LEXUS SC400 1991 Service Repair Manual
Page 3661 of 4087
DIAGNOSTIC CHART
DIAGNOSTIC
CHART
Refer to inspection procedure in details.
HINT: If diag. code 14 is displayed, check No. 1 igniter circuit. If diag. code 15 is displayed, check No. 2 igniter circuit.
Check for spark.
Check for open and short in IGF signal circuit
between igniter and ECU.
Check voltage of terminal IGF.
Check and replace ECU.
Check voltage of terminal IGT.
Check voltage of igniter power source.
Check for open and short in primary coil circuit.
Check ignition coil.
Replace igniter.
Check and repair igniter power source circuit.
Check voltage of terminal IGT
(Disconnect igniter connector).
Check and repair igniter power source circuit. Repair or replace harness or
connector.
Replace igniter.
Repair or replace harness or
connector
Replace ignition relay.
Replace ignition relay.
Check for open and short in IGT signal circuit
between igniter and ECU.
Check and replace ECU. Repair or replace harness or
connectorReplace igniter.
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ENGINE TROUBLESHOOTING Circuit InspectionTR±55
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OKNG
OKNG
OKNG
INSPECTION PROCEDURE
HINT: If diag. code 14 is displayed, check No. 1 igniter circuit. If diag. code 15 is displayed, check No. 2 igniter circuit.
1Check for Spark.
C
OK
Hint
Disconnect the high±tension cord from the distributor,
hold its end about 12.5 mm (1/2º) from the ground, see
if spark occurs while the engine is being cranked.
Spark should be generated.
To prevent excessive fuel injected from the injectors dur-
ing the check. Don't crank the engine for more than 1±2
seconds at a time.
Go to step [4].
2Check for open and short in harness and connector in the IGF and IGT signal c\
ircuit between
engine & ECT ECU and igniter (See page IN±27)
Repair or replace harness or connector.
#Disconnect igniter sonnector and check voltage between terminals IGF1, 2 of engine & ECT
ECU connector and body ground.
C
OK
P(2) Disconnect igniter connector.
(2) Connect the Check Harness A.
(See page TR±30).
(2) Turn ignition switch on.
Measure Voltage between terminals IGF1, 2 or engine
& ECT ECU connector and body ground.
Voltage: 4 ± 6 V
Replace igniter.*1
Check and replace engine & ECT ECU.
*1: When dia. code 14 is displayed, replace the igniter with 5 wire harness. (extra wire is for tachometer). When diag.
code 15 is displayed, replace the igniter with 4 wire har-
ness.
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OKNG
OKNG
4Check voltage between terminals IGT1, 2 of engine and & ECT ECU connector and body ground.
C
OK
PConnect the Check Harness A.
(See page TR±30).
Measure voltage between terminals IGT1, 2 of engine
& ECT ECU connector and body ground when engine
is cranked.
Voltage: 0.5 ± 1.0 V (Neither 0 V nor 5 V)
Go to step [9].
5Check voltage between terminal 3 of No. 1, No. 2 igniter connectors and \
body ground.
C
OK
PDisconnect igniter connector.
Mesure voltage between terminal 3 of No. 1, No. 2 igni-
ter connectors and body ground, when ignitino switch is
turned to ªONº and ªSTAº position.
Voltage: 10 ± 14 V
Go to step [8].
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OKNG
OKNG
6Check for open and short in harness and connector between ignition relay and \
ignition coil,
ignition coil and igniter (See page IN±27).
Repair or replace harness or connector
#Check ignition coil.
C
OK
PDisconnect ignition coil connector.
(For No. 1 ignition coil (on left bank), remove the battery)
(2) Check primary coil. Measure resistance between terminals of ignition
coil connector.
(2) Check secondary coil. Measure resistance between terminal 1 of ignition
coil connector and high±tension terminal.
Replace ignition coil.
Replace Igniter. *1
*1: When diag. code 14 is displayed, replace the igniter with 5 wire harness. (extra wire is for tachometer). When diag.
code 15 is displayed, replace the igniter with 4 wire har-
ness
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OKNG
8Check Ignition Relay.
C
OK
P
C
OK
Remove ignition relay.
Check continuity between terminals of ignition relay
shown below.
(2) Apply battery voltage between terminals 3 and 6, 4and 5.
(2) Check continuity between terminals 1 and 2.
Replace ignition relay.
Check and repair harness or connector between
battery and ignition relay, ignition relay and igni-
ter.
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NGOK
OKNG
9Disconnect igniter connector and check voltage between terminals IGT1, 2 of engine & ECT
ECU connector and body ground.
C
OK
PDisconnect igniter connector.
Connect engine & ECT ECU connector.
Measure voltage between terminals IGT1, 2 of engine
& ECT ECU connector and body ground when engine
is cranked.
Voltage: 0.5 ± 1.0 V(Neither 0 V nor 5 V)
Replace igniter .*1
10Check for Open and short in harness and connector in IGT signal circuit betwee\
n engine & ECT
ECU and igniter (See page IN±27).
Repair or replace harness or connector.
Check and replace engine & ECT ECU.
