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Page 1: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay
Page 2: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay
Page 3: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

MD/MS201 2014.01

Table of Contents

1.1.1 Introduction........................................................................................................... 1.1.1-1

1.1.2 Symbol................................................................................................................... 1.1.2-1

1.1.3 Circuit Fault Diagnosis ........................................................................................ 1.1.3-1Diagnostic Procedure ......................................................................................................... 1.1.3-1Diagnostic Tools.................................................................................................................. 1.1.3-1Fault Testing ....................................................................................................................... 1.1.3-2Repair Tools........................................................................................................................ 1.1.3-4Wiring Harness Terminal Repair ......................................................................................... 1.1.3-6

3.1.4 Cooling System .................................................................................................... 3.1.4-1

3.1.7 Fuel System .......................................................................................................... 3.1.7-1

3.1.8 Ignition System..................................................................................................... 3.1.8-1

3.1.9 Starting System .................................................................................................... 3.1.9-1

3.1.10 Charging System ................................................................................................ 3.1.10-1

3.1.12 Electronic Control System (1.0L) ...................................................................... 3.1.12-1Power Supply and Data Line .............................................................................................. 3.1.12-2HO2S/EVAP........................................................................................................................ 3.1.12-3TPS/KS/IAC ........................................................................................................................ 3.1.12-5CKP/Evaporator Thermistor/ECT/IAT ................................................................................. 3.1.12-7

3.2.12 Electronic Control System (1.2L) ...................................................................... 3.2.12-1Power Supply and Data Line .............................................................................................. 3.2.12-2HO2S/EVAP........................................................................................................................ 3.2.12-3TPS/KS/IAC ........................................................................................................................ 3.2.12-5CKP/Evaporator Thermistor/ECT/IAT ................................................................................. 3.2.12-7

4.1.1 Heating, Ventilation and Air Conditioning.......................................................... 4.1.1-1Compressor and Sensor Control Operation (1.0L) ............................................................. 4.1.1-2Compressor and Sensor Control Operation (1.2L) ............................................................. 4.1.1-3Power Supply/Sensor/Actuator (1.0L) ................................................................................ 4.1.1-5Power Supply/Sensor/Actuator (1.2L) ................................................................................ 4.1.1-7

4.2.2 Instrument Cluster................................................................................................ 4.2.2-1Power Supply and Signal (1.0L) ......................................................................................... 4.2.2-2Signal Lamp (1.0L) ............................................................................................................. 4.2.2-4Lighting Signal Lamp (1.0L)................................................................................................ 4.2.2-6Power Supply and Signal (1.2L) ......................................................................................... 4.2.2-7Signal Lamp (1.2L) ............................................................................................................. 4.2.2-9Lighting Signal Lamp (1.2L)................................................................................................ 4.2.2-11

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MD/MS201 2014.01

Table of Contents

4.2.3 Horn........................................................................................................................4.2.3-1

4.2.4 Cigarette Lighter ...................................................................................................4.2.4-1

4.2.5 Information and Entertainment System ..............................................................4.2.5-1Power Supply...................................................................................................................... 4.2.5-2Speaker............................................................................................................................... 4.2.5-3

4.2.6 Lighting System ....................................................................................................4.2.6-1Headlamp............................................................................................................................ 4.2.6-2Brake Lamp......................................................................................................................... 4.2.6-5Turn Lamp........................................................................................................................... 4.2.6-7Position Lamp and License Plate Lamp.............................................................................. 4.2.6-11Fog Lamp............................................................................................................................ 4.2.6-13Backup Lamp ...................................................................................................................... 4.2.6-15Interior Lamp....................................................................................................................... 4.2.6-17

4.2.7 Wiper ......................................................................................................................4.2.7-1Front Wiper ......................................................................................................................... 4.2.7-1

4.2.8 Central Door Lock .................................................................................................4.2.8-1

4.2.9 Power Window.......................................................................................................4.2.9-1

4.2.10 Body Control System..........................................................................................4.2.10-1

4.2.11 On-board Network System .................................................................................4.2.11-1DLC (Data Link Connector)................................................................................................. 4.2.11-1

6.1.1 Fuse and Relay......................................................................................................6.1.1-1Main Fuse Box .................................................................................................................... 6.1.1-1I/P Fuse Box ....................................................................................................................... 6.1.1-2

6.1.2 Power Supply Distribution ...................................................................................6.1.2-1Instrument Panel Power Supply Distribution 1.................................................................... 6.1.2-1Instrument Panel Power Supply Distribution 2.................................................................... 6.1.2-2Instrument Panel Power Supply Distribution 3.................................................................... 6.1.2-3

6.1.3 Fuse Details ...........................................................................................................6.1.3-1

6.1.4 Grounding Distribution.........................................................................................6.1.4-1

6.1.5 Wiring Harness Connector Location View..........................................................6.1.5-1

6.1.6 Grounding Location View.....................................................................................6.1.6-1

6.1.7 Wiring Harness Connector Terminal View..........................................................6.1.7-1

6.1.8 Abbreviation ..........................................................................................................6.1.8-1

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MD/MS201 2014.01

1.1.1-1 1.1.1-1Introduction

M1101001

Fuel Injector 1

Fuel Injector 2

Fuel Injector 3

Fuel Injector 4

3

2

7

1

Main Fuse Box P01

Fuel System

1.25

BU

/WH

1.25

BU

/WH

3 X07

0.5

WH

/BN

0.5

WH

/YE

0.5

WH

/GN

0.5

WH

/BK

1.0

RD

/BU

1.0

RD

/BU

1.0

RD

/BU

1.0

RD

/BU1.25

RD

/BU

1.25

RD

/BU

2 E09

1 E09

2 E06

1 E06

2 E04

1 E04

2 E02

1 E02

I/P Fuse Box P40

8.0

WH

8.0

WH

8.0

WH

2

IF15

15A

29

30

1

EF01

80A

67

65

68

69

IR05

ECM

0.5

BN/W

H0.

5 BN

/WH

32 E18

15 X05

0.5

YE/R

D0.

5 YE

/RD

60 E18

25 X05

1.25

BU

/WH

16 X04

IF19

15A

37

38

82

80

83

84

IR08

2.0

RD

/BU

2.0

BK1.

25 B

K1.

25 B

K

G201

4

2

S01

S01

FuelPump

2.0

RD

/BU

M

50 E18 63 E18 49 E18 64 E18

Refer to 3.1.12Electronic Control

System

1 X05

4 X07

13

10

4

9+B

12

11

6

5

8

1.1.1 Introduction

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1.1.1-2

MD/MS201 2014.01

1.1.1-2Introduction

1. System name.

2. Wiring harness connector numbering.

In this manual, the wiring harness connectoris numbered based on wiring harness. Forexample, connector of ECM wiring harness inengine wiring harnesses is numbered as E01.E is the wiring harness code, 01 is theconnector serial number.

The following table lists are wiring harness codes:

Note:Door wiring harness consists of wiring harness of two front doors and back door.

Note:For wiring harness connector numbering details, please refer to wiring harness connector layout view.

3. Component name.

4. System information related to the circuit.

5. For wiring harness to wiring harnessconnector, the black arrow represents positivepole and the box represents the negativepole. The character in the box is the connectorcode.

6. Wiring harness color and diameter. Thefollowing table shows the color code.

If a wiring harness has two colors, the firstcharacter shows the background color and thesecond shows the stripe color, divided by “/”.

For example, YE/WH means yellow backgroundcolor with white stripe.

7. Pin number. The pin number of matedconnector pair are mirrored relationship, asshown below:

8. Grounding number. The grounding numberstarts with G. For grounding details, pleaserefer to grounding layout view.

Code Wiring Harness NameEN Engine wiring harness

E-- Engine wiring harness connector

I/P I/P wiring harness

P-- I/P wiring harness connector

SO Chassis wiring harness

S-- Chassis wiring harness connector

DR Door wiring harness

D-- Door wiring harness connector

RF Roof wiring harness

L-- Roof wiring harness

X-- Wiring harness to wiring harness connector

Color Code Wiring Harness Color Legend

BK Black

BN Brown

BU Blue

GN Green

GY Grey

LG Light Green

LU Light Blue

OG Orange

PK Pink

RD Red

SR Silver

VT Purple

WH White

YE Yellow

1 2 34 5 6

123456

M1101002

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MD/MS201 2014.01

1.1.1-3 1.1.1-3Introduction

9. Power supply type supplied to fuse. +Brepresents battery power supply. ACCrepresents power supply output when ignitionswitch is at “ACC”. IG1 represents terminal 2output when ignition switch is at “ON”. IG2represents terminal 5 output when ignitionswitch is at “ON”.

Note:The difference between IG1 andIG2 is that there is power supply output from IG1, but no from IG2 when the ignition switch is at “ST”.

10. Wiring harness splice point.

11. Fuse number consists of a fuse code and asequential number. Code EF representsfuses in the main fuse and relay box; Code IFrepresents fuses in instrument panel fuse andrelay box. For details, please refer to fusetable.

12. A relay is represented by two capital Englishletters. Code ER represents relays in themain fuse and relay box; Code IR representsrelays in the instrument panel fuse and relaybox. For details, please refer to the relaytable.

13. Filling grey shade means the electroniccomponent, P01 represents the wiringharness connector code.

14. Circuit differences in different models,engines or specifications are noted bydashed lines and texts beside the circuit.

15. The 8-shaped symbol between wiringharnesses represents ‘Unshielded TwistedPair’ (UTP), which is used for sensor signal ordata communication.

16. If a system wiring diagram requires more thanone page, it starts with and ends with

. If more than one circuit extends to thenext page, use B, C and other letters torepresent.

Not Spliced Cross Circuit

Spliced Cross Circuit

M1101003

0.5 BK/WH

0.85

BK/

WH

ECM(1.0L)

ECM(1.3L)

17S0

113

S01a

M1101004

0.5 BU

0.5 VT

M1101005

A1

A1

0.5 RD/YEA1

0.5 RD/YE A1

M1101006

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MD/MS201 2014.01

1.1.2-1 1.1.2-1Symbol

Grounding

TemperatureSensor

Solenoid

Solenoid

Light LoadFuse

Moderate LoadFuse

Heavy LoadFuse

Heater

Normal CloseRelay

Normal OpenRelay

Double ThrowRelay

Resistor

Potentiometer

Rheostat

Ignition Coil

Battery

Capacitor

Cigarette Lighter

Antenna

Normal OpenSwitch

Normal CloseSwitch

Double ThrowSwitch

Knock Sensor

G7

M1102001

1.1.2 Symbol

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1.1.2-2

MD/MS201 2014.01

1.1.2-2Symbol

UTP(UnshieldedTwisted Pair)

Starting Motor

Oxygen Sensor

Stopper Switch

Diode

Photodiode

Light EmittingDiode

Motor

Not Spliced Cross Circuit

Bulb

Horn

Clock Spring

Airbag

Spliced Cross Circuit

M

M

M

M1102002

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MD/MS201 2014.01

1.1.3-1 1.1.3-1Circuit Fault Diagnosis

Diagnostic ProcedureRefer to the following procedure for the circuitfault diagnosis:

1. Confirm Fault

To do the proper repair, confirm the faultsymptoms described by the customer firstly.Inspect the relevant component carefully toconfirm the fault symptoms and make record.DO NOT disassemble the component beforeconfirmation of the fault scope and causes.

2. Read Wiring Diagram and Analyze Causes

Make a complete analysis and judgement onthe fault components from power supply togrounding according to the sub-system wiringdiagram and determine the repair solution. Ifit cannot be determined, please read thesystem description in the “Description andOperation” section in the repair manual tounderstand the working principle. And inspectother circuits that has common part with thefault circuit, for example, the fuse, grounding,switch, etc. Inspect the circuit not covered instep 1. If other components in the commoncircuit work properly, it means the fault existsin its own circuit. Otherwise, the fuse orgrounding may have faults.

3. Inspect Circuits and Components

Always use the wiring diagram together withrepair manual and refer to the diagnosticprocedure for the relevant circuits orcomponents in the repair manual. For thecircuit with a control module, fully usediagnostic tools to do the test. Effectivediagnosis should be a logical and reasonableoperation. Fully use the diagnosticprocedures in the repair manual and start theinspection from the causes and thecomponents with easiest inspection way.

4. Repair Fault

Repair the fault. Refer to the wiring diagramand the description for fault treatment inrepair manual. For example, the diagnosticprocedure for poor grounding and the wiringharness connector treatment.

5. Confirm Circuit Working Condition

After repair, all functions should be reinspectedto confirm the fault repaired. For the fuse blownfault, Inspect all the relevant circuits using thisfuse.

Diagnostic Tools1. Voltmeter and Test Lamp

Use test lamp or voltmeter to inspect thecircuit status. Test lamp comprises a pair ofwiring harnesses and a 12 V bulb. Wheninspecting, connect one wiring harness to theground and the other one to the certainmeasurement point. If the bulb is lit, it meansthe measurement point has power supply.

Warning: DO NOT use test lamp to inspectthe control module voltage. Otherwise itcould damage the interior circuit insidethe control module. Please use a voltmeterwith 10 MΩ or higher internal resistance(for example, to test the ECM voltage).

Voltmeter has the same connection methodas the test lamp, but voltmeter can display thevoltage value of the circuit. Use a voltmeterwith high resistance to test the voltage. If thecircuit has poor connection, the voltmetermay show the normal value, but the voltagecannot drive the load successfully.

M1103001

1.1.3 Circuit Fault Diagnosis

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1.1.3-2

MD/MS201 2014.01

1.1.3-2Circuit Fault Diagnosis

2. Self-powered Test Lamp and Ohmmeter

Use test lamp with own 12 V power supply orohmmeter to inspect the circuit for continuity.Test lamp comprises a bulb, battery and a pairof wiring harnesses. The bulb will be lit whenthe two wiring harnesses are connected.Before testing, disconnect the negativebattery cable and pull out the fuse of thecircuit. To test the circuit for continuity,connect two wiring harnesses to the twomeasurement points. If the bulb is lit, it meansthe circuit is normal.

Warning: DO NOT use self-powered testlamp to inspect the control module.Otherwise, it could damage the interiorcircuit inside the control module. Pleaseuse a ohmmeter with 10 MΩ or higherinternal resistance.

Ohmmeter has the same usage method asvoltmeter, but ohmmeter can show theresistance value. The lower resistance, thebetter continuity.

3. Jumper Wire with Fuse

Use jumper wire to test a broken point foropen loop circuit (circuit open). The jumperwire is a tool that should be in tandem withthe circuit.

Warning: To protect the circuit to beinspected, DO NOT use the fuse higherthan the rated capacity of circuit toinspect relevant circuits. DO NOT use thejumper wire as the input or output signalwhen a control module such as ECM orTCM is in the circuit. Otherwise it coulddamage the circuit interior inside thecontrol module.

Fault Testing1. Voltage Testing

Voltage testing is to test the voltage at acertain point. When testing a certainconnector terminal, insert the positive probeinto the wiring harness from the connectorback without assembling wiring harnessconnector.

M1103002

5A

M1103003

Test Lamp

Solenoid

Switch

5A+B

0.5R

DI/P Fuse andRelay Box

Voltmeter0.

5G

2 E00

1 E00

1 C00

M1103004

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MD/MS201 2014.01

1.1.3-3 1.1.3-3Circuit Fault Diagnosis

1 When testing the voltage with test lampor voltmeter, connect the negative oftesting tools to battery negative.

2 Connect the other wiring harness of thetest lamp or the positive probe of thevoltmeter to the test position.

3 If a voltmeter is used and voltage displaylower 1 V above compared to the ratedvalue, it means a circuit fault. It means acircuit fault if a test lamp is used and lampis not lit.

2. Power Testing

1 Disconnect the negative battery cable.

2 Connect one wiring harness of the self-powered test lamp or the probe of theohmmeter to the test component. If usingohmmeter, please connect the twoprobes each other and use reset buttonto adjust the ohmmeter to zero.

3 Connect the other wiring harness of thetest lamp or probe of the ohmmeter to theother side of the test load.

4 If the bulb is lit, it means the circuit isnormal. If an ohmmeter is used and theresistance value is very low or close to 0Ω, it means the component has goodcontinuity.

3. Short Circuit Testing

1 Disconnect negative battery cable.

2 Connect one wiring harness of the self-powered test lamp or one probe of theohmmeter to the output terminal of thefuse.

3 Connect the other wiring harness of thetest lamp or other probe of the ohmmeterto the grounding.

4 Disconnect all the electrical loads to thefuse.

CAUTION: If not disconnecting all the electrical loads to the fuse, when testing the low resistance circuit like lights, the ohmmeter will always display the low value. This will cause wrong judgement.

5 Do the careful inspection from the placeclosest to the fuse.

6 If the bulb is lit or ohmmeter has valuedisplay less than 5 Ω, it means the shortcircuit to the ground.

Switch

M1103005

Test Lamp

Solenoid

Switch

I/P Fuse andRelay Box

Voltmeter

5A

+B

0.5R

D0.

5G

2 E00

1 E00

1 C00

M1103006

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1.1.3-4

MD/MS201 2014.01

1.1.3-4Circuit Fault Diagnosis

4. Voltage Drop Testing

This is a test to inspect the voltage drop alongthe wiring harness, connector or switch.

1 Connect the positive probe of thevoltmeter to one end of the circuit close tothe battery (connector or switch side).

2 Connect the negative probe to the otherend of the circuit (the other side ofconnector or switch).

3 Switch on or off to make the circuit work.

4 The voltmeter will display the voltagedifference between the two test points.

5 If the voltage difference is more than 0.1 V (less than 50 mV for 5 V voltagecircuit), it means a circuit fault. Inspect forloose, oxidized or corrosive circuit.

Repair Tools

1. 5 KΩ Rheostat

It can simulate each ohm-type sensor signal,like coolant temperature sensor, air intakepressure and temperature sensor and thelike. And help make quick judgement on theperformance of the component.

Switch

Solenoid

Voltmeter

5A

+B

0.5R

D

I/P Fuse andRelay Box

0.5G

2 E00

1 E00

1 C00

M1103007

M1103008

M1103009

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MD/MS201 2014.01

1.1.3-5 1.1.3-5Circuit Fault Diagnosis

2. LED Test Lamp

Bidirectional two-color LED lamp can changeits color when exchanging the positive andnegative. This feature can be used to test thePWM control signals of Hall sensor.

3. Airbag Test Tool

Before installing a new airbag after airbagsystem has faults or vehicle accident, installthis tool to the airbag system, and usediagnostic tools to confirm the airbag systemwork properly. After that, install the newairbag. This process can guarantee a safeairbag operation.

4. Probe

When testing a system component, insert thistool into the connector from the back and it isunnecessary to break the wiring harness toreduce man-made fault.

5. Terminal Repair Tool

When maintaining and repairing certainterminal, use this tool to separate them fromthe connector.

M1103010

M1103011

M1103012

M1103013

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1.1.3-6

MD/MS201 2014.01

1.1.3-6Circuit Fault Diagnosis

Wiring Harness Terminal Repair1. Remove the terminal pin.

2. Separate the clip with wiring harness terminalrepair tool.

3. Pull out the wiring harness terminal from therear of connector.

M1103014

Wiring HarnessTerminal Clip

Wiring Harness TerminalRepair Tool

M1103015

M1103016

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MD/MS201 2014.01

1.1.3-7 1.1.3-7Circuit Fault Diagnosis

4. Adjust and clean the wiring harness terminalcontact plate pulled out from connector.

M1103017

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1.1.3-8

MD/MS201 2014.01

1.1.3-8Circuit Fault Diagnosis

Poor Grounding Connection Repair Procedure1. Remove the grounding bolt.

2. Clean the two surfaces (both bolt side andvehicle contact side) of the copper ring withabrasive cloth until the oxide completelycleared.

3. Clean the grounding surface on the vehiclewith abrasive cloth until it is completelycleaned.

M1103018

M1103019

M1103020

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MD/MS201 2014.01

1.1.3-9 1.1.3-9Circuit Fault Diagnosis

4. Reinstall the wiring harness and retaining boltof grounding. Tighten it to specified torque.

Torque for M6 bolt: 8 Nm

Torque for M8 bolt: 20 Nm

M1103021

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MD/MS201 2014.01

3.1.4-1 3.1.4-1Cooling System

Cooling System (1.0L)

I/P Fuse Box P40Main Fuse Box P01

8.0

WH

8.0

WH

8.0

WH

+B

2

IF15

15A

29

301

EF01

80A

67

65

68

69

IR05

ECM

0.5

BN/W

H0.

5 BN

/WH

32 E07

15 X05

2.0

RD

/BU

2.0

BK2.

0 BK

G103

0.5

BK/R

D0.

5 BK

/RD

2.0

RD

/BK

60 64

23 X05

62

1

2

P13

P13

2.0

BU/W

H

0.5

RD

/BU

IF04

20A

7

8

IR04

62 63

CondenserFan

RadiatorFan

2.0

BK2.

0 BK

G105

0.5

BK/W

H

2.0

BU/R

D

0.5

BK/W

H

2.0

RD

/BU

0.5

RD

/BU

IF03

30A

5

6

IR03

5857

55 59

19 X05 1

2

P10

P10

M M

52 E07 E07

M3104001

3.1.4 Cooling System

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3.1.4-2

MD/MS201 2014.01

3.1.4-2Cooling System

Cooling System (1.2L)

I/P Fuse Box P40Main Fuse Box P01

CondenserFan

RadiatorFan

8.0

WH

8.0

WH

8.0

WH

+B

2IF

15

15A

29

301

EF01

80A

67

65

68

69

IR05

ECM

0.5

BN/W

H0.

5 BN

/WH

32 E07a

15 X05

2.0

RD

/BU

2.0

BK2.

0 BK

G103

0.5

BK/R

D0.

5 BK

/RD

2.0

RD

/BK

60 64

23 X05

62

1

2

P13

P13

2.0

BU/W

H

0.5

RD

/BU

IF04

20A

7

8

IR04

62 63

2.0

BK2.

0 BK

G105

0.5

BK/W

H

2.0

BU/R

D

0.5

BK/W

H

2.0

RD

/BU

0.5

RD

/BU

IF03

30A

5

6

IR03

5857

55 59

19 X05 1

2

P10

P10

M M

52 E07a E07a

M3204001

Page 23: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

MD/MS201 2014.01

3.1.4-3 3.1.4-3Cooling System

• Operating circuit analysis of radiator fan is as follows:

Current from the battery positive → Main fuse box (main fuse EF01) → I/P fuse box (radiator fan fuseIF03) → Radiator fan relay-terminal 58 → Radiator fan relay closing contact → Radiator fanrelayterminal 59 → Radiator fan connector P10-terminal 1 → Radiator fan motor → Radiator fanconnector P10-terminal 2 → Grounding G105

Radiator fan motor is powered on and fan starts to work normally.

• Operating circuit analysis of condenser fan is as follows:

Current from the battery positive → Main fuse box (main fuse EF01) → I/P fuse box (radiator fan fuseIF04) → Condenser fan relay-terminal 63 → Condenser fan relay closing contact → Condenser fanrelay-terminal 64 → Condenser connector P13-terminal 1 → Condenser fan motor → Condenser fanconnector P13-terminal 2 → Grounding G103

Condenser fan motor is powered on and fan starts to work normally.

Page 24: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

3.1.4-4

MD/MS201 2014.01

3.1.4-4Cooling System

Main Fuse Box

I/P Fuse Box

1

2

EF01

P01

1

2

15

16

13

14

3

4

5

6

7

8

9

10

11

12

45

4647

5448

50

5152

5953

55

5657

6458

60

6162

6963

65

6667

68

70

71

7273

75

7677

78 8382

80

81 86

85

8788

90

9192

93

49

74 79 84 89 94

49

50

51

52

53

54

55

56

57

58

59

60

61

62

63

64

65

66

67

68

69

70

71

72

73

74

75

76

77

78

79

80

17

18

19

20

21

22

23

24

25

26

27

28

29

30

31

32

33

34

35

36

37

38

39

40

41

42

43

44

45

46

47

48

IF01IF07

IF24

IR01 IR02 IR03 IR04 IR05

IF40 IF39 IF38 IF37 IF36 IF35 IF34 IF33 IF32 IF31 IF30 IF29 IF28 IF27 IF26 IF25

IF23 IF22 IF21 IF20 IF19 IF18 IF17 IF16 IF15 IF14 IF13 IF12 IF11 IF10 IF09

IF08 IF02 IF03 IF04 IF05 IF06

IR06 IR07 IR08 IR09 IR10

P40

Page 25: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

MD/MS201 2014.01

3.1.4-5 3.1.4-5Cooling System

I/P Wiring Harness to Engine Wiring Harness Engine Wiring Harness to I/P Wiring Harness

Radiator Fan Condenser Fan

ECM (1.0L)

1 7 8 9 10 411 12 13 14

2 15 16 17 18 5

19 20 21 223 23 24 25 26 6

1

2

3

7

11

15

19

23

8

12

16

20

24

9

13

17

21

25

10

14

18

22

26

4

5

6

X05

12

P10

12

P13

7 8

5 6

3 4

1 2

51 52 53 54 55 56 57 58 59 60 61 62 63 64

37 38 39 40 41 42 43 44 45 46 47 48 49 50

23 24 25 26 27 28 29 30 31 32 33 34 35 36

9 10 11 12 13 14 15 16 17 18 19 20 21 22

E07

Page 26: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

3.1.4-6

MD/MS201 2014.01

3.1.4-6Cooling System

ECM (1.2L)

7 8

5 6

3 4

1 2

51 52 53 54 55 56 57 58 59 60 61 62 63 64

37 38 39 40 41 42 43 44 45 46 47 48 49 50

23 24 25 26 27 28 29 30 31 32 33 34 35 36

9 10 11 12 13 14 15 16 17 18 19 20 21 22

E07a

Page 27: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay
Page 28: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

3.1.7-1

MD/MS201 2014.01

3.1.7-1Fuel System

Fuel System (1.0L)

Fuel Injector 1

Fuel Injector 2

Fuel Injector 3

Fuel Injector 4

Refer to 3.1.12Electronic Control

System (1.0L)

Main Fuse Box P01I/P Fuse Box P40

FuelPump

1.25

BU

/WH

1.25

BU

/WH

3 X07

0.5

WH

/BN

0.5

WH

/YE

0.5

WH

/GN

0.5

WH

/BK

0.85

RD

/BU

0.85

RD

/BU

0.85

RD

/BU

0.85

RD

/BU

2.0

BU/R

D0.

85 B

U/R

D

2 E09

1 E09

2 E06

1 E06

2 E04

1 E04

2 E02

1 E02

8.0

WH

8.0

WH

8.0

WH

+B

2

IF15

15A

29

30

1

EF01

80A

67

65

68

69

IR05

ECM

0.5

BN/W

H0.

5 BN

/WH

32 E07

15 X050.

5 YE

/RD

0.5

Lg/R

D

60 E07

25 X05

1.25

BU

/WH

16 X04

IF19

15A

37

38

82

80

83

84

IR08

2.0

RD

/BU

1.25

BK

1.25

BK

1.25

BK

G201

4

2

S01

S01

2.0

RD

/BU

M

50 E07 63 E07 49 E07 64 E07

1 X05

4 X07

0.5 RD/BU

1.25

RD

/YE

M3107001

3.1.7 Fuel System

Page 29: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

MD/MS201 2014.01

3.1.7-2 3.1.7-2Fuel System

• Operating circuit analysis of fuel injector 1 is as follows:

Current from the battery positive → Main fuse box (main fuse EF01) → I/P fuse box (main relay fuseIF15) → Main relay-terminal 68 → Main relay closing contact → Main relay-terminal 69 → ConnectorX05-terminal 1 → Fuel injector 1 connector E09-terminal 1 → Fuel injector 1 coil → Fuel injector 1connector E09-terminal 2 → ECM connector E07-terminal 50 → ECM → Grounding

Fuel injector coil is powered on to inject oil and ECM controls fuel-injection amount through pulsewidth of power supply to fuel injector coil.

• Operating circuit analysis of fuel injector 2 is as follows:

Current from the battery positive → Main fuse box (main fuse EF01) → I/P fuse box (main relay fuseIF15) → Main relay-terminal 68 → Main relay closing contact → Main relay-terminal 69 → ConnectorX05-terminal 1 → Fuel injector 2 connector E06-terminal 1 → Fuel injector 2 coil → Fuel injector 2connector E06-terminal 2 → ECM connector E07-terminal 63 → ECM → Grounding

Fuel injector coil is powered on to inject oil and ECM controls fuel-injection amount through pulsewidth of power supply to fuel injector coil.

• Operating circuit analysis of fuel injector 3 is as follows:

Current from the battery positive → Main fuse box (main fuse EF01) → I/P fuse box (main relay fuseIF15) → Main relay-terminal 68 → Main relay closing contact → Main relay-terminal 69 → ConnectorX05-terminal 1 → Fuel injector 3 connector E04-terminal 1 → Fuel injector 3 coil → Fuel injector 3connector E04 terminal 2 → ECM connector E07-terminal 49 → ECM → Grounding

Fuel injector coil is powered on to inject oil and ECM controls fuel-injection amount through pulsewidth of power supply to fuel injector coil.

• Operating circuit analysis of fuel injector 4 is as follows:

Current from the battery positive → Main fuse box (main fuse EF01) → I/P fuse box (main relay fuseIF15) → Main relay-terminal 68 → Main relay closing contact → Main relay-terminal 69 → ConnectorX05-terminal 1 → Fuel injector 4 connector E02-terminal 1 → Fuel injector 4 coil → Fuel injector 4connector E02-terminal 2 → ECM connector E07-terminal 64 → ECM → Grounding

Fuel injector coil is powered on to inject oil and ECM controls fuel-injection amount through pulsewidth of power supply to fuel injector coil.

• Operating circuit analysis of fuel pump is as follows:

Current from the battery positive → Main fuse box (main fuse EF01) → I/P fuse box (fuel pump fuseIF19) → Fuel pump relay-terminal 83 → Fuel pump closing contact → Fuel pump-terminal 84 →

Connector X04-terminal 16 → Connector X07-terminal 3 → Fuel pump connector S01-terminal 4 →

Fuel pump motor → Fuel pump connector S01-terminal 2 → Connector X07-terminal 4 → GroundingG201

Fuel pump motor is powered on to start work and ECM controls fuel pump running through fuelpump relay.

Page 30: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

3.1.7-3

MD/MS201 2014.01

3.1.7-3Fuel System

Fuel System (1.2L)

Refer to 3.1.12Electronic Control

System (1.2L)

Fuel Injector 1

Fuel Injector 2

Fuel Injector 3

Fuel Injector 4

Main Fuse Box P01I/P Fuse Box P40

FuelPump

0.5

YE/R

D

1.25

RD

/BU

1.25

RD

/BU

1.25

BU

/WH

1.25

BU

/WH

3 X07

0.5

WH

/BN

0.5

WH

/YE

0.5

WH

/GN

0.5

WH

/BK

0.85

RD

/BU

0.85

RD

/BU

0.85

RD

/BU

0.85

RD

/BU

2 E09a

1 E09a

2 E06a

1 E06a

2 E04a

1 E04a

2 E02a

1 E02a

8.0

WH

8.0

WH

8.0

WH

+B

2

IF15

15A

29

30

1

EF01

80A

67

65

68

69

IR05

ECM

0.5

BN/W

H0.

