Sfi System Freeze Frame Data

Engine Hybrid System. Corolla. Zre142 Aze141
2Zr-Fe Engine Control. Corolla. Zre142 Aze141
  1. DESCRIPTION

  1. PENDING FREEZE FRAME DATA

  1. LIST OF FREEZE FRAME DATA

Sfi System -- Freeze Frame Data



DESCRIPTION
  1. The ECM records vehicle and driving condition information as freeze frame data the moment a DTC is stored. When troubleshooting, freeze frame data can be helpful in determining whether the vehicle was moving or stationary, whether the engine was warmed up or not, whether the air fuel ratio was lean or rich, as well as other data recorded at the time of a malfunction.
    HINT:
    If it is impossible to replicate the problem even though a DTC is detected, confirm the freeze frame data.

  1. Corolla. Zre142 Aze141.2Zr-Fe Engine Control.Sfi System.Sfi System  Freeze Frame Data
    The ECM records engine conditions in the form of freeze frame data every 0.5 seconds. Using the Techstream, five separate sets of freeze frame data, including the data values at the time when the DTC was set, can be checked.
    1. 3 data sets before the DTC was set.
    2. 1 data set when the DTC was set.
    3. 1 data set after the DTC was set.
    1. These data sets can be used to simulate the condition of the vehicle around the time of the occurrence the malfunction. The data may assist in identifying the cause of the malfunction, and judging whether it was temporary or not.

PENDING FREEZE FRAME DATA
HINT:
Pending freeze frame data is stored when a 2 trip DTC is first detected during the first trip.
  1. Connect the Techstream to the DLC3.

  2. Turn the ignition switch to ON.

  3. Turn the Techstream on.

  4. Enter the following menus: Powertrain / Engine and ECT / Trouble Codes.



  5. Select a DTC in order to display its pending freeze frame data.

    HINT:
    1. Pending freeze frame data is cleared when any of the following occurs.
      1. Using the Techstream, the DTCs cleared.
      1. The cable is disconnected from the negative (-) battery terminal.
      1. 40 trips with the engine fully warmed up have been performed after returning to normal. (Pending freeze frame data will not be cleared by only returning the system to normal.)
    2. With previous pending freeze frame data stored, if pending freeze frame data is newly stored when a 2 trip DTC is detected in the first trip, the old freeze frame data will be replaced with the new one of the newly detected DTC in the next trip.

    Corolla. Zre142 Aze141.2Zr-Fe Engine Control.Sfi System.Sfi System  Freeze Frame Data


    Corolla. Zre142 Aze141.2Zr-Fe Engine Control.Sfi System.Sfi System  Freeze Frame Data


LIST OF FREEZE FRAME DATA
*1: Automatic transaxle models only
*2: Manual transaxle models only
*3: Except for Mexico models

