever is: In N: ON Not in N: OFF Only for A/T models When shift lever position displayed on Techstream differs from actual position, adjustment of PNP switch or shift cable may be incorrect Shift SW Status (D Range) PNP switch status (D Range): ON or OFF Shift lever is: In D: ON Not in D: OFF Only for A/T models When shift lever position displayed on Techstream differs from actual position, adjustment of PNP switch or shift cable may be incorrect Shift SW Status (3 Range) PNP switch status (3rd Range): ON or OFF Shift lever is: In 3: ON Not in 3: OFF Only for A/T models When shift lever position displayed on Techstream differs from actual position, adjustment of PNP switch or shift cable may be incorrect A/T Oil Temperature 1 No. 1 ATF temperature sensor value: Min.: -40°C, Max.: 215°C Equal to ambient temperature while engine is cold If value is -40°C (-40°F) or 215°C (419°F), No. 1 ATF temperature sensor circuit is open or shorted Lock Up Transaxle lock-up status: ON or OFF Lock-up is: Operating: ON Not operating: OFF - ST Solenoid Status Shift Solenoid ST Status ON or OFF OFF --> ON --> OFF: Up-shifting and down-shifting between 3rd and 4th gears while driving - Shift Status ECM Gearshift Command: 1st, 2nd, 3rd or 4th Shift lever position; L: 1st 2: 1st or 2nd 3: 1st, 2nd or 3rd D: 1st, 2nd, 3rd or 4th - SLT Solenoid Status Shift Solenoid SLT Status: ON or OFF OFF: Accelerator pedal is depressed ON: Accelerator pedal is released - SLU Solenoid Status Shift Solenoid SLU Status: ON or OFF Lock Up: ON Except Lock Up: OFF - AT Fluid Flex lock-up judder judgment: ON or OFF ON: Judder judgment occurs OFF: Judder judgment does not occur - HINT: *1: If no idling conditions are specified, the transmission gear selector lever should be in the N or P position (neutral), and the A/C switch and all accessory switches should be OFF. *2: Excluding throttle valve opening percentage due to Idle Speed Control (ISC). *3: When the ISC learned value is initialized by disconnecting the battery negative terminal or removing the fuses (EFI and ETCS fuses), perform the following procedures in order to quickly relearn the Deposit Loss Flow value. After the Deposit Loss Flow has been relearned, gradual fine adjustments will continue automatically. Start the engine cold and allow the engine to idle. After the engine is warmed up (engine coolant temperature is above 80°C [176°F]), allow the engine to idle for an additional 5 minutes. Turn the ignition switch off and wait for 30 seconds. Start the engine again, and allow the engine to idle for 5 minutes. *4: Data List values are only displayed when performing the following Active Tests: Control the VVT Linear (Bank1), and Control the VVT System (Bank1). For other Active Tests, the Data List value will be 0. *5: Run Dist of Previous Trip in freeze frame data which were present when the startability malfunction occurred (DTC P1604 detected) indicates the distance driven during the previous trip, but in all other cases, such as for the snapshot data of Data List (real-time measurements), or for freeze frame data which were present when the DTCs other than P1604 were detected, the value indicates the distance driven during the current trip. FOR MEXICO MODELS Tester Display Measurement Item/Range Normal Condition *1 Diagnostic Note Vehicle Speed Vehicle speed: Min.: 0 km/h, Max.: 255 km/h Actual vehicle speed Speed indicated on speedometer Engine Speed Engine speed: Min.: 0 rpm, Max.: 16383.75 rpm 550 to 650 rpm: Idling (M/T) 650 to 750 rpm: Idling (A/T) - Calculate Load Calculated load by ECM: Min.: 0%, Max.: 100% 15 to 35%: Idling 15 to 35%: Running without load at 2500 rpm - Vehicle Load Vehicle load: Min.: 0%, Max.: 25700% Actual vehicle load - MAF Air flow rate from Mass Air Flow (MAF) meter: Min.: 0 gm/sec, Max.: 655.35 gm/sec 1 to 3 gm/sec: Idling 2 to 6 gm/sec: Running without load at 2500 rpm If value approximately 0.0 gm/sec: MAF meter power source circuit open VG circuit open or short If value 160.0 gm/sec or more: E2G circuit open Atmosphere Pressure Atmospheric pressure: Min.: 0 kPa, Max.: 255 kPa Approximately 100 kPa: Ignition switch ON - Coolant Temp Engine coolant temperature: Min.: -40°C, Max.: 140°C 80 to 100°C (176 to 212°F): After warming up If -40°C (-40°F): sensor circuit open If 135°C (275°F) or more: sensor circuit shorted Intake Air Intake air temperature: Min.: -40°C, Max.: 140°C Equivalent to ambient air temperature If -40°C (-40°F): sensor circuit open If 128°C (262°F) or more: sensor circuit shorted Engine Run Time Engine run time: Min.: 0 second, Max.: 65535 seconds Time after engine start - Initial Engine Coolant Temp Engine coolant temperature at engine start: Min.: -40°C, Max.: 120°C Close to ambient air temperature - Initial Intake Air Temp Intake air temperature at engine start: Min.: -40°C, Max.: 120°C Close to ambient air temperature - Battery Voltage Battery voltage: Min.: 0 V, Max.: 65.535 V 11 to 14 V: Ignition switch ON - Accel Sens. No. 1 Volt % Absolute Accelerator Pedal Position (APP) No. 1: Min.: 0%, Max.: 100% 10 to 22%: Accelerator pedal released 52 to 90%: Accelerator pedal fully depressed Read value with ignition switch ON (Do not start engine) Accel Sens. No. 2 Volt % Absolute APP No. 2: Min.: 0%, Max.: 100% 24 to 40%: Accelerator pedal released 68 to 100%: Accelerator pedal fully depressed Read value with ignition switch ON (Do not start engine) Accel Sensor Out No. 1 APP sensor No. 1 voltage: Min.: 0 V, Max.: 4.98 V 0.5 to 1.1 V: Accelerator pedal released 2.6 to 4.5 V: Accelerator pedal fully depressed Read value with ignition switch ON (Do not start engine) Accel Sensor Out No. 2 APP sensor No. 2 voltage: Min.: 0 V, Max.: 4.98 V 1.2 to 2.0 V: Accelerator pedal released 3.4 to 4.7 V: Accelerator pedal fully depressed Read value with ignition switch ON (Do not start engine) Accelerator Idle Position Whether or not accelerator pedal position sensor detecting idle: ON or OFF ON: Idling - Accel Fully Close #1 (AD) APP sensor No. 1 voltage (AD): Min.: 0 V, Max.: 4.98 V - ETCS service data Accel Fully Close Learn #1 Accelerator fully closed learning value No. 1: Min.: 0 deg, Max.: 124.5 deg - ETCS service data Accel Fully Close Learn #2 Accelerator fully closed learning value No. 2: Min.: 0 deg, Max.: 124.5 deg - ETCS service data Throttle Sensor Volt % Throttle position sensor: Min.: 0%, Max.: 100% 10 to 22%: Throttle fully closed 64 to 96%: Throttle fully open Calculated value based on VTA1 Read value with ignition switch ON (Do not start engine) Throttle Sensor #2 Volt % Throttle position No. 2 sensor: Min.: 0%, Max.: 100% 42 to 62%: Throttle fully closed 92 to 100%: Throttle fully open Calculated value based on VTA2 Read value with ignition switch ON (Do not start engine) ST1 Brake pedal signal: ON or OFF ON: Brake pedal depressed - System Guard System guard: ON or OFF - ETCS service data Open Side Malfunction Open side malfunction: ON or OFF - ETCS service data Throttle Idle Position Whether or not throttle position sensor detecting idle: ON or OFF ON: Idling - Throttle Require Position Throttle requirement position: Min.: 0 V, Max.: 4.98 V 0.5 to 1.1 V: Idling - Throttle Sensor Position *2 Throttle position: Min.: 0%, Max.: 100% 0%: Throttle fully closed 50 to 80%: Throttle fully open Recognition value for throttle opening angle on ECM Read value with ignition switch ON (Do not start engine) Throttle Position No. 1 Throttle position sensor No. 1 output voltage: Min.: 0 V, Max.: 4.98 V 0.5 to 1.1 V: Throttle fully closed 3.2 to 4.8 V: Throttle fully open 0.6 to 1.4 V: Fail-safe operating Read value with ignition switch ON (Do not start engine) Throttle Position No. 2 Throttle position sensor No. 2 output voltage: Min.: 0 