LEMON Manuals: Even more car manuals for everyone: 1960-2025
Home >> Lexus >> 2006 >> ES 330 >> Repair and Diagnosis >> Engine Performance >> Mode 6 - 2006 LEXUS >> GS 300
April 5, 2026: LEMON Manuals is launched! Read the announcement.

GS 300

HEATED OXYGEN SENSOR HEATER

MID TID Scaling Description of Test Value Minimum Test Limit Maximum Test Limit
$42 $90 Multiply by 0.001 (A) Maximum sensor heater current Minimum test limit Maximum test limit
THERMOSTAT

MID TID Scaling Description of Test Value Minimum Test Limit Maximum Test Limit
$E1 $E8 Multiply by 01 [°C] ECT sensor output when estimated ECT reached to malfunction criteria Malfunction criteria Maximum test limit
HO2S - MONITOR

MID TID Scaling Description of Test value Minimum Test Limit Maximum Test Limit
$02 $07 Multiply by 0.001 [V] Maximum sensor voltage Minimum test limit Maximum test limit
$02 $08 Multiply by 0.001 [V] Maximum sensor voltage Minimum test limit Maximum test limit
$02 $8F Multiply by 0.001 [g] Maximum oxygen storage capacity 0 Maximum test limit
MISFIRE MONITOR - ALL CYLINDERS

MID TID Scaling Description of Test Value Minimum Test Limit Maximum Test Limit
$A1 $0B Multiply by 1 [time] Exponential weighted moving average misfire counts for last 10 driving cycles - total 0 65535
$A1 $0C Multiply by 1 [time] Misfire counts for last and current driving cycles - total 0 65535
MISFIRE MONITOR - CYLINDERS 1

MID TID Scaling Description of Test Value Minimum Test Limit Maximum Test Limit
$A2 $0B Multiply by 1 [time] Exponential weighted moving average misfire counts for last 10 driving cycles - total 0 65535
$A2 $0C Multiply by 1 [time] Misfire counts for last and current driving cycles - total 0 65535
MISFIRE MONITOR - CYLINDERS 2

MID TID Scaling Description of Test Value Minimum Test Limit Maximum Test Limit
$A3 $0B Multiply by 1 [time] Exponential weighted moving average misfire counts for last 10 driving cycles - total 0 65535
$A3 $0C Multiply by 1 [time] Misfire counts for last and current driving cycles - total 0 65535
MISFIRE MONITOR - CYLINDERS 3

MID TID Scaling Description of Test Value Minimum Test Limit Maximum Test Limit
$A4 $0B Multiply by 1 [time] Exponential weighted moving average misfire counts for last 10 driving cycles - total 0 65535
$A4 $0C Multiply by 1 [time] Misfire counts for last and current driving cycles - total 0 65535
MISFIRE MONITOR - CYLINDERS 4

MID TID Scaling Description of Test Value Minimum Test Limit Maximum Test Limit
$A5 $0B Multiply by 1 [time] Exponential weighted moving average misfire counts for last 10 driving cycles - total 0 65535
$A5 $0C Multiply by 1 [time] Misfire counts for last and current driving cycles - total 0 6,535
MISFIRE MONITOR - CYLINDERS 5

MID TID Scaling Description of Test Value Minimum Test Limit Maximum Test Limit
$A6 $0B Multiply by 1 [time] Exponential weighted moving average misfire counts for last 10 driving cycles - total 0 65535
$A6 $0C Multiply by 1 [time] Misfire counts for last and current driving cycles - total 0 65535
MISFIRE MONITOR - CYLINDERS 6

MID TID Scaling Description of Test Value Minimum Test Limit Maximum Test Limit
$A7 $0B Multiply by 1 [time] Exponential weighted moving average misfire counts for last 10 driving cycles - total 0 65535
$A7 $0C Multiply by 1 [time] Misfire counts for last and current driving cycles - total 0 65535
TID $01: CATALYST - USING A/F SENSOR AND HO2