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
Load percentage in terms of maximum intake air flow amount
MAF
Air flow rate from mass air flow meter
If value approximately 0.0 gm/s:
  1. Mass air flow meter power source circuit open
  1. VG circuit open or short
If value 271.0 gm/s or more:
  1. E2G circuit open
Atmosphere Pressure
Atmosphere pressure
-
Coolant Temp
Engine coolant temperature
  1. If value -40°C (-40°F): sensor circuit open
  1. If value higher than 135°C (275°F): sensor circuit shorted
Intake Air
Intake air temperature
  1. If value -40°C (-40°F): sensor circuit open
  1. If value higher than 128°C (262°F): sensor circuit shorted
Engine Run Time
Engine run time
-
Initial Engine Coolant Temp
Initial engine coolant temperature
-
Initial Intake Air Temp
Initial intake air temperature
-
Battery Voltage
Battery voltage
-
Glow Indicator Supported
Glow indicator supported
-
Glow Indicator
Glow indicator
-
Accel Sens. No. 1 Volt %
Accelerator pedal position No. 1
-
Accel Sens. No. 2 Volt %
Accelerator pedal position No. 2
-
Throttle Sensor Volt %
Throttle sensor positioning
Recognition value for throttle opening angle on ECM
Read value with ignition switch ON
Throttl Sensor #2 Volt %
Absolute throttle sensor positioning #2
Recognition value for throttle opening angle on ECM
Read value with ignition switch ON
Throttle Sensor Position
Throttle sensor positioning
Recognition value for throttle opening angle on ECM
Read value with ignition switch ON
Throttle Motor DUTY
Throttle actuator
-
Throttle Position
Throttle valve opening angle
When the engine stalls, is difficult to start, or idles roughly
ISC Flow
Flow rate calculated from information from each sensor
When the engine stalls, is difficult to start, or idles roughly
ISC Position
Target valve opening angle calculated from ISC
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 value
When the engine stalls, is difficult to start, or idles roughly
ISC Learning Value
ISC learning value
When the engine stalls, is difficult to start, or idles roughly
Electric Load Feedback Val
Electric load feedback value
When the engine stalls, is difficult to start, or idles roughly
Air Conditioner FB Val
Air conditioner feedback value
When the engine stalls, is difficult to start, or idles roughly
Low Revolution Control
Status of low engine speed control
When the engine stalls, is difficult to start, or idles roughly
N Range Status*1
Judgment for shift lever N position
When the engine stalls, is difficult to start, or idles roughly
Eng Stall Control FB Flow
Feedback value of intake air flow
When the engine stalls, is difficult to start, or idles roughly
Deposit Loss Flow
Deposit loss air flow rate
  1. This value indicates the amount of compensation for a decrease in flow passage area due to the buildup of deposits on the throttle valve.
  2. Check this value for reference when the engine stalls, is difficult to start, or idles roughly.
  3. When the ISC learned value is initialized by disconnecting the battery negative terminal or removing the fuses (EFI MAIN and ETCS fuses), performing 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.
    1. Start the engine cold and allow the engine to idle.
    2. 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.
    3. Turn the ignition switch off and wait for 30 seconds.
    4. Start the engine again, and allow the engine to idle for 5 minutes.
Injector (Port)
Injection direction for cylinder 1
-
Injection Volum (Cylinder1)
Injection volume (Cylinder 1)
Quantity of fuel injection volume for 10 times
Fuel Pump/Speed Status
Fuel pump/status
-
Vacuum Pump*3
Key-off EVAP system leak detection pump status
-
Current Fuel Type
Current fuel type
-
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*3
key-off EVAP system vent valve status
-
EVAP Purge VSV
VSV status for EVAP control
-
Purge Cut VSV Duty
Purge cut VSV duty
-
Target Air-Fuel Ratio
Ratio compared to stoichiometric level
-
AF Lambda B1S1
Short-term fuel trim associated with bank 1 sensor 1
-
AFS Voltage B1S1
Air fuel ratio sensor output voltage for bank 1 sensor 1