5 BN

/WH

32 E07a

15 X050.

5 YE

/RD

0.5 RD/BU

60 E07a

25 X05

1.25

BU

/WH

1.25

RD

/YE

16 X04

IF19

15A

37

38

82

80

83

84

IR08

2.0

RD

/BU

1.25

BK

1.25

BK

1.25

BK

G201

4

2

S01

S01

2.0

RD

/BU

M

50 E07a 63 E07a 49 E07a 64 E07a

1 X05

4 X07

M3207001

Page 31: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

MD/MS201 2014.01

3.1.7-4 3.1.7-4Fuel System

• Operating circuit analysis of fuel injector 1 is as follows:

Current from the battery positive → Main fuse box (main fuse EF01) → I/P fuse box (main relay fuseIF15) → Main relay-terminal 68 → Main relay closing contact → Main relay-terminal 69 → ConnectorX05-terminal 1 → Fuel injector 1 connector E09a-terminal 1 → Fuel injector 1 coil → Fuel injector 1connector E09a-terminal 2 → ECM connector E07a-terminal 50 → ECM → Grounding

Fuel injector coil is powered on to inject oil and ECM controls fuel-injection amount through pulsewidth of power supply to fuel injector coil.

• Operating circuit analysis of fuel injector 2 is as follows:

Current from the battery positive → Main fuse box (main fuse EF01) → I/P fuse box (main relay fuseIF15) → Main relay-terminal 68 → Main relay closing contact → Main relay-terminal 69 → ConnectorX05-terminal 1 → Fuel injector 2 connector E06a-terminal 1 → Fuel injector 2 coil → Fuel injector 2connector E06a-terminal 2 → ECM connector E07a-terminal 63 → ECM → Grounding

Fuel injector coil is powered on to inject oil and ECM controls fuel-injection amount through pulsewidth of power supply to fuel injector coil.

• Operating circuit analysis of fuel injector 3 is as follows:

Current from the battery positive → Main fuse box (main fuse EF01) → I/P fuse box (main relay fuseIF15) → Main relay-terminal 68 → Main relay closing contact → Main relay-terminal 69 → ConnectorX05-terminal 1 → Fuel injector 3 connector E04a-terminal 1 → Fuel injector 3 coil → Fuel injector 3connector E04a-terminal 2 → ECM connector E07a-terminal 49 → ECM → Grounding

Fuel injector coil is powered on to inject oil and ECM controls fuel-injection amount through pulsewidth of power supply to fuel injector coil.

• Operating circuit analysis of fuel injector 4 is as follows:

Current from the battery positive → Main fuse box (main fuse EF01) → I/P fuse box (main relay fuseIF15) → Main relay-terminal 68 → Main relay closing contact → Main relay-terminal 69 → ConnectorX05-terminal 1 → Fuel injector 4 connector E02a-terminal 1 → Fuel injector 4 coil → Fuel injector 4connector E02a-terminal 2 → ECM connector E07a-terminal 64 → ECM → Grounding

Fuel injector coil is powered on to inject oil and ECM controls fuel-injection amount through pulsewidth of power supply to fuel injector coil.

• Operating circuit analysis of fuel pump is as follows:

Current from the battery positive → Main fuse box (main fuse EF01) → I/P fuse box (fuel pump fuseIF19) → Fuel pump relay-terminal 83 → Fuel pump closing contact → Fuel pump-terminal 84 →

Connector X04-terminal 16 → Connector X07-terminal 3 → Fuel pump connector S01-terminal 4 →

Fuel pump motor → Fuel pump connector S01-terminal 2 → Connector X07-terminal 4 → GroundingG201

Fuel pump motor is powered on to start work and ECM controls fuel pump running or not throughfuel pump relay.

Page 32: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

3.1.7-5

MD/MS201 2014.01

3.1.7-5Fuel System

Main Fuse Box

I/P Fuse Box

1

2

EF01

P01

1

2

15

16

13

14

3

4

5

6

7

8

9

10

11

12

45

4647

5448

50

5152

5953

55

5657

6458

60

6162

6963

65

6667

68

70

71

7273

75

7677

78 8382

80

81 86

85

8788

90

9192

93

49

74 79 84 89 94

49

50

51

52

53

54

55

56

57

58

59

60

61

62

63

64

65

66

67

68

69

70

71

72

73

74

75

76

77

78

79

80

17

18

19

20

21

22

23

24

25

26

27

28

29

30

31

32

33

34

35

36

37

38

39

40

41

42

43

44

45

46

47

48

IF01IF07

IF24

IR01 IR02 IR03 IR04 IR05

IF40 IF39 IF38 IF37 IF36 IF35 IF34 IF33 IF32 IF31 IF30 IF29 IF28 IF27 IF26 IF25

IF23 IF22 IF21 IF20 IF19 IF18 IF17 IF16 IF15 IF14 IF13 IF12 IF11 IF10 IF09

IF08 IF02 IF03 IF04 IF05 IF06

IR06 IR07 IR08 IR09 IR10

P40

Page 33: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

MD/MS201 2014.01

3.1.7-6 3.1.7-6Fuel System

I/P Wiring Harness to Chassis Wiring Harness Chassis Wiring Harness to I/P Wiring Harness

I/P Wiring Harness to Engine Wiring Harness Engine Wiring Harness to I/P Wiring Harness

1 2 3 4 5 67 8 9 10

11 12 13 14 15 16

17 18 19 2021 22 23 24 25 26

12345678910

11121314151617181920

212223242526

X04

1 7 8 9 10 411 12 13 14

2 15 16 17 18 5

19 20 21 223 23 24 25 26 6

1

2

3

7

11

15

19

23

8

12

16

20

24

9

13

17

21

25

10

14

18

22

26

4

5

6

X05

Page 34: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

3.1.7-7

MD/MS201 2014.01

3.1.7-7Fuel System

Chassis Wiring Harness to Fuel Pump Wiring Harness Fuel Pump Wiring Harness to Chassis Wiring Harness

Fuel Injector 1 Fuel Injector 1

Fuel Injector 2 Fuel Injector 2

13

24

1

2

3

4

X07

1 2

E09

1 2

E09a

1 2

E06

1 2

E06a

Page 35: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

MD/MS201 2014.01

3.1.7-8 3.1.7-8Fuel System

Fuel Injector 3 Fuel Injector 3

Fuel Injector 4 Fuel Injector 4

ECM (1.0L)

1 2

E04

1 2

E04a

1 2

E02

1 2

E02a

7 8

5 6

3 4

1 2

51 52 53 54 55 56 57 58 59 60 61 62 63 64

37 38 39 40 41 42 43 44 45 46 47 48 49 50

23 24 25 26 27 28 29 30 31 32 33 34 35 36

9 10 11 12 13 14 15 16 17 18 19 20 21 22

E07

Page 36: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

3.1.7-9

MD/MS201 2014.01

3.1.7-9Fuel System

ECM (1.2L)

Fuel Pump

7 8

5 6

3 4

1 2

51 52 53 54 55 56 57 58 59 60 61 62 63 64

37 38 39 40 41 42 43 44 45 46 47 48 49 50

23 24 25 26 27 28 29 30 31 32 33 34 35 36

9 10 11 12 13 14 15 16 17 18 19 20 21 22

E07a

1

2

3

4

S01

Page 37: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay
Page 38: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

3.1.8-1

MD/MS201 2014.01

3.1.8-1Ignition System

Ignition System (1.0L)

Main Fuse Box P01

I/P Fuse Box P40

Crankshaft Position Sensor

0.5

VT

0.5

BU

IgnitionCoil 1 4

8.0

WH

8.0

WH

8.0

WH

8.0

WH

+B

2 IF15

15A

29

30

1EF

01

80A

67

65

68

69

IR05

ECM

0.5

BN/W

H0.

5 BN

/WH

0.5

BK2.

0 BK

1.25

BK/

YE

32 E07 3 E07

2 E163 E05 2 E05 1 E05

15 X05

2.0

RD

/BU

1.25

RD

/BU

2.0

BK/W

H1.

25 B

K/W

H

1.25

BK/

WH

4 X05

1 E16

46 E0747 E07

G301

IgnitionCoil 2 3

1.25

BK/

BU

7 E07

2 E17

1 E17

M3108001

3.1.8 Ignition System

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MD/MS201 2014.01

3.1.8-2 3.1.8-2Ignition System

• Operating circuit analysis of ignition coil 1, 4 is as follows:

Current from the battery positive → Main fuse box (main fuse EF01) → I/P fuse box (main relay fuseIF15) → Main relay-terminal 68 → Main relay closing contact → Main relay-terminal 69 → ConnectorX05-terminal 4 → Ignition coil 1, 4 connector E16-terminal 1 → Ignition coil → Ignition coil 1, 4connector E16-terminal 2 → ECM connector E07-terminal 3 → ECM

Ignition time of ignition coil is controlled by ECM according to the engine operating condition.

• Operating circuit analysis of ignition coil 2, 3 is as follows:

Current from the battery positive → Main fuse box (main fuse EF01) → I/P fuse box (main relay fuseIF15) → Main relay-terminal 68 → Main relay closing contact → Main relay-terminal 69 → ConnectorX05-terminal 4 → Ignition coil 2, 3 connector E17-terminal 1 → Ignition coil → Ignition coil 2, 3connector E17-terminal 2 → ECM connector E07-terminal 7 → ECM

Ignition time of ignition coil is controlled by ECM according to the engine operating condition.

Page 40: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

3.1.8-3

MD/MS201 2014.01

3.1.8-3Ignition System

Ignition System (1.2L)

Ignition Coil 1

Ignition Coil 2

Ignition Coil 3

Ignition Coil 4

Main Fuse Box P010.

5 BU

/WH

0.5

BU/R

D0.

5 BU

/RD

I/P Fuse Box P40

Crankshaft Position Sensor

8.0

WH

8.0

WH

8.0

WH

8.0

WH

+B

2 IF15

15A

29

30

1

EF01

80A

67

65

68

69

IR05

ECM

0.5

BN/W

H0.

5 BN

/WH

0.5

YE/B

K0.

5 YE

/BK

1.5

BK/Y

E

32 E07a 3 E07a19 E07a

3 E19a3 E05a 2 E05a 1 E05a 2 E19a

15 X05

2.0

RD

/BU

1.25

RD

/BU

2.0

RD

/BU

1.25

RD

/BU

1 X05

1 E19a

1.5

BK1.

0 BK

47 E07a40 E07a

G303

1.5

BK/V

T

6 E07a

3 E18a 2 E18a

1.5

RD

/BU

1 E18a

1.5

BK1.

0 BK

G303

1.5

BK/B

U

7 E07a

3 E17a 2 E17a

1.5

RD

/BU

1 E17a

1.5

BK1.

0 BK

G303

1.5

BK/R

D

1 E07a

3 E16a 2 E16a

1.25

RD

/BU

1 E16a

1.5

BK1.

0 BK

G303

M3208001

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MD/MS201 2014.01

3.1.8-4 3.1.8-4Ignition System

• Operating circuit analysis of ignition coil 1 is as follows:

Ignition coil 1 is controlled by ECM through Connector E07a-terminal 3 → Ignition coil 1 connectorE19a-terminal 3 → Ignition coil. Current from the battery positive → Main fuse box (main fuse EF01)→ I/P fuse box (main relay fuse IF15) → Main relay-terminal 68 → Main relay closing contact → Mainrelay-terminal 69 → Connector X05-terminal 1 → Ignition coil 1 connector E19a-terminal 1 → Ignitioncoil → Ignition coil 1 connector E19a-terminal 2 → Grounding G303

Ignition time of ignition coil is controlled by ECM according to the engine operating condition.

• Operating circuit analysis of ignition coil 2 is as follows:

Ignition coil 2 is controlled by ECM through Connector E07a-terminal 6 → Ignition coil 2 connectorE18a-terminal 3 → Ignition coil. Current from the battery positive → Main fuse box (main fuse EF01)→ I/P fuse box (main relay fuse IF15) → Main relay-terminal 68 → Main relay closing contact → Mainrelay-terminal 69 → Connector X05-terminal 1 → Ignition coil 2 connector E18a-terminal 1 → Ignitioncoil → Ignition coil 2 connector E18a-terminal 2 → Grounding G303

Ignition time of ignition coil is controlled by ECM according to the engine operating condition.

• Operating circuit analysis of ignition coil 3 is as follows:

Ignition coil 3 is controlled by ECM through Connector E07a-terminal 7 → Ignition coil 3 connectorE17a-terminal 3 → Ignition coil. Current from the battery positive → Main fuse box (main fuse EF01)→ I/P fuse box (main relay fuse IF15) → Main relay-terminal 68 → Main relay closing contact → Mainrelay-terminal 69 → Connector X05-terminal 1 → Ignition coil 3 connector E17a-terminal 1 → Ignitioncoil → Ignition coil 3 connector E17a-terminal 2 → Grounding G303

Ignition time of ignition coil is controlled by ECM according to the engine operating condition.

• Operating circuit analysis of ignition coil 4 is as follows:

Ignition coil 4 is controlled by ECM through Connector E07a-terminal 1 → Ignition coil 4 connectorE16a-terminal 3 → Ignition coil. Current from the battery positive → Main fuse box (main fuse EF01)→ I/P fuse box (main relay fuse IF15) → Main relay-terminal 68 → Main relay closing contact → Mainrelay-terminal 69 → Connector X05-terminal 1 → Ignition coil 4 connector E16a-terminal 1 → Ignitioncoil → Ignition coil 4 connector E16a-terminal 2 → Grounding G303

Ignition time of ignition coil is controlled by ECM according to the engine operating condition.

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3.1.8-5

MD/MS201 2014.01

3.1.8-5Ignition System

Main Fuse Box

I/P Fuse Box

1

2

EF01

P01

1

2

15

16

13

14

3

4

5

6

7

8

9

10

11

12

45

4647

5448

50

5152

5953

55

5657

6458

60

6162

6963

65

6667

68

70

71

7273

75

7677

78 8382

80

81 86

85

8788

90

9192

93

49

74 79 84 89 94

49

50

51

52

53

54

55

56

57

58

59

60

61

62

63

64

65

66

67

68

69

70

71

72

73

74

75

76

77

78

79

80

17

18

19

20

21

22

23

24

25

26

27

28

29

30

31

32

33

34

35

36

37

38

39

40

41

42

43

44

45

46

47

48

IF01IF07

IF24

IR01 IR02 IR03 IR04 IR05

IF40 IF39 IF38 IF37 IF36 IF35 IF34 IF33 IF32 IF31 IF30 IF29 IF28 IF27 IF26 IF25

IF23 IF22 IF21 IF20 IF19 IF18 IF17 IF16 IF15 IF14 IF13 IF12 IF11 IF10 IF09

IF08 IF02 IF03 IF04 IF05 IF06

IR06 IR07 IR08 IR09 IR10

P40

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MD/MS201 2014.01

3.1.8-6 3.1.8-6Ignition System

I/P Wiring Harness to Engine Wiring Harness Engine Wiring Harness to I/P Wiring Harness

Crankshaft Position Sensor Crankshaft Position Sensor

ECM

1 7 8 9 10 411 12 13 14

2 15 16 17 18 5

19 20 21 223 23 24 25 26 6

1

2

3

7

11

15

19

23

8

12

16

20

24

9

13

17

21

25

10

14

18

22

26

4

5

6

X05

1 2 3

E05

1 2 3

E05a

7 8

5 6

3 4

1 2

51 52 53 54 55 56 57 58 59 60 61 62 63 64

37 38 39 40 41 42 43 44 45 46 47 48 49 50

23 24 25 26 27 28 29 30 31 32 33 34 35 36

9 10 11 12 13 14 15 16 17 18 19 20 21 22

E07

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3.1.8-7

MD/MS201 2014.01

3.1.8-7Ignition System

ECM

Ignition Coil (1, 4) Ignition Coil 1

Ignition Coil (2, 3) Ignition Coil 2

7 8

5 6

3 4

1 2

51 52 53 54 55 56 57 58 59 60 61 62 63 64

37 38 39 40 41 42 43 44 45 46 47 48 49 50

23 24 25 26 27 28 29 30 31 32 33 34 35 36

9 10 11 12 13 14 15 16 17 18 19 20 21 22

E07a

1 2

E16

1 2 3

E19a

1 2

E17

1 2 3

E18a

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MD/MS201 2014.01

3.1.8-8 3.1.8-8Ignition System

Ignition Coil 3 Ignition Coil 4

1 2 3

E17a

1 2 3

E16a

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3.1.9-1

MD/MS201 2014.01

3.1.9-1Starting System

Starting System

Main Fuse Box P01

Ignition Switch

Battery Starting Motor

I/P Fuse Box P40

1 S131 S12

15.0 RD

1 S16

M

2.0

BK/Y

E2.

0 BK

/YE

1 S15

1

4 P31

6 P31

IG1

IG2ST ST

ACC

ACC

LOC

K

LOC

K OFF

OFF

L1 L2

8.0

WH

8.0

WH

8.0

WH

3.0

WH

/GN

1

2

EF01

80A

X04

2

1

IF0240A

M3109001

3.1.9 Starting System

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MD/MS201 2014.01

3.1.9-2 3.1.9-2Starting System

• Operating circuit analysis of starting motor is is as follows:

Current from the battery positive → Main fuse box (main fuse EF01) → I/P fuse box (ignition switch 2fuse IF02) → Ignition switch connector P31-terminal 4 → Ignition switch ST contact → Ignition switchconnector P31-terminal 6 → Connector X04-terminal 1 → Starting motor connector S13-terminal 1 →

Starting motor solenoid switch → Starting motor grounding

• Starting motor solenoid switch is powered on to close two contacts of solenoid switch.

Current from the battery positive → Connector S12-terminal 1 → Solenoid switch closing contact →Starting motor coil → Starting motor grounding

Controlled by starting switch, starting motor starts to work.

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3.1.9-3

MD/MS201 2014.01

3.1.9-3Starting System

Main Fuse Box

I/P Fuse Box

1

2

EF01

P01

1

2

15

16

13

14

3

4

5

6

7

8

9

10

11

12

45

4647

5448

50

5152

5953

55

5657

6458

60

6162

6963

65

6667

68

70

71

7273

75

7677

78 8382

80

81 86

85

8788

90

9192

93

49

74 79 84 89 94

49

50

51

52

53

54

55

56

57

58

59

60

61

62

63

64

65

66

67

68

69

70

71

72

73

74

75

76

77

78

79

80

17

18

19

20

21

22

23

24

25

26

27

28

29

30

31

32

33

34

35

36

37

38

39

40

41

42

43

44

45

46

47

48

IF01IF07

IF24

IR01 IR02 IR03 IR04 IR05

IF40 IF39 IF38 IF37 IF36 IF35 IF34 IF33 IF32 IF31 IF30 IF29 IF28 IF27 IF26 IF25

IF23 IF22 IF21 IF20 IF19 IF18 IF17 IF16 IF15 IF14 IF13 IF12 IF11 IF10 IF09

IF08 IF02 IF03 IF04 IF05 IF06

IR06 IR07 IR08 IR09 IR10

P40

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MD/MS201 2014.01

3.1.9-4 3.1.9-4Starting System

I/P Wiring Harness to Chassis Wiring Harness Chassis Wiring Harness to I/P Wiring Harness

Ignition switch Starting motor Switch

Starting motor Battery Positive

1 2 3 4 5 67 8 9 10

11 12 13 14 15 16

17 18 19 2021 22 23 24 25 26

12345678910

11121314151617181920

212223242526

X04

123

456

P31

1

S12

1

S13

1

S15

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3.1.9-5

MD/MS201 2014.01

3.1.9-5Starting System

Battery Negative

S16

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3.1.10-1

MD/MS201 2014.01

3.1.10-1Charging System

Charging System

Main Fuse Box P01

I/P Fuse Box P40

Battery Alternator

Instrument Cluster

IF36

15A

72

71

IF33

10A

IG1

66

65

3.0

YE/B

K

1 S16

1 S15

24 P21

0.3

WH

/RD

2 P031 P04 3 P03

8.0

WH

8.0

WH

1.25

BK/

BU

1

2

EF01

80A

M3110001

3.1.10 Charging System

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MD/MS201 2014.01

3.1.10-2 3.1.10-2Charging System

• Operating circuit analysis of alternator is as follows:

When alternator is not working: Current from battery positive → Main fuse box (main fuse EF01) →I/P fuse box (ignition switch 1 fuse IF01)→ Ignition switch connector P31-terminal 3→ Ignition switchIG1 contact → Ignition switch connector P31-terminal 2 → I/P fuse box (alternator fuse IF36) →

Alternator connector P03-terminal 2 → Alternator regulator and rotor coil → Alternator grounding

Current from instrument cluster (charging indicator) → Instrument cluster connector P21-terminal 24→ Alternator connector P03-terminal 3 → Alternator regulator → Alternator grounding

Charging indicator is turned on.

When the alternator is working: Current from alternator stator coil → Alternator commutator →

Connector P04-terminal 1 → Main fuse box (main fuse EF01) → Connector S15-terminal 1 → Battery

When the alternator is working, alternator regulator and rotor coil supply power to all electricaldevices in vehicle on one hand and charge battery on the other hand.

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3.1.10-3

MD/MS201 2014.01

3.1.10-3Charging System

Main Fuse Box

I/P Fuse Box

1

2

EF01

P01

1

2

15

16

13

14

3

4

5

6

7

8

9

10

11

12

45

4647

5448

50

5152

5953

55

5657

6458

60

6162

6963

65

6667

68

70

71

7273

75

7677

78 8382

80

81 86

85

8788

90

9192

93

49

74 79 84 89 94

49

50

51

52

53

54

55

56

57

58

59

60

61

62

63

64

65

66

67

68

69

70

71

72

73

74

75

76

77

78

79

80

17

18

19

20

21

22

23

24

25

26

27

28

29

30

31

32

33

34

35

36

37

38

39

40

41

42

43

44

45

46

47

48

IF01IF07

IF24

IR01 IR02 IR03 IR04 IR05

IF40 IF39 IF38 IF37 IF36 IF35 IF34 IF33 IF32 IF31 IF30 IF29 IF28 IF27 IF26 IF25

IF23 IF22 IF21 IF20 IF19 IF18 IF17 IF16 IF15 IF14 IF13 IF12 IF11 IF10 IF09

IF08 IF02 IF03 IF04 IF05 IF06

IR06 IR07 IR08 IR09 IR10

P40

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MD/MS201 2014.01

3.1.10-4 3.1.10-4Charging System

Alternator Connector Alternator Positive

Instrument Cluster

Battery Positive Battery Negative

123

P03

1

P04

1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16

26 27 28 29 30 31 3217 18 19 20 21 22 23 24 25

P21

1

S15 S16

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3.1.12-1

MD/MS201 2014.01

3.1.12-1Electronic Control System (1.0L)

Electronic Control System

M3112005

Diode A Terminal 1

Diode B Terminal 1

DLC Terminal 15

Instrument Cluster

Carbon Canister Solenoid

16

32

851

371 2

31

42

B+IF11

IF15

IR05

IF30

17

12

10

18

26

4

1

2

3

3

IG1IF37

ECM

39

452

Front Oxygen Sensor

43

21

294

Rear Oxygen Sensor

DiodeTerminal 1

TristatePressure

Switch

StepperMotor

AirIntakePressure/TemperatureSensor

CoolantTemperatureSensor

EvaporatorThermistor

CrankshaftPositionSensor

ThrottlePositionSensor

KnockSensor

1

2

3

4

22

21

35

36

12

13

5

28

9

56

5

20

24

15

4

3

2

1

3

1

59

19

25

40

41

13

46

47

1

2

2

1

3

30

31

1

2

G301

G301

5

G30143

48

G302

3.1.12 Electronic Control System (1.0L)

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MD/MS201 2014.01

3.1.12-2 3.1.12-2Electronic Control System (1.0L)

Power Supply and Data Line

I/P Fuse Box P40

Main Fuse Box P01

2.0

BK

5 E07

0.5

BK

/YE

61 E07

G301

0.5

BK

43 E07

G302

0.5

BK

48 E07

IF37

10A

74

73

IF33

10A

IG1

66

65

3.0

YE/B

K

IF11

10A

8.0

WH

8.0

WH

8.0

WH

8.0

WH

8.0

WH

0.5

PK/B

U

0.5 PK/BU

0.5

PK/B

U0.

5 PK

/BU

+B

2

21

22

IF15

15A

29

30

1

EF01

80A

0.5

BU

/BK

10 E07

0.5

PK

/BK

44 E07

0.5

LG

12 E07

Refer to 4.1.1Heating, Ventilationand Air Conditioning

Power Supply/Sensor/Actuator (1.0L)

Refer to 4.1.1Heating, Ventilationand Air Conditioning

Power Supply/Sensor/Actuator (1.0L)

Refer to 4.1.1Heating, Ventilationand Air Conditioning

Power Supply/Sensor/Actuator (1.0L)

Refer to 4.1.1Heating, Ventilationand Air Conditioning

Power Supply/Sensor/Actuator (1.0L)

Refer to 4.2.11On-board NetworkSystem DLC

Refer to3.1.7 Fuel System (1.0L)3.1.8 Ignition System (1.0L)3.1.10 Charging System

ECM

67

65

68

69

IR05

16 E07

12 X05

2.0

RD

/BU

2.0 RD/BU

2.0

RD

/BU

2.0

BU/R

D1.

25 R

D/B

U

0.5

RD

/BU

8 E07 51 E07

1 X05

0.5

BN/W

H0.

5 BN

/WH

32 E07

15 X05

0.5

BU0.

5 BU

17 E07

11 X05

M3112001

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3.1.12-3

MD/MS201 2014.01

3.1.12-3Electronic Control System (1.0L)

HO2S/EVAP

1.25

RD

/BU

Main Fuse Box P01

0.5

YE0.

5 YE

0.5

YE

7 X04

16 X05

0.85

RD

/BU

0.85

RD

/WH

2 E13

1 E13 1 E01 3 E01

2 E01 4 E01

I/P Fuse Box P40

CarbonCanisterSolenoid

FrontOxygenSensor

8.0

WH

8.0

WH

8.0

WH

+B

2

IF15

15A

29

30

IF30

15A

59

60

1

EF01

80A

67

65

68

69

IR05

ECM

0.5

BN/W

H0.

5 BN

/WH

32 E07 37 E07 2 E07

15 X05

2.0

RD

/BU

1.25

RD

/GN

1.25

RD

/GN

0.85

RD

/GN

Refer to 3.1.12 ElectronicControl System (1.0L)

TPS/KS/IAC0.

85 Y

E/W

H

45 E07

0.5

BK/O

G

2.0

RD

/BU

2.0

RD

/BU

1 X056 X05

3 S10 4 S10

1 S10 2 S10

RearOxygenSensor

4 E0739 E07

1.25

RD

/GN

1.25

RD

/GN

0.5

YE/G

N

0.5

YE/G

N

0.5

YE/G

N

0.5

YE/G

N

0.5

YE/G

N

0.5

WH

/RD

0.5

WH

/RD

0.85

WH

29 E07

6 X04

19 X04

17 X04

22 X05

10 X05

M3112002

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MD/MS201 2014.01

3.1.12-4 3.1.12-4Electronic Control System (1.0L)

• Operating circuit analysis of carbon canister solenoid is as follows:

Current from the battery positive → Main fuse box (main fuse EF01) → I/P fuse box (main relay fuseIF15) → Main relay-terminal 68 → Main relay closing contact → Main relay-terminal 69 → ConnectorX05-terminal 1 →Carbon canister solenoid connector E13-terminal 1→Carbon canister solenoid coil→ Carbon canister solenoid connector E13-terminal 2 → ECM connector E07-terminal 37 → ECM →Grounding

Carbon canister solenoid coil is powered on to start work.

• Operating circuit analysis of front oxygen sensor is as follows:

Current from the battery positive → Main fuse box (main fuse EF01) → I/P fuse box (main relay fuseIF15)→Main relay-terminal 68→Main relay closing contact→Main relay-terminal 69→ I/P fuse box(oxygen sensor fuse IF30) → Connector X05-terminal 6 → Front oxygen sensor connector E01-terminal 1 → Front oxygen sensor (heating resistor) → Front oxygen sensor connector E01-terminal2 → ECM connector E07-terminal 2 → ECM → Grounding

Controlled by ECM directly, front oxygen sensor (heating resistor) is powered on to start work.

Signal from front oxygen sensor → Front oxygen sensor connector E01-terminal 3 → ECM connectorE07-terminal 39 → ECM and front oxygen sensor → Front oxygen sensor connector E01-terminal 4→ ECM connector E07-terminal 45 → ECM

• Operating circuit analysis of rear oxygen sensor is as follows:

Current from the battery positive → Main fuse box (main fuse EF01) → I/P fuse box (main relay fuseIF15)→Main relay-terminal 68→Main relay closing contact→Main relay-terminal 69→ I/P fuse box(oxygen sensor fuse IF30) → Connector X04-terminal 6 → Rear oxygen sensor connector S10-terminal 3 → Rear oxygen sensor (heating resistor) → Rear oxygen sensor connector S10-terminal 1→ Connector X04-terminal 17 → Connector X05-terminal 10 → ECM connector E07-terminal 4 →

ECM → Grounding

Controlled by ECM directly, rear oxygen sensor (heating resistor) is powered on to start work.

Signal from rear oxygen sensor → Rear oxygen sensor connector S10-terminal 2 → Connector X04-terminal 7→Connector X05-terminal 16→ECM connector E07-terminal 29→ECM and rear oxygensensor → Rear oxygen sensor connector S10-terminal 4 → Connector X04-terminal 19 → ConnectorX05-terminal 22 → ECM connector E07-terminal 39 → ECM

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3.1.12-5

MD/MS201 2014.01

3.1.12-5Electronic Control System (1.0L)

TPS/KS/IAC

0.5

GY/

GN

ECM

26 E07

22 E07

0.5

GY/

BK

36 E07

0.5

GY

35 E07

0.5

GY/

YE

21 E07

1 E14 4 E14 3 E14 2 E14

0.5

BU/W

H

39 E07

0.5

YE/G

N

18 E07

0.5

BU/B

NRefer to 3.1.12 Electronic

Control System (1.0L)HO2S/EVAP

30 E07

0.5

RD

31 E070.

5 G

N

2.0

BK0.

5 BK0.5

YE/G

N

0.5 YE/GN

Throttle Position Sensor Knock Sensor

3 E03 1 E03 1 E12 3 E122 E03 2 E12

G301

Stepper Motor

M3112003

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MD/MS201 2014.01

3.1.12-6 3.1.12-6Electronic Control System (1.0L)

• Operating circuit analysis of throttle position sensor is as follows:

Current from ECM → ECM connector E07-terminal 18 → Throttle position sensor connector E03-terminal 1 → Throttle position sensor → Throttle position sensor connector E03-terminal 2 → ECMconnector E07-terminal 39 → ECM → Grounding

Position signal from throttle position sensor → Throttle position sensor connector E03-terminal 3 →

ECM connector E07-terminal 26 → ECM

• Operating circuit analysis of knock sensor is as follows:

Signal from knock sensor → Knock sensor connector E12-terminal 2 → ECM connector E07-terminal31 → ECM and knock sensor → Knock sensor connector E12-terminal 1 → ECM connector E07-terminal 30 → ECM

• Operating circuit analysis of stepper motor is as follows:

Stepper motor is powered on by four phases alternately, and rotating direction is determined by thepower supplying order of four phases.