V, Max.: 4.98 V 2.1 to 3.1 V: Throttle fully closed 4.6 to 5.0 V: Throttle fully open 2.1 to 3.1 V: Fail-safe operating Read value with ignition switch ON (Do not start engine) Throttle Position Command Throttle position command value: Min.: 0 V, Max.: 4.9804 V 0.5 to 4.8 V Read value with ignition switch ON (Do not start engine) Throttle Sens Open Pos #1 Throttle sensor opener position No. 1: Min.: 0 V, Max.: 4.9804 V 0.6 to 1.4 V ETCS service data Throttle Sens Open Pos #2 Throttle sensor opener position No. 2: Min.: 0 V, Max.: 4.9804 V 1.7 to 2.5 V ETCS service data Throttle Sens Open #1(AD) Throttle position sensor No. 1 output voltage (AD): Min.: 0 V, Max.: 4.9804 V 0.5 to 4.9 V Read value with ignition switch ON (Do not start engine) Throttle Motor Whether or not throttle actuator control permitted: ON or OFF ON: Idling Read value with ignition switch ON (Do not start engine) Throttle Motor Current Throttle actuator current: Min.: 0 A, Max.: 19.9 A 0 to 3.0 A: Idling - Throttle Motor DUTY Throttle actuator: Min.: 0%, Max.: 100% 0.5 to 40%: Idling - Throttle Motor Current Throttle actuator current: Min.: 0 A, Max.: 19.92 A 0 to 3.0 A: Idling - Throttle Motor Open Duty Throttle actuator opening duty ratio: Min.: 0%, Max.: 100% 0 to 40%: During idling When accelerator pedal depressed, duty ratio increased Read value with ignition switch ON (Do not start engine) Throttle Motor Close Duty Throttle actuator closed duty ratio: Min.: 0%, Max.: 100% 0 to 40%: During idling When accelerator pedal released quickly, duty ratio increased Read value with ignition switch ON (Do not start engine) Throttle Motor Duty (Open) Throttle actuator duty ratio (open): Min.: 0%, Max.: 100% 0 to 40%: During idling ETCS service data Throttle Motor Duty (Close) Throttle actuator duty ratio (closed): Min.: 0%, Max.: 100% 0 to 40%: During idling ETCS service data Throttle Fully Close Learn Throttle valve fully closed (learned value): Min.: 0 V, Max.: 4.98 V 0.4 to 1.0 V: Accelerator pedal released - ETCS Actuator Power Whether or not electric throttle control system power inputted: ON or OFF ON: Ignition switch ON and system normal - +BM Voltage +BM voltage: Min.: 0, Max.: 19.9 11 to 14 (V): Ignition switch ON and system normal ETCS service data Actuator Power Supply Actuator power supply: ON or OFF ON: Idling ETCS service data Clutch Current Clutch current: Min.: 0 A, Max.: 2.49 A - - Fail Safe Drive Whether or not fail-safe function executed: ON or OFF ON: ETCS has failed - Fail Safe Drive (Main CPU) Whether or not fail-safe function executed: ON or OFF ON: ETCS has failed - Injector (Port) Injection period of No. 1 cylinder: Min.: 0 ms, Max.: 32.64 ms 1.0 to 3.0 ms: Idling - Injection Volum (Cylinder1) Injection volume (Cylinder 1): Min.: 0 ml, Max.: 2.047 ml 0 to 0.15 ml: Idling Quantity of fuel injection volume for 10 times Fuel Pump/Speed Status Fuel pump status: ON or OFF ON: Engine running - EVAP (Purge) VSV EVAP (PURGE) VSV control duty: Min.: 0%, Max.: 100% 10 to 50%: Idling Order signal from ECM Evap Purge Flow Ratio of evaporative purge flow to intake air volume: Min.: 0%, Max.: 102.3% 0 to 10%: Idling - Purge Density Learn Value Learning value of purge density: Min.: -50, Max.: 349.99 -40 to 10: Idling - EVAP Purge VSV Purge VSV status: ON or OFF - - Target Air-Fuel Ratio Ratio compared to stoichiometric level: Min.: 0, Max.: 1.998 0.8 to 1.2: Idling - AF Lambda B1S1 Short-term fuel trim associated with sensor 1: Min.: 0, Max.: 1.999 Value less than 1 (0.000 to 0.999) = Rich Stoichiometric air-fuel ratio=1 Value greater than 1 (1.001 to 1.999) = Lean - AFS Voltage B1S1 A/F sensor output voltage for sensor 1: Min.: 0 V Max.: 7.999 V 2.8 to 3.8 V: Idling Performing the Control the Injection Volume or Control the Injection Volume for A/F Sensor function of the Active Test enables the technician to check voltage output of the sensor. AFS Current B1S1 A/F sensor output current for sensor 1: Min.: -128 mA, Max.: 127.99 mA - Performing the Control the Injection Volume or Control the Injection Volume for A/F Sensor function of the Active Test enables the technician to check voltage output of the sensor. O2S B1S2 Heated oxygen sensor output voltage for sensor 2: Min.: 0 V Max.: 1.275 V 0.1 to 0.9 V: Driving at 70 km/h (44 mph) Performing the Control the Injection Volume or Control the Injection Volume for A/F Sensor function of the Active Test enables the technician to check voltage output of the sensor. Short FT #1 Short-term fuel trim: Min.: -100%, Max.: 99.2% -20 to 20% Short-term fuel compensation used to maintain air-fuel ratio at stoichiometric air-fuel ratio Long FT #1 Long-term fuel trim: Min.: -100%, Max.: 99.2% -20 to 20% Overall fuel compensation carried out in long-term to compensate for continual deviation of short-term fuel trim from central value Total FT #1 Total fuel trim value for fuel system: Min.: -0.5, Max.: 0.496 -0.2 to 0.2 - Fuel System Status #1 Fuel system status (bank 1): OL or CL or OLDrive or OLFault or CLFault CL: Idling after warming up OL (Open Loop): Has not yet satisfied conditions to go closed loop CL (Closed Loop): Using A/F sensor as feedback for fuel control OLDrive: Open loop due to driving conditions (fuel enrichment) OLFault: Open loop due to detected system fault CLFault: Closed loop but A/F sensor, used for fuel control malfunctioning IGN Advance Ignition timing advance for No. 1 cylinder: Min.: -64 deg, Max.: 63.5 deg BTDC 0 to 14 deg: Idling - Knock Feedback Value Knock feedback value: Min: -64 °CA, Max.: 1983.9 °CA -20 to 0°CA: Driving at 70 km/h (44 mph) Service data Knock Correct Learn Value Knock correction learning value: Min: -64 °CA, Max.: 1983.9 °CA 0 to 20°CA: Driving at 70 km/h (44 mph) Service data VVT Control Status #1 VVT control #1 status: ON or OFF - - VVT Aim Angle #1 *3 VVT aim angle (bank 1): Min.: 0%, Max.: 100% 0 to 80% VVT duty signal value during intrusive operation VVT Change Angle #1 *3 VVT change angle (bank 1): Min.: 0°FR, Max.: 60°FR 0 to 56° FR Displacement angle during intrusive operation VVT OCV Duty #1 *3 VVT OCV operation duty: Min.: 0%, Max.: 100% 0 to 100% Requested duty value for intrusive operation Catalyst Temp B1S1 Estimated catalyst temperature (sensor 1): Min.: -40°C, Max.: 6513.5°C - - Catalyst Temp B1S2 Estimated catalyst temperature (sensor 2): Min.: -40°C, Max.: 6513.5°C - - Starter Signal Starter relay (STA) signal: ON or OFF ON: Cranking - Starter Control Starter switch (STSW) signal: ON or OFF ON: Cranking - Power Steering Signal Power steering signal: ON or OFF ON: Power steering operation - Starter Relay Starter control (STAR) signal: ON or OFF ON: Cranking - Power Steer. Sig. Record Power steering signal (history): ON or OFF ON: When steering wheel first turned after battery terminals connected Signal status usually ON until battery terminals disconnected ACC Relay ACC CUT relay: ON or OFF ON: Cranking - Neutral Position SW Signal PNP switch status: ON or OFF ON: P or N position - Stop Light Switch Stop light switch: ON or OFF ON: Brake pedal depressed - A/C Signal A/C signal: ON or OFF ON: A/C ON - Closed Throttle Position SW Closed throttle position switch: ON or OFF ON: Throttle fully closed OFF: Throttle open - Fuel Cut Condition Fuel cut condition: ON or OFF ON: Any fuel cut operation executed - Immobiliser Communication Immobiliser communication: ON or OFF - OFF: Communication malfunctioning, or engine immobiliser system set ON: Communication normal Electrical Load Signal Electrical load signal: ON or OFF ON: Headlights or defogger turned ON - Check Mode Check mode: ON or OFF ON: Check mode ON Refer to «CHECK MODE PROCEDURE»(ref-472422-S04335344022012051500000) SPD Test Result Check mode result for vehicle speed sensor: Compl or Incmpl - - Misfire Test Result Check mode result for misfire monitor: Compl or Incmpl - - OXS1 Test Result Check mode result for HO2 sensor: Compl or Incmpl - - A/F Test Results #1 Check mode result for air-fuel ratio sensor: Compl or Incmpl - - Complete Parts Monitor Comprehensive component monitor: Not Avl or Avail - - Fuel System Monitor Fuel system monitor: Not Avl or Avail - - Misfire Monitor Misfire monitor: Not Avl or Avail - - O2S(A/FS) Heater Monitor O2S (A/FS) heater monitor: Not Avl or Avail - - O2S(A/FS) Heater Monitor O2S (A/FS) heater monitor: Compl or Incmpl - - Catalyst Monitor Catalyst monitor: Not Avl or Avail - - Catalyst Monitor Catalyst monitor: Compl or Incmpl - - # Codes (Include History) Number of detected DTCs: Min.: 0, Max.: 255 - - MIL MIL status: ON or OFF ON: MIL ON - MIL ON Run Distance MIL ON Run Distance: Min.: 0 km, Max.: 65535 km Distance after DTC detected - Running Time from MIL ON Running time from MIL ON: Min.: 0 minute, Max.: 65535 minutes Equivalent to running time after MIL ON - Time after DTC Cleared Time after DTC cleared: Min.: 0 minute, Max.: 65535 minutes Equivalent to time after DTCs cleared - Distance from DTC Cleared Distance traveled since DTCs cleared: Min.: 0 km, Max.: 65535 km Equivalent to drive distance after DTCs cleared - Warm up Cycle Cleared DTC Warm-up cycle after DTC cleared: Min.: 0, Max.: 255 - - OBD Requirements OBD requirement OBD2 - Number of Emission DTC Number of emission-related DTCs Min.: 0, Max.: 127 - - TC and TE1 TC and CG (TE1) terminal of DLC3: ON or OFF - - Ignition Trig. Count Ignition counter: Min.: 0, Max.: 800 0 to 400 - Cylinder #1 Misfire Count Misfire count of cylinder 1: Min.: 0, Max.: 255 0 - Cylinder #2 Misfire Count Misfire count of cylinder 2: Min.: 0, Max.: 255 0 - Cylinder #3 Misfire Count Misfire count of cylinder 3: Min.: 0, Max.: 255 0 - Cylinder #4 Misfire Count Misfire count of cylinder 4: Min.: 0, Max.: 255 0 - All Cylinders Misfire Count All cylinders misfire count: Min.: 0, Max.: 255 0 - Misfire RPM Engine speed when misfire occur: Min.: 0 rpm, Max.: 6375 rpm - - Misfire Load Engine load when misfire occur: Min.: 0 g/rev, Max.: 3.98 g/rev - - Misfire Margin Margin to detect engine misfire: Min.: -100%, Max.: 99.22% -100 to 99.22% Misfire detecting margin Catalyst OT MF F/C Catalyst over temperature misfire prevention F/C: Not Avl or Avail Avail: Cat OT MF F/C available Not Avl: Cat OT MF F/C not available - Cat OT MF F/C History Catalyst over temperature misfire prevention F/C history: ON or OFF ON: Fuel cut operation history exists - Cat OT MF F/C Cylinder #1 Display of fuel cut operation in No. 1 cylinder (if certain level of misfire malfunction is detected): ON or OFF ON: Fuel cut is operating - Cat OT MF F/C Cylinder #2 Display of fuel cut operation in No. 2 cylinder (if certain level of misfire malfunction is detected): ON or OFF ON: Fuel cut is operating - Cat OT MF F/C Cylinder #3 Display of fuel cut operation in No. 3 cylinder (if certain level of misfire malfunction is detected): ON or OFF ON: Fuel cut is operating - Cat OT MF F/C Cylinder #4 Display of fuel cut operation in No. 4 cylinder (if certain level of misfire malfunction is detected): ON or OFF ON: Fuel cut is operating - Electric Fan Motor Electric fan motor: ON or OFF ON: Electric fan motor operating - Idle Fuel Cut Fuel cut idle: ON or OFF ON: Fuel cut operation Idle Fuel Cut = "ON" when throttle valve fully closed and engine speed over 3500 rpm FC TAU Fuel cut TAU (Fuel cut during very light load): ON or OFF ON: Fuel cut operating Fuel cut being performed under very light load to prevent engine combustion from becoming incomplete Model Code Identifying model code NCP9# - Engine Type Identifying engine type 1NZFE - Cylinder Number Identifying cylinder number: Min.: 0, Max.: 255 4 - Transmission Type Identifying transmission type MT or ECT 4th - Destination Identifying destination A (America) - Model Year Identifying model year: Min.: 1900, Max.: 2155 20## - System Identification System identification Gasoline - Engine Speed of Cyl #1 Engine RPM for cylinder 1: Min.: 0 rpm, Max.: 25600 rpm - Output only when Check the Cylinder Compression performed using Active Test 51199 rpm: Not performed Active Test Engine Speed of Cyl #2 Engine RPM for cylinder 2: Min.: 0 rpm, Max.: 25600 rpm - Output only when Check the Cylinder Compression performed using Active Test 51199 rpm: Not performed Active Test Engine Speed of Cyl #3 3 Engine RPM for cylinder 3: Min.: 0 rpm, Max.: 25600 rpm - Output only when Check the Cylinder Compression performed using Active Test 51199 rpm: Not performed Active Test Engine Speed of Cyl #4 Engine RPM for cylinder 4: Min.: 0 rpm, Max.: 25600 rpm - Output only when Check the Cylinder Compression performed using Active Test 51199 rpm: Not performed Active Test Av Engine Speed of All Cyl Engine RPM for all cylinders: Min.: 0 rpm, Max.: 25600 rpm - Output only when Check the Cylinder Compression performed using Active Test 51199 rpm: Not performed Active Test HINT: *1: If no idling conditions are specified, the transmission gear selector lever should be in the N or P position (neutral), and the A/C switch and all accessory switches should be OFF. *2: Excluding throttle valve opening percentage due to Idle Speed Control (ISC). *3: Data List values are only displayed when performing the following Active Tests: Control the VVT Linear (Bank1), and Control the VVT System (Bank1). For other Active Tests, the Data List value will be 0.
  2. ACTIVE TEST HINT: Performing an Active Test enables components including the relays, VSV (Vacuum Switching Valve) and actuators, to be operated without removing any parts. The Active Test can be performed with a Techstream. Performing an Active Test as the first step of troubleshooting is one method of shortening diagnostic time. Data List can be displayed during Active Test. Connect the Techstream to the DLC3. Turn the ignition switch to ON. Turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Active Test. Perform the Active Test by referring to the table below. Tester Display Test Part Control Range Diagnostic Note Control the Injection Volume Change injection volume Between -12.5 and 24.8% All fuel injectors tested at same time Perform test at less than 3000 rpm Injection volume can be changed in fine gradations within control range Control the Injection Volume for A/F Sensor Change injection volume -12.5%/0%/12.5% Perform test at less than 3000 rpm Control the Injection Volume for A/F Sensor enables checking and graphing of A/F (Air-Fuel Ratio) sensor and HO2 (Heated Oxygen) sensor voltage outputs To conduct test, enter the following menus: Active Test / Control the Injection Volume for A/F Sensor / Data List / AFS Voltage B1S1 / O2S B1S2 Activate the VSV for Evap Control Activate purge VSV control ON/OFF - Control the Fuel Pump / Speed Activate fuel pump (C/OPN Relay) ON/OFF Test possible when engine stopped Connect the TC and TE1 Turn on and off TC and CG (TE1) connection ON/OFF ON: TC and CG (TE1) connected OFF: TC and CG (TE1) disconnected Control the Idle Fuel Cut Prohibit Prohibit idling fuel cut control ON/OFF Idling fuel cut turned ON when throttle valve fully closed and engine speed over 2800 rpm Prohibit the Catalyst OT Misfire Prevent F/C Prohibit catalyst overheat malfunction prevention fuel cut operation during misfire ON/OFF Confirm that the vehicle is stopped and engine speed is 3000 rpm or less Control the Electric Cooling Fan Control Electric Cooling Fan ON/OFF - Activate the Starter Relay Starter ON/OFF Test possible when engine stopped Activate the ACC Cut Relay Active ACC (Accessory) relay ON/OFF Test possible when engine stopped Control the ETCS