-
AFS Current B1S1
Air fuel ratio sensor output current for bank 1 sensor 1
Value becomes higher when fuel-cut executed under high engine speed
A/F Heater Duty #1
Air fuel ratio sensor heater duty ratio for bank 1 sensor 1
-
O2S B1S2
Heated oxygen sensor output voltage for bank 1 sensor 2
-
O2S Impedance B1S2
Sub heated oxygen sensor impedance (bank 1 sensor 2)
-
O2 Heater B1S2
Heated oxygen sensor heater (bank 1 sensor 2)
-
O2Heater Curr Val B1S2
Heated oxygen sensor current (bank 1 sensor 2)
-
Short FT #1
Short-term fuel trim of bank 1
Short-term fuel compensation used to maintain air fuel ratio at stoichiometric air fuel ratio
Long FT #1
Long-term fuel trim of bank 1
Overall fuel compensation carried out in long-term to compensate continual deviation of short-term fuel trim from central value
Total FT #1
Total fuel trim
-
Fuel System Status #1
Fuel system status (bank 1)
  1. OL (Open Loop): Has not yet satisfied conditions to go closed loop
  1. CL (Closed Loop): Using air fuel ratio sensor as feedback for fuel control
  1. OLDrive: Open loop due to driving conditions (fuel enrichment)
  1. OLFault: Open loop due to detected system fault
  1. CLFault: Closed loop but air fuel ratio sensor, which is used for fuel control, malfunctioning
Fuel System Status #2
Fuel system status (bank 2)
  1. OL (Open Loop): Has not yet satisfied conditions to go closed loop
  1. CL (Closed Loop): Using air fuel ratio sensor as feedback for fuel control
  1. OLDrive: Open loop due to driving conditions (fuel enrichment)
  1. OLFault: Open loop due to detected system fault
  1. CLFault: Closed loop but air fuel ratio sensor, witch is used for fuel control, malfunctioning
IGN Advance
Ignition timing advance for cylinder 1
-
Knock Feedback Value
Feedback value of knocking
-
Knock Correct Learn Value
Correction learning value of knocking
-
Idle Spark Advan Ctrl #1
Ignition timing advance value (for No. 1 cylinder)
When the engine stalls, is difficult to start, or idles roughly
Idle Spark Advan Ctrl #2
Ignition timing advance value (for No. 2 cylinder)
When the engine stalls, is difficult to start, or idles roughly
Idle Spark Advan Ctrl #3
Ignition timing advance value (for No. 3 cylinder)
When the engine stalls, is difficult to start, or idles roughly
Idle Spark Advan Ctrl #4
Ignition timing advance value (for No. 4 cylinder)
When the engine stalls, is difficult to start, or idles roughly
Actual VVT Angle #1
VVT displacement angle for bank 1
-
Actual VVT Ex Angle #1
Exhaust VVT displacement angle for bank 1
-
VVT Control Status #1
VVT control (bank 1) status
-
VVT Advance Fail
Status of VVT advance fail
-
Catalyst Temp B1S1
Catalyst temperature (associated sensor 1)
-
Catalyst Temp B1S2
Catalyst temperature (associated sensor 2)
-
Starter Signal
Starter signal
-
Starter Control
Starter control
-
Power Steering Signal
Power steering switch signal
-
Starter Relay
Starter relay
-
ACC Relay
ACC relay
-
Neutral Position SW Signal*1
Neutral position switch signal
-
Clutch Switch*2
Clutch switch status
-
Clutch Start SW*2
Clutch start switch status
-
Stop Light Switch
Stop light switch status
-
A/C Signal
A/C signal
-
Closed Throttle Position SW
Closed throttle position switch
-
Fuel Cut Condition
Fuel cut condition ON or OFF
-
Immobiliser Communication
Immobiliser communication
-
TC Terminal
TC terminal status
-
Time after DTC Cleared
Time since DTCs cleared
-
Distance from DTC Cleared
Distance traveled since DTCs cleared
-
Warmup Cycle Cleared DTC
Warm-up cycles since DTCs cleared
Number of warm-up cycles since DTCs cleared
Dist Batt Cable Disconnect
Accumulated distance from battery cable disconnected
-
IG OFF Elapsed Time*3
Cumulative time after ignition switch off
-
TC and TE1
TC and CG (TE1) terminals of DLC3
-
Ignition Trig. Count
Ignition counter to calculated misfire count
-
Cylinder #1 Misfire Count
Misfire count for cylinder 1
-
Cylinder #2 Misfire Count
Misfire count for cylinder 2
-
Cylinder #3 Misfire Count
Misfire count for cylinder 3
-
Cylinder #4 Misfire Count
Misfire count for cylinder 4
-
All Cylinders Misfire Count
