P2138 SUZUKI SWIFT 2007 2.G Service Workshop Manual
[x] Cancel search | Manufacturer: SUZUKI, Model Year: 2007, Model line: SWIFT, Model: SUZUKI SWIFT 2007 2.GPages: 1496, PDF Size: 34.44 MB
Page 46 of 1496

Downloaded from www.Manualslib.com manuals search engine 1-ii Table of Contents
DTC P0123: Throttle / Pedal Position Sensor / Switch “A” (Main) Circuit  High ....................... 1A-85
DTC P0131 / P0132: O2 Sensor (HO2S)  Circuit Low Voltage / High Voltage (Sensor-
1) ..................................................................... 1A-88
DTC P0133: O2 Sensor  (HO2S) Circuit Slow 
Response (Sensor- 1) ...................................... 1A-91
DTC P0134: O2 Sensor (HO2S) Circuit No  Activity Detected (Sensor -1) ........................... 1A-92
DTC P0137 / P0138: O2 Sensor (HO2S)  Circuit Low Voltage / High Voltage (Sensor-
2) ..................................................................... 1A-94
DTC P0140: O2 Sensor (HO2S) Circuit No  Activity Detected (Sensor -2) ........................... 1A-97
DTC P0171 / P0172: Fuel System Too Lean /  Rich ................................................................. 1A-98
DTC P0222: Throttle / Pedal Position Sensor  / Switch “B” (Sub) Circuit Low ....................... 1A-100
DTC P0223: Throttle / Pedal Position Sensor  / Switch “B” (Sub) Circuit High ...................... 1A-102
DTC P0300 / P0301 / P0302 / P0303 / P0304:  Random / Multiple Cylin der Misfire Detected 
/ Cylinder 1 / Cylinder 2 / Cylinder 3 / 
Cylinder 4 Misfire Detected ........................... 1A-105
DTC P0327 / P0328: Knoc k Sensor 1 Circuit 
Low / High ..................................................... 1A-107
DTC P0335: Crankshaft Position (CKP)  Sensor “A” Circuit .......................................... 1A-109
DTC P0340: Camshaft Position (CMP)  Sensor “A” Circuit .......................................... 1A-111
DTC P0350: Ignition Coil Primary / Secondary  Circuit ............................................................ 1A-114
DTC P0401 / P0402: Exhaust Gas  Recirculation Flow Insufficient Detected / 
Excessive Detected ...................................... 1A-116
DTC P0403: Exhaust Gas Recirculation  Control Circuit ................... ............................ 1A-118
DTC P0420: Catalyst  System Efficiency 
below Threshold ................ ............................ 1A-120
DTC P0443: Evaporativ e Emission System 
Purge Control Valve Circuit ........................... 1A-122
DTC P0480: Fan 1 (Radiator Cooling Fan)  Control Circuit ................... ............................ 1A-124
DTC P0500: Vehicle Speed Sensor “A”  Malfunction .................................................... 1A-128
DTC P0532: A/C Refrigerant Pressure  Sensor “A” Circuit Low ... ............................... 1A-130
DTC P0533: A/C Refrigerant Pressure  Sensor “A” Circuit High ................................. 1A-132
DTC P0601 / P0602 / P0607: Internal Control  Module Memory Check Sum Error / Control 
Module Programming Error / Control Module 
Performance ................................................. 1A-134
DTC P0616: Starter Relay  Circuit Low............ 1A-135
DTC P0617: Starter Relay  Circuit High ........... 1A-136
DTC P0620: Generator Control Circuit ........... 1A-137
DTC P0625 / P0626: Generator Field  Terminal Circuit Low / High . .......................... 1A-139
DTC P1501 / P1502: Electric Load Current  Sensor Circuit Low / High . ............................ 1A-141 DTC P1510: ECM Back-Up Power Supply 
Malfunction .................................................... 1A-143
DTC P1603: TCM Trouble Code Detected ..... 1A-144
DTC P1674: CAN Communication (Bus Off  Error) ............................................................. 1A-145
DTC P1676: CAN Communication (Reception  Error for TCM) ............................................... 1A-148