When A phase is working, current from ECM → ECM connector E07-terminal 22 → Stepper motorconnector E14-terminal 1 → Stepper motor → Stepper motor connector E14-terminal 4 → ECMconnector E07-terminal 36 → ECM → Grounding

When B phase is working, current from ECM → ECM connector E07-terminal 21 → Stepper motorconnector E14-terminal 2 → Stepper motor → Stepper motor connector E14-terminal 3 → ECMconnector E07-terminal 35 → ECM → Grounding

When C phase is working, current from ECM → ECM connector E07-terminal 35 → Stepper motorconnector E14-terminal 3 → Stepper motor → Stepper motor connector E14-terminal 2 → ECMconnector E07-terminal 21 → ECM → Grounding

When D phase is working, current from ECM → ECM connector E07-terminal 36 → Stepper motorconnector E14-terminal 4 → Stepper motor → Stepper motor connector E14-terminal 1 → ECMconnector E07-terminal 22 → ECM → Grounding

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3.1.12-7

MD/MS201 2014.01

3.1.12-7Electronic Control System (1.0L)

CKP/Evaporator Thermistor/ECT/IAT

0.5

BU/G

N

ECM

25 E07

2 E15

0.5

BU/R

D0.

5 BU

/RD

40 E07

1 E15

0.5

YE/B

U

59 E07

4 E15

0.5

YE/B

K0.

5 YE

/BK

19 E07

3 E15

0.5

BU/R

D

3 E11

0.5

BN/Y

E

41 E07

1 E11

Air Intake Pressure/Temperature Sensor

CoolantTemperature

SensorEvaporatorThermistorCrankshaft Position Sensor

0.5

LG/B

K0.

5 LG

/BK

13 E07

2 P39

0.5

BU/R

D0.

5 BU

/RD

1 P39

0.5

VT

2 E05

0.5

BU

47 E07 46 E07

3 E05

0.5

BK2.

0 BK

1 E05

21 X05 14 X05

0.5

GN

57 E07

Refer to 4.2.2Instrument ClusterSignal Lamp (1.0L)

Refer to 4.2.2Instrument ClusterSignal Lamp (1.0L)

Refer to 4.2.2Instrument ClusterSignal Lamp (1.0L)

0.5

YE

/RD

15 E07

Refer to 4.2.11On-board Network System

DLC

0.5

WH

/BU

9 E07

0.5

YE

/WH

56 E07

0.5

VT/

YE

20 E07

Refer to 4.2.2Instrument Cluster

Power Supply and Signal

0.5

RD

/YE

24 E07

Refer to 4.2.6Lighting System

Headlamp

G301

M3112004

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MD/MS201 2014.01

3.1.12-8 3.1.12-8Electronic Control System (1.0L)

• Operating circuit analysis of crankshaft position sensor is as follows:

Current from ECM → ECM connector E07-terminal 46 → Crankshaft position sensor connector E05-terminal 2 → Crankshaft position sensor → Crankshaft position sensor connector E05-terminal 1 →

Grounding G301

Position signal from crankshaft position sensor→Crankshaft position sensor connector E05-terminal3 → ECM connector E07-terminal 47 → ECM

• Operating circuit analysis of air intake pressure/temperature sensor is as follows:

Current from ECM → ECM connector E07-terminal 19 → Air intake pressure/temperature sensorconnector E15-terminal 3 → Air intake pressure/temperature sensor → Connector E15-terminal 1 →

ECM connector E07-terminal 40 → ECM → Grounding

Air intake temperature signal from air intake pressure/temperature sensor → Air intake pressure/temperature sensor connector E15-terminal 2 → ECM connector E07-terminal 25 → ECM

Air intake pressure signal from air intake pressure/temperature sensor → Air intake pressure/temperature sensor connector E15-terminal 4 → ECM connector E07-terminal 59 → ECM

• Operating circuit analysis of evaporator thermistor is as follows:

Current from ECM → ECM connector E07-terminal 13 → Connector X05-terminal 14 → Evaporatorthermistor connector P39-terminal 2→Evaporator thermistor→Evaporator thermistor connector P39-terminal 1 → Connector X05-terminal 21 → ECM connector E07-terminal 40 → ECM → Grounding

• Operating circuit analysis of coolant temperature sensor is as follows:

Current from ECM→ECM connector E07-terminal 41→Coolant temperature sensor connector E11-terminal 1 → Coolant temperature sensor → Coolant temperature sensor connector E11-terminal 2→ ECM connector E07-terminal 40 → ECM → Grounding

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3.1.12-9

MD/MS201 2014.01

3.1.12-9Electronic Control System (1.0L)

Main Fuse Box

I/P Fuse Box

1

2

EF01

P01

1

2

15

16

13

14

3

4

5

6

7

8

9

10

11

12

45

4647

5448

50

5152

5953

55

5657

6458

60

6162

6963

65

6667

68

70

71

7273

75

7677

78 8382

80

81 86

85

8788

90

9192

93

49

74 79 84 89 94

49

50

51

52

53

54

55

56

57

58

59

60

61

62

63

64

65

66

67

68

69

70

71

72

73

74

75

76

77

78

79

80

17

18

19

20

21

22

23

24

25

26

27

28

29

30

31

32

33

34

35

36

37

38

39

40

41

42

43

44

45

46

47

48

IF01IF07

IF24

IR01 IR02 IR03 IR04 IR05

IF40 IF39 IF38 IF37 IF36 IF35 IF34 IF33 IF32 IF31 IF30 IF29 IF28 IF27 IF26 IF25

IF23 IF22 IF21 IF20 IF19 IF18 IF17 IF16 IF15 IF14 IF13 IF12 IF11 IF10 IF09

IF08 IF02 IF03 IF04 IF05 IF06

IR06 IR07 IR08 IR09 IR10

P40

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MD/MS201 2014.01

3.1.12-10 3.1.12-10Electronic Control System (1.0L)

I/P Wiring Harness to Chassis Wiring Harness Chassis Wiring Harness to I/P Wiring Harness

I/P Wiring Harness to Engine Wiring Harness Engine Wiring Harness to I/P Wiring Harness

1 2 3 4 5 67 8 9 10

11 12 13 14 15 16

17 18 19 2021 22 23 24 25 26

12345678910

11121314151617181920

212223242526

X04

1 7 8 9 10 411 12 13 14

2 15 16 17 18 5

19 20 21 223 23 24 25 26 6

1

2

3

7

11

15

19

23

8

12

16

20

24

9

13

17

21

25

10

14

18

22

26

4

5

6

X05

Page 66: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

3.1.12-11

MD/MS201 2014.01

3.1.12-11Electronic Control System (1.0L)

Front Oxygen Sensor Throttle Position Sensor

Crankshaft Position Sensor Coolant Temperature Sensor

ECM

1 2 3 4

E01

1 2 3

E03

1 2 3

E05

1 2 3

E11

7 8

5 6

3 4

1 2

51 52 53 54 55 56 57 58 59 60 61 62 63 64

37 38 39 40 41 42 43 44 45 46 47 48 49 50

23 24 25 26 27 28 29 30 31 32 33 34 35 36

9 10 11 12 13 14 15 16 17 18 19 20 21 22

E07

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MD/MS201 2014.01

3.1.12-12 3.1.12-12Electronic Control System (1.0L)

Knock Sensor Carbon Canister Solenoid

Stepper Motor Air Intake Pressure/Temperature Sensor

Rear Oxygen Sensor Evaporator Thermistor

1 2 3

E12

1 2

E13

4321

E14

1 2 3 4

E15

12

34

S10

12

P39

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3.2.12-1

MD/MS201 2014.01

3.2.12-1Electronic Control System (1.2L)

3.2.12 Electronic Control System (1.2L)

Electronic Control System

M3212005

Diode A Terminal 1

Diode B Terminal 1

DLC Terminal 15

Instrument Cluster

Carbon Canister Solenoid

Front Oxygen Sensor

Rear Oxygen Sensor

DiodeTerminal 1

TristatePressure

Switch

StepperMotor

AirIntakePressure/TemperatureSensor

CoolantTemperatureSensor

EvaporatorThermistor

CrankshaftPositionSensor

ThrottlePositionSensor

KnockSensor

16

32

851

371 2

31

42

B+IF11

IF15

IR05

IF30

17

12

10

18

26

4

1

2

3

3

IG1IF37

ECM

39

452

43

21

294

1

2

3

4

22

21

35

36

12

13

5

28

9

56

57

20

24

15

4

3

2

1

1

2

59

19

25

40

41

13

47

1

2

2

1

3

30

31

1

2

G301

5

G30143

48

G302

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MD/MS201 2014.01

3.2.12-2 3.2.12-2Electronic Control System (1.2L)

Power Supply and Data Line

2.0

BK

5 E07a

0.5

BK

/YE

61 E07a

G301

0.5

BK

43 E07a

G302

0.5

BK

48 E07a

IF37

10A

74

73

IF33

10A

IG1

66

65

3.0

YE/B

K

I/P Fuse Box P40

Main Fuse Box P01

IF11

10A

8.0

WH

8.0

WH

8.0

WH

8.0

WH

8.0

WH

0.5

PK/B

U

0.5 PK/BURefer to 4.2.8On-board Network

System DLC

0.5

PK/B

U0.

5 PK

/BU

+B

2

21

22

IF15

15A

29

30

1

EF01

80A

0.5

BU

/BK

10 E07a

0.5

PK

/BK

44 E07a

0.5

LG/R

D

12 E07a

Refer to 4.1.1Heating, Ventilationand Air Conditioning

Power Supply/Sensor/Actuator (1.2L)

Refer to 4.1.1Heating, Ventilationand Air Conditioning

Power Supply/Sensor/Actuator (1.2L)

Refer to 4.1.1Heating, Ventilationand Air Conditioning

Power Supply/Sensor/Actuator (1.2L)

Refer to 4.1.1Heating, Ventilationand Air Conditioning

Power Supply/Sensor/Actuator (1.2L)

Refer to3.1.7 Fuel System (1.2L)3.1.8 Ignition System (1.2L)3.1.10 Charging System

ECM

67

65

68

69

IR05

16 E07a

12 X05

2.0

RD

/BU

2.0 RD/BU

2.0

RD

/BU

2.0

RD

/BU

1.25

RD

/BU

0.5

RD

/BU

8 E07a 51 E07a

1 X05

0.5

BN/W

H0.

5 BN

/WH

32 E07a

15 X05

0.5

BU0.

5 BU

17 E07a

11 X05

M3212001

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3.2.12-3

MD/MS201 2014.01

3.2.12-3Electronic Control System (1.2L)

HO2S/EVAP

Main Fuse Box P01

0.5

YE0.

5 YE

0.5

YE

7 X04

16 X05

0.85

RD

/BU

0.85

RD

/WH

2 E13a

1 E13a 4 E01a 2 E01a

3 E01a 1 E01a

I/P Fuse Box P40

CarbonCanisterSolenoid

FrontOxygenSensor

Refer to 3.2.12 ElectronicControl System (1.2L)

TPS/KS/IAC

RearOxygensensor

8.0

WH

8.0

WH

8.0

WH

8.0

WH

+B

2 IF15

15A

29

30

IF30

15A

59

60

1

EF01

80A

67

65

68

69

IR05

ECM

0.5

BN/W

H0.

5 BN

/WH

32 E07a 37 E07a 2 E07a

15 X05

2.0

RD

/BU

1.25

RD

/BU

1.25

RD

/GN

1.25

RD

/GN

0.85

RD

/GN

0.85

YE/

WH

45 E07a

0.5

BK/O

G

2.0

RD

/BU

2.0

RD

/BU

1 X056 X05

3 S10 4 S10

1 S10 2 S10

4 E07a39 E07a

1.25

RD

/GN

1.25

RD

/GN

0.5

YE/G

N

0.5

YE/G

N

0.5

YE/G

N

0.5

YE/G

N

0.5

YE/G

N

0.5

WH

/RD

0.5

WH

/RD

0.85

WH

29 E07a

6 X04

19 X04

17 X04

22 X05

10 X05

M3212002

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MD/MS201 2014.01

3.2.12-4 3.2.12-4Electronic Control System (1.2L)

• Operating circuit analysis of carbon canister solenoid is as follows:

Current from the battery positive → Main fuse box (main fuse EF01) → I/P fuse box (main relay fuseIF15) → Main relay-terminal 68 → Main relay closing contact → Main relay-terminal 69 → ConnectorX05-terminal 1 → Carbon canister solenoid connector E13a-terminal 1 → Carbon canister solenoidcoil → Carbon canister solenoid connector E13a-terminal 2 → ECM connector E07a-terminal 37 →

ECM → Grounding

Carbon canister solenoid coil is powered on to start work.

• Operating circuit analysis of front oxygen sensor is as follows:

Current from the battery positive → Main fuse box (main fuse EF01) → I/P fuse box (main relay fuseIF15)→Main relay-terminal 68→Main relay closing contact→Main relay-terminal 69→ I/P fuse box(oxygen sensor fuse IF30) → Connector X05-terminal 6 → Front oxygen sensor connector E01a-terminal 4 → Front oxygen sensor (heating resistor) → Front oxygen sensor connector E01a-terminal3 → ECM connector E07a-terminal 2 → ECM → Grounding

Controlled by ECM directly, front oxygen sensor (heating resistor) is powered on to start work.

Signal from front oxygen sensor→Front oxygen sensor connector E01a-terminal 2→ECM connectorE07a-terminal 39 → ECM and front oxygen sensor → Front oxygen sensor connector E01a-terminal1 → ECM connector E07a-terminal 45 → ECM

• Operating circuit analysis of rear oxygen sensor is as follows:

Current from the battery positive → Main fuse box (main fuse EF01) → I/P fuse box (main relay fuseIF15)→Main relay-terminal 68→Main relay closing contact→Main relay-terminal 69→ I/P fuse box(oxygen sensor fuse IF30) → Connector X04-terminal 6 → Rear oxygen sensor connector S10-terminal 3 → Rear oxygen sensor (heating resistor) → Rear oxygen sensor connector S10-terminal 1→ Connector X04-terminal 17 → Connector X05-terminal 10 → ECM connector E07a-terminal 4 →

ECM → Grounding

Controlled by ECM directly, rear oxygen sensor (heating resistor) is powered on to start work.

Signal from rear oxygen sensor → Rear oxygen sensor connector S10-terminal 2 → Connector X04-terminal 7→Connector X05-terminal 16→ECM connector E07a-terminal 29→ECM and rear oxygensensor → Rear oxygen sensor connector S10-terminal 4 → Connector X04-terminal 19 → ConnectorX05-terminal 22 → ECM connector E07a-terminal 39 → ECM

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3.2.12-5

MD/MS201 2014.01

3.2.12-5Electronic Control System (1.2L)

TPS/KS/IAC

0.5

GY/

GN

ECM

26 E07a

22 E07a

0.5

GY/

BK

36 E07a

0.5

GY

35 E07a

0.5

GY/

YE

21 E07a

1 E14a 4 E14a 3 E14a 2 E14a

0.5

BU/W

H

39 E07a

0.5

YE/G

N

18 E07a

0.5

BU/B

N

30 E07a

0.5

RD

31 E07a0.

5 G

N

2.0

BK0.

5 BK0.5

YE/G

N

0.5 YE/GNRefer to 3.2.12 ElectronicControl System (1.2L)

HO2S/EVAP

Throttle Position Sensor Knock Sensor

3 E03a 2 E03a 1 E12a 3 E12a1 E03a 2 E12a

G301

Stepper Motor

M3212003

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MD/MS201 2014.01

3.2.12-6 3.2.12-6Electronic Control System (1.2L)

• Operating circuit analysis of throttle position sensor is as follows:

Current from ECM → ECM connector E07a-terminal 18 → Throttle position sensor connector E03a-terminal 2 → Throttle position sensor → Throttle position sensor connector E03a-terminal 1 → ECMconnector E07a-terminal 39 → ECM → Grounding

Position signal from throttle position sensor → Throttle position sensor connector E03a-terminal 3 →

ECM connector E07a-terminal 26 → ECM

• Operating circuit analysis of knock sensor is as follows:

Signal from knock sensor → Knock sensor connector E12a-terminal 2 → ECM connector E07a-terminal 31→ECM and knock sensor→Knock sensor connector E12a-terminal 1→ECM connectorE07a-terminal 30 → ECM

• Operating circuit analysis of stepper motor is as follows:

Stepper motor is powered on by four phases alternately, and rotating direction is determined by thepower supplying order of four phases.

When A phase is working, current from ECM → ECM connector E07a-terminal 22 → Stepper motorconnector E14a-terminal 1 → Stepper motor → Stepper motor connector E14a-terminal 4 → ECMconnector E07a-terminal 36 → ECM → Grounding

When B phase is working, current from ECM → ECM connector E07a-terminal 21 → Stepper motorconnector E14a-terminal 2 → Stepper motor → Stepper motor connector E14a-terminal 3 → ECMconnector E07a-terminal 35 → ECM → Grounding

When C phase is working, current from ECM → ECM connector E07a-terminal 35 → Stepper motorconnector E14a-terminal 3 → Stepper motor → Stepper motor connector E14a-terminal 2 → ECMconnector E07a-terminal 21 → ECM → Grounding

When D phase is working, current from ECM → ECM connector E07a-terminal 36 → Stepper motorconnector E14a-terminal 4 → Stepper motor → Stepper motor connector E14a-terminal 1 → ECMconnector E07a-terminal 22 → ECM → Grounding

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3.2.12-7

MD/MS201 2014.01

3.2.12-7Electronic Control System (1.2L)

CKP/Evaporator Thermistor/ECT/IAT

Refer to 4.2.2Instrument ClusterSignal Lamp (1.2L)

Refer to 4.2.2Instrument ClusterSignal Lamp (1.2L)

Refer to 4.2.2Instrument ClusterSignal Lamp (1.2L)

Refer to 4.2.11On-board Network System

DLC

Refer to 4.2.2Instrument ClusterPower Supply and

Signal (1.2L)

Refer to 4.2.6Lighting System

Headlamp

0.5

BU/G

N

ECM

25 E07a

2 E15a

0.5

BU/R

D0.

5 BU

/RD

40 E07a

1 E15a

0.5

YE/B

N

59 E07a

4 E15a

0.5

YE/B

K0.

5 YE

/BK

19 E07a

3 E15a

0.5

BU/R

D

1 E11a

0.5

BN/Y

E

41 E07a

2 E11a

Air Intake Pressure/Temperature Sensor

CoolantTemperature

SensorEvaporatorThermistorCrankshaft Position Sensor

0.5

LG/B

K0.

5 LG

/BK

13 E07a

2 P39

0.5

BU/R

D0.

5 BU

/RD

1 P39

0.5

BU/R

D

3 E05a

0.5

BU/W

H

47 E07a

2 E05a

0.5

YE/B

K

1 E05a

21 X05 14 X05

0.5

YE

/GN

57 E07a

0.5

LG/W

H

15 E07a

0.5

WH

/BU

9 E07a

0.5

YE

/WH

56 E07a

0.5

VT/

YE

20 E07a

0.5

RD

/YE

24 E07a

M3212004

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MD/MS201 2014.01

3.2.12-8 3.2.12-8Electronic Control System (1.2L)

• Operating circuit analysis of crankshaft position sensor is as follows:

Current from ECM→ECM connector E07a-terminal 19→Crankshaft position sensor connector E05a-terminal 1 → Crankshaft position sensor → Crankshaft position sensor connector E05a-terminal 3 →

ECM connector E07a-terminal 40 → ECM → Grounding

Position signal from crankshaft position sensor → Crankshaft position sensor connector E05a-terminal 2 → ECM connector E07a-terminal 47 → ECM

• Operating circuit analysis of air intake pressure/temperature sensor is as follows:

Current from ECM → ECM connector E07a-terminal 19 → Air intake pressure/temperature sensorconnector E15a-terminal 3 → Air intake pressure/temperature sensor → Connector E15a-terminal 1→ ECM connector E07a-terminal 40 → ECM → Grounding

Air intake temperature signal from air intake pressure/temperature sensor → Air intake pressure/temperature sensor connector E15a-terminal 2 → ECM connector E07a-terminal 25 → ECM

Air intake pressure signal from air intake pressure/temperature sensor → Air intake pressure/temperature sensor connector E15a-terminal 4 → ECM connector E07a-terminal 59 → ECM

• Operating circuit analysis of evaporator thermistor is as follows:

Current from ECM → ECM connector E07a-terminal 13 → Connector X05-terminal 14 → Evaporatorthermistor connector P39-terminal 2→Evaporator thermistor→Evaporator thermistor connector P39-terminal 1 → Connector X05-terminal 21 → ECM connector E07a-terminal 40 → ECM → Grounding

• Operating circuit analysis of coolant temperature sensor is as follows:

Current from ECM → ECM connector E07a-terminal 41 → Coolant temperature sensor connectorE11a-terminal 2 → Coolant temperature sensor → Coolant temperature sensor connector E11a-terminal 1 → ECM connector E07a-terminal 40 → ECM → Grounding

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3.2.12-9

MD/MS201 2014.01

3.2.12-9Electronic Control System (1.2L)

Main Fuse Box

I/P Fuse Box

1

2

EF01

P01

1

2

15

16

13

14

3

4

5

6

7

8

9

10

11

12

45

4647

5448

50

5152

5953

55

5657

6458

60

6162

6963

65

6667

68

70

71

7273

75

7677

78 8382

80

81 86

85

8788

90

9192

93

49

74 79 84 89 94

49

50

51

52

53

54

55

56

57

58

59

60

61

62

63

64

65

66

67

68

69

70

71

72

73

74

75

76

77

78

79

80

17

18

19

20

21

22

23

24

25

26

27

28

29

30

31

32

33

34

35

36

37

38

39

40

41

42

43

44

45

46

47

48

IF01IF07

IF24

IR01 IR02 IR03 IR04 IR05

IF40 IF39 IF38 IF37 IF36 IF35 IF34 IF33 IF32 IF31 IF30 IF29 IF28 IF27 IF26 IF25

IF23 IF22 IF21 IF20 IF19 IF18 IF17 IF16 IF15 IF14 IF13 IF12 IF11 IF10 IF09

IF08 IF02 IF03 IF04 IF05 IF06

IR06 IR07 IR08 IR09 IR10

P40

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MD/MS201 2014.01

3.2.12-10 3.2.12-10Electronic Control System (1.2L)

I/P Wiring Harness to Chassis Wiring Harness Chassis Wiring Harness to I/P Wiring Harness

I/P Wiring Harness to Engine Wiring Harness Engine Wiring Harness to I/P Wiring Harness

1 2 3 4 5 67 8 9 10

11 12 13 14 15 16

17 18 19 2021 22 23 24 25 26

12345678910

11121314151617181920

212223242526

X04

1 7 8 9 10 411 12 13 14

2 15 16 17 18 5

19 20 21 223 23 24 25 26 6

1

2

3

7

11

15

19

23

8

12

16

20

24

9

13

17

21

25

10

14

18

22

26

4

5

6

X05

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3.2.12-11

MD/MS201 2014.01

3.2.12-11Electronic Control System (1.2L)

Front Oxygen Sensor Throttle Position Sensor

Crankshaft Position Sensor Coolant Temperature Sensor

ECM

1

2

3

4

E01a

1 2 3

E03a

1 2 3

E05a

1 2

E11a

7 8

5 6

3 4

1 2

51 52 53 54 55 56 57 58 59 60 61 62 63 64

37 38 39 40 41 42 43 44 45 46 47 48 49 50

23 24 25 26 27 28 29 30 31 32 33 34 35 36

9 10 11 12 13 14 15 16 17 18 19 20 21 22

E07a

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MD/MS201 2014.01

3.2.12-12 3.2.12-12Electronic Control System (1.2L)

Knock Sensor Carbon Canister Solenoid

Stepper Motor Air Intake Pressure/Temperature Sensor

Rear Oxygen Sensor Evaporator Thermistor

1 2 3

E12a

1 2

E13a

4321

E14a

1 2 3 4

E15a

12

34

S10

12

P39

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4.1.1-1

MD/MS201 2014.01

4.1.1-1Heating, Ventilation and Air Conditioning

Heating, Ventilation and Air Conditioning

M4101001

HeaterMotor

GovernorResistor A/C Controller

4

10

6

8

7

5

2

4

1

IG2

B+

IF26

IF33

IR02

G1031

2

G106

Lighting CombinationSwitch Terminal 8

TristatePressure

Switch

Diode

Compressor

EvaporatorThermistor

39

2

44

12

10

61

1

1

23 4

12

G105

ECM

40

13

1

2

Relay IR05Terminal 69

B+IF08

IR01

4.1.1 Heating, Ventilation and Air Conditioning

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MD/MS201 2014.01

4.1.1-2 4.1.1-2Heating, Ventilation and Air Conditioning

Compressor and Sensor Control Operation (1.0L)

M4101002

IF15

15A

8.0

WH

8.0

WH

2.0

WH

/YE

2.0

WH

/YE

2.0

RD

/BU

0.5

BN/W

H0.

5 BN

/WH

0.85

OG

0.5

BK/Y

E0.

5 BK

/YE0.

5 BU

/RD

0.5

BU/R

D

0.5

LG/B

K0.

5 LG

/BK

0.5

RD

/BU

0.5

WH

/YE

8.0

WH

+B

2

29

30

1

EF01

80A

I/P Fuse Box P40

67

65

68

69

47 48

49

1

IF18

10A

35

36

IR01

Compressor

Evaporator Thermistor

45

IR05

15 X05 24 X05

21 X05

32 E07 61

ECM

E0740 E07

14 X05

13 E07

1 P39 2 P39

P02

Main Fuse Box P01

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4.1.1-3

MD/MS201 2014.01

4.1.1-3Heating, Ventilation and Air Conditioning

Compressor and Sensor Control Operation (1.2L)

M4101004

IF15

15A

8.0

WH

8.0

WH

2.0

WH

/YE

2.0

WH

/YE

2.0

RD

/BU

0.5

BN/W

H0.

5 BN

/WH

0.85

OG

0.5

BK/Y

E0.

5 BK

/YE0.

5 BU

/RD

0.5

BU/R

D

0.5

LG/B

K0.

5 LG

/BK

0.5

RD

/BU

0.5

WH

/YE

8.0

WH

+B

2

29

30

1EF

01

80A

I/P Fuse Box P40

67

65

68

69

47 48

49

1

IF18

10A

35

36

IR01

Compressor

Evaporator Thermistor

45

IR05

15 X05 24 X05

21 X05

32 E07a 61

ECM

E07a40 E07a

14 X05

13 E07a

1 P39 2 P39

P02

Main Fuse Box P01

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MD/MS201 2014.01

4.1.1-4 4.1.1-4Heating, Ventilation and Air Conditioning

• Operating circuit analysis of compressor is as follows:

Current from battery positive → Main fuse box (main fuse EF01) → I/P fuse box (compressor fuseIF18) → Compressor relay-terminal 48 → Compressor relay closing contact → Compressor relay-terminal 49 → Compressor connector P02-terminal 1 → Compressor → Grounding

The compressor starts to work when electromagnetic clutch is engaged.

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4.1.1-5

MD/MS201 2014.01

4.1.1-5Heating, Ventilation and Air Conditioning

Power Supply/Sensor/Actuator (1.0L)

0.5

GN

/BU

Tristate PressureSwitch

1 P09

0.5

BK

0.5

BU/B

K0.

5 BU

/BK

2 P09

G105

2 P09 4 P09

10 E07

8 X05

2.0

BK2.

0 BK

G106

Hea

ter

Switc

h

IR02

A/C

Sw

itch

A/C Controller7 P264 8 P26

2 P26

5 P26

3 P2610 P26

6 P26

1 P38 2 P38 4 P38

I/P Fuse Box P40

HeaterMotor

Governor Resistor

Main Fuse Box P01

IG2

3.0

BK/B

U

0.5

BK/W

H0.

5 BK

/WH

0.5 BK/WH

IF41

82

81

20A

IF26

52

51

20A

53

54

52

50

3.0

BK0.

5 BK

2.0

RD

/GN

2.0 GN/WH

2.0 PK/BU2.0

PK/B

U

0.5

RD

/YE

0.5

PK/B

K0.

5 PK

/BK

2.0

PK

2.0

YE

G103

2 P28

M

1 P28

8.0

WH

8.0

WH

8.0

WH

+B

2

1

EF01

80A

34

33

IF1730A

P26

Refer to 4.2.6Lighting System

Position Lamp andLicense Plate Lamp

44 E07ECM

20 X05

Diode

0.5

PK/W

H

0.5

PK/W

H

0.5

LG/R

D0.

5 LG

2 P22

1 P22

7 X05

9 P26

12 E07

M4101003

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MD/MS201 2014.01

4.1.1-6 4.1.1-6Heating, Ventilation and Air Conditioning

• Operating circuit analysis of tristate pressure switch is as follows:

Current from ECM→ECM connector E07-terminal 44→Connector X05-terminal 20→A/C controllerconnector P26-terminal 2 → A/C switch (closing contact) → A/C controller connector P26-terminal 3→ Tristate pressure switch connector P09-terminal 1 → Tristate pressure switch (closing contact) →Tristate pressure switch connector P09-terminal 2 → A/C controller connector P26-terminal 9 → A/Ccontroller heater switch (speed closing contact) → A/C controller connector P26-terminal 10 →

Grounding G106

Current from ECM→ECM connector E07-terminal 10→Connector X05-terminal 8→Tristate pressureswitch connector P09-terminal 4 → Tristate pressure switch (medium pressure closing contact) →

Tristate pressure switch connector P09-terminal 3 → Grounding G105

• Operating circuit analysis of heater is as follows:

High speed: Current from battery positive → Main fuse box (main fuse EF01) → I/P fuse box (Heater& Overhead evaporator fuse IF17) → Heater relay-terminal 53 → Heater relay closing contact →

Heater relay-terminal 54 → Heater motor connector P28-terminal 1 → Heater motor → Heater motorconnector P28-terminal 2 → A/C controller connector P26-terminal 6 → Heater switch (high speedcontact) → A/C controller connector P26-terminal 10 → Grounding G106

Medium speed: Current from battery positive → Main fuse box (main fuse EF01) → I/P fuse box(Heater & Overhead evaporator fuse IF17)→Heater relay-terminal 53→Heater relay closing contact→Heater relay-terminal 54→Heater motor connector P28-terminal 1→Heater motor→Heater motorconnector P28-terminal 2 → Governor resistor connector P38-terminal 4 → Governor resistor →

Governor resistor connector P38-terminal 2 → A/C controller connector P26-terminal 8 → Heaterswitch (medium speed contact) → A/C controller connector P26-terminal 10 → Grounding G106

Low speed: Current from battery positive → Main fuse box (main fuse EF01) → I/P fuse box (Heater& Overhead evaporator fuse IF17) → Heater relay-terminal 53 → Heater relay closing contact →

Heater relay-terminal 54 → Heater motor connector P28-terminal 1 → Heater motor → Heater motorconnector P28-terminal 2 → Governor resistor connector P38-terminal 4 → Governor resistor →

Governor resistor connector P38-terminal 1 → A/C controller connector P26-terminal 7 → Heaterswitch (low speed contact) → A/C controller connector P26-terminal 10 → Grounding G106

Heater motor is controlled by the heater switch, whose speed can be changed through changing thecurrent magnitude of motor.