All cylinders misfire count
-
Misfire RPM
Average engine speed when misfire occurs
-
Misfire Load
Average engine load when misfire occurred
-
Misfire Margin
Margin to detect engine misfire
Misfire detection margin
Catalyst OT MF F/C
Fuel cut to prevent catalyst from overheating during misfire
-
Cat OT MF F/C History
History of fuel cut to prevent catalyst from overheating during misfire
-
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
When the engine stalls, is difficult to start, or idles roughly
Starter Count
Number of times starter turned on after ignition switch turned from off to ON
When the engine stalls, is difficult to start, or idles roughly
Run Dist of Previous Trip
Distance traveled during previous trip
  1. Run Dist of Previous Trip continues to display the distance traveled in the previous trip during the detection period of DTC P1604, which ends 5 seconds after the engine starts.
    Then the previous trip distance will be cleared and the distance traveled during this trip, which is calculated based on the vehicle speed, will be displayed.
  2. When the engine is difficult to start and DTC P1604 is stored, Run Dist of Previous Trip will continue to be displayed.
    When inspecting for DTCs other than P1604, or when taking a snapshot, the distance traveled during this trip will be displayed.
Engine Starting Time
Engine run time (elapsed time from ignition switch ON to off)
When the engine stalls, is difficult to start, or idles roughly
Previous Trip Coolant Temp
Coolant temperature of previous trip
When the engine stalls, is difficult to start, or idles roughly
Previous Trip Intake Temp
Intake temperature of previous trip
When the engine stalls, is difficult to start, or idles roughly
Engine Oil Temperature
Engine oil temperature (estimated)
When the engine stalls, is difficult to start, or idles roughly
Previous Trip Eng Oil Temp
Engine oil temperature of previous trip
When the engine stalls, is difficult to start, or idles roughly
Ambient Temp for A/C
Ambient temperature
When the engine stalls, is difficult to start, or idles roughly
Previous Trip Ambient Temp
Ambient temperature of previous trip
When the engine stalls, is difficult to start, or idles roughly
Engine Start Hesitation
History of instances of slow engine starts
When the engine stalls, is difficult to start, or idles roughly
Low Rev for Eng Start
History of low engine speed after engine starts
When the engine stalls, is difficult to start, or idles roughly
Minimum Engine Speed
Minimum engine speed
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
-
A/F Learn Value Idle #1
Air fuel ratio learn value of idle area (bank 1)
-
A/F Learn Value Low #1
Air fuel ratio learn value of low load area (bank 1)
-
A/F Learn Value Mid1 #1
Air fuel ratio learn value of middle1 load area (bank 1)
-
A/F Learn Value Mid2 #1
Air fuel ratio learn value of middle2 load area (bank 1)
-
A/F Learn Value High #1
Air fuel ratio learn value of high load area (bank 1)
-
Electric Fan Motor
Electric cooling fan motor
-
Brake Override System
Brake override system status
-
Idle Fuel Cut
Fuel cut idle
Idle Fuel Cut = "ON" when throttle valve fully closed and engine speed over 2500 rpm
FC TAU
FC TAU
Fuel cut being performed under very light load to prevent engine combustion from becoming incomplete
Immobiliser Fuel Cut
Status of the immobiliser fuel cut
-
Immobiliser Fuel Cut History
Status of the immobiliser fuel cut history
-
Electrical Load Signal 1
Electrical Load Signal
-
Electrical Load Signal 2
Electrical Load Signal
-
A/F Sensor Determination (worst value) #1
Worst judgment value of air fuel ratio sensor output (bank 1)
-
Engine Speed Fluctuation Avg (worst value) #1
Worst value of average engine speed fluctuation (cylinder 1)
-
Engine Speed Fluctuation Avg (worst value) #2
Worst value of average engine speed fluctuation (cylinder 2)
-
Engine Speed Fluctuation Avg (worst value) #3
Worst value of average engine speed fluctuation (cylinder 3)
-
Engine Speed Fluctuation Avg (worst value) #4
Worst value of average engine speed fluctuation (cylinder 4)
-