DTC P1678: CAN Communication (Reception  Error for BCM) ............................................... 1A-149
DTC P1685: CAN Communication (Reception  Error for ABS/ESP ® Control Module) ........... 1A-150
DTC P2101: Throttle Actuator Control Motor  Circuit Range / Performance ......................... 1A-152
DTC P2102: Throttle Actuator Control Motor  Circuit Low .................................................... 1A-154
DTC P2103: Throttle Actuator Control Motor  Circuit High.................................................... 1A-155
DTC P2111 / P2112: Throttle Actuator Control  System - Stuck Open / Closed ...................... 1A-156
DTC P2119: Throttle Actu ator Control Throttle 
Body Range / Performance ........................... 1A-157
DTC P2122: Throttle / Pedal Position Sensor  / Switch “D” (Main) Circuit Low Input............. 1A-159
DTC P2123: Throttle / Pedal Position Sensor  / Switch “D” (Main) Circuit High Input ............ 1A-161
DTC P2127: Throttle Pedal Position Sensor /  Switch “E” (Sub) Circuit  Low Input ................ 1A-164
DTC P2128: Throttle / Pedal Position Sensor 
/ Switc
 h “E” (Sub) Circuit High Input ............. 1A-166
DTC P2135: Throttle / Pedal Position Sensor  / Switch “A”/“B” (Main / Sub) Voltage 
Correlation..................................................... 1A-168
DTC P2138: Throttle / Pedal Position Sensor  / Switch “D”/“E” (Main / Sub) Voltage 
Correlation..................................................... 1A-171
DTC P2227 / P2228 / P2229: Barometric  Pressure Circuit Malfunction ......................... 1A-173
Inspection of ECM and Its Circuits .................. 1A-175
ECM Power and Ground Circuit Check........... 1A-194
Fuel Injector Circuit Check .............................. 1A-198
Fuel Pump and Its Circuit Check..................... 1A-200
Fuel Pressure Check....................................... 1A-203
A/C System Circuits Check ............................. 1A-205
Electric Load Signal Circuit Check .................. 1A-209
Radiator Cooling Fan Low Speed Control  System Check ............................................... 1A-211
Radiator Cooling Fan High Speed Control  System Check ............................................... 1A-213
Repair Instructions ......... .................................1A-216
Idle Speed and IAC Throttle Valve Opening  Inspection ...................................................... 1A-216
Special Tools and Equipmen t .........................1A-217
Special Tool .................................................... 1A-217
Aux. Emission Control  Devices ............. 1B-1
Diagnostic Information and Procedures ............1B-1
EGR System Inspection ...................................... 1B-1
Repair Instructions ............ ..................................1B-1
EVAP Canister Purge Inspec tion ........................ 1B-1  
Page 52 of 1496

Downloaded from www.Manualslib.com manuals search engine 1A-2 Engine General Information and Diagnosis: 
• Be sure to read “Precautions for Electrical Circuit Service in Section 00” befo re inspection and observe 
what is written there.
• ECM replacement: When substituting a known-good ECM, check for the 
following conditions. Neglec ting this check may cause 
damage to a known-good ECM.
– Resistance value of all relays, actuators is as  specified respectively.
– MAP sensor, A/C refrigerant pressure sensor and  TP sensor are in good condition and none of power 
circuits of these sensors is shorted to ground.
• Communication of  ECM, BCM, ABS/ESP ® control 
module, combination meter,  keyless start control 
module, steering angle sensor (ESP ® model) and 
TCM (A/T model), is esta blished by CAN (Controller 
Area Network). (For more detail of CAN 
communication for ECM, refer to “CAN 
Communication System Description”). Therefore, 
handle CAN communication line with care referring to 
“Precaution for CAN Communication System in 
Section 00”.