TLT CID Unit Conversion Description of Test Value Description of Test Limit
0 $01 Multiply by 0.0078 (no dimension) Catalyst deterioration level (bank 1):
Determined by waveform of A/F sensor and HO2S
Malfunction criterion
0 $01 Multiply by 0.0078 (no dimension) Catalyst deterioration level (bank 1):
Determined by waveform of A/F sensor and HO2S
Malfunction criterion for catalyst deterioration
0 $02 Multiply by 0.0078 (no dimension) Catalyst deterioration level (bank 2):
Determined by waveform of A/F sensor and HO2S
Malfunction criterion for catalyst deterioration
A/F SENSOR MONITOR

MID TID Scaling Description of Test Value Minimum Test Limit Maximum test Limit
$01 $91 Multiply by 0.003 [mA] Air-fuel ratio sensor current for bank 1 sensor 1 Malfunction criterion for low side rationality Malfunction criterion for high side rationality
TID $06: A/F SENSOR

TLT CID Unit Conversion Description of Test Value Description of Test Limit
0 $01 Multiply by 0.000244 (No dimension) Parameter for identify A/F sensor response rate (bank 1) Malfunction criterion
0 $11 Multiply by 0.000244 (No dimension) Parameter for identify A/F sensor response rate (bank 2) Malfunction threshold for A/F sensor deterioration
EVAP

MID TID Scaling Description of Test Value Minimum Test Limit Maximum Test Limit
$3D $C9 Multiply by 0.01 [kPa] Test value for small leak (P0456) Refer to pressure D(1) Minimum test limit for small leak Maximum test limit for small leak
$3D $CA Multiply by 0.01 [kPa] Test value for gross leak (P0455) Refer to pressure E(1) Minimum test limit for gross leak Maximum test limit for gross leak
$3D $CB Multiply by 0.01 [kPa] Test value for vacuum pump stuck OFF (P2401) Refer to pressure A(1) Minimum test limit for vacuum pump stuck OFF Maximum test limit for vacuum pump stuck OFF
$3D $CD Multiply by 0.01 [kPa] Test value for vacuum pump stuck ON (P2402) Refer to pressure A(1) Minimum test limit for vacuum pump stuck ON Maximum test limit for vacuum pump stuck ON
$3D $CE Multiply by 0.01 [kPa] Test value for vent valve stuck OFF (vent) (P2420) Refer to pressure C(1) Minimum test limit for vent valve stuck ON Maximum test limit for vent valve stuck ON
$3D $CF Multiply by 0.01 [kPa] Test value for vent valve stuck ON (P2419) Refer to pressure A(1) Minimum test limit for vent valve stuck OFF Maximum test limit for vent valve stuck OFF
$3D $D0 Multiply by 0.01 [kPa] Test value for 0.02 inch orifice low flow (P043E) Refer to pressure B(1) Minimum test limit for 0.02 inch orifice low flow Maximum test limit for 0.02 inch orifice low flow
$3D $D1 Multiply by 0.01 [kPa] Test value for 0.02 inch orifice high flow (P043F) Refer to pressure A(1) Minimum test limit for 0.02 inch orifice high flow Maximum test limit for 0.02 inch orifice high flow
$3D $D4 Multiply by 0.01 [kPa] Test value for EVAP VSV stuck close (P0441) Refer to pressure F(1) Minimum test limit for EVAP VSV stuck close Maximum test limit for EVAP VSV stuck close
$3D $D5 Multiply by 0.01 [kPa] Test value for EVAP VSV stuck open (P0441) Refer to pressure E(1) Minimum test limit for EVAP VSV stuck open Maximum test limit for EVAP VSV stuck open
$3D $D7 Multiply by 0.01 [kPa] Test value for purge flow (P0441) Refer to pressure G(1) Minimum test limit for purge flow Maximum test limit for purge flow
(1) Pressures A to G are indicated as shown in the following diagram.
Fig 1: EVAP System Pressure Graph
G04017989Courtesy of © TOYOTA, LICENSE AGREEMENT TMS1002