Open/Close Slow Speed Throttle actuator Close/Open Test possible when following conditions met: Engine stopped Shift lever in P Fully depressing accelerator pedal (APP: 59 degrees or more) Control the ETCS Open/Close Fast Speed Throttle actuator Close/Open Open: Throttle valve opens quickly Same as above. Control the VVT Linear (Bank1) Control VVT (bank 1) -128 to 127% This value added to present OCV control duty 100%: Maximum advance -100%: Maximum retard Engine stall or rough idle when VVT actuator operated by 100%. Test possible while vehicle stopped and engine idling DTCs related to the VVT system may be stored due to Active Test operation, but this does not indicate a malfunction. Control the VVT System (Bank1) Turn on and off OCV (Oil Control Valve) ON/OFF Engine stalls or idles roughly when OCV turned ON Normal engine running or idling when OCV OFF Test possible while vehicle stopped and engine idling DTCs related to the VVT system may be stored due to Active Test operation, but this does not indicate a malfunction. Activate the Vacuum Pump Leak detection pump (built into canister assembly) ON/OFF - Activate the VSV for Vent Valve Vent valve (built into canister assembly) ON/OFF - Control the Select Cylinder Fuel Cut Selected cylinder (cylinder #1 to #4) injector fuel cut #1/#2/#3/#4 ON/OFF Test possible during vehicle stopping and engine idling*1 Control the All Cylinders Fuel Cut All cylinder fuel cut ON/OFF Test possible during vehicle stopping and engine idling*1 Check the Cylinder Compression*2 Check the cylinder compression pressure (measuring engine speed for each cylinder) ON/OFF Both fuel injection and ignition stopped in all cylinders NOTE: *1: If the display of the Data List item Catalyst OT MF F/C item is Not Avl, perform this Active Test with the vehicle stopped and the engine idling. If the display of the Data List item Catalyst OT MF F/C item is Avail, perform this Active Test as described below. Stop the engine, then turn the ignition switch to ON. Enter the Control the Select Cylinder Fuel Cut. Select the cylinder for fuel cut (cylinder #1 to #4) and turn the Active Test ON (press the RIGHT or LEFT button). Start the engine. HINT: *2: In this Active Test, the fuel and ignition of all cylinders is cut. The engine must then be cranked for approximately 10 seconds. At this time, the speed of each cylinder is measured. If the speed of one cylinder is more than the other cylinders, it can be determined that the compression pressure of that cylinder is lower than the other cylinders. Warm up the engine. Turn the ignition switch to ON. Connect the Techstream to the DLC3. Turn the ignition switch to ON. Turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Active Test / Check the Cylinder Compression. HINT: To display the entire Data List, press the pull down menu button next to Primary. Then select Compression. Push the snapshot button to turn the snapshot function on. HINT: Using the snapshot function, data can be recorded during the Active Test. While the engine is not running, press the RIGHT or LEFT button to change Check the Cylinder Compression to ON. HINT: After performing the above procedure, Check the Cylinder Compression will start. Fuel injection for all cylinders is prohibited and each cylinder engine speed measurement enters standby mode. Crank the engine for about 10 seconds. HINT: Continue to crank the engine until the values change from the default value (51199 rpm). Monitor the engine speed (Engine Speed of Cyl #1 to #4) displayed on the Techstream. HINT: At first, the Techstream displays extremely high cylinder engine speed values. After approximately 10 seconds of engine cranking, each cylinder engine speed measurement will change to the actual engine speed. NOTE: Do not crank the engine continuously for 20 seconds or more. If it is necessary to crank the engine again after Check the Cylinder Compression to ON has been changed to ON and the engine has been cranked once, press Exit to return to the Active Test menu screen. Then change Check the Cylinder Compression to ON and crank the engine. Use a fully-charged battery. Stop cranking the engine, and then change "Check the Cylinder Compression" to OFF after the engine stops. NOTE: If the Active Test is changed to OFF while the engine is being cranked, the engine will start. Push the snapshot button to turn the snapshot function off. Select "Stored Data" on the Techstream screen, select the recorded data and display the data as a graph. HINT: If the data is not displayed as a graph, the change of the values cannot be observed. Check the change in engine speed values. HINT: As the data values of the Active Test return to their default values when cranking is stopped, the engine speed value of each cylinder cannot be observed. Therefore, it is necessary to use the data recorded with the snapshot function to check the engine speed values recorded during cranking.
  3. SYSTEM CHECK HINT: Performing a System Check in the Utility menu enables the system, which consists of multiple actuators, to be operated without removing any parts. In addition, it can show whether or not any DTCs are stored, and can detect potential malfunctions in the system. Connect the Techstream to the DLC3. Turn the ignition switch to ON Turn the Techstream on. Enter the following menus: Powertrain / Engine and ECT / Utility. Perform the System Check by referring to the table below. Tester Display Test Part Control Range Diagnostic Note Evaporative System Check (Automatic Mode) EVAP key-off monitor Perform 6 steps in order to operate EVAP key-off monitor automatically Recommended Fuel Temperature: 35°C (95°F) or less If no DTCs in PENDING CODE after performing this test, system functioning normally Refer to «EVAP SYSTEM»(ref-472647-S11740967722012051500000). Evaporative System Check (Manual Mode) EVAP key-off monitor Perform 6 steps in order to operate EVAP key-off monitor manually Recommended Fuel Temperature: 35°C (95°F) or less Used to detect malfunctioning parts Refer to «EVAP SYSTEM»(ref-472647-S11740967722012051500000).

DIAGNOSTIC TROUBLE CODE CHART

HINT

  1. *1: MIL flashes when a catalyst damaging misfire is detected.
  2. *2: Only for Mexico models
DTC CodeDetection ItemMILMemoryDTC for Mexico ModelsSee
P0010Camshaft Position "A" Actuator Circuit (Bank 1)Comes onDTC storedAppliesRefer to DTC P0010: Camshaft Position "A" Actuator Circuit (Bank 1)
P0011Camshaft Position "A" - Timing Over-Advanced or System Performance (Bank 1)Comes onDTC storedAppliesRefer to DTC P0011: Camshaft Position "A" - Timing Over-Advanced or System Performance (Bank 1); DTC P0012: Camshaft Position "A" - Timing Over-Retarded (Bank 1)
P0012Camshaft Position "A" - Timing Over-Retarded (Bank 1)Comes onDTC storedAppliesRefer to DTC P0011: Camshaft Position "A" - Timing Over-Advanced or System Performance (Bank 1); DTC P0012: Camshaft Position "A" - Timing Over-Retarded (Bank 1)
P0016Crankshaft Position - Camshaft Position Correlation (Bank 1 Sensor A)Comes onDTC storedAppliesRefer to DTC P0016: Crankshaft Position - Camshaft Position Correlation (Bank 1 Sensor A)
P0031Oxygen (A/F) Sensor Heater Control Circuit Low (Bank 1 Sensor 1)Comes onDTC storedAppliesRefer to DTC P0031: Oxygen (A/F) Sensor Heater Control Circuit Low (Bank 1 Sensor 1); DTC P0032: Oxygen (A/F) Sensor Heater Control Circuit High (Bank 1 Sensor 1)
P0032Oxygen (A/F) Sensor Heater Control Circuit High (Bank 1 Sensor 1)Comes onDTC storedAppliesRefer to DTC P0031: Oxygen (A/F) Sensor Heater Control Circuit Low (Bank 1 Sensor 1); DTC P0032: Oxygen (A/F) Sensor Heater Control Circuit High (Bank 1 Sensor 1)