• Immobilizer transponder  code registration after 
replacing ECM
When ECM is replaced with new one or with another 
one, make sure to register  immobilizer transponder 
code to ECM correctly according to “Procedure after 
ECM Replacement in Section 10C”.Precautions of ECM Circuit InspectionS7RS0B1100003
• ECM connectors are waterproofed. Each terminal of  the ECM connectors is sealed up with the grommet. 
Therefore, when measuring ci rcuit voltage, resistance 
and/or pulse signal at ECM connector, do not insert 
the tester’s probe into th e sealed terminal at the 
harness side. When measuring circuit voltage, 
resistance and/or pulse signal at ECM connector, 
connect the special tool to the ECM connectors. And, 
insert the tester’s probe into the special tool’s 
connectors at the harness side, and then measure 
voltage, resistance and/or pulse signal. Or, ECM and 
its circuits may be damaged by water.
• Wire colors of the special tool’s connectors are  different from the ones of the ECM connectors. 
However, the circuit arrangement of the special tool’s 
connectors is same as the one of the ECM 
connectors. Therefore, measure circuit voltage and 
resistance by identifying the terminal location subject 
to the measurement.
Precautions of Electric Throttle Body System 
Calibration
S7RS0B1100004
After performing one of works described below, it is 
necessary to re-register the completely closed throttle 
valve reference position stored in memory of ECM. (For 
detailed information, refer to  “Description of Electric 
Throttle Body System Calibration”.) For the procedure to 
register such data in ECM, refer to “Electric Throttle 
Body System Calibration in Section 1C”.
• To shut off backup power of ECM for such purposes of  battery replacement or “DOME” fuse removal
• To erase DTCs P0122, P01 23, P0222, P0223, P2101, 
P2102, P2103, P2111, P2112, P2113, P2119, P2123, 
P2127, P2128, P2135 and/or P2138
• To replace ECM
• To replace throttle body and/or accelerator pedal  position (APP) sensor assembly
General Description
Statement on Cleanliness and CareS7RS0B1101001
An automobile engine is a combination of many 
machined, honed, polished and lapped surfaces with 
tolerances that are measured  in the thousands of an 
millimeter (ten thous ands of an inch).
Accordingly, when any internal engine parts are 
serviced, care and cleanliness are important.
It should be understood that proper cleaning and 
protection of machined surfaces and friction areas is part 
of the repair procedure. This is considered standard 
shop practice even if not  specifically stated.
• A liberal coating of engine oil should be applied to  friction areas during assembly to protect and lubricate 
the surfaces on initial operation. • Whenever valve train components, pistons, piston 
rings, connecting rods, rod bearings, and crankshaft 
journal bearings are removed for service, they should 
be retained in order.
At the time of installation,  they should be installed in 
the same locations and with the same mating 
surfaces as when removed.
• Battery cables should be disconnected before any  major work is performed on the engine.
Failure to disconnect cables  may result in damage to 
wire harness or other electrical parts.  
Page 81 of 1496

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Fail-Safe TableS7RS0B1104006
When any of the following DTCs is detected, ECM enters fail-safe mode as long as malfunction continues to exist but 
that mode is canceled when ECM de tects normal condition after that.
 )
 *P2123 Throttle/pedal position sensor/
switch “D” (main) circuit high 
input Output voltage of APP sensor (main) is higher than 
specification.
1 driving 
cycle
 )  *P2127 Throttle/pedal position sensor/
switch “E” (sub) circuit low 
input Output voltage of APP sens
or (sub) is lower than 
specification. 1 driving 
cycle
 )  *P2128 Throttle/pedal position sensor/
switch “E” (sub) circuit high 
input Output voltage of APP sensor (sub) is higher than 
specification.
1 driving 
cycle
 )  *P2135 Throttle/pedal position sensor/
switch “A”/“B” (main / sub) 
voltage correlation Difference between the opening angle based on TP 
sensor (main) and the opening angle based on TP sensor 
(sub) is more than specification.
