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Is F

BANK 1 INTAKE CAM

Monitor ID Test ID Scaling Unit Description
$35 $81 Multiply by 0.01 Second Forced movement of oil control valve time
BANK 2 INTAKE CAM

Monitor ID Test ID Scaling Unit Description
$36 $81 Multiply by 0.01 Second Forced movement of oil control valve time
BANK 1 EXHAUST CAM

Monitor ID Test ID Scaling Unit Description
$35 $85 Multiply by 0.01 Second Forced movement of oil control valve time
BANK 2 EXHAUST CAM

Monitor ID Test ID Scaling Unit Description
$36 $85 Multiply by 0.01 Second Forced movement of oil control valve time
A/F SENSOR BANK 1

Monitor ID Test ID Scaling Unit Description
$01 $91 Multiply by 0.004 mA Air fuel ratio sensor current
$01 $93 Multiply by 0.00012 V Rich to Lean response rate deterioration level
$01 $94 Multiply by 0.00012 V Lean to Rich response rate deterioration level
$01 $95 Multiply by 0.001 Second Rich to Lean delay level
$01 $96 Multiply by 0.001 Second Lean to Rich delay level
HO2S BANK 1 SENSOR 2

Monitor ID Test ID Scaling Unit Description
$02 $08 Multiply by 0.001 V Maximum sensor voltage
$02 $8B Multiply by 0.001 Seconds 0.35 - 0.2 V sensor switch time
$02 $8D Multiply by 0.001 Seconds Duration that sensor voltage drops to 0.2 V during fuel-cut
$02 $8F Multiply by 0.0003 g Maximum oxygen storage capacity
A/F SENSOR BANK 2

Monitor ID Test ID Scaling Unit Description
$05 $91 Multiply by 0.004 mA Air fuel ratio sensor current
$05 $93 Multiply by 0.00012 V Rich to Lean response rate deterioration level
$05 $94 Multiply by 0.00012 V Lean to Rich response rate deterioration level
$05 $95 Multiply by 0.001 Second Rich to Lean delay level
$05 $96 Multiply by 0.001 Second Lean to Rich delay level
HO2S BANK 2 SENSOR 2

Monitor ID Test ID Scaling Unit Description
$06 $08 Multiply by 0.001 V Maximum sensor voltage
$02 $8B Multiply by 0.001 Seconds 0.35 - 0.2 V sensor switch time
$06 $8D Multiply by 0.001 Seconds Duration that sensor voltage drops to 0.2 V during fuel-cut
$06 $8F Multiply by 0.0003 g Maximum oxygen storage capacity
CATALYST-BANK 1

Monitor ID Test ID Scaling Unit Description
$21 $A9 Multiply by 0.0003 No dimension Oxygen storage capacity of catalyst-bank 1
CATALYST-BANK 2

Monitor ID Test ID Scaling Unit Description
$22 $A9 Multiply by 0.0003 No dimension Oxygen storage capacity of catalyst-bank 2
EVAP

Monitor ID Test ID Scaling Unit Description
$3D $C9 Multiply by 0.001 kPa Test value for small leak (P0456)
$3D $CA Multiply by 0.001 kPa Test value for gross leak (P0455)
$3D $CB Multiply by 0.001 kPa Test value for leak detection pump OFF stuck (P2401)
$3D $CD Multiply by 0.001 kPa Test value for leak detection pump ON stuck (P2402)
$3D $CE Multiply by 0.001 kPa Test value for vent valve OFF stuck (P2420)
$3D $CF Multiply by 0.001 kPa Test value for vent valve ON stuck (P2419)
$3D $D0 Multiply by 0.001 kPa Test value for reference orifice low flow (P043E)
$3D $D1 Multiply by 0.001 kPa Test value for reference orifice high flow (P043F)
$3D $D4 Multiply by 0.001 kPa Test value for purge VSV close stuck (P0441)
$3D $D5 Multiply by 0.001 kPa Test value for purge VSV open stuck (P0441)
$3D $D7 Multiply by 0.001 kPa Test value for purge flow insufficient (P0441)
REAR HO2S HEATER

Monitor ID Test ID Scaling Unit Description
$42 $91 Multiply by 0.001 Ohm Maximum sensor heater current - Bank 1 Sensor 2
$46 $91 Multiply by 0.001 Ohm Maximum sensor heater current - Bank 2 Sensor 2
MISFIRE

Monitor ID Test ID Scaling Unit Description
$A1 $0B Multiply by 1 Time Exponential Weighted Moving Average (EWMA) misfire for all cylinders: Misfire counts for last ten driving cycles-Total
$A1 $0C Multiply by 1 Time Misfire rate for all cylinders: Misfire counts for last/current driving cycles-Total
$A2 $0B Multiply by 1 Time EWMA misfire for cylinder 1: Misfire counts for last ten driving cycles- Total
$A2 $0C Multiply by 1 Time Misfire rate for cylinder 1: Misfire counts for last/current driving cycle- Total
$A3 $0B Multiply by 1 Time EWMA misfire for cylinder 2: Misfire counts for last ten driving cycles- Total
$A3 $0C Multiply by 1 Time Misfire rate for cylinder 2: Misfire counts for last/current driving cycle- Total
$A4 $0B Multiply by 1 Time EWMA misfire for cylinder 3: Misfire counts for last ten driving cycles- Total
$A4 $0C Multiply by 1 Time Misfire rate for cylinder 3: Misfire counts for last/current driving cycle- Total
$A5 $0B Multiply by 1 Time EWMA misfire for cylinder 4: Misfire counts for last ten driving cycles- Total
$A5 $0C Multiply by 1 Time Misfire rate for cylinder 4: Misfire counts for last/current driving cycle- Total
$A6 $0B Multiply by 1 Time EWMA misfire for cylinder 5: Misfire counts for last ten driving cycles- Total
$A6 $0C Multiply by 1 Time Misfire rate for cylinder 5: Misfire counts for last/current driving cycle- Total
$A7 $0B Multiply by 1 Time EWMA misfire for cylinder 6: Misfire counts for last ten driving cycles- Total
$A7 $0C Multiply by 1 Time Misfire rate for cylinder 6: Misfire counts for last/current driving cycle- Total
$A8 $0B Multiply by 1 Time EWMA misfire for cylinder 7: Misfire counts for last ten driving cycles- Total
$A8 $0C Multiply by 1 Time Misfire rate for cylinder 7: Misfire counts for last/current driving cycle- Total
$A9 $0B Multiply by 1 Time EWMA misfire for cylinder 8: Misfire counts for last ten driving cycles- Total
$A9 $0C Multiply by 1 Time Misfire rate for cylinder 8: Misfire counts for last/current driving cycle- Total