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4.1.1-7

MD/MS201 2014.01

4.1.1-7Heating, Ventilation and Air Conditioning

Power Supply/Sensor/Actuator (1.2L)3.

0 BK

2.0

BK

G106

Hea

ter

Switc

h

IR02

A/C

Sw

itch

A/C Controller7 P264 8 P265 P26

10 P26

6 P26

1 P38 2 P38 4 P38

I/P Fuse Box P40

HeaterMotor

Governor Resistor

Main Fuse Box P01

IG2

3.0

BK/B

U

0.5

BK/W

H0.

5 BK

/WH

0.5 BK/WH

IF41

82

81

20A

IF26

52

51

20A

53

54

52

50

3.0

BK0.

5 BK

2.0

RD

/GN

2.0

RD

/GN

2.0

RD

/GN

2.0

RD

/GN

2.0 GN/WH

2.0 PK/BU2.0

PK/B

U

0.5

RD

/YE

2.0

PK

2.0

YE

G103

2 P28

M

1 P28

8.0

WH

8.0

WH

8.0

WH

+B

2

1

EF01

80A

34

33

IF1730A

P26

Refer to 4.2.6Lighting System

Position Lamp andLicense Plate Lamp

ECM

3 X03

A

0.5

GN

/BU

1 P09

0.5

BK

0.5

BU/B

K0.

5 BU

/BK

2 P09

G105

3 P09 4 P09

10 E07a

8 X05

2 P263 P26

0.5

PK/B

K0.

5 PK

/BK

44 E07a

20 X05

DiodeTristate PressureSwitch

0.5

PK/W

H

0.5

PK/W

H

0.5

LG/R

D

2 P22

1 P22

7 X05

9 P26

12 E07a

M4101005

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MD/MS201 2014.01

4.1.1-8 4.1.1-8Heating, Ventilation and Air Conditioning

• Operating circuit analysis of tristate pressure switch is as follows:

Current from ECM→ECM connector E07a-terminal 44→Connector X05-terminal 20→A/C controllerconnector P26-terminal 2 → A/C switch (closing contact) → A/C controller connector P26-terminal 3→ Tristate pressure switch connector P09-terminal 1 → Tristate pressure switch (closing contact) →Tristate pressure switch connector P09-terminal 2 → A/C controller connector P26-terminal 9 → A/Ccontroller heater switch (speed closing contact) → A/C controller connector P26-terminal 10 →

Grounding G106

Current from ECM → ECM connector E07a-terminal 10 → Connector X05-terminal 8 → Tristatepressure switch connector P09-terminal 4 → Tristate pressure switch (medium pressure closingcontact) → Tristate pressure switch connector P09-terminal 3 → Grounding G105

• Operating circuit analysis of heater is as follows:

High speed: Current from battery positive → Main fuse box (main fuse EF01) → I/P fuse box (Heater& Overhead evaporator fuse IF17) → Heater relay-terminal 53 → Heater relay closing contact →

Heater relay-terminal 54 → Heater motor connector P28-terminal 1 → Heater motor → Heater motorconnector P28-terminal 2 → A/C controller connector P26-terminal 6 → Heater switch (high speedcontact) → A/C controller connector P26-terminal 10 → Grounding G106

Medium speed: Current from battery positive → Main fuse box (main fuse EF01) → I/P fuse box(Heater & Overhead evaporator fuse IF17)→Heater relay-terminal 53→Heater relay closing contact→Heater relay-terminal 54→Heater motor connector P28-terminal 1→Heater motor→Heater motorconnector P28-terminal 2 → Governor resistor connector P38-terminal 4 → Governor resistor →

Governor resistor connector P38-terminal 2 → A/C controller connector P26-terminal 8 → Heaterswitch (medium speed contact) → A/C controller connector P26-terminal 10 → Grounding G106

Low speed: Current from battery positive → Main fuse box (main fuse EF01) → I/P fuse box (Heater& Overhead evaporator fuse IF17) → Heater relay-terminal 53 → Heater relay closing contact →

Heater relay-terminal 54 → Heater motor connector P28-terminal 1 → Heater motor → Heater motorconnector P28-terminal 2 → Governor resistor connector P38-terminal 4 → Governor resistor →

Governor resistor connector P38-terminal 1 → A/C controller connector P26-terminal 7 → Heaterswitch (low speed contact) → A/C controller connector P26-terminal 10 → Grounding G106

Heater motor is controlled by the heater switch, whose speed can be changed through changing thecurrent magnitude of motor.

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4.1.1-9

MD/MS201 2014.01

4.1.1-9Heating, Ventilation and Air Conditioning

Main Fuse Box

I/P Fuse Box

1

2

EF01

P01

1

2

15

16

13

14

3

4

5

6

7

8

9

10

11

12

45

4647

5448

50

5152

5953

55

5657

6458

60

6162

6963

65

6667

68

70

71

7273

75

7677

78 8382

80

81 86

85

8788

90

9192

93

49

74 79 84 89 94

49

50

51

52

53

54

55

56

57

58

59

60

61

62

63

64

65

66

67

68

69

70

71

72

73

74

75

76

77

78

79

80

17

18

19

20

21

22

23

24

25

26

27

28

29

30

31

32

33

34

35

36

37

38

39

40

41

42

43

44

45

46

47

48

IF01IF07

IF24

IR01 IR02 IR03 IR04 IR05

IF40 IF39 IF38 IF37 IF36 IF35 IF34 IF33 IF32 IF31 IF30 IF29 IF28 IF27 IF26 IF25

IF23 IF22 IF21 IF20 IF19 IF18 IF17 IF16 IF15 IF14 IF13 IF12 IF11 IF10 IF09

IF08 IF02 IF03 IF04 IF05 IF06

IR06 IR07 IR08 IR09 IR10

P40

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MD/MS201 2014.01

4.1.1-10 4.1.1-10Heating, Ventilation and Air Conditioning

I/P Wiring Harness to Engine Wiring Harness Roof Wiring Harness to I/P Wiring Harness

1 7 8 9 10 411 12 13 14

2 15 16 17 18 5

19 20 21 223 23 24 25 26 6

1

2

3

7

11

15

19

23

8

12

16

20

24

9

13

17

21

25

10

14

18

22

26

4

5

6

X05

1

P02

1

243

P09

1

P02

1

2

P22

12345

678910

P26

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4.1.1-11

MD/MS201 2014.01

4.1.1-11Heating, Ventilation and Air Conditioning

ECM

1

2

P28

12

34

P38

12

P39

7 8

5 6

3 4

1 2

51 52 53 54 55 56 57 58 59 60 61 62 63 64

37 38 39 40 41 42 43 44 45 46 47 48 49 50

23 24 25 26 27 28 29 30 31 32 33 34 35 36

9 10 11 12 13 14 15 16 17 18 19 20 21 22

E07

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MD/MS201 2014.01

4.1.1-12 4.1.1-12Heating, Ventilation and Air Conditioning

ECM

7 8

5 6

3 4

1 2

51 52 53 54 55 56 57 58 59 60 61 62 63 64

37 38 39 40 41 42 43 44 45 46 47 48 49 50

23 24 25 26 27 28 29 30 31 32 33 34 35 36

9 10 11 12 13 14 15 16 17 18 19 20 21 22

E07a

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MD/MS201 2014.01

4.2.2-1 4.2.2-1Instrument Cluster

Instrument Cluster

M4202004

8B+IF07

7

11

24

1 3

IG1IF35

IF33

G104

G104

G104

InstrumentCluster

VehicleSpeedSensor

2

AlternatorTerminal 3

Engine Oil Pressure Switch

Parking Brake Switch

Relay IR06Terminal 74

Front Left DoorSignal Lamp Switch

Rear Right DoorSignal Lamp Switch

231

Fuel LevelSensor

110 3

Brake Fluid Level Switch

27

22

ECM

1

21

G104

Seat Belt Switch

21

13

18

9

56

129

557

2820

G201

LightingCombinationSwitch

817

111

132

219

104

93

20

21

1

1

4.2.2 Instrument Cluster

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4.2.2-2

MD/MS201 2014.01

4.2.2-2Instrument Cluster

Power Supply and Signal (1.0L)

Engine OilPressure

Main Fuse Box P01

+B

2

18.0

WH

EF01

80A

Instrument Cluster

2 X05

0.3

YE

/BK

0.5

YE

/BK

18 X05

0.3

VT/

YE

0.5

VT/

YE

1 E10Engine OilPressureSwitch

SeatBeltSwitch

5 X04

BA

0.3

GY

/BK

0.5

GY

/BK

0.5

BK

1.25

BK

2 S03

1 S03

9 X04

0.3

WH

/RD

0.3

RD

/BK

0.3

RD

/BK

0.3

RD

/BK

0.5

RD

/BK

8 P21 7 P21

24 P21 27 P21

2 P19

1 P19

23 P21 28 P21 22 P21

IF35

10A

70

69

0.3

BK0.

5 BK

IF33

10A

IG1

66

65

3.0

YE/B

K0.

5 YE

/BN

0.5

GN

/BK

G104 G201

I/P Fuse Box P40

Refer to 4.2.5 Information andEntertainment System4.2.6 Lighting System Roof Lamp

Refer to 3.1.10Charging System

Refer to 3.1.12Electronic

Control System (1.0L)

BatteryChargingIndicator

Brake Fluid LevelParking Brake Engine Fault

Seat BeltUnfastenedWarning

BrakeFluidLevelSwitch

1 S14

ParkingBrakeSwitch

IF07

10A

8.0

WH

8.0

WH

0.5

WH

0.5

WH

13

14

C

M4202001

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MD/MS201 2014.01

4.2.2-3 4.2.2-3Instrument Cluster

• Operating circuit analysis of brake fluid level and parking bake indicator is as follows:

Brake fluid level indicator: Current from battery positive→Main fuse box (main fuse EF01)→ I/P fusebox (ignition switch 1 fuse IF01) → Ignition switch connector P31-terminal 3 → Ignition switch IG1contact → Ignition switch connector P31-terminal 2 → I/P fuse box (Instrument cluster fuse IF35) →Instrument cluster connector P21-terminal 7 → Instrument cluster (brake fluid level indicator) →

Instrument cluster connector P21-terminal 27 → Brake fluid level switch connector P19-terminal 2 →

Brake fluid level switch (closing contact) → Brake fluid level switch connector P19-terminal 1 →

Grounding G104

Parking brake indicator: Current from battery positive → Main fuse box (main fuse EF01) → I/P fusebox (ignition switch 1 fuse IF01) → Ignition switch connector P31-terminal 3 → Ignition switch IG1contact → Ignition switch connector P31-terminal 2 → I/P fuse box (Instrument cluster fuse IF35) →Instrument cluster connector P21-terminal 7 → Instrument cluster (brake fluid level indicator) →

Instrument cluster connector P21-terminal 27 → Connector X04-terminal 5 → Parking brake switchconnector S14-terminal 1 → Parking brake switch (closing contact) → Grounding

The indicator is used as brake fluid level indicator and parking brake indicator at the same time.

• Operating circuit analysis of engine oil pressure warning lamp is as follows:

Current from battery positive→Main fuse box (main fuse EF01)→ I/P fuse box (ignition switch 1 fuseIF01) → Ignition switch connector P31-terminal 3 → Ignition switch IG1 contact → Ignition switchconnector P31-terminal 2 → I/P fuse box (instrument cluster fuse IF35) → Instrument clusterconnector P21-terminal 7 → Instrument cluster (engine oil pressure warning lamp ) → Instrumentcluster connector P21-terminal 23 → Connector X05-terminal 2 → Engine oil pressure switchconnector E10-terminal 1 → Engine oil pressure switch (closing contact) → Engine cylinder blockgrounding

The engine oil pressure warning lamp is turned on.

• Operating circuit analysis of seat belt unfastened warning lamp is as follows:

Current from battery positive→Main fuse box (main fuse EF01)→ I/P fuse box (ignition switch 1 fuseIF01) → Ignition switch connector P31-terminal 3 → Ignition switch IG1 contact → Ignition switchconnector P31-terminal 2 → I/P fuse box (instrument cluster fuse IF35) → Instrument clusterconnector P21-terminal 7 → Instrument cluster (seat belt unfastened warning lamp ) → Instrumentcluster connector P21-terminal 22 → Connector X04-terminal 9 → Seat belt switch connector S03-terminal 2 → Seat belt switch (closing contact) → Seat belt switch connector S03-terminal 1 →

Grounding G201

The seat belt unfastened warning lamp is turned on.

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4.2.2-4

MD/MS201 2014.01

4.2.2-4Instrument Cluster

Signal Lamp (1.0L)

0.3

YE

/RD

0.3

YE

/RD

0.5

YE

/RD

0.5

BK

/YE

0.5 BK/YE

0.3

YE

/WH

0.3

WH

/BU

0.3

YE

/BU

0.3

GN

0.3

GN

0.5

YE

/WH

0.5

WH

/BU

0.5

YE

/BU

ECM

Instrument Cluster

B

C

A

A

10 P21 13 P21 12 P21 5 P21

56 E073

2

S01

1 S01

9 E07 57 E07 1 S09

2 S09

3 S09

11 P21 9 P21

0.5

BK0.

5 BK

0.5

BK

G104

Vehicle SpeedSignal

Vehicle SpeedSensor

FuelLevel

Sensor

Engine SpeedSignal

Fuel LevelSignal

Control Unit Inside Instrument Cluster

CoolantTemperature

SignalBuzzer

3 X0518 X04

1 X07

X07

9 X05 26 X05 20 X043 X04

10 X04

0.5

BK

0.5

YE/B

N0.

5 YE

/BN

M4202002

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MD/MS201 2014.01

4.2.2-5 4.2.2-5Instrument Cluster

• Operating circuit analysis of fuel level signal is as follows:

Current from instrument cluster → Instrument cluster connector P21-terminal 10 → Connector X04-terminal 18 → Connector X07-terminal 1 → Fuel level sensor connector S01-terminal 3 → Fuel levelsensor→Fuel level sensor connector S01-terminal 1→Connector X07-terminal 2→Connector X04-terminal 10 → Grounding G104

• Operating circuit analysis of engine coolant temperature signal is as follows:

Signal from ECM→ECM connector E07-terminal 56→Connector X05-terminal 3→Instrument clusterconnector P21-terminal 13 → Instrument cluster (control unit inside instrument cluster)

• Operating circuit analysis of engine speed signal is as follows:

Signal from ECM→ECM connector E07-terminal 9→Connector X05-terminal 9→ Instrument clusterconnector P21-terminal 12 → Instrument cluster (control unit inside instrument cluster)

• Operating circuit analysis of vehicle speed signal is as follows:

Output: Signal from instrument cluster (control unit inside instrument cluster) → Instrument clusterconnector P21-terminal 5 → Connector X05-terminal 26 → ECM connector E07-terminal 57 → ECM

Input: Signal from vehicle speed sensor → Vehicle speed sensor connector S09-terminal 3 →

Connector X04-terminal 20 → Instrument cluster connector P21-terminal 11 → Instrument cluster(control unit inside instrument cluster)

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4.2.2-6

MD/MS201 2014.01

4.2.2-6Instrument Cluster

Lighting Signal Lamp (1.0L)

Refer to 4.2.6Lighting SystemPosition Lamp

Refer to 4.2.6Lighting SystemTurn signal lamp

Low BeamIndicator

High BeamIndicator

Door OpenIndicator

BackgroundLamp

Indicator Right TurnIndicator

Left TurnIndicator

Front FogIndicator

RearFogIndicator

Instrument Cluster

Refer to 4.2.6Lighting System

Fog Lamp

Refer to 4.2.6Lighting System

Headlamp

Refer to 4.2.6Lighting System

Roof Lamp

0.5

RD

/YE

0.3

RD

/YE

0.3

RD

/WH

1.25

RD

/WH

0.3

RD

1.25

RD

0.3

BK

/RD

0.5

BK

/RD

0.5

GN

/YE

0.3

GN

/YE

0.5

GN

/RD

0.3

GN

/RD

1.25

LG

0.3

LG

0.5

GY

0.3

GY

A

4 P21 3 P21 21 P21 18 P21

17 P21 1 P21 2 P21 20 P21 19 P21

0.5

BK0.

5 BK

G104

M4202003

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MD/MS201 2014.01

4.2.2-7 4.2.2-7Instrument Cluster

Power Supply and Signal (1.2L)

Main Fuse Box P01

+B

2

18.0

WH

EF01

80A

Instrument Cluster

2 X05

0.3

YE

/BK

0.5

YE

/BK

18 X05

0.3

VT/

YE

0.5

VT/

YE

1 E10aEngine OilPressureSwitch

SeatBeltSwitch

5 X04

BA

0.3

GY

/BK

0.5

GY

/BK

0.5

BK

2 S03

1 S03

9 X04

0.3

WH

/RD

0.3

RD

/BK

0.3

RD

/BK

0.3

RD

/BK

0.5

RD

/BK

8 P21 7 P21

24 P21 27 P21

2 P19

1 P19

23 P21 28 P21 22 P21

IF35

10A

70

69

0.3

BK0.

5 BK

IF33

10A

IG1

66

65

3.0

YE/B

K0.

5 YE

/BN

0.5

GN

/BK

G104 G201

I/P Fuse Box P40

Refer to 4.2.5 Information andEntertainment System4.2.6 Lighting System Roof Lamp

Refer to 3.1.10Charging System

Refer to 3.1.12Electronic

Control System (1.2L)

BatteryChargingIndicator

Brake Fluid LevelParking Brake

Engine OilPressure Engine Fault

Seat BeltUnfastenedWarning

BrakeFluidLevelSwitch

1 S14

ParkingBrakeSwitch

IF07

10A

8.0

WH

8.0

WH

0.5

WH

0.5

WH

13

14

C

M4202005

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4.2.2-8

MD/MS201 2014.01

4.2.2-8Instrument Cluster

• Operating circuit analysis of brake fluid level and parking bake indicator is as follows:

Brake fluid level indicator: Current from battery positive→Main fuse box (main fuse EF01)→ I/P fusebox (ignition switch 1 fuse IF01) → Ignition switch connector P31-terminal 3 → Ignition switch IG1contact → Ignition switch connector P31-terminal 2 → I/P fuse box (Instrument cluster fuse IF35) →Instrument cluster connector P21-terminal 7 → Instrument cluster (brake fluid level indicator) →

Instrument cluster connector P21-terminal 27 → Brake fluid level switch connector P19-terminal 2 →

Brake fluid level switch (closing contact) → Brake fluid level switch connector P19-terminal 1 →

Grounding G104

Parking brake indicator: Current from battery positive → Main fuse box (main fuse EF01) → I/P fusebox (ignition switch 1 fuse IF01) → Ignition switch connector P31-terminal 3 → Ignition switch IG1contact → Ignition switch connector P31-terminal 2 → I/P fuse box (Instrument cluster fuse IF35) →Instrument cluster connector P21-terminal 7 → Instrument cluster (brake fluid level indicator) →

Instrument cluster connector P21-terminal 27 → Connector X04-terminal 5 → Parking brake switchconnector S14-terminal 1 → Parking brake switch (closing contact) → Grounding

The indicator is used as brake fluid level indicator and parking brake indicator at the same time.

• Operating circuit analysis of engine oil pressure warning lamp is as follows:

Current from battery positive→Main fuse box (main fuse EF01)→ I/P fuse box (ignition switch 1 fuseIF01) → Ignition switch connector P31-terminal 3 → Ignition switch IG1 contact → Ignition switchconnector P31-terminal 2 → I/P fuse box (instrument cluster fuse IF35) → Instrument clusterconnector P21-terminal 7 → Instrument cluster (engine oil pressure warning lamp ) → Instrumentcluster connector P21-terminal 23 → Connector X05-terminal 2 → Engine oil pressure switchconnector E10a-terminal 1 → Engine oil pressure switch (closing contact) → Engine cylinder blockgrounding

The engine oil pressure warning lamp is turned on.

• Operating circuit analysis of seat belt unfastened warning lamp is as follows:

Current from battery positive→Main fuse box (main fuse EF01)→ I/P fuse box (ignition switch 1 fuseIF01) → Ignition switch connector P31-terminal 3 → Ignition switch IG1 contact → Ignition switchconnector P31-terminal 2 → I/P fuse box (instrument cluster fuse IF35) → Instrument clusterconnector P21-terminal 7 → Instrument cluster (seat belt unfastened warning lamp ) → Instrumentcluster connector P21-terminal 22 → Connector X04-terminal 9 → Seat belt switch connector S03-terminal 2 → Seat belt switch (closing contact) → Seat belt switch connector S03-terminal 1 →

Grounding G201

The seat belt unfastened warning lamp is turned on.

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MD/MS201 2014.01

4.2.2-9 4.2.2-9Instrument Cluster

Signal Lamp (1.2L)

ECM Vehicle SpeedSensor

FuelLevel

Sensor

Vehicle SpeedSignal

Engine SpeedSignal

Fuel LevelSignal

CoolantTemperature

SignalBuzzer

0.3

YE

/RD

0.3

YE

/RD

0.5

YE

/RD

0.5

BK

/YE

0.5 BK/YE

0.3

YE

/WH

0.3

WH

/BU

0.3

YE

/GN

0.3

GN

0.3

GN

0.5

YE

/WH

0.5

WH

/BU

0.5

YE

/GN

Instrument Cluster

B

C

A

A

10 P21 13 P21 12 P21 5 P21

56 E07a3

2

S01

1 S01

9 E07a 57 E07a 1 S09

2 S09

3 S09

11 P21 9 P21

0.5

BK0.

5 BK

0.5

BK

G104

3 X0518 X04

1 X07

X07

9 X05 26 X05 20 X043 X04

10 X04

0.5

BK

0.5

YE/B

N0.

5 YE

/BN

Control Unit Inside Instrument Cluster

M4202006

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4.2.2-10

MD/MS201 2014.01

4.2.2-10Instrument Cluster

• Operating circuit analysis of fuel level signal is as follows:

Current from instrument cluster → Instrument cluster connector P21-terminal 10 → Connector X04-terminal 18 → Connector X07-terminal 1 → Fuel level sensor connector S01-terminal 3 → Fuel levelsensor→Fuel level sensor connector S01-terminal 1→Connector X07-terminal 2→Connector X04-terminal 10 → Grounding G104

• Operating circuit analysis of engine coolant temperature signal is as follows:

Signal from ECM → ECM connector E07a-terminal 56 → Connector X05-terminal 3 → Instrumentcluster connector P21-terminal 13 → Instrument cluster (control unit inside instrument cluster)

• Operating circuit analysis of engine speed signal is as follows:

Signal from ECM→ECM connector E07a-terminal 9→Connector X05-terminal 9→Instrument clusterconnector P21-terminal 12 → Instrument cluster (control unit inside instrument cluster)

• Operating circuit analysis of vehicle speed signal is as follows:

Output: Signal from instrument cluster (control unit inside instrument cluster) → Instrument clusterconnector P21-terminal 5 → Connector X05-terminal 26 → ECM connector E07a-terminal 57→ ECM

Input: Signal from vehicle speed sensor → Vehicle speed sensor connector S09-terminal 3 →

Connector X04-terminal 20 → Instrument cluster connector P21-terminal 11 → Instrument cluster(control unit inside instrument cluster)

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MD/MS201 2014.01

4.2.2-11 4.2.2-11Instrument Cluster

Lighting Signal Lamp (1.2L)

Refer to 4.2.6Lighting SystemPosition Lamp

Refer to 4.2.6Lighting SystemTurn signal lamp

Low BeamIndicator

High BeamIndicator

Door OpenIndicator

BackgroundLamp

Indicator Right TurnIndicator

Left TurnIndicator

Front FogIndicator

RearFogIndicator

Instrument Cluster

Refer to 4.2.6Lighting System

Fog Lamp

Refer to 4.2.6Lighting System

Headlamp

Refer to 4.2.6Lighting System

Roof Lamp

0.5

RD

/YE

0.3

RD

/YE

0.3

RD

/WH

1.25

RD

/WH

0.3

RD

1.25

RD

0.3

BK

/RD

0.5

BK

/RD

0.5

GN

/YE

0.3

GN

/YE

0.5

GN

/RD

0.3

GN

/RD

1.25

LG

0.3

LG

0.5

GY

0.3

GY

A

4 P21 3 P21 21 P21 18 P21

17 P21 1 P21 2 P21 20 P21 19 P21

0.5

BK0.

5 BK

G104

M4202007

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4.2.2-12

MD/MS201 2014.01

4.2.2-12Instrument Cluster

Main Fuse Box

I/P Fuse Box

1

2

EF01

P01

1

2

15

16

13

14

3

4

5

6

7

8

9

10

11

12

45

4647

5448

50

5152

5953

55

5657

6458

60

6162

6963

65

6667

68

70

71

7273

75

7677

78 8382

80

81 86

85

8788

90

9192

93

49

74 79 84 89 94

49

50

51

52

53

54

55

56

57

58

59

60

61

62

63

64

65

66

67

68

69

70

71

72

73

74

75

76

77

78

79

80

17

18

19

20

21

22

23

24

25

26

27

28

29

30

31

32

33

34

35

36

37

38

39

40

41

42

43

44

45

46

47

48

IF01IF07

IF24

IR01 IR02 IR03 IR04 IR05

IF40 IF39 IF38 IF37 IF36 IF35 IF34 IF33 IF32 IF31 IF30 IF29 IF28 IF27 IF26 IF25

IF23 IF22 IF21 IF20 IF19 IF18 IF17 IF16 IF15 IF14 IF13 IF12 IF11 IF10 IF09

IF08 IF02 IF03 IF04 IF05 IF06

IR06 IR07 IR08 IR09 IR10

P40

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MD/MS201 2014.01

4.2.2-13 4.2.2-13Instrument Cluster

I/P Wiring Harness to Chassis Wiring Harness Chassis Wiring Harness to I/P Wiring Harness

I/P Wiring Harness to Engine Wiring Harness Engine Wiring Harness to I/P Wiring Harness

1 2 3 4 5 67 8 9 10

11 12 13 14 15 16

17 18 19 2021 22 23 24 25 26

12345678910

11121314151617181920

212223242526

X04

1 7 8 9 10 411 12 13 14

2 15 16 17 18 5

19 20 21 223 23 24 25 26 6

1

2

3

7

11

15

19

23

8

12

16

20

24

9

13

17

21

25

10

14

18

22

26

4

5

6

X05

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4.2.2-14

MD/MS201 2014.01

4.2.2-14Instrument Cluster

Chassis Wiring Harness to Fuel Pump Wiring Harness Fuel Pump Wiring Harness to Chassis Wiring Harness

Engine Oil Pressure Switch Engine Oil Pressure Switch

Brake Fluid Level Switch

13

24

1

2

3

4

X07

1

E10

1

E10a

12

P19

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MD/MS201 2014.01

4.2.2-15 4.2.2-15Instrument Cluster

Instrument Cluster

1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16

26 27 28 29 30 31 3217 18 19 20 21 22 23 24 25

P21

1

2

3

4

S01

1

2

S03

1 2 3

S09

1

S14

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4.2.2-16

MD/MS201 2014.01

4.2.2-16Instrument Cluster

ECM

ECM

7 8

5 6

3 4

1 2

51 52 53 54 55 56 57 58 59 60 61 62 63 64

37 38 39 40 41 42 43 44 45 46 47 48 49 50

23 24 25 26 27 28 29 30 31 32 33 34 35 36

9 10 11 12 13 14 15 16 17 18 19 20 21 22

E07

7 8

5 6

3 4

1 2

51 52 53 54 55 56 57 58 59 60 61 62 63 64

37 38 39 40 41 42 43 44 45 46 47 48 49 50

23 24 25 26 27 28 29 30 31 32 33 34 35 36

9 10 11 12 13 14 15 16 17 18 19 20 21 22

E07a

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4.2.3-1

MD/MS201 2014.01

4.2.3-1Horn

Horn

Main Fuse Box P01

P12

2

1

P12

IF12

15A

8.0

WH

8.0

WH

8.0

WH

0.85

RD

0.85

RD

0.5

RD

0.5

YE

0.85

WH

/GN

0.85

BK

2.0

BK

+B

2

23

24

8887

85 89

1EF

01

80A

I/P Fuse Box P40

IR09

Horn SwitchHorn

1 P32

G105

M4203001

4.2.3 Horn

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MD/MS201 2014.01

4.2.3-2 4.2.3-2Horn

• Operating circuit analysis of horn is as follows:

Current from battery positive → Main fuse box (main fuse EF01) → I/P box (horn fuse IF12) → Hornrelay-terminal 88 → Horn relay closing contact → Horn relay-terminal 89 → Horn connector P12-terminal 2 → Horn → Horn connector P12-terminal 1 → Grounding G105

Controlled by the horn switch through horn relay, horn is powered on to work.

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4.2.3-3

MD/MS201 2014.01

4.2.3-3Horn

Main Fuse Box

I/P Fuse Box

1

2

EF01

P01

1

2

15

16

13

14

3

4

5

6

7

8

9

10

11

12

45

4647

5448

50

5152

5953

55

5657

6458

60

6162

6963

65

6667

68

70

71

7273

75

7677

78 8382

80

81 86

85

8788

90

9192

93

49

74 79 84 89 94

49

50

51

52

53

54

55

56

57

58

59

60

61

62

63

64

65

66

67

68

69

70

71

72

73

74

75

76

77

78

79

80

17

18

19

20

21

22

23

24

25

26

27

28

29

30

31

32

33

34

35

36

37

38

39

40

41

42

43

44

45

46

47

48

IF01IF07

IF24

IR01 IR02 IR03 IR04 IR05

IF40 IF39 IF38 IF37 IF36 IF35 IF34 IF33 IF32 IF31 IF30 IF29 IF28 IF27 IF26 IF25

IF23 IF22 IF21 IF20 IF19 IF18 IF17 IF16 IF15 IF14 IF13 IF12 IF11 IF10 IF09

IF08 IF02 IF03 IF04 IF05 IF06

IR06 IR07 IR08 IR09 IR10

P40

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MD/MS201 2014.01

4.2.3-4 4.2.3-4Horn

Electrical Horn Horn Switch

12

P12

1

P32

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4.2.4-1

MD/MS201 2014.01

4.2.4-1Cigarette Lighter

Cigarette Lighter

I/P Fuse Box P40

1 P37

1 P36

1.25

BK

2.0

BK1.

25 W

H/B

K1.