P0037Oxygen Sensor Heater Control Circuit Low (Bank 1 Sensor 2)Comes onDTC storedAppliesRefer to DTC P0037: Oxygen Sensor Heater Control Circuit Low (Bank 1 Sensor 2); DTC P0038: Oxygen Sensor Heater Control Circuit High (Bank 1 Sensor 2); DTC P0141: Oxygen Sensor Heater Circuit Malfunction (Bank 1 Sensor 2)
P0038Oxygen Sensor Heater Control Circuit High (Bank 1 Sensor 2)Comes onDTC storedAppliesRefer to DTC P0037: Oxygen Sensor Heater Control Circuit Low (Bank 1 Sensor 2); DTC P0038: Oxygen Sensor Heater Control Circuit High (Bank 1 Sensor 2); DTC P0141: Oxygen Sensor Heater Circuit Malfunction (Bank 1 Sensor 2)
P0100Mass or Volume Air Flow CircuitComes onDTC storedAppliesRefer to DTC P0100: Mass or Volume Air Flow Circuit; DTC P0102: Mass or Volume Air Flow Circuit Low Input; DTC P0103: Mass or Volume Air Flow Circuit High Input
P0101Mass Air Flow Circuit Range / Performance ProblemComes onDTC storedRefer to DTC P0101: Mass Air Flow Circuit Range / Performance Problem
P0102Mass or Volume Air Flow Circuit Low InputComes onDTC storedAppliesRefer to DTC P0100: Mass or Volume Air Flow Circuit; DTC P0102: Mass or Volume Air Flow Circuit Low Input; DTC P0103: Mass or Volume Air Flow Circuit High Input
P0103Mass or Volume Air Flow Circuit High InputComes onDTC storedAppliesRefer to DTC P0100: Mass or Volume Air Flow Circuit; DTC P0102: Mass or Volume Air Flow Circuit Low Input; DTC P0103: Mass or Volume Air Flow Circuit High Input
P0110Intake Air Temperature Circuit MalfunctionComes onDTC storedAppliesRefer to DTC P0110: Intake Air Temperature Circuit Malfunction; DTC P0112: Intake Air Temperature Circuit Low Input; DTC P0113: Intake Air Temperature Circuit High Input
P0111Intake Air Temperature Sensor Gradient Too HighComes onDTC storedRefer to DTC P0111: Intake Air Temperature Sensor Gradient Too High
P0112Intake Air Temperature Circuit Low InputComes onDTC storedAppliesRefer to DTC P0110: Intake Air Temperature Circuit Malfunction; DTC P0112: Intake Air Temperature Circuit Low Input; DTC P0113: Intake Air Temperature Circuit High Input
P0113Intake Air Temperature Circuit High InputComes onDTC storedAppliesRefer to DTC P0110: Intake Air Temperature Circuit Malfunction; DTC P0112: Intake Air Temperature Circuit Low Input; DTC P0113: Intake Air Temperature Circuit High Input
P0115Engine Coolant Temperature Circuit MalfunctionComes onDTC storedAppliesRefer to DTC P0115: Engine Coolant Temperature Circuit Malfunction; DTC P0117: Engine Coolant Temperature Circuit Low Input; DTC P0118: Engine Coolant Temperature Circuit High Input
P0116Engine Coolant Temperature Circuit Range / Performance ProblemComes onDTC storedRefer to DTC P0116: Engine Coolant Temperature Circuit Range / Performance Problem
P0117Engine Coolant Temperature Circuit Low InputComes onDTC storedAppliesRefer to DTC P0115: Engine Coolant Temperature Circuit Malfunction; DTC P0117: Engine Coolant Temperature Circuit Low Input; DTC P0118: Engine Coolant Temperature Circuit High Input
P0118Engine Coolant Temperature Circuit High InputComes onDTC storedAppliesRefer to DTC P0115: Engine Coolant Temperature Circuit Malfunction; DTC P0117: Engine Coolant Temperature Circuit Low Input; DTC P0118: Engine Coolant Temperature Circuit High Input
P011BEngine Coolant Temperature / Intake Air Temperature CorrelationComes onDTC storedRefer to DTC P011B: Engine Coolant Temperature / Intake Air Temperature Correlation
P0120Throttle / Pedal Position Sensor / Switch "A" Circuit MalfunctionComes onDTC storedAppliesRefer to DTC P0120: Throttle / Pedal Position Sensor / Switch "A" Circuit Malfunction; DTC P0121: Throttle / Pedal Position Sensor / Switch "A" Circuit Range / Performance Problem; DTC P0122: Throttle / Pedal Position Sensor / Switch "A" Circuit Low Input; DTC P0123: Throttle / Pedal Position Sensor / Switch "A" Circuit High Input; DTC P0220: Throttle / Pedal Position Sensor / Switch "B" Circuit; DTC P0222: Throttle / Pedal Position Sensor / Switch "B" Circuit Low Input; DTC P0223: Throttle / Pedal Position Sensor / Switch "B" Circuit High Input; DTC P2135: Throttle / Pedal Position Sensor / Switch "A" / "B" Voltage Correlation
P0121Throttle / Pedal Position Sensor / Switch "A" Circuit Range / Performance ProblemComes onDTC storedAppliesRefer to DTC P0120: Throttle / Pedal Position Sensor / Switch "A" Circuit Malfunction; DTC P0121: Throttle / Pedal Position Sensor / Switch "A" Circuit Range / Performance Problem; DTC P0122: Throttle / Pedal Position Sensor / Switch "A" Circuit Low Input; DTC P0123: Throttle / Pedal Position Sensor / Switch "A" Circuit High Input; DTC P0220: Throttle / Pedal Position Sensor / Switch "B" Circuit; DTC P0222: Throttle / Pedal Position Sensor / Switch "B" Circuit Low Input; DTC P0223: Throttle / Pedal Position Sensor / Switch "B" Circuit High Input; DTC P2135: Throttle / Pedal Position Sensor / Switch "A" / "B" Voltage Correlation
P0122Throttle / Pedal Position Sensor / Switch "A" Circuit Low InputComes onDTC storedAppliesRefer to DTC P0120: Throttle / Pedal Position Sensor / Switch "A" Circuit Malfunction; DTC P0121: Throttle / Pedal Position Sensor / Switch "A" Circuit Range / Performance Problem; DTC P0122: Throttle / Pedal Position Sensor / Switch "A" Circuit Low Input; DTC P0123: Throttle / Pedal Position Sensor / Switch "A" Circuit High Input; DTC P0220: Throttle / Pedal Position Sensor / Switch "B" Circuit; DTC P0222: Throttle / Pedal Position Sensor / Switch "B" Circuit Low Input; DTC P0223: Throttle / Pedal Position Sensor / Switch "B" Circuit High Input; DTC P2135: Throttle / Pedal Position Sensor / Switch "A" / "B" Voltage Correlation
P0123Throttle / Pedal Position Sensor / Switch "A" Circuit High InputComes onDTC storedAppliesRefer to DTC P0120: Throttle / Pedal Position Sensor / Switch "A" Circuit Malfunction; DTC P0121: Throttle / Pedal Position Sensor / Switch "A" Circuit Range / Performance Problem; DTC P0122: Throttle / Pedal Position Sensor / Switch "A" Circuit Low Input; DTC P0123: Throttle / Pedal Position Sensor / Switch "A" Circuit High Input; DTC P0220: Throttle / Pedal Position Sensor / Switch "B" Circuit; DTC P0222: Throttle / Pedal Position Sensor / Switch "B" Circuit Low Input; DTC P0223: Throttle / Pedal Position Sensor / Switch "B" Circuit High Input; DTC P2135: Throttle / Pedal Position Sensor / Switch "A" / "B" Voltage Correlation
P0125Insufficient Coolant Temperature for Closed Loop Fuel ControlComes onDTC storedAppliesRefer to DTC P0125: Insufficient Coolant Temperature for Closed Loop Fuel Control
P0128Coolant Thermostat (Coolant Temperature Below Thermostat Regulating Temperature)Comes onDTC storedAppliesRefer to DTC P0128: Coolant Thermostat (Coolant Temperature Below Thermostat Regulating Temperature)
P0136Oxygen Sensor Circuit Malfunction (Bank 1 Sensor 2)Comes onDTC storedRefer 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)
P0137Oxygen Sensor Circuit Low Voltage (Bank 1 Sensor 2)Comes onDTC storedAppliesRefer 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)
P0138Oxygen Sensor Circuit High Voltage (Bank 1 Sensor 2)Comes onDTC storedRefer 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)
P0139Oxygen Sensor Circuit Slow Response (Bank 1 Sensor 2)Comes onDTC storedRefer 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)
P0141Oxygen Sensor Heater Circuit Malfunction (Bank 1 Sensor 2)Comes onDTC storedRefer to DTC P0037: Oxygen Sensor Heater Control Circuit Low (Bank 1 Sensor 2); DTC P0038: Oxygen Sensor Heater Control Circuit High (Bank 1 Sensor 2); DTC P0141: Oxygen Sensor Heater Circuit Malfunction (Bank 1 Sensor 2)
P0171System Too Lean (Bank 1)Comes onDTC storedAppliesRefer to DTC P0171: System Too Lean (Bank 1); DTC P0172: System Too Rich (Bank 1)
P0172System Too Rich (Bank 1)Comes onDTC storedAppliesRefer to DTC P0171: System Too Lean (Bank 1); DTC P0172: System Too Rich (Bank 1)