1 driving 
cycle
 )  *P2138 Throttle/pedal position sensor/
switch “D”/“E” (main / sub) 
voltage correlation Difference between the opening angle based on APP 
sensor (main) and the opening angle based on APP 
sensor (sub) is more
 than specification. 1 driving 
cycle
 )  
 U *P2227 Barometric pressure circuit 
range/performance Difference of barometric pressure value and intake 
manifold pressure value is 
more than specification at 
engine start. 2 driving 
cycles
 )  *P2228 Barometric pressure circuit low Barometric pressure sens
or voltage is less than 
specification. 1 driving 
cycle
 )  *P2229 Barometric pressure circuit 
high Barometric pressure sensor voltage is more than 
specification. 1 driving 
cycle
   )  P1614 Transponder response error
Refer to “Diagnostic Trouble Code (DTC) Table in Section 
10C”. —
 
 )  P1615 ID code does not registered 
(vehicle equipped with keyless 
start system only)
   )  P1616 Different registration ID codes 
(vehicle equipped with keyless 
start system only)
   )  P1618 CAN communication error 
(reception error for keyless 
start control module) (vehicle 
equipped with keyless start 
system only)
   )  P1621 Immobilizer communication 
line error
   )  P1622
EEPROM error
   )  P1623 Unregistered transponder
   )  P1625 Immobilizer antenna error
   )  P1636 Immobilizer information 
registration failure
   )  P1638 Immobilizer information 
mismatched
DTC No. Detecting item
Detecting condition
(DTC will set when detecting:) MIL
DTC No.
Detected item Fail-safe operation
 )  P0031 HO2S heater control circuit low (Sensor-1)
ECM stops air/fuel ratio control.
 )  P0032 HO2S heater control circuit high (Sensor-1)
 )  P0102 Mass or volume air flow circuit low input • ECM controls injector drive time (fuel injection 
volume) according to throttle valve opening 
(closed throttle position or not).
• ECM stops EGR control.
 )
 P0103 Mass or volume air flow circuit high input
 )  P0112 Intake air temperature sensor 1 circuit low ECM controls actuators assuming that intake air 
temperature is 20 °C (68 ° F).
 )  P0113 Intake air temperature sensor 1 circuit high  
Page 83 of 1496

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Scan Tool DataS7RS0B1104007
As the data values are standard values estimated on the basis of values obtained from the normally operating vehicles 
by using a scan tool, use them as re ference values. Even when the vehicle is  in good condition, there may be cases 
where the checked value does not fall within each specified  data range. Therefore, judgment as abnormal should not 
be made by checking with these data alone.
Also, conditions that can be checked by  the scan tool are those detected by ECM and output from ECM as commands 
and there may be cases where the engine or actuator is not operating (in the condition) as indicated by the scan tool. 
Be sure to use the timing light  to check the ignition timing.
NOTE
• There are two types of OBD system depending on the vehicle specification.
For details, refer to “Precaution on  On-Board Diagnostic (OBD) System”.
• With the generic scan tool, only star (*) marked data in the following table can be read.
• When checking the data with the engine running at idle or racing, be sure to shift M/T gear to the  neutral position and A/T gear to the “Park” position  and pull the parking brake fully. Also, if nothing 
or “no load” is indicated, turn O FF A/C (if equipped with A/C), all electric loads, P/S and all the other 
necessary switches.
 
 )  P2122 Throttle/pedal position sensor/switch/“D” (main) 
circuit low input
• ECM turns off throttle actuator control relay and throttle valve is  fixed at the specified opening from 
its completely closed position (default opening).
For details, refer to “Description of Electric 
Throttle Body System”.
• ECM controls fuel cut at specified engine speed.
• ECM stops air/fuel ratio control.