25 W

H/B

K

0.85 WH/BKIF

40

80

79

15A

ACC

1.25

BU

G106

CigaretteLighterRefer to

4.2.5 Information andEntertainment System

M4204001

4.2.4 Cigarette Lighter

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MD/MS201 2014.01

4.2.4-2 4.2.4-2Cigarette Lighter

• Operating circuit analysis of cigarette lighter is as follows:

Current from battery positive→Main fuse box (main fuse EF01)→ I/P fuse box (ignition switch 2 fuseIF02) → Ignition switch connector P31-terminal 4 → Ignition switch ACC contact → Ignition switchconnector P31-terminal 1 → I/P fuse box (cigarette lighter & radio fuse IF40) → Cigarette lighterconnector P37-terminal 1 → Cigarette lighter → Cigarette lighter connector P36-terminal 1 →

Grounding G106

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4.2.4-3

MD/MS201 2014.01

4.2.4-3Cigarette Lighter

I/P Fuse Box

Cigarette Lighter Negative Cigarette Lighter Positive

1

2

15

16

13

14

3

4

5

6

7

8

9

10

11

12

45

4647

5448

50

5152

5953

55

5657

6458

60

6162

6963

65

6667

68

70

71

7273

75

7677

78 8382

80

81 86

85

8788

90

9192

93

49

74 79 84 89 94

49

50

51

52

53

54

55

56

57

58

59

60

61

62

63

64

65

66

67

68

69

70

71

72

73

74

75

76

77

78

79

80

17

18

19

20

21

22

23

24

25

26

27

28

29

30

31

32

33

34

35

36

37

38

39

40

41

42

43

44

45

46

47

48

IF01IF07

IF24

IR01 IR02 IR03 IR04 IR05

IF40 IF39 IF38 IF37 IF36 IF35 IF34 IF33 IF32 IF31 IF30 IF29 IF28 IF27 IF26 IF25

IF23 IF22 IF21 IF20 IF19 IF18 IF17 IF16 IF15 IF14 IF13 IF12 IF11 IF10 IF09

IF08 IF02 IF03 IF04 IF05 IF06

IR06 IR07 IR08 IR09 IR10

P40

1

P36

1

P37

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4.2.5-1

MD/MS201 2014.01

4.2.5-1Information and Entertainment System

Information and Entertainment System

M4205003

LightingCombination

SwitchTerminal 8

6 3

8

2

1

5ACCIF40

1

4

G106

B+IF07

Front Left Speaker

RADIO

2

7

2

1 Front Right Speaker

Antenna

4.2.5 Information and Entertainment System

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MD/MS201 2014.01

4.2.5-2 4.2.5-2Information and Entertainment System

Power Supply

M4205001

Main Fuse Box P01+B

2

1

8.0

WH

8.0

WH

0.5

WH

0.5

WH

0.5

WH

Antenna

1.25

WH

/BK

0.5

WH

1.25

WH

/BK

0.85

WH

/BK

8.0

WH

I/P Fuse Box P40

Refer to 4.2.6Lighting System

Roof Lamp

Refer to 4.2.2Instrument

Cluster

Refer to 4.2.4Cigarette Lighter

IF07

10A

13

14

IF40

80

79

15A

ACC

1.25

BU

2.0

BK0.

85 B

K

P34

RADIO

P34ACC

GND

P34+B

1 5

G106

4

EF01

80A

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4.2.5-3

MD/MS201 2014.01

4.2.5-3Information and Entertainment System

Speaker

M4205002

0.5

RD

/YE

Refer to 4.2.6Lighting SystemPosition Lamp

P34 P34

0.5

RD

0.5

RD

0.5

RD

/BK

0.5

RD

/BK

0.5

BU/R

D0.

5 BU

/RD

0.5

BU/B

K0.

5 BU

/BK

P3423P346 8 7 P34

2 1 D05D04D04

R_RFR_RFL_RFL_RF

RADIO

1

12

X022 X01 3 X01 2 X02

Front Right SpeakerFront Left Speaker

D05

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MD/MS201 2014.01

4.2.5-4 4.2.5-4Information and Entertainment System

• Operating circuit analysis of radio is as follows:

Memory power: Current from battery positive → Main fuse box (main fuse EF01) → I/P fuse box (rooflamp fuse IF07) → Radio connector P34-terminal 1 → Radio → Radio connector P34-terminal 4 →

Grounding G106

Energizing power: Current from battery positive → Main fuse box (main fuse EF01) → I/P fuse box(ignition switch 2 fuse IF02) → Ignition switch connector P31-terminal 4 → Ignition switch ACCcontact → Ignition switch connector P31-terminal 1→ I/P fuse box (cigarette lighter & radio fuse IF40)→ Radio connector P34-terminal 5 → Radio → Radio connector P34-terminal 4 → Grounding G106

Radio can start to work only when both powers supply.

• Operating circuit analysis of speaker is as follows:

Front left speaker: Radio → Radio connector P34-terminal 3→Connector X01-terminal 2→Front leftspeaker connector D04-terminal 2 → Front left speaker → Front left speaker connector D04- terminal1 → Connector X01-terminal 3 → Radio connector P34-terminal 8 → Radio

Front right speaker: Radio → Radio connector P34-terminal 2 → Connector X02-terminal 1 → Frontright speaker connector D05-terminal 2 → Front right speaker → Front right speaker connector D05-terminal 1 → Connector X02-terminal 2 → Radio connector P34-terminal 7 → Radio

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4.2.5-5

MD/MS201 2014.01

4.2.5-5Information and Entertainment System

Main Fuse Box

I/P Fuse Box

1

2

EF01

P01

1

2

15

16

13

14

3

4

5

6

7

8

9

10

11

12

45

4647

5448

50

5152

5953

55

5657

6458

60

6162

6963

65

6667

68

70

71

7273

75

7677

78 8382

80

81 86

85

8788

90

9192

93

49

74 79 84 89 94

49

50

51

52

53

54

55

56

57

58

59

60

61

62

63

64

65

66

67

68

69

70

71

72

73

74

75

76

77

78

79

80

17

18

19

20

21

22

23

24

25

26

27

28

29

30

31

32

33

34

35

36

37

38

39

40

41

42

43

44

45

46

47

48

IF01IF07

IF24

IR01 IR02 IR03 IR04 IR05

IF40 IF39 IF38 IF37 IF36 IF35 IF34 IF33 IF32 IF31 IF30 IF29 IF28 IF27 IF26 IF25

IF23 IF22 IF21 IF20 IF19 IF18 IF17 IF16 IF15 IF14 IF13 IF12 IF11 IF10 IF09

IF08 IF02 IF03 IF04 IF05 IF06

IR06 IR07 IR08 IR09 IR10

P40

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MD/MS201 2014.01

4.2.5-6 4.2.5-6Information and Entertainment System

I/P Wiring Harness to Front Left Door Wiring Harness Front Left Door Wiring Harness to I/P Wiring Harness

I/P Wiring Harness to Front Right Door Wiring Harness Front Right Door Wiring Harness to I/P Wiring Harness

1 2 4 53

6 7 11 128 9 10

34

11 10 812

5

7 69

2 1

X01

1 2 4 53

6 7 11 128 9 10

34

11 10 812

5

7 69

2 1

X02

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4.2.5-7

MD/MS201 2014.01

4.2.5-7Information and Entertainment System

Radio Front Left Speaker

Front Right Speaker

123

478 56

P34

1

2

D04

1

2

D05

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4.2.6-1

MD/MS201 2014.01

4.2.6-1Lighting System

Lighting System

M4206010

Ligh

ting

Com

bina

tion

Switc

h

InstrumentCluster

Front Right Turn Lamp

Rear Right Turn Lamp

Front Left Turn Lamp

Rear Left Turn Lamp

Flasher Relay

RearLeftFogLamp

RearRightFogLamp

FrontLeftFogLamp

FrontRightFogLamp

Central LockController

HazardWarning

LampSwitch

Diode A

InstrumentCluster

Diode B

Right License Plate Lamp

RightHeadlamp

LeftHeadlamp

Right Low Beam Regulator Motor

Left Low Beam Regulator Motor

LightingPowerControlSwitch

Front Left Position Lamp

Front Right Position Lamp

Rear Left Position Lamp

Rear Right Position Lamp

Left License Plate Lamp

5

109

3

2

B+

IF09

5

6 4

5

6 4

3 4

IR06

IF08 IF14IF16

InstrumentCluster

Terminal 17

A/C ControllerTerminal 5

RadioTerminal 6

G103

G106G103G201

1224 ECM

1

1 2

2

3

3

3

3 2

11

145

2

G106

G103

6 8

3 2

6 1

6 1

2 1

2 1

G201

1

2

1

2

3

6

3

6

19

1

1 2

2 6

1 2

2

1

2

8

3

6

76

11

2

20

G105

G20113

12

G103

G201

G105

4

G106

13

2

7

6

5

B+IF21

IG1IF33

4.2.6 Lighting System

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MD/MS201 2014.01

4.2.6-2 4.2.6-2Lighting System

Headlamp

Dio

de A

Dio

de B

Low BeamLamp

High BeamLamp

OvertakingLamp

Main Fuse Box P01

P24

IF08

15A

16

15

IF09

15A

18

17

6 4P08 P08

5 P08

2.0

BK3.

0 BK

1.25

RD

/WH

1.25

RD

1.25

RD

1.25

RD

/WH

0.3

RD

0.3

RD

/WH

0.5

RD

/WH

1.25

RD

1.25

RD

/WH

1.25

WH

/RD

1.25

WH

/BU

HI LO HI LO

7 10 9P30 P30 P30

6 4P14 P14

5 P14

IPC

3 P03

2

4 P03

ECM

24 E07 24 E07a

G103

OFF

10 97

I/P Fuse Box P40

8.0

WH

8.0

WH

+B

1

2

EF01

80A

0.5

RD

/WH

0.5

RD

P24

1P23

2 P23

1

0.5

RD

/YE

0.5

RD

/YE

0.5

RD

/YE

Combination SwitchHeadlamp(Right)

Headlamp(Left)

17 X05

0.5

RD

/YE

17

(1.2L)

X05

A

M4206001

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4.2.6-3

MD/MS201 2014.01

4.2.6-3Lighting System

Left Low BeamRegulator Motor

Main Fuse Box P01

+B

2

1

0.5 WH/BU 0.5 WH/BU

0.5 WH/YE

0.5 RD/WH

0.5 RD/WH

0.5 BN

0.5

RD

/YE

0.5

RD

/YE

1 P41

51ΩR

510Ω

820Ω

51Ω 0.5 YE

2 P413 P41

IF16

10A

32

31

I/P Fuse Box P40

8.0 WH

8.0

WH

8.0

WH

0.5

YE/R

D

3P15

1P15

2P15

M

Right Low BeamRegulator Motor

3P07

1P07

2P07

M

Lighting PowerControl Switch

45

P41P41

6 P41

0.5

BK2.

0 BK

G106

EF01

80A

OFF

85CombinationSwitch

PositionLamp

5 P30

8 P30 A

0.5

RD

/WH

M4206002

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MD/MS201 2014.01

4.2.6-4 4.2.6-4Lighting System

• Operating circuit analysis of left headlamp low beam is as follows:

Current from battery positive → Main fuse box (main fuse EF01) → I/P fuse box (left headlamp & leftlight adjusting motor fuse IF08) → Left headlamp connector P14-terminal 5 → Left headlamp (lowbeam bulb) → Left headlamp connector P14-terminal 4 → Combination switch connector P30-terminal 10 → Combination switch (Low beam lamp contact) → Combination switch connector P30-terminal 7 → Grounding G103

• Operating circuit analysis of left headlamp high beam is as follows:

Current from battery positive → Main fuse box (main fuse EF01) → I/P fuse box (left headlamp & leftlight adjusting motor fuse IF08) → Left headlamp connector P14-terminal 5 → Left headlamp (highbeam bulb) → Left headlamp connector P14-terminal 6 → Combination switch connector P30-terminal 9 → Combination switch (High beam/overtaking lamp contact) → Combination switchconnector P30-terminal 7 → Grounding G103

• Operating circuit analysis of right headlamp low beam is as follows:

Current from battery positive →Main fuse box (main fuse EF01)→ I/P fuse box (right headlamp & leftlight adjusting motor fuse IF09) → Right headlamp connector P08-terminal 5 → Right headlamp (lowbeam bulb) → Right headlamp connector P08-terminal 4 → Combination switch connector P30-terminal 10 → Combination switch (Low beam lamp contact) → Combination switch connector P30-terminal 7 → Grounding G103

• Operating circuit analysis of right headlamp high beam is as follows:

Current from battery positive→Main fuse box (main fuse EF01)→ I/P fuse box (right headlamp & leftlight adjusting motor fuse IF09)→Right headlamp connector P08-terminal 5→Right headlamp (highbeam bulb) → Right headlamp connector P08-terminal 6 → Combination switch connector P30-terminal 9 → Combination switch (high beam/overtaking lamp contact) → Combination switchconnector P30-terminal 7 → Grounding G103

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4.2.6-5

MD/MS201 2014.01

4.2.6-5Lighting System

Brake Lamp

Main Fuse Box P01

+B

2

1

IF10

10A

8.0

WH

8.0

WH

0.5

GN

/YE

0.5

GN

/WH

0.5

GN

/WH

0.5

GN

/WH

0.5

GN

/WH

8.0

WH

19

20

Brake LampSwitch

Rear LeftCombinationLamp

4 S07

6 S07

Rear RightCombinationLamp

1.25

BK

1.25

BK

G201

4 S05

6 S05

I/P Fuse Box P40

2 P20

1 P20

4 X04

EF01

80A

M4206003

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MD/MS201 2014.01

4.2.6-6 4.2.6-6Lighting System

• Operating circuit analysis of left brake lamp is as follows:

Current from battery positive → Main fuse box (main fuse EF01) → I/P fuse box (brake lamp fuseIF10) → Brake lamp switch connector P20-terminal 1 → Brake lamp switch (closing contact) → Brakelamp switch connector P20-terminal 2 → Connector X04-terminal 4 → Rear left combination lampconnector S07-terminal 4→Rear left combination lamp→Rear left combination lamp connector S07-terminal 6 → Grounding G201

• Operating circuit analysis of right brake lamp is as follows:

Current from battery positive → Main fuse box (main fuse EF01) → I/P fuse box (brake lamp fuseIF10) → Brake lamp switch connector P20-terminal 1 → Brake lamp switch (closing contact) → Brakelamp switch connector P20-terminal 2 → Connector X04-terminal 4 → Rear right combination lampconnector S05-terminal 4 → Rear right combination lamp → Rear right combination lamp connectorS05-terminal 6 → Grounding G201

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4.2.6-7

MD/MS201 2014.01

4.2.6-7Lighting System

Turn Lamp

M4206004

Main Fuse Box P01

+B

2

1

IF21

15A

8.0

WH

8.0

WH

0.85

RD

/BK

8.0

WH

41

42

I/P Fuse Box P40

3.0

YE/B

K

0.85

YE

0.85

YE/

GN

0.85

GN

0.85

YE/

GN

0.5

YE/G

N

0.85 BK

0.5 BK

2.0

BK

1.25

BK

0.5

GN

/YE

0.5

GN

/RD

0.5

GN

/RD

0.5

GN

/YE

0.5

RD

/YE

IF34

68

67

10A

IG1

IF33

66

65

10A

HazardWarningLampSwitch

Flasher Relay

5

4

1

32

8

6P257P25 P25 P25 P25

P25P25

2

1

P27

P27

3P27

P25

L

N

R

1212

13

13

A B

11

11P30

P30

P30

Combination Switch

TurnSwitch

Refer to 4.2.6Lighting SystemPosition Lamp

G105

G106

EF01

80A

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MD/MS201 2014.01

4.2.6-8 4.2.6-8Lighting System

M4206005

2.0

BK0.

5 BK

0.5

GN

/YE

0.5

GN

/YE

0.5

GN

/YE

0.5

GN

/YE0.

3 G

N/Y

E

0.5

GN

/RD

0.5

GN

/RD

0.5

GN

/RD

0.5

GN

/RD

0.3

GN

/RD

A

G103

1.25

BK

G201

Refer to 4.2.2Instrument

Cluster

Refer to 4.2.2Instrument

Cluster

FrontLeftTurnLamp

2 P16

1 P16RearLeftCombinationLamp6 S07

2 S07

14 X04

2.0

BK0.

5 BK

B

G105

1.25

BK

G201

FrontRightTurnLamp

2 P06

1 P06RearRightCombinationLamp6 S05

2 S05

13 X04

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4.2.6-9

MD/MS201 2014.01

4.2.6-9Lighting System

• Operating circuit analysis of front left turn lamp is as follows:

Current from battery positive→Main fuse box (main fuse EF01)→ I/P fuse box (ignition switch 1 fuseIF01) → Ignition switch connector P31-terminal 3 → Ignition switch IG1 contact → Ignition switchconnector P31-terminal 2 → I/P fuse box (turn lamp fuse IF34) → Hazard warning lamp switchconnector P25-terminal 6 → Hazard warning lamp switch (normal close contact) → Hazard warninglamp switch connector P25-terminal 8 → Flasher relay connector P27-terminal 2 → Flasher relay(closing contact) → Flasher relay connector P27-terminal 1 → Combination switch connector P30-terminal 12 → Combination switch (turn lamp switch L) → Combination switch connector P30-terminal 13 → Front left turn lamp connector P16-terminal 1 → Front left turn lamp → Front left turnlamp connector P16-terminal 2 → Grounding G103

• Operating circuit analysis of rear left turn lamp is as follows:

Current from battery positive→Main fuse box (main fuse EF01)→ I/P fuse box (ignition switch 1 fuseIF01) → Ignition switch connector P31-terminal 3 → Ignition switch IG1 contact → Ignition switchconnector P31-terminal 2 → I/P fuse box (turn lamp fuse IF34) → Hazard warning lamp switchconnector P25-terminal 6 → Hazard warning lamp switch (normal close contact) → Hazard warninglamp switch connector P25-terminal 8 → Flasher relay connector P27-terminal 2 → Flasher relay(closing contact) → Flasher relay connector P27-terminal 1 → Combination switch connector P30-terminal 12→Combination switch (turn lamp switch L)→Combination switch connector P30-terminal13 → Connector X04-terminal 14 → Rear left combination lamp connector S07-terminal 2 → Rear leftcombination lamp → Rear left combination lamp connector S07-terminal 6 → Grounding G201

• Operating circuit analysis of front right turn lamp is as follows:

Current from battery positive→Main fuse box (main fuse EF01)→ I/P fuse box (ignition switch 1 fuseIF01) → Ignition switch connector P31-terminal 3 → Ignition switch IG1 contact → Ignition switchconnector P31-terminal 2 → I/P fuse box (turn lamp fuse IF34) → Hazard warning lamp switchconnector P25-terminal 6 → Hazard warning lamp switch (normal close contact) → Hazard warninglamp switch connector P25-terminal 8 → Flasher relay connector P27-terminal 2 → Flasher relay(closing contact) → Flasher relay connector P27-terminal 1 → Combination switch connector P30-terminal 12 → Combination switch (turn lamp switch R) → Combination switch connector P30-terminal 11 → Front right turn lamp connector P06-terminal 1 → Front right turn lamp → Front rightturn lamp connector P06-terminal 2 → Grounding G105

• Operating circuit analysis of rear right turn lamp is as follows:

Current from battery positive→Main fuse box (main fuse EF01)→ I/P fuse box (ignition switch 1 fuseIF01) → Ignition switch connector P31-terminal 3 → Ignition switch IG1 contact → Ignition switchconnector P31-terminal 2 → I/P fuse box (turn lamp fuse IF34) → Hazard warning lamp switchconnector P25-terminal 6 → Hazard warning lamp switch (normal close contact) → Hazard warninglamp switch connector P25-terminal 8 → Flasher relay connector P27-terminal 2 → Flasher relay(closing contact) → Flasher relay connector P27-terminal 1 → Combination switch connector P30-terminal 12→Combination switch (turn lamp switch L)→Combination switch connector P30-terminal11 → Connector X04-terminal 13 → Rear right combination lamp connector S05-terminal 2 → Rearright combination lamp → Rear right combination lamp connector S05-terminal 6 → Grounding G201

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MD/MS201 2014.01

4.2.6-10 4.2.6-10Lighting System

• Operating circuit analysis of front left turn lamp (hazard warning lamp) is as follows:

Current from battery positive → Main fuse box (main fuse EF01) → I/P fuse box (warning switch fuseIF21) → Hazard warning lamp switch connector P25-terminal 7 → Hazard warning lamp switch(closing contact)→Hazard warning lamp switch connector P25-terminal 8→Flasher relay connectorP27-terminal 2→Flasher relay (closing contact)→Flasher relay connector P27-terminal 1→Hazardwarning lamp switch connector P25-terminal 1 → Hazard warning lamp switch (closing contact) →

Hazard warning lamp switch connector P25-terminal 3 → Front left turn lamp connector P16-terminal1 → Front left turn lamp → Front left turn lamp connector P16-terminal 2 → Grounding G103

• Operating circuit analysis of rear left turn lamp (hazard warning lamp) is as follows:

Current from battery positive → Main fuse box (main fuse EF01) → I/P fuse box (warning switch fuseIF21) → Hazard warning lamp switch connector P25-terminal 7 → Hazard warning lamp switch(closing contact)→Hazard warning lamp switch connector P25-terminal 8→Flasher relay connectorP27-terminal 2→Flasher relay (closing contact)→Flasher relay connector P27-terminal 1→Hazardwarning lamp switch connector P25-terminal 1 → Hazard warning lamp switch (closing contact) →

Hazard warning lamp switch connector P25-terminal 3 → Connector X04-terminal 14 → Rear leftcombination lamp connector S07-terminal 2 → Rear left combination lamp → Rear left combinationlamp connector S07-terminal 6 → Grounding G201

• Operating circuit analysis of front right turn lamp (hazard warning lamp) is as follows:

Current from battery positive → Main fuse box (main fuse EF01) → I/P fuse box (warning switch fuseIF21) → Hazard warning lamp switch connector P25-terminal 7 → Hazard warning lamp switch(closing contact)→Hazard warning lamp switch connector P25-terminal 8→Flasher relay connectorP27-terminal 2→Flasher relay (closing contact)→Flasher relay connector P27-terminal 1→Hazardwarning lamp switch connector P25-terminal 1 → Hazard warning lamp switch (closing contact) →

Hazard warning lamp switch connector P25-terminal 2 → Front right turn lamp connector P06-terminal 1 → Front right turn lamp → Front right turn lamp connector P06-terminal 2 → GroundingG105

• Operating circuit analysis of rear right turn lamp (hazard warning lamp) is as follows:

Current from battery positive → Main fuse box (main fuse EF01) → I/P fuse box (warning switch fuseIF21) → Hazard warning lamp switch connector P25-terminal 7 → Hazard warning lamp switch(closing contact)→Hazard warning lamp switch connector P25-terminal 8→Flasher relay connectorP27-terminal 2→Flasher relay (closing contact)→Flasher relay connector P27-terminal 1→Hazardwarning lamp switch connector P25-terminal 1 → Hazard warning lamp switch (closing contact) →

Hazard warning lamp switch connector P25-terminal 2 → Connector X04-terminal 13 → Rear rightcombination lamp connector S05-terminal 2→Rear right combination lamp→Rear right combinationlamp connector S05-terminal 6 → Grounding G201

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4.2.6-11

MD/MS201 2014.01

4.2.6-11Lighting System

Position Lamp and License Plate Lamp

Main Fuse Box P01

8.0

WH

+B

2

1

EF01

80A

2.0

BK0.

5 BK

G103

2.0

BK0.

5 BK

G105

IF16

10A

0.5

BK

0.5

BK0.

5 R

D/Y

E

I/P Fuse Box P40

CombinationSwitch

FrontLeftPositionLamp

RearleftpositionLamp

RearRightPositionLamp

FrontRightPositionLamp

LicensePlateLamp(Left)

LicensePlateLamp(Right)

0.5

RD

/YE

1 1

2 2

1.25

BK

3

2

3

2

1.25

BK

1.25

BK

Refer to 4.2.6Lighting System

Turn Lamp Signal

Refer to 4.1.1Heating, Ventilation and

Air Conditioning

Refer to 4.2.5Information and

Entertainment System

Refer to 4.2.2Instrument Cluster

8.0

WH 0.

5 YE

/RD

0.5

RD

/YE

0.5 RD/YE

0.5

RD

/YE

0.5

RD

/YE

0.5 RD/YE

0.5

RD

/YE

0.5

RD

/YE

0.5

RD

/YE

0.5

RD

/YE

0.5

RD

/YE

0.5

RD

/YE

8.0

WH

31

32

1 1

2X0

4

8

OFF

855

6 6

G201

P30

P30

P08

P08

S07

S07

S05

S05

S08

S08

S06

S06

P14

P14

PositionLamp

M4206006

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MD/MS201 2014.01

4.2.6-12 4.2.6-12Lighting System

• Operating circuit analysis of rear left position lamp is as follows:

Current from battery positive → Main fuse box (main fuse EF01) → I/P fuse box (background lampfuse IF16) → Combination switch connector P30-terminal 5 → Combination switch (position lampcontact) → Combination switch connector P30-terminal 8 → Connector X04-terminal 2 → Rear leftposition lamp connector S07-terminal 1→Rear left position lamp→Rear left position lamp connectorS07-terminal 6 → Grounding G201

• Operating circuit analysis of rear right position lamp is as follows:

Current from battery positive → Main fuse box (main fuse EF01) → I/P fuse box (background lampfuse IF16) → Combination switch connector P30-terminal 5 → Combination switch (position lampcontact) → Combination switch connector P30-terminal 8 → Connector X04-terminal 2 → Rear rightposition lamp connector S05-terminal 1 → Rear right position lamp → Rear right position lampconnector S05-terminal 6 → Grounding G201

• Operating circuit analysis of front left position lamp is as follows:

Current from battery positive → Main fuse box (main fuse EF01) → I/P fuse box (background lampfuse IF16) → Combination switch connector P30-terminal 5 → Combination switch (position lampcontact) → Combination switch connector P30-terminal 8 → Front left position lamp connector P14-terminal 2→Front left position lamp→Front left position lamp connector P14-terminal 3→GroundingG103

• Operating circuit analysis of front right position lamp is as follows:

Current from battery positive → Main fuse box (main fuse EF01) → I/P fuse box (background lampfuse IF16) → Combination switch connector P30-terminal 5 → Combination switch (position lampcontact) → Combination switch connector P30-terminal 8 → Front right position lamp connector P08-terminal 2 → Front right position lamp → Front right position lamp connector P08-terminal 3 →

Grounding G105

• Operating circuit analysis of left license plate lamp is as follows:

Current from battery positive → Main fuse box (main fuse EF01) → I/P fuse box (background lampfuse IF16) → Combination switch connector P30-terminal 5 → Combination switch (position lampcontact) → Combination switch connector P30-terminal 8 → Connector X04-terminal 2 → Left licenseplate lamp connector S08-terminal 1 → Left license plate lamp → Left license plate lamp connectorS08-terminal 2 → Grounding G201

• Operating circuit analysis of right license plate lamp is as follows:

Current from battery positive → Main fuse box (main fuse EF01) → I/P fuse box (background lampfuse IF16) → Combination switch connector P30-terminal 5 → Combination switch (position lampcontact)→Combination switch connector P30-terminal 8→Connector X04-terminal 2→Right licenseplate lamp connector S06-terminal 1→Right license plate lamp→Right license plate lamp connectorS06-terminal 2 → Grounding G201

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4.2.6-13

MD/MS201 2014.01

4.2.6-13Lighting System

Fog Lamp

Main Fuse Box P01

+B

2

1

IF16

10A

8.0

WH

0.5

YE/R

D

0.5 RD/YE

1.25

LG

/BK

0.5

LG/R

D

0.5

GY

0.5

GY

0.5

GY

1.25

BK

1.25

BK

8.0

WH

31

32

IF14

15A

29

30

2 3

OFFPosition

LampFront Fog

LampRear Fog

Lamp

88

5 11

325

CombinationSwitch

I/P Fuse Box P40

Rear LeftFog Lamp

Rear RightFog Lamp

Refer to 4.2.2Instrument Cluster

Refer to 4.2.2Instrument Cluster

0.5

GY

0.5

GY

0.5

GY

11 X04

3

6

3

6

G201

1.25

BK

2.0

BK

Front LeftFog Lamp

Front RightFog Lamp1

2

G103

1.25

BK

1

2

G106

0.5

BK3.

0 BK

1.25

LG

1.25

LG

0.3

LG

1.25

LG

G103

72

70

73

74

P30 P30 P30

P30

S07 S05

S05

P18

P18

P05

P05S07

EF01

80A

IR06

P30

M4206007

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MD/MS201 2014.01

4.2.6-14 4.2.6-14Lighting System

• Operating circuit analysis of front left fog lamp is as follows:

Current from battery positive → Main fuse box (main fuse EF01) → I/P fuse box (fog lamp fuse IF14)→ Front fog lamp relay-terminal 73 → Front fog lamp relay (closing contact) → Front fog lamp relay-terminal 74→Front left fog lamp connector P18-terminal 1→Front left fog lamp→Front left fog lampconnector P18-terminal 2 → Grounding G103

• Operating circuit analysis of front right fog lamp is as follows:

Current from battery positive → Main fuse box (main fuse EF01) → I/P fuse box (fog lamp fuse IF14)→ Front fog lamp relay-terminal 73 → Front fog lamp relay (closing contact) → Front fog lamp relay-terminal 74 → Front right fog lamp connector P05-terminal 1 → Front right fog lamp → Front right foglamp connector P05-terminal 2 → Grounding G106

Front fog lamp is controlled by the combination switch (fog lamp switch) through front fog lamp relay.

• Operating circuit analysis of rear left fog lamp is as follows:

Current from battery positive → Main fuse box (main fuse EF01) → I/P fuse box (background lampfuse IF16) → Combination switch connector P30-terminal 5 → Combination switch (position lampcontact) → Combination switch connector P30-terminal 8 → Combination switch connector P30-terminal 1 → Combination switch (rear fog lamp contact) → Combination switch connector P30-terminal 2 → Connector X04-terminal 11 → Rear left fog lamp connector S07-terminal 3 → Rear leftfog lamp → Rear left fog lamp connector S07-terminal 6 → Grounding G201

• Operating circuit analysis of rear right fog lamp is as follows:

Current from battery positive → Main fuse box (main fuse EF01) → I/P fuse box (background lampfuse IF16) → Combination switch connector P30-terminal 5 → Combination switch (position lampcontact) → Combination switch connector P30-terminal 8 → Combination switch connector P30-terminal 1 → Combination switch (rear fog lamp contact) → Combination switch connector P30-terminal 2→Connector X04-terminal 11→Rear right fog lamp connector S05-terminal 3→Rear rightfog lamp → Rear right fog lamp connector S05-terminal 6 → Grounding G201

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4.2.6-15

MD/MS201 2014.01

4.2.6-15Lighting System

Backup Lamp

Refer to 4.2.2InstrumentCluster

Backup LampSwitch

LeftBackupLamp

RightBackupLamp

I/P Fuse Box P403.

0 YE

/BK

0.5

YE/B

N

IF33

66

65

10A

IG1IF

34

86

85

10A

0.5

YE/B

N 0.5

YE/B

N

0.5 YE/BN

3 X04

0.5

RD

0.5

RD

0.5

RD

1.25

RD

1.25

RD

1.25

RD

2 S11

1 S11

G201

5 S07

6 S07

5 S05

6 S05

M4206008

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MD/MS201 2014.01

4.2.6-16 4.2.6-16Lighting System

• Operating circuit analysis of left backup lamp is as follows:

Current from battery positive→Main fuse box (main fuse EF01)→ I/P fuse box (ignition switch 1 fuseIF01) → Ignition switch connector P31-terminal 3 → Ignition switch IG1 contact → Ignition switchconnector P31-terminal 2 → I/P fuse box (backup lamp & vehicle speed sensor fuse IF33) →

Connector X04-terminal 3 → Backup lamp switch connector S11-terminal 1 → Backup lamp switch(closing contact)→Backup lamp switch connector S11-terminal 2→Left backup lamp connector S07-terminal 5 → Left backup lamp → Left backup lamp connector S07- terminal 6 → Grounding G201

• Operating circuit analysis of right backup lamp is as follows:

Current from battery positive→Main fuse box (main fuse EF01)→ I/P fuse box (ignition switch 1 fuseIF01) → Ignition switch connector P31-terminal 3 → Ignition switch IG1 contact → Ignition switchconnector P31-terminal 2 → I/P fuse box (backup lamp & vehicle speed sensor fuse IF33) →

Connector X04-terminal 3 → Backup lamp switch connector S11-terminal 1 → Backup lamp switch(closing contact) → Backup lamp switch connector S11-terminal 2 → Right backup lamp connectorS05-terminal 5 → Right backup lamp → Right backup lamp connector S05- terminal 6 → GroundingG201

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4.2.6-17

MD/MS201 2014.01

4.2.6-17Lighting System

Interior Lamp

Main Fuse Box P01

+B

2

1

IF07

10A

8.0

WH

8.0

WH

8.0

WH

0.5

WH

0.5

WH

0.5

WH

0.5

WH

0.5

BK/R

D0.