P0220Throttle / Pedal Position Sensor / Switch "B" CircuitComes onDTC storedAppliesRefer to DTC P0120: Throttle / Pedal Position Sensor / Switch "A" Circuit Malfunction; DTC P0121: Throttle / Pedal Position Sensor / Switch "A" Circuit Range / Performance Problem; DTC P0122: Throttle / Pedal Position Sensor / Switch "A" Circuit Low Input; DTC P0123: Throttle / Pedal Position Sensor / Switch "A" Circuit High Input; DTC P0220: Throttle / Pedal Position Sensor / Switch "B" Circuit; DTC P0222: Throttle / Pedal Position Sensor / Switch "B" Circuit Low Input; DTC P0223: Throttle / Pedal Position Sensor / Switch "B" Circuit High Input; DTC P2135: Throttle / Pedal Position Sensor / Switch "A" / "B" Voltage Correlation
P0222Throttle / Pedal Position Sensor / Switch "B" Circuit Low InputComes onDTC storedAppliesRefer to DTC P0120: Throttle / Pedal Position Sensor / Switch "A" Circuit Malfunction; DTC P0121: Throttle / Pedal Position Sensor / Switch "A" Circuit Range / Performance Problem; DTC P0122: Throttle / Pedal Position Sensor / Switch "A" Circuit Low Input; DTC P0123: Throttle / Pedal Position Sensor / Switch "A" Circuit High Input; DTC P0220: Throttle / Pedal Position Sensor / Switch "B" Circuit; DTC P0222: Throttle / Pedal Position Sensor / Switch "B" Circuit Low Input; DTC P0223: Throttle / Pedal Position Sensor / Switch "B" Circuit High Input; DTC P2135: Throttle / Pedal Position Sensor / Switch "A" / "B" Voltage Correlation
P0223Throttle / Pedal Position Sensor / Switch "B" Circuit High InputComes onDTC storedAppliesRefer to DTC P0120: Throttle / Pedal Position Sensor / Switch "A" Circuit Malfunction; DTC P0121: Throttle / Pedal Position Sensor / Switch "A" Circuit Range / Performance Problem; DTC P0122: Throttle / Pedal Position Sensor / Switch "A" Circuit Low Input; DTC P0123: Throttle / Pedal Position Sensor / Switch "A" Circuit High Input; DTC P0220: Throttle / Pedal Position Sensor / Switch "B" Circuit; DTC P0222: Throttle / Pedal Position Sensor / Switch "B" Circuit Low Input; DTC P0223: Throttle / Pedal Position Sensor / Switch "B" Circuit High Input; DTC P2135: Throttle / Pedal Position Sensor / Switch "A" / "B" Voltage Correlation
P0300Random / Multiple Cylinder Misfire DetectedComes on/Blinks *1DTC storedAppliesRefer to DTC P0300: Random / Multiple Cylinder Misfire Detected; DTC P0301: Cylinder 1 Misfire Detected; DTC P0302: Cylinder 2 Misfire Detected; DTC P0303: Cylinder 3 Misfire Detected; DTC P0304: Cylinder 4 Misfire Detected
P0301Cylinder 1 Misfire DetectedComes on/Blinks *1DTC storedAppliesRefer to DTC P0300: Random / Multiple Cylinder Misfire Detected; DTC P0301: Cylinder 1 Misfire Detected; DTC P0302: Cylinder 2 Misfire Detected; DTC P0303: Cylinder 3 Misfire Detected; DTC P0304: Cylinder 4 Misfire Detected
P0302Cylinder 2 Misfire DetectedComes on/Blinks *1DTC storedAppliesRefer to DTC P0300: Random / Multiple Cylinder Misfire Detected; DTC P0301: Cylinder 1 Misfire Detected; DTC P0302: Cylinder 2 Misfire Detected; DTC P0303: Cylinder 3 Misfire Detected; DTC P0304: Cylinder 4 Misfire Detected
P0303Cylinder 3 Misfire DetectedComes on/Blinks *1DTC storedAppliesRefer to DTC P0300: Random / Multiple Cylinder Misfire Detected; DTC P0301: Cylinder 1 Misfire Detected; DTC P0302: Cylinder 2 Misfire Detected; DTC P0303: Cylinder 3 Misfire Detected; DTC P0304: Cylinder 4 Misfire Detected
P0304Cylinder 4 Misfire DetectedComes on/Blinks *1DTC storedAppliesRefer to DTC P0300: Random / Multiple Cylinder Misfire Detected; DTC P0301: Cylinder 1 Misfire Detected; DTC P0302: Cylinder 2 Misfire Detected; DTC P0303: Cylinder 3 Misfire Detected; DTC P0304: Cylinder 4 Misfire Detected
P0327Knock Sensor 1 Circuit Low Input (Bank 1 or Single Sensor)Comes onDTC storedAppliesRefer to DTC P0327: Knock Sensor 1 Circuit Low Input (Bank 1 or Single Sensor); DTC P0328: Knock Sensor 1 Circuit High Input (Bank 1 or Single Sensor)
P0328Knock Sensor 1 Circuit High Input (Bank 1 or Single Sensor)Comes onDTC storedAppliesRefer to DTC P0327: Knock Sensor 1 Circuit Low Input (Bank 1 or Single Sensor); DTC P0328: Knock Sensor 1 Circuit High Input (Bank 1 or Single Sensor)
P0335Crankshaft Position Sensor "A" CircuitComes onDTC storedAppliesRefer to DTC P0335: Crankshaft Position Sensor "A" Circuit; DTC P0339: Crankshaft Position Sensor "A" Circuit Intermittent
P0339Crankshaft Position Sensor "A" Circuit IntermittentDTC storedAppliesRefer to DTC P0335: Crankshaft Position Sensor "A" Circuit; DTC P0339: Crankshaft Position Sensor "A" Circuit Intermittent
P0340Camshaft Position Sensor "A" Circuit (Bank 1 or Single Sensor)Comes onDTC storedAppliesRefer to DTC P0340: Camshaft Position Sensor "A" Circuit (Bank 1 or Single Sensor)
P0351Ignition Coil "A" Primary / Secondary CircuitComes onDTC storedAppliesRefer to DTC P0351: Ignition Coil "A" Primary / Secondary Circuit; DTC P0352: Ignition Coil "B" Primary / Secondary Circuit; DTC P0353: Ignition Coil "C" Primary / Secondary Circuit; DTC P0354: Ignition Coil "D" Primary / Secondary Circuit
P0352Ignition Coil "B" Primary / Secondary CircuitComes onDTC storedAppliesRefer to DTC P0351: Ignition Coil "A" Primary / Secondary Circuit; DTC P0352: Ignition Coil "B" Primary / Secondary Circuit; DTC P0353: Ignition Coil "C" Primary / Secondary Circuit; DTC P0354: Ignition Coil "D" Primary / Secondary Circuit
P0353Ignition Coil "C" Primary / Secondary CircuitComes onDTC storedAppliesRefer to DTC P0351: Ignition Coil "A" Primary / Secondary Circuit; DTC P0352: Ignition Coil "B" Primary / Secondary Circuit; DTC P0353: Ignition Coil "C" Primary / Secondary Circuit; DTC P0354: Ignition Coil "D" Primary / Secondary Circuit
P0354Ignition Coil "D" Primary / Secondary CircuitComes onDTC storedAppliesRefer to DTC P0351: Ignition Coil "A" Primary / Secondary Circuit; DTC P0352: Ignition Coil "B" Primary / Secondary Circuit; DTC P0353: Ignition Coil "C" Primary / Secondary Circuit; DTC P0354: Ignition Coil "D" Primary / Secondary Circuit
P0420Catalyst System Efficiency Below Threshold (Bank 1)Comes onDTC storedAppliesRefer to DTC P0420: Catalyst System Efficiency Below Threshold (Bank 1)
P043EEvaporative Emission System Leak Detection Reference Orifice Low FlowComes onDTC storedRefer to DTC P043E: Evaporative Emission System Leak Detection Reference Orifice Low Flow; DTC P043F: Evaporative Emission System Reference Orifice High Flow; DTC P2401: Evaporative Emission Leak Detection Pump Stuck OFF; DTC P2402: Evaporative Emission Leak Detection Pump Stuck ON; DTC P2419: Evaporative Emission System Switching Valve Control Circuit Low
P043FEvaporative Emission System Reference Orifice High FlowComes onDTC storedRefer to DTC P043E: Evaporative Emission System Leak Detection Reference Orifice Low Flow; DTC P043F: Evaporative Emission System Reference Orifice High Flow; DTC P2401: Evaporative Emission Leak Detection Pump Stuck OFF; DTC P2402: Evaporative Emission Leak Detection Pump Stuck ON; DTC P2419: Evaporative Emission System Switching Valve Control Circuit Low
P0441Evaporative Emission Control System Incorrect Purge FlowComes onDTC storedRefer to DTC P0441: Evaporative Emission Control System Incorrect Purge Flow
P0443Evaporative Emission Control System Purge Control Valve CircuitComes onDTC storedApplies *2Refer to DTC P0443: Evaporative Emission Control System Purge Control Valve Circuit
P0450Evaporative Emission Control System Pressure Sensor / SwitchComes onDTC storedRefer to DTC P0450: Evaporative Emission Control System Pressure Sensor / Switch; DTC P0451: Evaporative Emission Control System Pressure Sensor Range / Performance; DTC P0452: Evaporative Emission Control System Pressure Sensor / Switch Low Input; DTC P0453: Evaporative Emission Control System Pressure Sensor / Switch High Input