*1: When diag. code 14 is displayed, replace the igniter with 5 wire harness. (extra wire is for tachometer). When diag.
code 15 is displayed, replace the igniter with 4 wire har-
ness
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Are there any other codes (besides
Code 16) being output?
Replace engine (& ECT) ECU.
Go to relevant diag. code
chart.
Diag. Code 16ECT Control Signal Malfunction
CIRCUIT DESCRIPTION
The signal from the ECT CPU retards the ignition timing of the engine durin\
g ECT gear shifting, thus momentarily
reducing torque output of the engine for smooth clutch operation inside the transmission and reduced shift
shock.
If the ECU records the diagnostic code º16º in memory, it prohibits the torque control of the ECT which performs
smooth gear shifting.
DTC No.DTC Detecting ConditionTrouble Area
16Fault in communications between the engine CPU and
ECT CPU in the ECU. ECU
If the ECU records the diagnostic trouble code º16º in memory, it prohibits the torque control of the ECT which
performs smooth gear shifting.
DIAGNOSTIC CHARTDIAGNOSTIC CHART
TR±58±
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Diag. Code 21, 28Main Oxygen Sensor Circuit
CIRCUIT DESCRIPTION
To obtain a high purification rate for the CO, HC and NOx components of th\
e exhaust gas, a three±way catalyst
is used, but for most efficient use of the three±way catalyst, the air±fuel ratio must be \
precisely controlled so
that it is always close to the stoichiometric air±fuel ratio.
The oxygen sensor has the characteristic whereby its output voltage changes\
suddenly in the vicinity of the stoi-
chiometric air±fuel ratio. This characteristic is used to detect the oxygen con\
centration in the exhaust gas and
provide feedback to the computer for control of the air±fuel ratio.
When the air±fuel ratio becomes LEAN, the oxygen concentration in the exh\
aust increases and the oxygen sen-
sor informs the ECU of the LEAN condition (small electromotive force: 0 V)\
.
When the air±fuel ratio is RICHER than the stoichiometric air±fuel rat\
io the oxygen concentration in the exhaust
gas is reduced and the oxygen sensor informs the ECU of the RICH condition \
(large electromotive force: 1V).
The ECU judges by the electromotive force from the oxygen sensor whether th\
e air±fuel ratio is RICH or LEAN
and controls the injection time accordingly. However, if malfunction of the oxygen sensor causes output of ab-
normal electromotive force, the ECU is unable to perform accurate air±fuel \
ratio control.
DTC No.DTC Detecting ConditionTrouble Area
21.
28
(1) Main oxygen sensor signal voltage is reduced to tbetween 0.35 V and 0.70 V for 60 sec. under
conditions (a) (d). (2 trip detection logic)*
(a) Coolant temp.: Between 805C (176 5F) and
95 5C (203 5F).
(b) Engine speed: 1,500 rpm or more
(c) Load driving (EX. ECT in 4th (5th for M/T) speed, A/C ON, Flat road, 50 mph
(80km/h)).
(d) Main oxygen sensor signal voltage: Alternating above and below 0.45 V.
Main oxygen sensor circuit
Main oxygen sensor
(2) Main oxygen sensor signal voltage exceeds
0.70 V for 3 sec. or more during fuel cut.
*: See page TR±25..
HINT: Diag. trouble code 21 is for the front side main oxygen sensor circuit.\
Diag. trouble code 28 is for the rear side main oxygen sensor circuit.
TR±60
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CIRCUIT DESCRIPTION (Cont'd)
DIAGNOSIS CODE DETECTION DRIVING PATTERN
Purpose of the driving pattern.
(a) To simulate diag. code detecting condition after diag. code is recorded.
(b) To check that the malfunction is corrected when the repair is completed co\
nfirming that diag. code isno longer detected.
Disconnect the EFI fuse (15 A) for 10 sec. or more, with IG switch OFF\
.
Initiate test mode (Connect terminal TE2 and E1 of check connector or TDCL with IG
switch OFF).
Start the engine and warm up with all ACC switch OFF.
After the engine is warmed up, let it idle for 3 min.
After performing the idling in , perform gradual acceleration with in th\
e range 1,300
1,700 rpm (centered around 1,500 rpm) with the A/C switch ON and D range fo\
r A/T
(5th for M/T).
(Take care that the engine speed does not fall below 1,200 rpm when shifting.\
Gradu-
ally depress the accelerator pedal and kept it. Steady so that engine br\
aking does not
occur).
Maintain the vehicle speed at 40±50 mph (64±80 km/h).
Keep the vehicle running for 1±2 min. after starting acceleration.
HINT: If a malfunction exists, the ºCHECKº engine warning light will light\
up after approx. 60 sec. from the start of acceleration.
NOTICE: If the conditions in this test are not strictly followed, detection of t\
he malfunction will not be possible.
Malfunction: Main Oxygen Sensor Deterioration
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DIAGNOSTIC CHART
Are there any other codes (Besides 21 or
28) being output?
Replace oxygen sensor.
Go to relevant diag. code chart.
HINT: If diag. code 21 is output, replace the front side main oxygen sensor.If diag. code 28 is output, replace the rear side main oxygen sensor.
WIRING DIAGRAM
TR±62±
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