3 BK

/RD

0.5

BK/R

D

0.5

BK/R

D

0.5

BK/R

D

0.3 BK/RD

0.5

BK1.

25 B

K0.

5 BK

13

14

I/P Fuse Box P40

Reading Lamp

1 X03

4 X03

2 L01

OFF ONDoor

3L01

G106

1 L01

2 X03

8 X04

Front Left DoorSignal Lamp Switch

Front Right DoorSignal Lamp Switch

1 S041 S02

EF01

80A

Refer to 4.2.5Information and

Entertainment System

Refer to 4.2.2Instrument

Cluster

Refer to 4.2.2Instrument Cluster

M4206009

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MD/MS201 2014.01

4.2.6-18 4.2.6-18Lighting System

• Operating circuit analysis of reading lamp is as follows:

Current from battery positive → Main fuse box (main fuse EF01) → I/P fuse box (roof lamp fuse IF07)→ Connector X03-terminal 1 → Reading lamp connector L01-terminal 2 → Reading lamp → Readinglamp connector L01-terminal 3 → Connector X03-terminal 4 → Grounding G106

Current from battery positive → Main fuse box (main fuse EF01) → I/P fuse box (roof lamp fuse IF07)→ Connector X03-terminal 1 → Reading lamp connector L01-terminal 2 → Reading lamp → Readinglamp connector L01-terminal 1 →Connector X03-terminal 2→Connector X04-terminal 8→ Front leftdoor signal switch connector S04-terminal 1 → Front left door signal switch → Body grounding

Current from battery positive → Main fuse box (main fuse EF01) → I/P fuse box (roof lamp fuse IF07)→ Connector X03-terminal 1 → Reading lamp connector L01-terminal 2 → Reading lamp → Readinglamp connector L01-terminal 1 → Connector X03-terminal 2 → Connector X04-terminal 8 → Frontright door signal switch connector S02-terminal 1 → Front right door signal switch → Body grounding

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4.2.6-19

MD/MS201 2014.01

4.2.6-19Lighting System

Main Fuse Box

I/P Fuse Box

1

2

EF01

P01

1

2

15

16

13

14

3

4

5

6

7

8

9

10

11

12

45

4647

5448

50

5152

5953

55

5657

6458

60

6162

6963

65

6667

68

70

71

7273

75

7677

78 8382

80

81 86

85

8788

90

9192

93

49

74 79 84 89 94

49

50

51

52

53

54

55

56

57

58

59

60

61

62

63

64

65

66

67

68

69

70

71

72

73

74

75

76

77

78

79

80

17

18

19

20

21

22

23

24

25

26

27

28

29

30

31

32

33

34

35

36

37

38

39

40

41

42

43

44

45

46

47

48

IF01IF07

IF24

IR01 IR02 IR03 IR04 IR05

IF40 IF39 IF38 IF37 IF36 IF35 IF34 IF33 IF32 IF31 IF30 IF29 IF28 IF27 IF26 IF25

IF23 IF22 IF21 IF20 IF19 IF18 IF17 IF16 IF15 IF14 IF13 IF12 IF11 IF10 IF09

IF08 IF02 IF03 IF04 IF05 IF06

IR06 IR07 IR08 IR09 IR10

P40

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MD/MS201 2014.01

4.2.6-20 4.2.6-20Lighting System

I/P Wiring Harness to Roof Wiring Harness Roof Wiring Harness to I/P Wiring Harness

I/P Wiring Harness to Chassis Wiring Harness Chassis Wiring Harness to I/P Wiring Harness

4 3 2 1

1 2 3 4

X03

1 2 3 4 5 67 8 9 10

11 12 13 14 15 16

17 18 19 2021 22 23 24 25 26

12345678910

11121314151617181920

212223242526

X04

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4.2.6-21

MD/MS201 2014.01

4.2.6-21Lighting System

Chassis Wiring Harness to Back Door Wiring Harness Back Door Wiring Harness to Chassis Wiring Harness

Alternator Connector Front Right Fog Lamp

Right Turn Lamp Right Low Beam Regulator Motor

21

2 1

X06

123

P03

12

P05

12

P06

3 2 1

P07

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MD/MS201 2014.01

4.2.6-22 4.2.6-22Lighting System

Right Headlamp Left Headlamp

Left Low Beam Regulator Motor Left Turn Lamp

Front Left Fog Lamp Brake Lamp Switch

123

456

P08

123

456

P14

3 2 1

P15

12

P16

12

P18

1

2

P20

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4.2.6-23

MD/MS201 2014.01

4.2.6-23Lighting System

Diode A Diode B

Hazard Warning Lamp Switch Flasher Relay

Combination Switch (Lighting) Lighting Power Control Switch

1

2

P23

1

2

P24

123

478 56

P25

1

23

P27

561213 7891011

1234

P30

12

3456

P41

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MD/MS201 2014.01

4.2.6-24 4.2.6-24Lighting System

Front Right Door Signal Lamp Switch Front Left Door Signal Lamp Switch

Rear Right Combination Lamp Right License Plate Lamp

Rear Left Combination Lamp Left License Plate Lamp

1

S02

1

S04

123

6 5 4

S05

1

2

S06

123

6 5 4

S07

1

2

S08

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4.2.6-25

MD/MS201 2014.01

4.2.6-25Lighting System

Backup Lamp Switch Reading Lamp

ECM

ECM

21

S11

1 2 3

L01

7 8

5 6

3 4

1 2

51 52 53 54 55 56 57 58 59 60 61 62 63 64

37 38 39 40 41 42 43 44 45 46 47 48 49 50

23 24 25 26 27 28 29 30 31 32 33 34 35 36

9 10 11 12 13 14 15 16 17 18 19 20 21 22

E07

7 8

5 6

3 4

1 2

51 52 53 54 55 56 57 58 59 60 61 62 63 64

37 38 39 40 41 42 43 44 45 46 47 48 49 50

23 24 25 26 27 28 29 30 31 32 33 34 35 36

9 10 11 12 13 14 15 16 17 18 19 20 21 22

E07a

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4.2.7-1

MD/MS201 2014.01

4.2.7-1Wiper

Front Wiper

5 P334 P332 P33 7 P33 6 P33

IF25

20A

50

49

1.25

YE/

GN

1.25

YE/

GN

1.25

YE/

GN

1.25

BU

/WH

1.25

BU

0.5 YE/BU

1.25

BU

1.25

BU

/RD

1.25

BU

/RD

0.5

GN

/YE

1.25

BK

2.0

BK

2 P17

M

1 P11 2 P11

M

4P1

1

LOW HI

IF26

10A

IG2

52

51

3.0

BK/B

U

1 P17

G103

I/P Fuse Box P40

Wiper Intermittent Control Module

Wiper Combination Switch

FrontWasherMotor

FrontWiperMotor

T TPOFFON

B+ +2 +1 +S INT1 INT2 WF EWB1PMISTOFFINT

LOWHI

3 P33

3 P11

M4207001

4.2.7 Wiper

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MD/MS201 2014.01

4.2.7-2 4.2.7-2Wiper

• Operating circuit analysis of front wiper motor is as follows:

Intermittent level: Current from battery positive → Main fuse box (main fuse EF01) → I/P fuse box(ignition switch 2 fuse IF02) → Ignition switch connector P31-terminal 4 → Ignition switch IG2 contact→ Ignition switch connector P31-terminal 5→ I/P fuse box (wiper & washer fuse IF25)→Combinationswitch connector P33-terminal 3 → Combination switch (wiper intermittent control module) →

Combination switch (intermittent level closing contact) →Combination switch connector P33-terminal4 → Front wiper motor connector P11-terminal 1 → Front wiper motor (low speed coil) → Front wipermotor grounding

Low speed level: Current from battery positive → Main fuse box (main fuse EF01) → I/P fuse box(ignition switch 2 fuse IF02) → Ignition switch connector P31-terminal 4 → Ignition switch IG2 contact→ Ignition switch connector P31-terminal 5→ I/P fuse box (wiper & washer fuse IF25)→Combinationswitch connector P33-terminal 3 → Combination switch (intermittent level closing contact) →

Combination switch connector P33-terminal 4→Front wiper motor connector P11-terminal 1→Frontwiper motor (low speed coil) → Front wiper motor grounding

High speed level: Current from battery positive → Main fuse box (main fuse EF01) → I/P fuse box(ignition switch 2 fuse IF02) → Ignition switch connector P31-terminal 4 → Ignition switch IG2 contact→ Ignition switch connector P31-terminal 5→ I/P fuse box (wiper & washer fuse IF25)→Combinationswitch connector P33-terminal 3 → Combination switch (high speed level closing contact) →

Combination switch connector P33-terminal 2→Front wiper motor connector P11-terminal 2→Frontwiper motor (high speed coil) → Front wiper motor grounding

• Operating circuit analysis of front washer motor is as follows:

Current from battery positive→Main fuse box (main fuse EF01)→ I/P fuse box (ignition switch 2 fuseIF02) → Ignition switch connector P31-terminal 4 → Ignition switch IG2 contact → Ignition switchconnector P31-terminal 5→I/P fuse box (wiper & washer fuse IF25) → Front washer motor connectorP17-terminal 2→Front washer motor→Front washer motor connector P17-terminal 1→Combinationswitch connector P33-terminal 7→Combination switch (washer level closing contact)→Combinationswitch connector P33-terminal 6 → Grounding G103

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4.2.7-3

MD/MS201 2014.01

4.2.7-3Wiper

I/P Fuse Box

Front Wiper Motor Front Washer Motor

Combination Switch (Wiper)

1

2

15

16

13

14

3

4

5

6

7

8

9

10

11

12

45

4647

5448

50

5152

5953

55

5657

6458

60

6162

6963

65

6667

68

70

71

7273

75

7677

78 8382

80

81 86

85

8788

90

9192

93

49

74 79 84 89 94

49

50

51

52

53

54

55

56

57

58

59

60

61

62

63

64

65

66

67

68

69

70

71

72

73

74

75

76

77

78

79

80

17

18

19

20

21

22

23

24

25

26

27

28

29

30

31

32

33

34

35

36

37

38

39

40

41

42

43

44

45

46

47

48

IF01IF07

IF24

IR01 IR02 IR03 IR04 IR05

IF40 IF39 IF38 IF37 IF36 IF35 IF34 IF33 IF32 IF31 IF30 IF29 IF28 IF27 IF26 IF25

IF23 IF22 IF21 IF20 IF19 IF18 IF17 IF16 IF15 IF14 IF13 IF12 IF11 IF10 IF09

IF08 IF02 IF03 IF04 IF05 IF06

IR06 IR07 IR08 IR09 IR10

P40

12

34

P11

1

2

P17

110 23456789

P33

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4.2.8-1

MD/MS201 2014.01

4.2.8-1Central Door Lock

Central Door Lock

FastenerSwitch

Central Lock Controller

Main Fuse Box P01 I/P Fuse Box P40

Front LeftDoorFastener

Front RightDoorFastener

Rear LeftDoorFastener

Rear RightDoorfastener

Refer to 4.2.6Lighting System

Roof Lamp

Refer to 4.2.6Lighting System

Turn Signal Lamp

+B

2

18.0

WH

EF01

80A

1.25

WH

/BK

0.85

WH

0.85

WH0.5

WH

/YE

0.5

YE0.

5 YE

0.5

WH

/YE

0.85

WH

0.85

WH

0.85

WH

0.85 WH 0.85 WH 0.85 WH

0.85

BU

0.85

WH

IF40

80

79

15A

ACC

1.25

BU

8.0

WH

1.25

RD

/WH

0.5

BK/R

D

0.5

GN

/RD

0.5

GN

/YE

1.25

BK

2.0

BK

8.0

WH

1 P29 5 26

2 6

3 41

P29

81112 P29 9P29

D01

D01

2D09

IF22

20A

43

44

710

M

M

12 X01

1 X01 5 X01

11 X01

9 X0121 X04

2 X06 2 X08

9 X02

24X0

4

X06

10

1 X081

X02

1D09

0.85

BU

0.85

BU

0.85

BU

0.5 BK2.0 BK

2.0

BK3.

0 BK

0.85 BU

0.85

BU

2D08

M

1D08

0.85

BU

2D10

M

1D10

D01

D01D01

P29P29

G103

G105

P29 P29 P29 P29

M4208001

4.2.8 Central Door Lock

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MD/MS201 2014.01

4.2.8-2 4.2.8-2Central Door Lock

• Operating circuit analysis of front left door fastener is as follows:

Unlock: Current from central lock controller → Central lock controller connector P29-terminal 8 →

Connector X01-terminal 12 → Front left door fastener connector D01-terminal 4 → Front left doorfastener (motor) → Front left door fastener connector D01-terminal 6 → Connector X01-terminal 11→ Central lock controller connector P29-terminal 9 → Central lock controller

When unlocking, current from central lock controller→Central lock controller connector P29-terminal11→Connector X01-terminal 5 → Front left door fastener connector D01-terminal 3 → Front left doorfastener (switch) → Front left door fastener connector D01-terminal 2 → Connector X01-terminal 9 →

Grounding G103

Central lock controller determines the fastener position based on low level signal.

Lock: Current from central lock controller → Central lock controller connector P29-terminal 9 →

Connector X01-terminal 11 → Front left door fastener connector D01-terminal 6 → Front left doorfastener→Front left door fastener connector D01-terminal 4 →Connector X01-terminal 12→Centrallock controller connector P29-terminal 8 → Central lock controller

When locking, current from central lock controller → Central lock controller connector P29-terminal12→Connector X01-terminal 1→Front left door fastener connector D01-terminal 1→Front left doorfastener (switch) → Front left door fastener connector D01-terminal 2 → Connector X01-terminal 9 →

Grounding G103

Central lock controller determines the fastener position based on low level signal.

• Operating circuit analysis of front right door fastener is as follows:

Unlock: Current from central lock controller → Central lock controller connector P29-terminal 8 →

Connector X02-terminal 10 → Front right door fastener connector D08-terminal 2 → Front right doorfastener (motor) → Front right door fastener connector D08-terminal 1 → Connector X02-terminal 9→ Central lock controller connector P29-terminal 9 → Central lock controller

Lock: Current from central lock controller → Central lock controller connector P29-terminal 9 →

Connector X02-terminal 9 → Front right door fastener connector D08-terminal 1 → Front right doorfastener (motor) → Front right door fastener connector D08-terminal 2 → Connector X02-terminal 10→ Central lock controller connector P29-terminal 8 → Central lock controller

• Operating circuit analysis of rear left door fastener is as follows:

Unlock: Current from central lock controller → Central lock controller connector P29-terminal 8 →

Connector X04-terminal 24 → Connector X06-terminal 1 → Rear left door fastener connector D09-terminal 2 → Rear left door fastener (motor) → Rear left door fastener connector D09-terminal 1 →

Connector X06-terminal 2 → Connector X04-terminal 21 → Central lock controller connector P29-terminal 9 → Central lock controller

Lock: Current from central lock controller → Central lock controller connector P29-terminal 9 →

Connector X04-terminal 21 → Connector X06-terminal 2 → Rear left door fastener connector D09-terminal 1 → Rear left door fastener (motor) → Rear left door fastener connector D09-terminal 2 →

Connector X06-terminal 1 → Connector X04-terminal 24 → Central lock controller connector P29-terminal 8 → Central lock controller

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4.2.8-3

MD/MS201 2014.01

4.2.8-3Central Door Lock

• Operating circuit analysis of rear right door fastener is as follows:

Unlock: Current from central lock controller → Central lock controller connector P29-terminal 8 →

Connector X04-terminal 24 → Connector X06-terminal 1 → Rear right door fastener connector D10-terminal 2 → Rear right door fastener (motor) → Rear right door fastener connector D10-terminal 1→ Connector X06-terminal 2 → Connector X04-terminal 21 → Central lock controller connector P29-terminal 9 → Central lock controller

Lock: Current from central lock controller → Central lock controller connector P29-terminal 9 →

Connector X04-terminal 21 → Connector X06-terminal 2 → Rear right door fastener connector D10-terminal 1 → Rear right door fastener (motor) → Rear right door fastener connector D10-terminal 2→ Connector X06-terminal 1 → Connector X04-terminal 24 → Central lock controller connector P29-terminal 8 → Central lock controller

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MD/MS201 2014.01

4.2.8-4 4.2.8-4Central Door Lock

Main Fuse Box

I/P Fuse Box

1

2

EF01

P01

1

2

15

16

13

14

3

4

5

6

7

8

9

10

11

12

45

4647

5448

50

5152

5953

55

5657

6458

60

6162

6963

65

6667

68

70

71

7273

75

7677

78 8382

80

81 86

85

8788

90

9192

93

49

74 79 84 89 94

49

50

51

52

53

54

55

56

57

58

59

60

61

62

63

64

65

66

67

68

69

70

71

72

73

74

75

76

77

78

79

80

17

18

19

20

21

22

23

24

25

26

27

28

29

30

31

32

33

34

35

36

37

38

39

40

41

42

43

44

45

46

47

48

IF01IF07

IF24

IR01 IR02 IR03 IR04 IR05

IF40 IF39 IF38 IF37 IF36 IF35 IF34 IF33 IF32 IF31 IF30 IF29 IF28 IF27 IF26 IF25

IF23 IF22 IF21 IF20 IF19 IF18 IF17 IF16 IF15 IF14 IF13 IF12 IF11 IF10 IF09

IF08 IF02 IF03 IF04 IF05 IF06

IR06 IR07 IR08 IR09 IR10

P40

Page 160: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

4.2.8-5

MD/MS201 2014.01

4.2.8-5Central Door Lock

I/P Wiring Harness to Front Left Door Wiring Harness Front Left Door Wiring Harness to I/P Wiring Harness

I/P Wiring Harness to Front Right Door Wiring Harness Front Right Door Wiring Harness to I/P Wiring Harness

1 2 4 53

6 7 11 128 9 10

34

11 10 812

5

7 69

2 1

X01

1 2 4 53

6 7 11 128 9 10

34

11 10 812

5

7 69

2 1

X02

Page 161: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

MD/MS201 2014.01

4.2.8-6 4.2.8-6Central Door Lock

I/P Wiring Harness to Chassis Wiring Harness Chassis Wiring Harness to I/P Wiring Harness

Chassis Wiring Harness to Rear Left Door Wiring Harness

Rear Left Door Wiring Harness to Chassis Wiring Harness

1 2 3 4 5 67 8 9 10

11 12 13 14 15 16

17 18 19 2021 22 23 24 25 26

12345678910

11121314151617181920

212223242526

X04

21

2 1

X06

Page 162: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

4.2.8-7

MD/MS201 2014.01

4.2.8-7Central Door Lock

Chassis Wiring Harness to Rear Right Door Wiring Harness

Rear Right Door Wiring Harness to Chassis Wiring Harness

Central Lock Connector Front Left Door Fastener

Front Right Door Fastener Rear Left Door Fastener

21

2 1

X08

12345

12 11 10 9 8 7 6

P29

5

1 2 3

4 6

D01

2 1

D08

5

1 2 3

4 6

D01

2 1

D09

Page 163: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

MD/MS201 2014.01

4.2.8-8 4.2.8-8Central Door Lock

Rear Right Door Fastener

2 1

D10

Page 164: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

4.2.9-1

MD/MS201 2014.01

4.2.9-1Power Window

Power Window

Front LeftDoor Power

Window Motor

Front RightDoor Power

Window Motor

Fron

t Lef

t Doo

r Pow

er W

indo

w S

witc

h

Fron

t Rig

ht D

oor P

ower

Win

dow

Sw

itch

2.0

BK

2.0

BK2.

0 BK

3.0

BK

G105

1D

02

IC

UP

UP

PU

DU DD

PD

DOWN

DOWNU

U

RLD

D

P/W P SW

P/W D SW W/L SW

LOCK

UNLOCK

Relay

DOWNAUTO

6 D02

2D

023

D02

6 D07 7 D07 2 D07

3.0

BK/B

U

2.0

BU/Y

E2.

0 BU

/YE

2.0

GN

/WH

2.0

GN

/WH

2.0

GN

/WH

IF28

56

55

20A

IG2

IF26

52

51

20A

I/P Fuse Box P402.

0 W

H/B

N2.

0 W

H/B

N

2.0 RD/WH

2.0

RD

2.0

RD

2.0 BK

2.0

GN

2.0

GN

2.0

RD

/WH

2.0

RD

/WH

2.0

RD

/YE2.

0 R

D/Y

E

2.0 RD/YE

IF27

54

53

30A

8D07

4 D07

3 X026 X01

X0110

X027

X018

X017

8

6

X02

9 X01

X02

5 X02

7 D02

MM

3 D071 D07

2 D06 1 D06

4

2

D02

D03

8 D02

1 D03

G103

M4209001

4.2.9 Power Window

Page 165: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

MD/MS201 2014.01

4.2.9-2 4.2.9-2Power Window

• Operating circuit analysis of front left door power window motor is as follows:

Up: Current from battery positive → Main fuse box (main fuse EF01) → I/P fuse box (ignition switch 2fuse IF02) → Ignition switch connector P31-terminal 4 → Ignition switch IG2 contact → Ignition switchconnector P31-terminal 5 → I/P fuse box (front left door power window fuse IF27) Connector X01-terminal 6 → Front left door power window switch connector D02-terminal 7 → Front left door powerwindow switch (relay contact)→Front left door power window switch connector D02-terminal 4→Frontleft door power window motor connector D03-terminal 2 → Front left door power window motor → Frontleft door power window motor connector D03-terminal 1 → Front left door power window switchconnector D02-terminal 8 → Front left door power window switch (relay normal close contact) → Frontleft door power window switch connector D02-terminal 1 → Connector X01-terminal 9 → GroundingG103

Down: Current from battery positive → Main fuse box (main fuse EF01) → I/P fuse box (ignition switch2 fuse IF02) → Ignition switch connector P31-terminal 4 → Ignition switch IG2 contact → Ignition switchconnector P31-terminal 5 → I/P fuse box (front left door power window fuse IF27) → Connector X01-terminal 6 → Front left door power window switch connector D02-terminal 7 → Front left door powerwindow switch (relay contact)→Front left door power window switch connector D02-terminal 8→Frontleft door power window motor connector D03-terminal 1 → Front left door power window motor → Frontleft door power window motor connector D03-terminal 2 → Front left door power window switchconnector D02-terminal 4 → Front left door power window switch (relay normal close contact) → Frontleft door power window switch connector D02-terminal 1 → Connector X01-terminal 9 → GroundingG103

• Operating circuit analysis of front right door power window motor is as follows:

Up: Current from battery positive → Main fuse box (main fuse EF01) → I/P fuse box (ignition switch 2fuse IF02) → Ignition switch connector P31-terminal 4 → Ignition switch IG2 contact → Ignition switchconnector P31-terminal 5 → I/P fuse box (front right door power window fuse IF28) → Connector X02-terminal 3 → Front right door power window switch connector D07-terminal 8 → Front right door powerwindow switch (relay contact)→Front right door power window switch connector D07-terminal 1→Frontright door power window motor connector D06-terminal 2 → Front right door power window motor →

Front right door power window motor connector D06-terminal 1→Front right door power window switchconnector D07-terminal 3→ Front right door power window switch (relay normal close contact)→ Frontright door power window switch connector D07-terminal 4 → Connector X02-terminal 7 → GroundingG105

Down: Current from battery positive → Main fuse box (main fuse EF01) → I/P fuse box (ignition switch2 fuse IF02) → Ignition switch connector P31-terminal 4 → Ignition switch IG2 contact → Ignition switchconnector P31-terminal 5 → I/P fuse box (front right door power window fuse IF28) Connector X02-terminal 3 → Front right door power window switch connector D07-terminal 8 → Front right door powerwindow switch (relay contact)→Front right door power window switch connector D07-terminal 3→Frontright door power window motor connector D06-terminal 1 → Front right door power window motor →

Front right door power window motor connector D06-terminal 2→Front right door power window switchconnector D07-terminal 1→ Front right door power window switch (relay normal close contact)→ Frontright door power window switch connector D07-terminal 4 → Connector X02-terminal 7 → GroundingG105

Page 166: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

4.2.9-3

MD/MS201 2014.01

4.2.9-3Power Window

I/P Fuse Box

I/P Wiring Harness to Front Left Door Wiring Harness Front Left Door Wiring Harness to I/P Wiring Harness

1

2

15

16

13

14

3

4

5

6

7

8

9

10

11

12

45

4647

5448

50

5152

5953

55

5657

6458

60

6162

6963

65

6667

68

70

71

7273

75

7677

78 8382

80

81 86

85

8788

90

9192

93

49

74 79 84 89 94

49

50

51

52

53

54

55

56

57

58

59

60

61

62

63

64

65

66

67

68

69

70

71

72

73

74

75

76

77

78

79

80

17

18

19

20

21

22

23

24

25

26

27

28

29

30

31

32

33

34

35

36

37

38

39

40

41

42

43

44

45

46

47

48

IF01IF07

IF24

IR01 IR02 IR03 IR04 IR05

IF40 IF39 IF38 IF37 IF36 IF35 IF34 IF33 IF32 IF31 IF30 IF29 IF28 IF27 IF26 IF25

IF23 IF22 IF21 IF20 IF19 IF18 IF17 IF16 IF15 IF14 IF13 IF12 IF11 IF10 IF09

IF08 IF02 IF03 IF04 IF05 IF06

IR06 IR07 IR08 IR09 IR10

P40

1 2 4 53

6 7 11 128 9 10

34

11 10 812

5

7 69

2 1

X01

Page 167: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

MD/MS201 2014.01

4.2.9-4 4.2.9-4Power Window

I/P Wiring Harness to Front Right Door Wiring Harness Front Right Door Wiring Harness to I/P Wiring Harness

Front Left Door Power Window Switch Front Left Door Power Window Motor

Front Right Door Power Window Motor Front Right Door Power Window Switch

1 2 4 53

6 7 11 128 9 10

34

11 10 812

5

7 69

2 1

X02

57

23

6

1

8 4

D02

2 1

D03

2 1

D06

57

23

6

1

8 4

D07

Page 168: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

4.2.10-1

MD/MS201 2014.01

4.2.10-1Body Control System

Body Control System

Main Fuse Box P01 I/P Fuse Box P40

Central Lock Controller

+B

2

18.0

WH

EF01

80A

1.25

WH

/BK

IF40

80

79

15A

ACC

1.25

BU

8.0

WH

1.25

RD

/WH

1.25

BK

2.0

BK

8.0

WH

1 P29 5

2

P29

IF22

20A

43

44

G105

P29

M4210001

4.2.10 Body Control System

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MD/MS201 2014.01

4.2.10-2 4.2.10-2Body Control System

• Operating circuit analysis of central lock controller is as follows:

Constant power supply: Current from battery positive → Main fuse box (main fuse EF01) → I/P fusebox (central lock controller fuse IF22) Central lock controller connector P29-terminal 1 Central lockcontroller Central lock controller connector P29-terminal 2 Grounding G105

ACC energizing power supply: Current from battery positive → Main fuse box (main fuse EF01) →I/P fuse box (ignition switch 2 fuse IF02)→ Ignition switch connector P31-terminal 4→ Ignition switchACC contact → Ignition switch connector P31-terminal 1 → I/P fuse box (cigarette lighter & radio fuseIF40) → Central lock controller connector P29-terminal 5 → Central lock controller → Central lockcontroller connector P29-terminal 2 → Grounding G105

Page 170: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

4.2.10-3

MD/MS201 2014.01

4.2.10-3Body Control System

Main Fuse Box

I/P Fuse Box

1

2

EF01

P01

1

2

15

16

13

14

3

4

5

6

7

8

9

10

11

12

45

4647

5448

50

5152

5953

55

5657

6458

60

6162

6963

65

6667

68

70

71

7273

75

7677

78 8382

80

81 86

85

8788

90

9192

93

49

74 79 84 89 94

49

50

51

52

53

54

55

56

57

58

59

60

61

62

63

64

65

66

67

68

69

70

71

72

73

74

75

76

77

78

79

80

17

18

19

20

21

22

23

24

25

26

27

28

29

30

31

32

33

34

35

36

37

38

39

40

41

42

43

44

45

46

47

48

IF01IF07

IF24

IR01 IR02 IR03 IR04 IR05

IF40 IF39 IF38 IF37 IF36 IF35 IF34 IF33 IF32 IF31 IF30 IF29 IF28 IF27 IF26 IF25

IF23 IF22 IF21 IF20 IF19 IF18 IF17 IF16 IF15 IF14 IF13 IF12 IF11 IF10 IF09

IF08 IF02 IF03 IF04 IF05 IF06

IR06 IR07 IR08 IR09 IR10

P40

Page 171: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

MD/MS201 2014.01

4.2.10-4 4.2.10-4Body Control System

Central Lock Connector

12345

12 11 10 9 8 7 6

P29

Page 172: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

4.2.11-1

MD/MS201 2014.01

4.2.11-1On-board Network

DLC (Data Link Connector)

Main Fuse Box P01

+B

2

18.0

WH

EF01

80A

8.0

WH

0.5

PK/B

U0.

5 PK

/BU 0.5

LG/W

H

0.5

YE/R

D0.