P0451Evaporative Emission Control System Pressure Sensor Range / PerformanceComes onDTC storedRefer to DTC P0450: Evaporative Emission Control System Pressure Sensor / Switch; DTC P0451: Evaporative Emission Control System Pressure Sensor Range / Performance; DTC P0452: Evaporative Emission Control System Pressure Sensor / Switch Low Input; DTC P0453: Evaporative Emission Control System Pressure Sensor / Switch High Input
P0452Evaporative Emission Control System Pressure Sensor / Switch Low InputComes onDTC storedRefer to DTC P0450: Evaporative Emission Control System Pressure Sensor / Switch; DTC P0451: Evaporative Emission Control System Pressure Sensor Range / Performance; DTC P0452: Evaporative Emission Control System Pressure Sensor / Switch Low Input; DTC P0453: Evaporative Emission Control System Pressure Sensor / Switch High Input
P0453Evaporative Emission Control System Pressure Sensor / Switch High InputComes onDTC storedRefer to DTC P0450: Evaporative Emission Control System Pressure Sensor / Switch; DTC P0451: Evaporative Emission Control System Pressure Sensor Range / Performance; DTC P0452: Evaporative Emission Control System Pressure Sensor / Switch Low Input; DTC P0453: Evaporative Emission Control System Pressure Sensor / Switch High Input
P0455Evaporative Emission Control System Leak Detected (Gross Leak)Comes onDTC storedRefer to DTC P0455: Evaporative Emission Control System Leak Detected (Gross Leak); DTC P0456: Evaporative Emission Control System Leak Detected (Very Small Leak)
P0456Evaporative Emission Control System Leak Detected (Very Small Leak)Comes onDTC storedRefer to DTC P0455: Evaporative Emission Control System Leak Detected (Gross Leak); DTC P0456: Evaporative Emission Control System Leak Detected (Very Small Leak)
P0500Vehicle Speed Sensor "A"Comes onDTC storedAppliesRefer to DTC P0500: Vehicle Speed Sensor "A"
P0504Brake Switch "A" / "B" CorrelationDTC storedAppliesRefer to DTC P0504: Brake Switch "A" / "B" Correlation
P0505Idle Control System MalfunctionComes onDTC storedRefer to DTC P0505: Idle Control System Malfunction
P050ACold Start Idle Air Control System PerformanceComes onDTC storedRefer to DTC P050A: Cold Start Idle Air Control System Performance
P050BCold Start Ignition Timing PerformanceComes onDTC storedRefer to DTC P050B: Cold Start Ignition Timing Performance
P0560System VoltageComes onDTC storedAppliesRefer to DTC P0560: System Voltage
P0604Random Access Memory (RAM)Comes onDTC storedAppliesRefer to DTC P0604: Random Access Memory (RAM)
P0606ECM / PCM ProcessorComes onDTC storedAppliesRefer to DTC P0606: ECM / PCM Processor
P0607Control Module PerformanceComes onDTC storedApplies *2Refer to DTC P0607: Control Module Performance
P060AInternal Control Module Monitoring Processor PerformanceComes onDTC storedRefer to DTC P060A: Internal Control Module Monitoring Processor Performance
P060DInternal Control Module Accelerator Pedal Position PerformanceComes onDTC storedRefer to DTC P060D: Internal Control Module Accelerator Pedal Position Performance
P060EInternal Control Module Throttle Position PerformanceComes onDTC storedRefer to DTC P060E: Internal Control Module Throttle Position Performance
P0617Starter Relay Circuit HighComes onDTC storedAppliesRefer to DTC P0617: Starter Relay Circuit High
P062FInternal Control Module EEPROM ErrorComes onDTC storedRefer to DTC P062F: Internal Control Module EEPROM Error
P0630VIN not Programmed or Mismatch - ECM / PCMComes onDTC storedRefer to DTC P0630: VIN not Programmed or Mismatch - ECM / PCM
P0657Actuator Supply Voltage Circuit / OpenComes onDTC storedAppliesRefer to DTC P0657: Actuator Supply Voltage Circuit / Open
P0724Brake Switch "B" Circuit HighComes onDTC storedAppliesRefer to DTC P0724: Brake Switch "B" Circuit High
P1603Engine Stall HistoryDTC storedRefer to DTC P1603: Engine Stall History; DTC P1605: Rough Idling
P1604Startability MalfunctionDTC storedRefer to DTC P1604: Startability Malfunction
P1605Rough IdlingDTC storedRefer to DTC P1603: Engine Stall History; DTC P1605: Rough Idling
P1607Cruise Control Input ProcessorComes onDTC storedRefer to DTC P1607: Cruise Control Input Processor
P2102Throttle Actuator Control Motor Circuit LowComes onDTC storedAppliesRefer to DTC P2102: Throttle Actuator Control Motor Circuit Low; DTC P2103: Throttle Actuator Control Motor Circuit High
P2103Throttle Actuator Control Motor Circuit HighComes onDTC storedAppliesRefer to DTC P2102: Throttle Actuator Control Motor Circuit Low; DTC P2103: Throttle Actuator Control Motor Circuit High
P2109Throttle / Pedal Position Sensor "A" Minimum Stop PerformanceDTC storedRefer to DTC P2109: Throttle / Pedal Position Sensor "A" Minimum Stop Performance
P2111Throttle Actuator Control System - Stuck OpenComes onDTC storedAppliesRefer to DTC P2111: Throttle Actuator Control System - Stuck Open; DTC P2112: Throttle Actuator Control System - Stuck Closed
P2112Throttle Actuator Control System - Stuck ClosedComes onDTC storedAppliesRefer to DTC P2111: Throttle Actuator Control System - Stuck Open; DTC P2112: Throttle Actuator Control System - Stuck Closed
P2118Throttle Actuator Control Motor Current Range / PerformanceComes onDTC storedAppliesRefer to DTC P2118: Throttle Actuator Control Motor Current Range / Performance
P2119Throttle Actuator Control Throttle Body Range / PerformanceComes onDTC storedAppliesRefer to DTC P2119: Throttle Actuator Control Throttle Body Range / Performance
P2120Throttle / Pedal Position Sensor / Switch "D" CircuitComes onDTC storedAppliesRefer to DTC P2120: Throttle / Pedal Position Sensor / Switch "D" Circuit; DTC P2122: Throttle / Pedal Position Sensor / Switch "D" Circuit Low Input; DTC P2123: Throttle / Pedal Position Sensor / Switch "D" Circuit High Input; DTC P2125: Throttle / Pedal Position Sensor / Switch "E" Circuit; DTC P2127: Throttle / Pedal Position Sensor / Switch "E" Circuit Low Input; DTC P2128: Throttle / Pedal Position Sensor / Switch "E" Circuit High Input; DTC P2138: Throttle / Pedal Position Sensor / Switch "D" / "E" Voltage Correlation
P2121Throttle / Pedal Position Sensor / Switch "D" Circuit Range / PerformanceComes onDTC storedAppliesRefer to DTC P2121: Throttle / Pedal Position Sensor / Switch "D" Circuit Range / Performance
P2122Throttle / Pedal Position Sensor / Switch "D" Circuit Low InputComes onDTC storedAppliesRefer to DTC P2120: Throttle / Pedal Position Sensor / Switch "D" Circuit; DTC P2122: Throttle / Pedal Position Sensor / Switch "D" Circuit Low Input; DTC P2123: Throttle / Pedal Position Sensor / Switch "D" Circuit High Input; DTC P2125: Throttle / Pedal Position Sensor / Switch "E" Circuit; DTC P2127: Throttle / Pedal Position Sensor / Switch "E" Circuit Low Input; DTC P2128: Throttle / Pedal Position Sensor / Switch "E" Circuit High Input; DTC P2138: Throttle / Pedal Position Sensor / Switch "D" / "E" Voltage Correlation
P2123Throttle / Pedal Position Sensor / Switch "D" Circuit High InputComes onDTC storedAppliesRefer to DTC P2120: Throttle / Pedal Position Sensor / Switch "D" Circuit; DTC P2122: Throttle / Pedal Position Sensor / Switch "D" Circuit Low Input; DTC P2123: Throttle / Pedal Position Sensor / Switch "D" Circuit High Input; DTC P2125: Throttle / Pedal Position Sensor / Switch "E" Circuit; DTC P2127: Throttle / Pedal Position Sensor / Switch "E" Circuit Low Input; DTC P2128: Throttle / Pedal Position Sensor / Switch "E" Circuit High Input; DTC P2138: Throttle / Pedal Position Sensor / Switch "D" / "E" Voltage Correlation