 )
 P2123 Throttle/pedal position sensor/switch/“D” (main) 
circuit high input
 )  P2127 Throttle/pedal position sensor/switch/“E” (sub) 
circuit low input
 )  P2128 Throttle/pedal position sensor/switch/“E” (sub) 
circuit high input
 )  P2135 Throttle/pedal position sensor/switch/“A”/“B” 
(main) / (sub) voltage correction
 )  P2138 Throttle pedal position sensor/switch “D”/“E” 
(main) / (sub) voltage correlation
 )  P2227 Barometric pressure sensor performance problem ECM controls actuators assuming that barometric 
pressure is 101.33 kPa (762 mmHg).
DTC No. Detected item Fail-safe operation
Scan tool data
Vehicle condition Normal condition / 
reference values
*  ) COOLANT TEMP At specified idle speed after warming up 80 – 100 °C, 176 – 212  °F
*  ) INTAKE AIR TEMP.  At specifie d idle speed after warming up –5 
°C (23  °F) + environmental 
temp. to 40  °C (104  °F) + 
environmental temp.
*  ) ENGINE SPEED  It idling with no load  after warming upDesired idle speed ± 50 rpm
 )  INJ PULSE WIDTH At specified idle speed with no load after warming up
2.0 – 4.0 msec.
At 2500 r/min. with no load after warming up 2.0 – 3.6 msec.
 )  DESIRED IDLE It idling with radiator cooling fan stopped and all electrical 
parts turned OFF after warming up, M/T at neutral 700 rpm
*  ) SHORT FT B1 At specified idle speed after warming up –20 – +20%
*  ) LONG FT B1 At specified idle speed after warming up –20 – +20%
 )  TOTAL FUEL TRIM 
B1 At specified idle speed after warming up
–35 – +35%
*  ) MAF At specified idle speed wit
h no load after warming up 1.0 – 4.0 g/s 0.14 – 0.52 lb/
min.
At 2500 r/min. with no load after warming up 4.0 – 12.0 g/s 0.53 – 1.58 lb/
min.
*  ) CALC LOAD At specified idle speed with no load after warming up
18 – 28%
At 2500 r/min. with no load after warming up 13 – 23%
*  )
 THROTTLE 
POSITION Ignition switch ON / 
warmed up engine 
stoppedAccelerator pedal released
0 – 5%
Accelerator pedal depressed 
fully 90 – 100%  
Page 221 of 1496

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DTC P2138: Throttle / Pedal Position Sensor / Switch “D”/“E” (Main / Sub) Voltage CorrelationS7RS0B1104077
Wiring Diagram
DTC Detecting Condition and Trouble Area
DTC Confirmation Procedure1) With ignition switch turned OFF, connect scan tool.
2) Turn ON ignition switch and clear DTC using scan tool.
3) Keep the accelerator pedal at idle position for 2 seconds.
4) Keep the accelerator pedal at fully depressed position for 2 seconds.
5) Repeat Step 3) and 4) for 3 times.
6) Check DTC.
E23 C37
34
1819
567
1011
17
20
47 46
495051
2122
52 16
25 9
24
14
29
55
57 54 53
59
60 58 2
262728
15
30
56 4832 31
34353637
40
42 39 38
44
45 43 41 331
1213
238
34
1819
567
1011
17
20
47 46
495051
2122
52 16
25 9
24
14
29
55
57 54 53
59
60 58 2
262728
15
30
56 48 32 31
34353637
40
42 39 38
44
45 43 41 331
1213
238
BRN
GRN
BLU
RED
YEL
WHT
E23-35
E23-37
E23-52
E23-34
E23-36
E23-51
E23-50 5 V
5 V
1
1-1 3 2
1-2
I4RS0B110047-01
1. APP sensor
1-2. APP sensor (sub) 3. Ground of APP sensor for shield wire
1-1. APP sensor (main) 2. ECM
DTC detecting condition Trouble area
Difference between the opening angle based on APP 
sensor (main) and the op ening angle based on APP 
sensor (sub) is more than sp ecification for specified time 
continuously.
(1 driving detection logic) • APP sensor (main) and (sub) circuit
• APP sensor assembly
•ECM