5 LG

/WH

0.5 PK/BU 0.5 PK/BU

0.5 PK/BU

(1.2L)

2.0

BK

0.5

BK

0.5

BK

8.0

WH

I/P Fuse Box P40

8 P35

16E0

716

E07a

12

IF11

10A

21

22

ECM

P35 13

G106

P35

DLC

12X0

5

12X05

15 E07a15 E07

15 P35

(1.2L)

M4211001

4.2.11 On-board Network System

Page 173: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

MD/MS201 2014.01

4.2.11-2 4.2.11-2On-board Network

Main Fuse Box

I/P Fuse Box

1

2

EF01

P01

1

2

15

16

13

14

3

4

5

6

7

8

9

10

11

12

45

4647

5448

50

5152

5953

55

5657

6458

60

6162

6963

65

6667

68

70

71

7273

75

7677

78 8382

80

81 86

85

8788

90

9192

93

49

74 79 84 89 94

49

50

51

52

53

54

55

56

57

58

59

60

61

62

63

64

65

66

67

68

69

70

71

72

73

74

75

76

77

78

79

80

17

18

19

20

21

22

23

24

25

26

27

28

29

30

31

32

33

34

35

36

37

38

39

40

41

42

43

44

45

46

47

48

IF01IF07

IF24

IR01 IR02 IR03 IR04 IR05

IF40 IF39 IF38 IF37 IF36 IF35 IF34 IF33 IF32 IF31 IF30 IF29 IF28 IF27 IF26 IF25

IF23 IF22 IF21 IF20 IF19 IF18 IF17 IF16 IF15 IF14 IF13 IF12 IF11 IF10 IF09

IF08 IF02 IF03 IF04 IF05 IF06

IR06 IR07 IR08 IR09 IR10

P40

Page 174: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

4.2.11-3

MD/MS201 2014.01

4.2.11-3On-board Network

I/P Wiring Harness to Engine Wiring Harness Engine Wiring Harness to I/P Wiring Harness

DLC

ECM

1 7 8 9 10 411 12 13 14

2 15 16 17 18 5

19 20 21 223 23 24 25 26 6

1

2

3

7

11

15

19

23

8

12

16

20

24

9

13

17

21

25

10

14

18

22

26

4

5

6

X05

12345678

910111213141516

P35

7 8

5 6

3 4

1 2

51 52 53 54 55 56 57 58 59 60 61 62 63 64

37 38 39 40 41 42 43 44 45 46 47 48 49 50

23 24 25 26 27 28 29 30 31 32 33 34 35 36

9 10 11 12 13 14 15 16 17 18 19 20 21 22

E07

Page 175: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

MD/MS201 2014.01

4.2.11-4 4.2.11-4On-board Network

ECM

7 8

5 6

3 4

1 2

51 52 53 54 55 56 57 58 59 60 61 62 63 64

37 38 39 40 41 42 43 44 45 46 47 48 49 50

23 24 25 26 27 28 29 30 31 32 33 34 35 36

9 10 11 12 13 14 15 16 17 18 19 20 21 22

E07a

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Page 177: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

MD/MS201 2014.01

6.1.1-1 6.1.1-1Fuse and Relay

Main Fuse Box

Main Fuse Box Fuse

1

2

EF01

P01

Code Application Rated Current (A) DescriptionEF01 Main Fuse 80A -

6.1.1 Fuse and Relay

Page 178: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

6.1.1-2

MD/MS201 2014.01

6.1.1-2Fuse and Relay

I/P Fuse Box

I/P Fuse Box Relay

1

2

15

16

13

14

3

4

5

6

7

8

9

10

11

12

45

4647

5448

50

5152

5953

55

5657

6458

60

6162

6963

65

6667

68

70

71

7273

75

7677

78 8382

80

81 86

85

8788

90

9192

93

49

74 79 84 89 94

49

50

51

52

53

54

55

56

57

58

59

60

61

62

63

64

65

66

67

68

69

70

71

72

73

74

75

76

77

78

79

80

17

18

19

20

21

22

23

24

25

26

27

28

29

30

31

32

33

34

35

36

37

38

39

40

41

42

43

44

45

46

47

48

IF01IF07

IF24

IR01 IR02 IR03 IR04 IR05

IF40 IF39 IF38 IF37 IF36 IF35 IF34 IF33 IF32 IF31 IF30 IF29 IF28 IF27 IF26 IF25

IF23 IF22 IF21 IF20 IF19 IF18 IF17 IF16 IF15 IF14 IF13 IF12 IF11 IF10 IF09

IF08 IF02 IF03 IF04 IF05 IF06

IR06 IR07 IR08 IR09 IR10

P40

Code Application DescriptionIR01 A/C Compressor Relay -

IR02 Heater Relay -

IR03 Radiator Fan Relay -

IR04 Condenser Fan Relay -

IR05 Main Relay -

IR06 Front Fog Lamp Relay -

IR07 Rear Defroster Relay -

IR08 Fuel pump relay -

IR09 Horn Relay -

IR10 - -

Page 179: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

MD/MS201 2014.01

6.1.1-3 6.1.1-3Fuse and Relay

I/P Fuse Box Fuse

Code Application Rated Current (A) Description

IF01 Ignition switch 1 30A -

IF02 Ignition switch 2 40A -

IF03 Radiator Fan 30A -

IF04 Condenser Fan 20A -

IF05 EPS 30A -

IF06 - - -

IF07 Roof Lamp 10A -

IF08 Left Headlamp & Left Light Adjusting Motor 15A -

IF09 Right Headlamp & Right Light Adjusting Motor 15A -

IF10 Brake Lamp 10A -

IF11 ECU Diagnostic Tool 10A -

IF12 Horn 15A -

IF13 - - -

IF14 Fog Lamp 15A -

IF15 Main Relay 15A -

IF16 Background Lamp 10A -

IF17 Heater & Overhead Evaporator 30A -

IF18 Compressor 10A -

IF19 Fuel pump 15A -

IF20 Rear Defroster 25A -

IF21 Warning Switch 15A -

IF22 Central Controller 25A -

IF23 - - -

IF24 - - -

IF25 Wiper & Washer 20A -

IF26 Blower & Rear Defroster 10A -

IF27 Left Power Window 30A -

IF28 Right Power Window 30A -

IF29 - - -

IF30 Oxygen Sensor 15A -

IF31 - - -

IF32 - - -

IF33 Backup Lamp & Vehicle Speed Sensor 10A -

IF34 Turn Lamp 10A -

Page 180: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

6.1.1-4

MD/MS201 2014.01

6.1.1-4Fuse and Relay

IF35 Instrument Cluster 10A -

IF36 Alternator 15A -

IF37 ECU 10A -

IF38 EPS 10A -

IF39 - - -

IF40 Cigarette Lighter & Radio 15A -

Code Application Rated Current (A) Description

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MD/MS201 2014.01

6.1.2-1 6.1.2-1Power Supply Distribution

Instrument Panel Power Supply Distribution 1

M6102001

1.25 LG/BK

72 70

73 74IR06

2.0 GN/WH

52 50

53 54IR02

I/P Fuse Box P40

1 30A

IF01

2

0.85 RD0.85 RD

0.5 RD

87 85

88 89IR09

Main Fuse Box P018.

0 W

H8.

0 W

H

8.0

WH

+B

2

1 3 40A

IF02

4

13 10A

IF07

14

15 15A

IF08

16

17 15A

IF09

18

19 10A

IF10

20

21 10A

IF11

22

23 15A

IF12

24

27 15A

IF14

28

31 10A

IF16

32

33 30A

IF17

34

41 15A

IF21

42

43 20A

IF22

44

(MS 201)

EF01

80A

6.1.2 Power Supply Distribution

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6.1.2-2

MD/MS201 2014.01

6.1.2-2Power Supply Distribution

Instrument Panel Power Supply Distribution 2

M6102002

37 15A

IF19

38

2.0 WH/YE

0.5 WH/YET

I/P Fuse Box P40Main Fuse Box P01

8.0

WH

8.0

WH

8.0

WH

+B

2

1

59 15A

IF30

60

2.0 RD/BU

0.5 RD/BU

0.5 RD/BU

0.5 RD/BU

0.5 RD/BU

57 55

58 59IR035 30A

IF03

6

2.0 BU/WH

62 60

63 64IR047 20A

IF04

8

0.85 OG/BK

47 45

48 49IR0135 10A

IF18

36

1.25 RD/YE

82 80

83 84IR08

67 65

68 69IR0529 15A

IF15

302.0 RD/BU 2.0 RD/BU

EF01

80A

Page 183: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

MD/MS201 2014.01

6.1.2-3 6.1.2-3Power Supply Distribution

Instrument Panel Power Supply Distribution 3

M6102003

I/P Fuse Box P40

I/P Fuse Box P40

Main Fuse Box P01

8.0

WH

8.0

WH

8.0

WH

3.0

WH

/GN

3.0

RD

/BK

1.25 BU

+B

2

1

1 30A

IF01

2

3.0 BK/BU

3.0 YE/BK

3 40A

IF02

4

3 P31

2 P31 5 P31 1 P31

4 P31

IG1

IG2ST ST

ACC

ACC

LOC

K

LOC

K OFF

OFF

L1 L2

Ignition Switch

79 15A

IF40

80

49 20A

IF25

50

31 10A

IF26

32

33 30A

IF27

34

35 20A

IF28

36

65 10A

IF33

66

67 10A

IF34

68

69 10A

IF35

70

71 15A

IF36

72

73 10A

IF37

74

EF01

80A

Page 184: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay
Page 185: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

MD/MS201 2014.01

6.1.3-1 6.1.3-1Fuse Details

EF01 IF01 IF02 IF07 IF08 IF09 IF10 IF11 IF12 IR09 (1.0L)

M6103001

I/P Fuse Box P40Starting Motor Switch

Alternator Positive

Ignition Switch

Instrument Cluster

Radio

Front Interior Lamp

Left Headlamp

Right Headlamp

Brake Lamp Switch

Engine ECM

DLC

Electrical Horn

Horn Switch

+B

1

1 30A

IF01

2

80A

EF01

2

3.0 WH/GN

8.0 WH

15.0 RD 15.0 RD

1P0

41

S12

8P2

1

1P3

4

23 15A

IF12

24

3P3

1

3 40A

IF02

43.0 RD/BK

13 10A

IF07

140.5 WH 0.5 WH

0.5 WH

0.5 WH 0.5 WH

4P3

12

L01

15 15A

IF08

161.25WH/BU

1X0

312

X05

5P1

4

17 15A

IF09

181.25WH/RD

5P0

819 10A

IF10

200.5GN/YE

1P2

0

21 10A

IF11

220.5PK/BU

0.85RD

0.5RD 0.5YE

0.5PK/BU

16E0

78

P35

0.85 WH/GN

2P1

21

P32

87 85

88 89IR09

6.1.3 Fuse Details

Page 186: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

6.1.3-2

MD/MS201 2014.01

6.1.3-2Fuse Details

EF01 IF14 IF16 IF17 IF21 IF22 IR02 IR06 (1.0L)

M6103002

I/P Fuse Box P40

Heater Motor

Hazard WarningLamp Switch

Front Left Fog Lamp

Front Right Fog Lamp

Instrument Cluster

Combination Switch (Lighting)

Central Lock Controller

31 10A

IF16

320.5 YE/RD

+B1 80A

EF01

215.0 RD

52 50

53 5433

41

30A

IF17

34 IR022.0 GN/WH

0.5BK/WH

0.85RD/BK

2.0 RD/GN1

P28

7P2

5

72 70

73 7427 15A

IF14

28 IR06

0.5 BK

0.5 LG/RD

1.25 LG

1.25 LG

0.3 LG

1.25 LG/BK

1P1

8

1P0

520

P21

G103

0.5 BKG103

IF26

3P3

05

P30

15A

IF21

42

431.25RD/WH

1P2

9 20A

IF22

44

(MS 201)

Page 187: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

MD/MS201 2014.01

6.1.3-3 6.1.3-3Fuse Details

EF01 IF03 IF04 IF15 IF18 IF19 IR01 IR03 IR04 IR05 IR08 (1.0L)

M6103003

I/P Fuse Box P40

Radiator Fan

Engine ECM

Condenser Fan

Engine ECM

Engine ECM

Engine ECM

Compressor

Fuel Pump

2.0 RD/BU

2.0 RD/BU 2.0 BU/RD

0.5 BK/WH 0.5 BK/WH

0.5 RD/BU 1P1

052

E07

+B1 80A

EF01

215.0 RD

67 65

68 6929 15A

IF15

30 IR05

0.5 WH/YE

2.0 WH/YE

57 55

58 595 30A

IF03

6 IR03

19X0

5

2.0 BU/WH 2.0 RD/BK

0.5 BK/RD 0.5 BK/RD

0.5 RD/BU 1P1

362

E07

62 60

63 647 20A

IF04

8 IR04

23X0

5

1.25 BU/WH

0.85 OG/BK 0.85 OG

0.5 BK/YE 0.5 BK/RD

0.5 RD/BU 1P0

261

E07

47 45

48 4935 10A

IF18

36 IR01

24X0

5

16X0

4 1.25 BU/WH 1.25 BU/WH

3X0

71.25 RD/YE

0.5 YE/RD 0.5 YE/RD

0.5 RD/BU 4S0

160

E07

82 80

83 8437 15A

IF19

38 IR08

25X0

5

Page 188: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

6.1.3-4

MD/MS201 2014.01

6.1.3-4Fuse Details

EF01 IF15 IF30 IR05 (1.0L)

M6103004

I/P Fuse Box P40

Rear Oxygen Sensor

Front Oxygen Sensor

Ignition Coil 1, 4

Ignition Coil 2, 3

Carbon Canister Solenoid

Engine ECM

8E0

751

E07

+B1 80A

EF01

215.0 RD

67 65

68 6929 15A

IF15

30 59 15A

IF30

60IR051.25 RD/BU

2.0 RD/BU 1.5 RD/BU

1.5 RD/BU

1.25 RD/GN1.25 RD/GN

0.85 RD/GN1.25 RD/GN

0.5 WH/YE

2.0 WH/YE

3S1

04

E01

1E1

61

E17

0.5 BN/WH 0.5BN/WH

32E0

7

Engine ECM

15X0

5

6X0

46

X05

1X0

5

1.0 RD/BU

1E0

9

Fuel Injector 1

1.0 RD/BU

1E0

6

Fuel Injector 2

1.0 RD/BU

1E0

4

Fuel Injector 3

1.0 RD/BU

1E0

2

Fuel Injector 4

0.85 RD/BU

1E1

3

1.25 RD/BU

0.5 RD/BU

Page 189: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

MD/MS201 2014.01

6.1.3-5 6.1.3-5Fuse Details

IF25 IF26 IF27 IF28 (1.0L)

M6103005

I/P Fuse Box P40

1.25 YE/BU 1.25 YE/BU

1.25 YE/BU

0.5 YE/BU

IG23.0 BK/BU

ST22.0 BK/YE

31 10A

IF26

320.5 BK/WH

49 20A

IF25

50

A/C Controller

4P2

6

Combination Switch (Wiper)

3P3

3

Starting Motor

1S1

3

Front Wiper Motor

3P1

1

33 30A

IF27

IF28

342.0 WH/BN 2.0 WH/BN

Front Left DoorPower Window Switch

7D

02

35 20A 362.0 BU/YE 2.0 BU/YE

Front Right DoorPower Window Switch

8D

07

Front Washer Motor

2P1

70.5 YE/GN

Heater Relay52

P40

6X0

11

X04

3X0

2

Page 190: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

6.1.3-6

MD/MS201 2014.01

6.1.3-6Fuse Details

IF33 IF34 IF35 IF36 IF37 IF40 (1.0L)

M6103006

I/P Fuse Box P40

0.5 YE/BN 0.5 YE/BN

0.5 YE/BN

IG13.0 YE/BK

67 10A

IF34

680.85 YE

65 10A

IF33

66

Hazard Warning Lamp Switch

6P2

5

69 10A

IF35

700.5 GN/BK

Backup Lamp Switch

1S1

1

71 15A

IF36

721.25 BK/BU

Alternator Connector

2P0

3

73 10A

IF37

740.5 BU 0.5 BU

Engine ECM

17E0

7

Vehicle Speed Sensor

1S0

9

11X0

53

X04

Instrument Cluster

7P2

1

1.25 WH/BK 1.25 WH/BK

1.25 WH/BK

0.85 WH/BK

ACC1.25 BU

79 15A

IF40

80Cigarette Lighter Positive

1P3

7

Central Lock Controller

5

(MS 201)

P29

Radio

5P3

4

Page 191: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

MD/MS201 2014.01

6.1.3-7 6.1.3-7Fuse Details

EF01 IF01 IF02 IF07 IF08 IF09 IF10 IF11 IF12 IR09 (1.2L)

M6103007

I/P Fuse Box P40 Starting Motor Switch

Alternator Positive

+B

1

1 30A

IF01

2

80A

EF01

2

3.0 WH/GN

8.0 WH

15.0 RD 15.0 RD

1P0

41

S12

Instrument Cluster

Front Interior Lamp

Radio

8P2

1

1P3

4

23 15A

IF12

24

Ignition Switch

3P3

1

3 40A

IF02

43.0 RD/BK

13 10A

IF07

140.5 WH 0.5 WH

0.5 WH

0.5 WH 0.5 WH

4P3

12

L01

15 15A

IF08

161.25WH/BU

1X0

312

X05

Left Headlamp

5P1

4

17 15A

IF09

181.25WH/RD

Right Headlamp

5P0

819 10A

IF10

200.5GN/YE

Brake Lamp Switch1

P20

21 10A

IF11

220.5PK/BU

0.85RD

0.5RD 0.5YE

0.5PK/BU

Engine ECM

16E0

7a

DLC

8P3

5

0.85 WH/GN

2P1

21

P32

Horn Switch

Electrical Horn

87 85

88 89IR09

Page 192: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

6.1.3-8

MD/MS201 2014.01

6.1.3-8Fuse Details

EF01 IF14 IF16 IF17 IF21 IF22 IR02 IR06 (1.2L)

M6103008

31 10A

IF16

320.5 YE/RD

I/P Fuse Box P40

+B1 80A

EF01

215.0 RD

52 50

53 5433

41

30A

IF17

34 IR022.0 GN/WH

0.5BK/WH

0.85RD/BK

2.0 RD/GN1

P28

Heater Motor7

P25

Hazard Warning Lamp Switch

72 70

73 7427 15A

IF14

28 IR06

0.5 BK

0.5 LG/RD

1.25 LG

1.25 LG

0.3 LG

1.25 LG/BK

1P1

8

Front Left Fog Lamp

Front Right Fog Lamp

Instrument Cluster

Combination Switch (Lighting)

1P0

520

P21

G103

0.5 BKG103

IF26

3P3

05

P30

15A

IF21

42

431.25RD/WH

1P2

9

Central Lock Controller

20A

IF22

44

(MS 201)

Page 193: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

MD/MS201 2014.01

6.1.3-9 6.1.3-9Fuse Details

EF01 IF03 IF04 IF15 IF18 IF19 IR01 IR03 IR04 IR05 IR08 (1.2L)

M6103009

I/P Fuse Box P40

2.0 RD/BU

2.0 RD/BU 2.0 BU/RD

0.5 BK/WH 0.5 BK/WH

0.5 RD/BU 1P1

0

Radiator Fan

52E0

7a

Engine ECM

+B1 80A

EF01

215.0 RD

67 65

68 6929 15A

IF15

30 IR05

0.5 WH/YE

2.0 WH/YE

57 55

58 595 30A

IF03

6 IR03

19X0

5

2.0 BU/WH 2.0 RD/BK

0.5 BK/RD 0.5 BK/RD

0.5 RD/BU 1P1

3

Condenser Fan

62E0

7a

Engine ECM62 60

63 647 20A

IF04

8 IR04

23X0

5

1.25 BU/WH

0.85 OG/BK 0.85 OG

0.5 BK/YE 0.5 BK/RD

0.5 RD/BU 1P0

2

Compressor

61E0

7aEngine ECM47 45

48 4935 10A

IF18

36 IR01

24X0

5

16X0

4 1.25 BU/WH 1.25 BU/WH

3X0

71.25 RD/YE

0.5 YE/RD 0.5 YE/RD

0.5 RD/BU 4S0

1

Fuel Pump

60E0

7a

Engine ECM82 80

83 8437 15A

IF19

38 IR08

25X0

5

Page 194: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

6.1.3-10

MD/MS201 2014.01

6.1.3-10Fuse Details

EF01 IF15 IF30 IR05 (1.2L)

M6103010

I/P Fuse Box P40

Engine ECM

8E0

7a51

E07a

+B1 80A

EF01

215.0 RD

67 65

68 6929 15A

IF15

30 59 15A

IF30

60IR051.25 RD/BU

2.0 RD/BU 1.5 RD/BU

1.5 RD/BU

1.5 RD/BU

1.5 RD/BU

1.25 RD/GN1.25 RD/GN

0.85 RD/GN1.25 RD/GN

0.5 WH/YE

2.0 WH/YE

3S1

0

Rear Oxygen Sensor

4E0

1a

Front Oxygen Sensor

1E1

9a

Ignition Coil 1

1E1

8a

Ignition Coil 2

1E1

7a

Ignition Coil 3

1E1

6a

Ignition Coil 4

0.5 BN/WH 0.5BN/WH

32E0

7a

Engine ECM

15X0

5

6X0

46

X05

1X0

5

1.0 RD/BU

1E0

9a

Fuel Injector 1

1.0 RD/BU

1E0

6a

Fuel Injector 2

1.0 RD/BU

1E0

4a

Fuel Injector 3

1.0 RD/BU

1E0

2a

Fuel Injector 4

0.85 RD/BU

1E1

3a

Carbon Canister Solenoid

1.25 RD/BU

0.5 RD/BU

Page 195: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

MD/MS201 2014.01

6.1.3-11 6.1.3-11Fuse Details

IF25 IF26 IF27 IF28 (1.2L)

M6103011

I/P Fuse Box P40

1.25 YE/BU 1.25 YE/BU

1.25 YE/BU

0.5 YE/BU

IG23.0 BK/BU

ST22.0 BK/YE

31 10A

IF26

320.5 BK/WH

49 20A

IF25

50

A/C Controller

4P2

6

Combination Switch (Wiper)

3P3

3

Starting Motor

1S1

3

Front Wiper Motor

3P1

1

33 30A

IF27

IF28

342.0 WH/BN 2.0 WH/BN

Front Left DoorPower Window Switch

7D

02

35 20A 362.0 BU/YE 2.0 BU/YE

Front Right DoorPower Window Switch

8D

07

Front Washer Motor

2P1

70.5 YE/GN

Heater Relay52

P40

6X0

11

X04

3X0

2

Page 196: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

6.1.3-12

MD/MS201 2014.01

6.1.3-12Fuse Details

IF33 IF34 IF35 IF36 IF37 IF40 (1.2L)

M6103012

I/P Fuse Box P40

0.5 YE/BN 0.5 YE/BN

0.5 YE/BN

IG13.0 YE/BK

67 10A

IF34

680.85 YE

65 10A

IF33

66

Hazard Warning Lamp Switch

6P2

5

69 10A

IF35

700.5 GN/BK

Backup Lamp Switch

1S1

1

71 15A

IF36

721.25 BK/BU

Alternator Connector

2P0

3

73 10A

IF37

740.5 BU 0.5 BU

Engine ECM

17E0

7a

Vehicle Speed Sensor

1S0

9

11X0

53

X04

Instrument Cluster

7P2

1

1.25 WH/BK 1.25 WH/BK

1.25 WH/BK

0.85 WH/BK

ACC1.25 BU

79 15A

IF40

80Cigarette Lighter Positive

1P3

7

Central Lock Controller

5

(MS 201)

P29

Radio

5P3

4

Page 197: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

MD/MS201 2014.01

6.1.4-1 6.1.4-1Grounding Distribution

G103 G104

M6104001

Front Left Door PowerWindow Switch

Front LeftDoor Fastener Front Fog Lamp Relay

Heater Relay

CombinationSwitch (Lighting) Left Turn Lamp

Left Headlamp

Condenser Fan Front Left fog Lamp

CombinationSwitch (Wiper)

Vehicle Speed SensorFuel PumpInstrument Cluster Brake Fluid Level Switch

Lamp PowerControl Switch

18 P08

9 X01

10 X04

2 X07

3.0

BK

0.5

BK

0.5

BK

2.0

BK

0.5

BK

2 P1370 P40

2.0

BK

0.5

BK

1.25

BK

1.25

BK

0.5

BK

7 P30

6 P333

2 P18 2 P16

P14

2.0

BK2.

0 BK

0.5

BK

1 D02

2 D01

50 P40 3 P41

3.0

BK

0.5

BK

0.5

BK

9 P21

0.3

BK

1 P19

0.5

BK0.

5 BK

0.5

BK/Y

E0.

5 BK

/YE

2 S091 S01

G104

G103

6.1.4 Grounding Distribution

Page 198: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

6.1.4-2

MD/MS201 2014.01

6.1.4-2Grounding Distribution

G105 G106

M6104002

Front Right Door PowerWindow Switch

TristatePressure Switch Flasher Relay Radiator Fan Right Turn Lamp

Front Interior Lamp A/C Controller DLCHazard Warning

Lamp Switch

CigaretteLighter Negative Radio Front Right Fog Lamp

Central LockController

(MS 201)

Right Headlamp Electrical Horn

7 X02

4 X03

2.0

BK

0.5

BK

1.25

BK

2.0

BK

0.85

BK

0.85

BK

2 P103 P09

0.5

BK

0.5

BK

3 P27

3

2 P06

P08

2.0

BK2.

0 BK

4 D07 2 P29 1 P12

G105

2.0

BK

2.0

BK

1.25

BK

0.5

BK

0.85

BK

10 P26

0.5

BK

1.25

BK

4 P34

12

2 P05

P35 13 P35

2.0

BK2.

0 BK

1 L01

1 P36

4 P25

G106

0.5

BK

Page 199: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

MD/MS201 2014.01

6.1.4-3 6.1.4-3Grounding Distribution

G201 G301 G302 (1.0L)

M6104003

0.5

BK

1 S03

0.5

BK

2 S07

1.25

BK

1.25

BK

1 S05

G201

1.25

BK

1.25

BK

2 S01

Fuel Pump Seat Belt SwitchRear Right

Combination LampRear Left

Combination LampRight LicensePlate Lamp

Left LicensePlate Lamp

0.5

BK

2 S06

0.5

BK

2 S08

4 X07

Engine ECM Engine ECM

2.0B

K2.

0BK

5 E07

G301

0.5B

K0.

5BK

43 E07

G302

48

0.5

BK

E07

Page 200: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

6.1.4-4

MD/MS201 2014.01

6.1.4-4Grounding Distribution

G201 G301 G302 G303 (1.2L)

M6104004

0.5

BK

1 S03

0.5

BK

2 S07

1.25

BK

1.25

BK

1 S05

G201

Rear RightCombination LampSeat Belt Switch

1.25

BK

1.25

BK

2 S01

Fuel PumpRear Left

Combination Lamp

0.5

BK

2 S06

Right LicensePlate Lamp

0.5

BK

2 S08

Left LicensePlate Lamp

4 X07

2.0B

K2.

0BK

5 E07a

G301

1.0

BK

1.0

BK

1.0

BK

1.0

BK

2 E19a 2 E16a

1.5

BK

2 E18a 2 E17a

G303

0.5B

K0.

5BK

43 E07a

G302

48

0.5

BK

E07a

Engine ECM Engine ECM Ignition Coil 2 Ignition Coil 3Ignition Coil 1 Ignition Coil 4

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MD/MS201 2014.01

6.1.5-1 6.1.5-1Wiring Harness Connector Location View

Connector Joining Wire Harness and Wire Harness (X--)

X03X01 X02

M6105001

6.1.5 Wiring Harness Connector Location View

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6.1.5-2

MD/MS201 2014.01

6.1.5-2Wiring Harness Connector Location View

X04 X05

M6105002

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MD/MS201 2014.01

6.1.5-3 6.1.5-3Wiring Harness Connector Location View

X07X08

X06

M6105003

Page 204: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

6.1.5-4

MD/MS201 2014.01

6.1.5-4Wiring Harness Connector Location View

Connector Joining Wire Harness and Wire Harness (X) Chart

A Connector Name B Connector Name Definition NoteI/P Wiring Harness to Front Left Door Wiring Harness

Front Left Door Wiring Harness to I/P Wiring Harness X01 -

I/P Wiring Harness to Front Right Door Wiring Harness

Front Right Door Wiring Harness to I/P Wiring Harness X02 -

I/P Wiring Harness to Roof Wiring Harness

Roof Wiring Harness to I/P Wiring Harness X03 -

I/P Wiring Harness to Chassis Wiring Harness

Chassis Wiring Harness to I/P Wiring Harness X04 -

I/P Wiring Harness to Engine Wiring Harness

Engine Wiring Harness to I/P Wiring Harness X05 -

Chassis Wiring Harness to Rear Left Door Wiring Harness

Rear Left Door Wiring Harness to Chassis Wiring Harness X06 MS201

Chassis Wiring Harness to Fuel Pump Wiring Harness

Fuel Pump Wiring Harness to Chassis Wiring Harness X07 -

Chassis Wiring Harness to Rear Right Door Wiring Harness

Rear Right Door Wiring Harness to Chassis Wiring Harness X08 MS201

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MD/MS201 2014.01

6.1.5-5 6.1.5-5Wiring Harness Connector Location View

Engine Wiring Harness Connector (E--)Engine Wiring Harness Connector (E--) (1.0L)

E17E06E04E02E16E11E01 E09 E10

E14 E07E03E15E08 E05E13E12

M6105015

Page 206: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

6.1.5-6

MD/MS201 2014.01

6.1.5-6Wiring Harness Connector Location View

Engine Wiring Harness Connector (E--) (1.2L)

E08a

E06a E18a E19a E09a E10aE17aE04aE16aE02aE01a

E12a E05aE03aE15aE14aE13aE11a E07aM6105004

Page 207: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

MD/MS201 2014.01

6.1.5-7 6.1.5-7Wiring Harness Connector Location View

Engine Wiring Harness Connector (E) Chart

Connector Name DefinitionFront Oxygen Sensor E01

Front Oxygen Sensor E01a

Fuel injector 4 E02

Fuel injector 4 E02a

Throttle position sensor E03

Throttle position sensor E03a

Fuel injector 3 E04

Fuel injector 3 E04a

Crankshaft Position Sensor E05

Crankshaft Position Sensor E05a

Fuel injector 2 E06

Fuel injector 2 E06a

Engine ECM E07

Engine ECM E07a

Transmission Grounding E08

Transmission Grounding E08a

Fuel injector 1 E09

Fuel injector 1 E09a

Engine Oil Pressure Sensor E10

Engine Oil Pressure Sensor E10a

Coolant Temperature Sensor E11

Coolant Temperature Sensor E11a

Knock Sensor E12

Knock Sensor E12a

Carbon Canister Solenoid E13

Carbon Canister Solenoid E13a

Stepper Motor E14

Stepper Motor E14a

Air Intake Pressure/Temperature Sensor E15

Air Intake Pressure/Temperature Sensor E15a

Ignition Coil 2, 3 E16

Ignition Coil 4 E16a

Ignition Coil 1, 4 E17

Ignition Coil 3 E17a

Ignition Coil 2 E18a

Ignition Coil1 E19a

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6.1.5-8

MD/MS201 2014.01

6.1.5-8Wiring Harness Connector Location View

I/P Wiring Harness Connector (P--)