P2125Throttle / Pedal Position Sensor / Switch "E" CircuitComes onDTC storedAppliesRefer to DTC P2120: Throttle / Pedal Position Sensor / Switch "D" Circuit; DTC P2122: Throttle / Pedal Position Sensor / Switch "D" Circuit Low Input; DTC P2123: Throttle / Pedal Position Sensor / Switch "D" Circuit High Input; DTC P2125: Throttle / Pedal Position Sensor / Switch "E" Circuit; DTC P2127: Throttle / Pedal Position Sensor / Switch "E" Circuit Low Input; DTC P2128: Throttle / Pedal Position Sensor / Switch "E" Circuit High Input; DTC P2138: Throttle / Pedal Position Sensor / Switch "D" / "E" Voltage Correlation
P2127Throttle / Pedal Position Sensor / Switch "E" Circuit Low InputComes onDTC storedAppliesRefer to DTC P2120: Throttle / Pedal Position Sensor / Switch "D" Circuit; DTC P2122: Throttle / Pedal Position Sensor / Switch "D" Circuit Low Input; DTC P2123: Throttle / Pedal Position Sensor / Switch "D" Circuit High Input; DTC P2125: Throttle / Pedal Position Sensor / Switch "E" Circuit; DTC P2127: Throttle / Pedal Position Sensor / Switch "E" Circuit Low Input; DTC P2128: Throttle / Pedal Position Sensor / Switch "E" Circuit High Input; DTC P2138: Throttle / Pedal Position Sensor / Switch "D" / "E" Voltage Correlation
P2128Throttle / Pedal Position Sensor / Switch "E" Circuit High InputComes onDTC storedAppliesRefer to DTC P2120: Throttle / Pedal Position Sensor / Switch "D" Circuit; DTC P2122: Throttle / Pedal Position Sensor / Switch "D" Circuit Low Input; DTC P2123: Throttle / Pedal Position Sensor / Switch "D" Circuit High Input; DTC P2125: Throttle / Pedal Position Sensor / Switch "E" Circuit; DTC P2127: Throttle / Pedal Position Sensor / Switch "E" Circuit Low Input; DTC P2128: Throttle / Pedal Position Sensor / Switch "E" Circuit High Input; DTC P2138: Throttle / Pedal Position Sensor / Switch "D" / "E" Voltage Correlation
P2135Throttle / Pedal Position Sensor / Switch "A" / "B" Voltage CorrelationComes onDTC storedAppliesRefer to DTC P0120: Throttle / Pedal Position Sensor / Switch "A" Circuit Malfunction; DTC P0121: Throttle / Pedal Position Sensor / Switch "A" Circuit Range / Performance Problem; DTC P0122: Throttle / Pedal Position Sensor / Switch "A" Circuit Low Input; DTC P0123: Throttle / Pedal Position Sensor / Switch "A" Circuit High Input; DTC P0220: Throttle / Pedal Position Sensor / Switch "B" Circuit; DTC P0222: Throttle / Pedal Position Sensor / Switch "B" Circuit Low Input; DTC P0223: Throttle / Pedal Position Sensor / Switch "B" Circuit High Input; DTC P2135: Throttle / Pedal Position Sensor / Switch "A" / "B" Voltage Correlation
P2138Throttle / Pedal Position Sensor / Switch "D" / "E" Voltage CorrelationComes onDTC storedAppliesRefer to DTC P2120: Throttle / Pedal Position Sensor / Switch "D" Circuit; DTC P2122: Throttle / Pedal Position Sensor / Switch "D" Circuit Low Input; DTC P2123: Throttle / Pedal Position Sensor / Switch "D" Circuit High Input; DTC P2125: Throttle / Pedal Position Sensor / Switch "E" Circuit; DTC P2127: Throttle / Pedal Position Sensor / Switch "E" Circuit Low Input; DTC P2128: Throttle / Pedal Position Sensor / Switch "E" Circuit High Input; DTC P2138: Throttle / Pedal Position Sensor / Switch "D" / "E" Voltage Correlation
P2195Oxygen (A/F) Sensor Signal Stuck Lean (Bank 1 Sensor 1)Comes onDTC storedRefer to DTC P2195: Oxygen (A/F) Sensor Signal Stuck Lean (Bank 1 Sensor 1); DTC P2196: Oxygen (A/F) Sensor Signal Stuck Rich (Bank 1 Sensor 1)
P2196Oxygen (A/F) Sensor Signal Stuck Rich (Bank 1 Sensor 1)Comes onDTC storedRefer to DTC P2195: Oxygen (A/F) Sensor Signal Stuck Lean (Bank 1 Sensor 1); DTC P2196: Oxygen (A/F) Sensor Signal Stuck Rich (Bank 1 Sensor 1)
P2237Oxygen (A/F) Sensor Pumping Current Circuit / Open (Bank 1 Sensor 1)Comes onDTC storedAppliesRefer to DTC P2237: Oxygen (A/F) Sensor Pumping Current Circuit / Open (Bank 1 Sensor 1); DTC P2238: Oxygen (A/F) Sensor Pumping Current Circuit Low (Bank 1 Sensor 1); DTC P2239: Oxygen (A/F) Sensor Pumping Current Circuit High (Bank 1 Sensor 1); DTC P2252: Oxygen (A/F) Sensor Reference Ground Circuit Low (Bank 1 Sensor 1); DTC P2253: Oxygen (A/F) Sensor Reference Ground Circuit High (Bank 1 Sensor 1)
P2238Oxygen (A/F) Sensor Pumping Current Circuit Low (Bank 1 Sensor 1)Comes onDTC storedAppliesRefer to DTC P2237: Oxygen (A/F) Sensor Pumping Current Circuit / Open (Bank 1 Sensor 1); DTC P2238: Oxygen (A/F) Sensor Pumping Current Circuit Low (Bank 1 Sensor 1); DTC P2239: Oxygen (A/F) Sensor Pumping Current Circuit High (Bank 1 Sensor 1); DTC P2252: Oxygen (A/F) Sensor Reference Ground Circuit Low (Bank 1 Sensor 1); DTC P2253: Oxygen (A/F) Sensor Reference Ground Circuit High (Bank 1 Sensor 1)
P2239Oxygen (A/F) Sensor Pumping Current Circuit High (Bank 1 Sensor 1)Comes onDTC storedAppliesRefer to DTC P2237: Oxygen (A/F) Sensor Pumping Current Circuit / Open (Bank 1 Sensor 1); DTC P2238: Oxygen (A/F) Sensor Pumping Current Circuit Low (Bank 1 Sensor 1); DTC P2239: Oxygen (A/F) Sensor Pumping Current Circuit High (Bank 1 Sensor 1); DTC P2252: Oxygen (A/F) Sensor Reference Ground Circuit Low (Bank 1 Sensor 1); DTC P2253: Oxygen (A/F) Sensor Reference Ground Circuit High (Bank 1 Sensor 1)
P2252Oxygen (A/F) Sensor Reference Ground Circuit Low (Bank 1 Sensor 1)Comes onDTC storedAppliesRefer to DTC P2237: Oxygen (A/F) Sensor Pumping Current Circuit / Open (Bank 1 Sensor 1); DTC P2238: Oxygen (A/F) Sensor Pumping Current Circuit Low (Bank 1 Sensor 1); DTC P2239: Oxygen (A/F) Sensor Pumping Current Circuit High (Bank 1 Sensor 1); DTC P2252: Oxygen (A/F) Sensor Reference Ground Circuit Low (Bank 1 Sensor 1); DTC P2253: Oxygen (A/F) Sensor Reference Ground Circuit High (Bank 1 Sensor 1)
P2253Oxygen (A/F) Sensor Reference Ground Circuit High (Bank 1 Sensor 1)Comes onDTC storedAppliesRefer to DTC P2237: Oxygen (A/F) Sensor Pumping Current Circuit / Open (Bank 1 Sensor 1); DTC P2238: Oxygen (A/F) Sensor Pumping Current Circuit Low (Bank 1 Sensor 1); DTC P2239: Oxygen (A/F) Sensor Pumping Current Circuit High (Bank 1 Sensor 1); DTC P2252: Oxygen (A/F) Sensor Reference Ground Circuit Low (Bank 1 Sensor 1); DTC P2253: Oxygen (A/F) Sensor Reference Ground Circuit High (Bank 1 Sensor 1)
P2401Evaporative Emission Leak Detection Pump Stuck OFFComes onDTC storedRefer to DTC P043E: Evaporative Emission System Leak Detection Reference Orifice Low Flow; DTC P043F: Evaporative Emission System Reference Orifice High Flow; DTC P2401: Evaporative Emission Leak Detection Pump Stuck OFF; DTC P2402: Evaporative Emission Leak Detection Pump Stuck ON; DTC P2419: Evaporative Emission System Switching Valve Control Circuit Low
P2402Evaporative Emission Leak Detection Pump Stuck ONComes onDTC storedRefer to DTC P043E: Evaporative Emission System Leak Detection Reference Orifice Low Flow; DTC P043F: Evaporative Emission System Reference Orifice High Flow; DTC P2401: Evaporative Emission Leak Detection Pump Stuck OFF; DTC P2402: Evaporative Emission Leak Detection Pump Stuck ON; DTC P2419: Evaporative Emission System Switching Valve Control Circuit Low
P2419Evaporative Emission System Switching Valve Control Circuit LowComes onDTC storedRefer to DTC P043E: Evaporative Emission System Leak Detection Reference Orifice Low Flow; DTC P043F: Evaporative Emission System Reference Orifice High Flow; DTC P2401: Evaporative Emission Leak Detection Pump Stuck OFF; DTC P2402: Evaporative Emission Leak Detection Pump Stuck ON; DTC P2419: Evaporative Emission System Switching Valve Control Circuit Low
P2420Evaporative Emission System Switching Valve Control Circuit HighComes onDTC storedRefer to DTC P2420: Evaporative Emission System Switching Valve Control Circuit High
P2610ECM / PCM Internal Engine Off Timer PerformanceComes onDTC storedRefer to DTC P2610: ECM / PCM Internal Engine Off Timer Performance
P2A00A/F Sensor Circuit Slow Response (Bank 1 Sensor 1)Comes onDTC storedRefer to DTC P2A00: A/F Sensor Circuit Slow Response (Bank 1 Sensor 1)