P01 P04P03P02

M6105005

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MD/MS201 2014.01

6.1.5-9 6.1.5-9Wiring Harness Connector Location View

P17P16P15P14P13P11P09P08P07P06

P18

P19

P12P10P05

M6105006

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6.1.5-10

MD/MS201 2014.01

6.1.5-10Wiring Harness Connector Location View

P35P34P33P32P31P30 P39P38P37P36

P21P20P41 P29P28P27P26P25

P22 P40 P24 P23

M6105007

Page 211: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

MD/MS201 2014.01

6.1.5-11 6.1.5-11Wiring Harness Connector Location View

I/P Wiring Harness Connector (P) Chart

Connector Name Definition NoteMain Fuse P01 -

Compressor P02 -

Alternator Connector P03 -

Alternator Positive P04 -

Front Right Fog Lamp P05 -

Right Turn Lamp P06 -

Right Low Beam Light Regulation Motor P07 -

Right Headlamp P08 -

Tristate Pressure Switch P09 -

Radiator Fan P10 -

Front Wiper Motor P11 -

Electrical Horn P12 -

Condenser Fan P13 -

Left Headlamp P14 -

Left Low Beam Light Regulation Motor P15 -

Left Turn Lamp P16 -

Front Washer Motor P17 -

Front Left Fog Lamp P18 -

Brake Fluid Level Switch P19 -

Brake Lamp Switch P20 -

Instrument Cluster P21 -

Diode P22 -

Diode A P23 -

Diode B P24 -

Hazard Warning Lamp Switch P25 -

A/C Controller P26 -

Flasher Relay P27 -

Heater Motor P28 -

Central Lock Controller P29 MS201

Combination Switch (Lighting) P30 -

Ignition switch P31 -

Horn Switch P32 -

Combination Switch (Wiper) P33 -

Radio P34 -

DLC P35 -

Cigarette Lighter Negative P36 -

Cigarette Lighter Positive P37 -

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6.1.5-12

MD/MS201 2014.01

6.1.5-12Wiring Harness Connector Location View

Governor Resistor P38 -

Evaporator Thermistor P39 -

Fuse Box P40 -

Lighting Power Control Switch P41 -

Connector Name Definition Note

Page 213: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

MD/MS201 2014.01

6.1.5-13 6.1.5-13Wiring Harness Connector Location View

Floor Wiring Harness Connector (S--)

S11S11a S10 S01 S05S02 S06S14 S03

S15 S08 S07S04 S12/S12a S09S13

M6105008

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6.1.5-14

MD/MS201 2014.01

6.1.5-14Wiring Harness Connector Location View

S16

M6105013

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MD/MS201 2014.01

6.1.5-15 6.1.5-15Wiring Harness Connector Location View

Floor Wiring Harness Connector (S) Chart

Connector Name Definition NoteFuel Pump S01 -

Front Right Door Signal Lamp Switch S02 -

Seat Belt Switch S03 -

Front Left Door Signal Lamp Switch S04 -

Rear Right Combination Lamp S05 -

Rear Right License Plate Lamp S06 -

Rear Left Combination Lamp S07 -

Rear Left License Plate Lamp S08 -

Vehicle Speed Sensor S09 -

Rear Oxygen Sensor S10 -

Backup Lamp Switch S11 MD201

Backup Lamp Switch S11a MS201

Starting Motor Switch S12 MD201

Starting Motor Switch S12a MS201

Starting Motor S13 -

Parking Brake Switch S14 -

Battery Positive S15 -

Battery Negative S16 -

Page 216: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

6.1.5-16

MD/MS201 2014.01

6.1.5-16Wiring Harness Connector Location View

Door Wiring Harness Connector (D--)

D04D03D02D01

M6105009

Page 217: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

MD/MS201 2014.01

6.1.5-17 6.1.5-17Wiring Harness Connector Location View

D08D07D06D05

M6105010

Page 218: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

6.1.5-18

MD/MS201 2014.01

6.1.5-18Wiring Harness Connector Location View

D09

M6105011

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MD/MS201 2014.01

6.1.5-19 6.1.5-19Wiring Harness Connector Location View

D10

M6105014

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6.1.5-20

MD/MS201 2014.01

6.1.5-20Wiring Harness Connector Location View

Door Wiring Harness Connector (D) Chart

Connector Name Definition NoteFront Left Door Fastener D01 MS201

Front Left Door Power Window Switch D02 -

Front Left Door Power Window Motor D03 -

Front Left Speaker D04 -

Front Right Speaker D05 -

Front Right Door Power Window Motor D06 -

Front Right Door Power Window Switch D07 -

Front Right Door Fastener D08 MS201

Rear Left Door Fastener D09 MS201

Rear Right Door Fastener D10 MS201

Page 221: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

MD/MS201 2014.01

6.1.5-21 6.1.5-21Wiring Harness Connector Location View

Roof Wiring Harness Connector (L--)

Roof Wiring Harness Connector (L) Chart

Connector Name DefinitionFront Interior Lamp L01

L01

M6105012

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Page 223: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

MD/MS201 2014.01

6.1.6-1 6.1.6-1Grounding Location View

Grounding Location View (1.0L)GND1

GND1

M6106001

6.1.6 Grounding Location View

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6.1.6-2

MD/MS201 2014.01

6.1.6-2Grounding Location View

GND191 G301 G302

GND191

G302G301

M6106002

Page 225: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

MD/MS201 2014.01

6.1.6-3 6.1.6-3Grounding Location View

G103 G104 D105 G106

G103G105

G104G106

M6106004

Page 226: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

6.1.6-4

MD/MS201 2014.01

6.1.6-4Grounding Location View

G201

G201

M6106003

Page 227: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

MD/MS201 2014.01

6.1.6-5 6.1.6-5Grounding Location View

Grounding Location View (1.2L)GND1

GND1

M6106001

Page 228: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

6.1.6-6

MD/MS201 2014.01

6.1.6-6Grounding Location View

GND191 G301 G302 G303

G302

G303 G301GND191

M6106005

Page 229: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

MD/MS201 2014.01

6.1.6-7 6.1.6-7Grounding Location View

G103 G104 D105 G106

G103G105

G104G106

M6106004

Page 230: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

6.1.6-8

MD/MS201 2014.01

6.1.6-8Grounding Location View

G201

G201

M6106003

Page 231: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

MD/MS201 2014.01

6.1.7-1 6.1.7-1Wiring Harness Connector Terminal View

Connector Joining Wiring Harness and Wiring Harness (X--)

X01 Wiring Harness Connector Pin Definition

I/P Wiring Harness to Front Left Door Wiring Harness Front Left Door Wiring Harness to I/P Wiring Harness

Pin No. Wire Diameter/Color Function1 - -

2 0.5 RD Front Left Speaker Positive

3(MD201) - -

3(MS201) 0.5 RD/BK Front Left Speaker Negative

4(MD201) - -

4(MS201) 0.5 WH/YE Locking Switch Signal A

5 0.5 YE Locking Switch Signal B

6 2.0 WH/BN Power Window Main Switch Power Supply

7 2.0 RD/YE Front Right Door Control Power Supply Output

8 2.0 GN/WH Passenger Side Door Glass Down Control

9 2.0 BK Grounding

10 2.0 RD/WH Passenger Side Door Glass Up Control

11(MD201) - -

11(MS201) 0.85 BU Front Left Door Lock Motor Locking Power Supply

12(MD201) - -

12(MS201) 0.85 WH Front Left Door Lock Motor Unlocking Power Supply

1 2 4 53

6 7 11 128 9 10

34

11 10 812

5

7 69

2 1

X01

6.1.7 Wiring Harness Connector Terminal View

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6.1.7-2

MD/MS201 2014.01

6.1.7-2Wiring Harness Connector Terminal View

X02 Wiring Harness Connector Pin Definition

I/P Wiring Harness to Front Right Door Wiring Harness Front Right Door Wiring Harness to I/P Wiring Harness

Pin No. Wire Diameter/Color Function1 0.5 BU/RD Front Right Speaker Positive

2 0.5 BU/BK Front Right Speaker Negative

3 2.0 BU/YE Front Right Door Power Window Switch Power Supply

4 - -

5 2.0 RD/YE Front Right Door Control Power Supply

6 2.0 GN/WH Passenger Side Glass Down Signal Controlled by Driver Side

7 2.0 BK Grounding

8 2.0 RD/WH Passenger Side Glass Up Signal Controlled by Driver Side

9(MD201) - -

9(MS201) 0.85 BU Front Right Door Lock Motor Locking Power Supply

10(MD201) - -

10(MS201) 0.85 WH Front Right Door Lock Motor Unlocking Power Supply

11 - -

12 - -

1 2 4 53

6 7 11 128 9 10

34

11 10 812

5

7 69

2 1

X02

Page 233: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

MD/MS201 2014.01

6.1.7-3 6.1.7-3Wiring Harness Connector Terminal View

X03 Wiring Harness Connector Pin Definition

I/P Wiring Harness to Roof Wiring Harness Roof Wiring Harness to I/P Wiring Harness

Pin No. Wire Diameter/Color Function1 0.5 WH Interior Roof Lamp Power Supply

2 0.3 BK/RD Interior Roof Lamp DR Position Signal Output

3 - -

4 2.0 BK Grounding

4 3 2 1

1 2 3 4

X03

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6.1.7-4

MD/MS201 2014.01

6.1.7-4Wiring Harness Connector Terminal View

X04 Wiring Harness Connector Pin Definition

I/P Wiring Harness to Chassis Wiring Harness Chassis Wiring Harness to I/P Wiring Harness

Pin No. Wire Diameter/Color Function1 2.0 BK/YE Starting Switch Power Supply

2 0.5 RD/YE Rear Position Lamp & Rear License Plate Lamp Power Supply

3 0.5 YE/BN Vehicle Speed Sensor & Backup Lamp Switch Power Supply

4 0.5 GN/WH Rear Brake Lamp Power Supply

5 0.3 RD/BK Parking Brake Switch Signal

6 1.25 RD/GN Rear Oxygen Sensor Heating Power Supply

7 0.5 YE Rear Oxygen Sensor Signal

8 0.5 BK/RD Door Signal Lamp Switch Signal

9 0.3 GY/BK Seat Belt Switch Power Supply

10 0.5 BK Fuel Level Sensor & Vehicle Speed Sensor Grounding

11 0.5 GY Rear Fog Lamp Power Supply

12 - -

13 0.5 GN/YE Rear Right Turn Lamp Power Supply

14 0.5 GN/RD Rear Left Turn Lamp Power Supply

15 - -

16 1.25 BU/WH Fuel pump Power Supply

17 0.5 WH/RD Rear Oxygen Sensor Heating Signal

18 0.3 YE/RD Fuel Level Sensor Power Supply

19 0.5 YE/GN Rear Oxygen Sensor Grounding

20 0.3 GN Vehicle Speed Sensor Signal

1 2 3 4 5 67 8 9 10

11 12 13 14 15 16

17 18 19 2021 22 23 24 25 26

12345678910

11121314151617181920

212223242526

X04

Page 235: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

MD/MS201 2014.01

6.1.7-5 6.1.7-5Wiring Harness Connector Terminal View

21(MD201) - -

21(MS201) 0.85 BU Rear Door Lock Motor locking Power Supply

22 - -

23 - -

24(MD201) - -

24(MS201) 0.85 WH Rear Door Lock Motor Unlocking Power Supply

25 - -

26 - -

Pin No. Wire Diameter/Color Function

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6.1.7-6

MD/MS201 2014.01

6.1.7-6Wiring Harness Connector Terminal View

X05 Wiring Harness Connector Pin Definition

I/P Wiring Harness to Engine Wiring Harness Engine Wiring Harness to I/P Wiring Harness

Pin No. Wire Diameter/Color Function1 2.0 RD/BU Main Relay Power Supply

2 0.3 YE/BK Engine Oil Pressure Signal

3 0.3 YE/WH Coolant Temperature Signal

4(1.0L) 1.25RD/BU Main Relay Power Supply

4(1.2L) - -

5 - -

6 1.25 RD/GN Front Oxygen Sensor Heating Power Supply

7 0.5 LG/RD Blower Switch Signal

8 0.5 BU/BK A/C Medium Pressure Switch Signal

9 0.3 WH/BU Engine speed Signal

10 0.5 WH/RD Rear Oxygen Sensor Heating

11 0.5 BU Ignition Switch Power Supply

12 0.5 PK/BU Constant Power Supply

13 0.5 LG/WH Diagnosis K Line

14 0.5 LG/BK A/C Temperature Sensor

15 0.5 BN/WH Main Relay

16 0.5 YE Rear Oxygen Sensor

17 0.5 RD/YE Headlamp Switch Signal

18 0.3 VT/YE MIL Lamp

19 0.5 BK/WH Radiator Fan Relay

20 0.5 PK/BK A/C Switch Signal

21 0.5 BU/RD Sensor Grounding 2

1 7 8 9 10 411 12 13 14

2 15 16 17 18 5

19 20 21 223 23 24 25 26 6

1

2

3

7

11

15

19

23

8

12

16

20

24

9

13

17

21

25

10

14

18

22

26

4

5

6

X05

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MD/MS201 2014.01

6.1.7-7 6.1.7-7Wiring Harness Connector Terminal View

Pin No. Wire Diameter/Color Function22 0.5 YE/GN Sensor Grounding 1

23 0.5 BK/RD A/C Condenser Fan Relay

24 0.5 BK/YE A/C Compressor Relay

25 0.5 YE/RD Fuel Pump Relay

26 0.3 YE/GN Vehicle Speed Signal

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6.1.7-8

MD/MS201 2014.01

6.1.7-8Wiring Harness Connector Terminal View

X06 Wiring Harness Connector Pin Definition (MS201)

Chassis Wiring Harness to Rear Left Door Wiring Harness

Rear Left Door Wiring Harness to Chassis Wiring Harness

Pin No. Wire Diameter/Color Function

1 0.85 WH Rear Left Door Lock Motor Unlocking Power Supply

2 0.85 BU Rear Left Door Lock Motor Locking Power Supply

21

2 1

X06

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MD/MS201 2014.01

6.1.7-9 6.1.7-9Wiring Harness Connector Terminal View

X07 Wiring Harness Connector Pin Definition

Fuel Pump Wiring Harness to Chassis Wiring Harness Chassis Wiring Harness to Fuel Pump Wiring Harness

Pin No. Wire Diameter/Color Function1 0.3 YE/RD Fuel Level Sensor Power Supply

2 0.5 BK/YE Fuel Level Sensor Grounding

3 1.25 BU/WH Fuel pump Power Supply

4 1.25 BK Fuel Pump Grounding

13

24

1

2

3

4

X07

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6.1.7-10

MD/MS201 2014.01

6.1.7-10Wiring Harness Connector Terminal View

X08 Wiring Harness Connector Pin Definition (MS201)

Chassis Wiring Harness to Rear Right Door Wiring Harness

Rear Right Door Wiring Harness to Chassis Wiring Harness

Pin No. Wire Diameter/Color Function

1 0.85 WH Rear Right Door Lock Motor Unlocking Power Supply

2 0.85 BU Rear Left Door Lock Motor Locking Power Supply

21

2 1

X08

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MD/MS201 2014.01

6.1.7-11 6.1.7-11Wiring Harness Connector Terminal View

Engine Wiring Harness Connector (E--)

E01 Wiring Harness Connector Pin Definition (1.0L)

E01a Wiring Harness Connector Pin Definition (1.2L)

Front Oxygen Sensor

Pin No. Wire Diameter/Color Function1 0.85 RD/GN Front Oxygen Sensor Heating Power Supply

2 0.85 YE/WH Front Oxygen Sensor Heating Signal

3 0.5 YE/GN Front Oxygen Sensor Signal

4 0.5 BK/OG Front Oxygen Sensor Grounding

Front Oxygen Sensor

Pin No. Wire Diameter/Color Function1 0.5 BK/OG Front Oxygen Sensor Signal

2 0.5 YE/GN Front Oxygen Sensor Grounding

3 0.85 YE/WH Front Oxygen Sensor Heating Signal

4 0.85 RD/GN Front Oxygen Sensor Heating Power Supply

1 2 3 4

E01

1

2

3

4

E01a

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6.1.7-12

MD/MS201 2014.01

6.1.7-12Wiring Harness Connector Terminal View

E02 Wiring Harness Connector Pin Definition (1.0L)

E02a Wiring Harness Connector Pin Definition (1.2L)

Fuel Injector 4

Pin No. Wire Diameter/Color Function

1 0.85 RD/BU Fuel Injector 4 Power Supply (+B, Main Relay Control)

2 0.5 WH/BK Fuel Injector 4 Signal

Fuel Injector 4

Pin No. Wire Diameter/Color Function

1 1.0 RD/BU Fuel Injector 4 Power Supply (+B, Main Relay Control)

2 0.5 WH/BK Fuel Injector 4 Signal

1 2

E02

1 2

E02a

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MD/MS201 2014.01

6.1.7-13 6.1.7-13Wiring Harness Connector Terminal View

E03 Wiring Harness Connector Pin Definition (1.0L)

E03a Wiring Harness Connector Pin Definition (1.2L)

Throttle Position Sensor

Pin No. Wire Diameter/Color Function1 0.5 BU/BN Throttle Position Sensor 5 V Power Supply

2 0.5 YE/GN Throttle Position Sensor Internal Grounding

3 0.5 BU/WH Throttle Position Sensor Signal

Throttle Position Sensor

Pin No. Wire Diameter/Color Function1 0.5 YE/GN Throttle Position Sensor Internal Grounding

2 0.5 BU/BN Throttle Position Sensor 5 V Power Supply

3 0.5 BU/WH Throttle Position Sensor Signal

1 2 3

E03

1 2 3

E03a

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6.1.7-14

MD/MS201 2014.01

6.1.7-14Wiring Harness Connector Terminal View

E04 Wiring Harness Connector Pin Definition (1.0L)

E04a Wiring Harness Connector Pin Definition (1.2L)

Fuel Injector 3

Pin No. Wire Diameter/Color Function

1 0.85 RD/BU Fuel Injector 3 Power Supply (+B, Main Relay Control)

2 0.5 WH/GN Fuel Injector 3 Signal

Fuel Injector 3

Pin No. Wire Diameter/Color Function

1 1.0 RD/BU Fuel Injector 3 Power Supply (+B, Main Relay Control)

2 0.5 WH/GN Fuel Injector 3 Signal

1 2

E04

1 2

E04a

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MD/MS201 2014.01

6.1.7-15 6.1.7-15Wiring Harness Connector Terminal View

E05 Wiring Harness Connector Pin Definition (1.0L)

E05a Wiring Harness Connector Pin Definition (1.2L)

Crankshaft Position Sensor

Pin No. Wire Diameter/Color Function1 0.5 BK Grounding

2 0.5 VT Crankshaft Sensor Signal A

3 0.5 BU Crankshaft Sensor Signal B

Crankshaft Position Sensor

Pin No. Wire Diameter/Color Function1 0.5 YE/BK Crankshaft Position Sensor 5 V Power Supply

2 0.5 BU/WH Crankshaft Position Sensor Signal

3 0.5 BU/RD Crankshaft Position Sensor Grounding

1 2 3

E05

1 2 3

E05a

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6.1.7-16

MD/MS201 2014.01

6.1.7-16Wiring Harness Connector Terminal View

E06 Wiring Harness Connector Pin Definition (1.0L)

E06a Wiring Harness Connector Pin Definition (1.2L)

Fuel Injector 2

Pin No. Wire Diameter/Color Function

1 0.85 RD/BU Fuel Injector 2 Power Supply (+B, Main Relay Control)

2 0.5 WH/YE Fuel Injector 2 Signal

Fuel Injector 2

Pin No. Wire Diameter/Color Function

1 1.0 RD/BU Fuel Injector 2 Power Supply (+B, Main Relay Control)

2 0.5 WH/YE Fuel Injector 2 Signal

1 2

E06

1 2

E06a

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MD/MS201 2014.01

6.1.7-17 6.1.7-17Wiring Harness Connector Terminal View

E07 Wiring Harness Connector Pin Definition (1.0L)

ECM

Pin No. Wire Diameter/Color Function1 - -

2 0.85 YE/WH Front Oxygen Sensor Heating

3 1.25 BK/YE Ignition Coil (1, 4) Signal

4 0.85 WH Rear Oxygen Sensor Heating

5 2.0 BK Grounding

6 - -

7 1.25 BK/BU Ignition Coil (2, 3) Signal

8 1.25 RD/BU Non-constant Power Supply

9 0.5 WH/BU Engine Speed Output

10 0.5 BU/BK A/C Medium Pressure Switch

11 - -

12 0.5 LG Blower Switch

13 0.5 LG/BK A/C Temperature Sensor

14 - -

15 0.5 YE/RD Diagnosis K Line

16 0.5 PK/BU Constant Power Supply

17 0.5 BU Ignition Switch

18 0.5 BU/BN 5 V Power Supply 2

19 0.5 YE/BK 5 V Power Supply 1

20 0.5 VT/YE MIL Lamp

21 0.5 GY/YE Stepper Motor Phase B

22 0.5 GY/GN Stepper Motor Phase A

7 8

5 6

3 4

1 2

51 52 53 54 55 56 57 58 59 60 61 62 63 64

37 38 39 40 41 42 43 44 45 46 47 48 49 50

23 24 25 26 27 28 29 30 31 32 33 34 35 36

9 10 11 12 13 14 15 16 17 18 19 20 21 22

E07

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6.1.7-18

MD/MS201 2014.01

6.1.7-18Wiring Harness Connector Terminal View

Pin No. Wire Diameter/Color Function23 - -

24 0.5 RD/YE Headlamp Switch

25 0.5 BU/GN Air Intake Temperature Sensor

26 0.5 BU/WH Throttle Position Sensor

27 - -

28 - -

29 0.5 YE Rear Oxygen Sensor

30 0.5 RD Knock Sensor Side A

31 0.5 GN Knock Sensor Side B

32 0.5 BN/WH Main Relay

33 - -

34 - -

35 0.5 GY Stepper Motor Phase C

36 0.5 GY/BK Stepper Motor Phase D

37 0.5 RD/WH Carbon Canister Valve

38 - -

39 0.5 YE/GN Sensor Grounding 1

40 0.5 BU/RD Sensor Grounding 2

41 0.5 BN/YE Engine Coolant Temperature Sensor

42 - -

43 0.5 BK Electrical Grounding 1

44 0.5 PK/BK A/C Switch

45 0.5 BK/OG Front Oxygen Sensor

46 0.5 VT Crankshaft Sensor Signal A

47 0.5 BU Crankshaft Sensor Signal B

48 0.5 BK Power Grounding 1

49 0.5 WH/GN Fuel Injector 2 (3rd Cylinder)

50 0.5 WH/BN Fuel Injector 1 (1st Cylinder)

51 0.5 RD/BU Non-constant Power Supply

52 0.5 BK/WH Radiator Fan Relay

53 - -

54 - -

55 - -

56 0.5 YE/WH Coolant Temperature Output

57 0.5 GN Vehicle Speed Signal

58 - -

59 0.5 YE/BU Air Intake Pressure Sensor

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MD/MS201 2014.01

6.1.7-19 6.1.7-19Wiring Harness Connector Terminal View

E07a Wiring Harness Connector Pin Definition (1.2L)

Pin No. Wire Diameter/Color Function60 0.5 LG/RD Fuel Pump Relay

61 0.5 BK/YE A/C Compressor Relay

62 0.5 BK/RD A/C Condenser Fan Relay

63 0.5 WH/YE Fuel Injector 4 (2nd Cylinder)

64 0.5 WH/BK Fuel Injector 3 (4th Cylinder)

ECM

Pin No. Wire Diameter/Color Function1 1.25 BK/RD Ignition Coil for 4th Cylinder

2 0.85 YE/WH Front Oxygen Sensor Heating

3 1.25 BK/YE Ignition Coil for 1st Cylinder

4 0.85 WH Rear Oxygen Sensor Heating

5 2.0 BK Grounding

6 1.25 BK/VT Ignition Coil for 2nd Cylinder

7 1.25 BK/BU Ignition Coil for 3rd Cylinder

8 1.25 RD/BU Non-constant Power Supply

9 0.5 WH/BU Engine Speed Output

10 0.5 BU/BK A/C Medium Pressure Switch

11 - -

12 0.5 LG/RD Blower Switch

13 0.5 LG/BK A/C Temperature Sensor

14 - -

15 0.5 LG/WH Diagnosis K Line

7 8

5 6

3 4

1 2

51 52 53 54 55 56 57 58 59 60 61 62 63 64

37 38 39 40 41 42 43 44 45 46 47 48 49 50

23 24 25 26 27 28 29 30 31 32 33 34 35 36

9 10 11 12 13 14 15 16 17 18 19 20 21 22

E07a

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6.1.7-20

MD/MS201 2014.01

6.1.7-20Wiring Harness Connector Terminal View

Pin No. Wire Diameter/Color Function16 0.5 PK/BU Constant Power Supply

17 0.5 BU Ignition switch

18 0.5 BU/BN 5 V Power Supply 2

19 0.5 YE/BK 5 V Power Supply 1

20 0.5 VT/YE MIL Lamp

21 0.5 GY/YE Stepper Motor Phase B

22 0.5 GY/GN Stepper Motor Phase A

23 - -

24 0.5 RD/YE Headlamp Switch

25 0.5 BU/GN Air Intake Temperature Sensor

26 0.5 BU/WH Throttle Position Sensor

27 - -

28 - -

29 0.5 YE Rear Oxygen Sensor

30 0.5 RD Knock Sensor Side A

31 0.5 GN Knock Sensor Side B

32 0.5 BN/WH Main Relay

33 - -

34 - -

35 0.5 GY Stepper Motor Phase C

36 0.5 GY/BK Stepper Motor Phase D

37 0.5 RD/WH Carbon Canister Valve

38 - -

39 0.5 YE/GN Sensor Grounding 1

40 0.5 BU/RD Sensor Grounding 2

41 0.5 BN/YE Engine Coolant Temperature Sensor

42 - -

43 0.5 BK Electrical Grounding 1

44 0.5 PK/BK A/C Switch

45 0.5 BK/OG Front Oxygen Sensor

46 - -

47 0.5 BU/WH Engine Speed Sensor

48 0.5 BK Power Grounding 1

49 0.5 WH/GN Fuel Injector 2 (3rd Cylinder)

50 0.5 WH/BN Fuel Injector 1 (1st Cylinder)

51 0.5 RD/BU Non-constant Power Supply

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MD/MS201 2014.01

6.1.7-21 6.1.7-21Wiring Harness Connector Terminal View

E08 Wiring Harness Connector Pin Definition (1.0L)

Pin No. Wire Diameter/Color Function52 0.5 BK/WH Radiator Fan Relay

53 - -

54 - -

55 - -

56 0.5 YE/WH Coolant Temperature Output

57 0.5 YE/GN Vehicle Speed Signal

58 - -

59 0.5 YE/BN Air Intake Pressure Sensor

60 0.5 YE/RD Fuel Pump Relay

61 0.5 BK/YE A/C Compressor Relay

62 0.5 BK/RD A/C Condenser Fan Relay

63 0.5 WH/YE Fuel Injector 4 (2nd Cylinder)

64 0.5 WH/BK Fuel Injector 3 (4th Cylinder)

Transmission Grounding

Pin No. Wire Diameter/Color Function1 15.0 BK Engine & Transmission Grounding

1

E08

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6.1.7-22

MD/MS201 2014.01

6.1.7-22Wiring Harness Connector Terminal View

E08a Wiring Harness Connector Pin Definition (1.2L)

E09 Wiring Harness Connector Pin Definition (1.0L)

Transmission Grounding

Pin No. Wire Diameter/Color Function1 15.0 BK Engine & Transmission Grounding

Fuel injector 1

Pin No. Wire Diameter/Color Function

1 0.85 RD/BU Fuel Injector 1 Power Supply (+B, Main Relay Control)

2 0.5 WH/BN Fuel Injector 1 Signal

E08a

1

1 2

E09

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MD/MS201 2014.01

6.1.7-23 6.1.7-23Wiring Harness Connector Terminal View

E09a Wiring Harness Connector Pin Definition (1.2L)

E10 Wiring Harness Connector Pin Definition (1.0L)

Fuel injector 1

Pin No. Wire Diameter/Color Function

1 1.0 RD/BU Fuel Injector 1 Power Supply (+B, Main Relay Control)

2 0.5 WH/BN Fuel Injector 1 Signal

Engine Oil Pressure Sensor

Pin No. Wire Diameter/Color Function1 0.5 YE/BK Engine Oil Pressure Switch Power Supply

1 2

E09a

1

E10

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6.1.7-24

MD/MS201 2014.01

6.1.7-24Wiring Harness Connector Terminal View

E10a Wiring Harness Connector Pin Definition (1.2L)

E11 Wiring Harness Connector Pin Definition (1.0L)

Engine Oil Pressure Sensor

Pin No. Wire Diameter/Color Function1 0.5 YE/BK Engine Oil Pressure Switch Power Supply

Coolant Temperature Sensor

Pin No. Wire Diameter/Color Function1 0.5 BN/YE Engine Coolant Temperature Sensor Signal

2 - -

3 0.5 BU/RD Coolant Temperature Sensor Grounding

1

E10a

1 2 3

E11

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MD/MS201 2014.01

6.1.7-25 6.1.7-25Wiring Harness Connector Terminal View

E11a Wiring Harness Connector Pin Definition (1.2L)

E12 Wiring Harness Connector Pin Definition (1.0L)

Coolant Temperature Sensor

Pin No. Wire Diameter/Color Function1 0.5 BU/RD Coolant Temperature Sensor Grounding

2 0.5 BN/YE Engine Coolant Temperature Sensor Signal

Knock Sensor

Pin No. Wire Diameter/Color Function1 0.5 RD Knock Sensor A

2 0.5 GN Knock Sensor B

3 0.5 BK Grounding

1 2

E11a

1 2 3

E12

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6.1.7-26

MD/MS201 2014.01

6.1.7-26Wiring Harness Connector Terminal View

E12a Wiring Harness Connector Pin Definition (1.2L)

E13 Wiring Harness Connector Pin Definition (1.0L)

Knock Sensor

Pin No. Wire Diameter/Color Function1 0.5 RD Knock Sensor A

2 0.5 GN Knock Sensor B

3 0.5 BK Grounding

Carbon Canister Solenoid

Pin No. Wire Diameter/Color Function1 0.85 RD/BU Carbon Canister Control Valve Power Supply

2 0.85 RD/WH Carbon Canister Control Valve Signal

1 2 3

E12a

1 2

E13

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MD/MS201 2014.01

6.1.7-27 6.1.7-27Wiring Harness Connector Terminal View

E13a Wiring Harness Connector Pin Definition (1.2L)

E14 Wiring Harness Connector Pin Definition (1.0L)

Carbon Canister Solenoid

Pin No. Wire Diameter/Color Function1 0.85 RD/BU Carbon Canister Control Valve Power Supply

2 0.85 RD/WH Carbon Canister Control Valve Signal

Stepper Motor

Pin No. Wire Diameter/Color Function1 0.5 GY/BK Idle Control Valve Signal D

2 0.5 GY Idle Control Valve Signal C

3 0.5 GY/YE Idle Control Valve Signal B

4 0.5 GY/GN Idle Control Valve Signal A

1 2

E13a

4321

E14

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6.1.7-28

MD/MS201 2014.01

6.1.7-28Wiring Harness Connector Terminal View

E14a Wiring Harness Connector Pin Definition (1.2L)

E15 Wiring Harness Connector Pin Definition (1.0L)

Stepper Motor

Pin No. Wire Diameter/Color Function1 0.5 GY/BK Idle Control Valve Signal D

2 0.5 GY Idle Control Valve Signal C

3 0.5 GY/YE Idle Control Valve Signal B

4 0.5 GY/GN Idle Control Valve Signal A

Air Intake Pressure Sensor

Pin No. Wire Diameter/Color Function

1 0.5 BU/RD Air Intake Pressure/Temperature Sensor Internal Grounding

2 0.5 BU/GN Air Intake Temperature Sensor Signal

3 0.5 YE/BK Air Intake Pressure/Temperature Sensor 5 V Power Supply

4 0.5 YE/BU Air Intake Pressure Sensor Signal

4321

E14a

1 2 3 4

E15

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MD/MS201 2014.01

6.1.7-29 6.1.7-29Wiring Harness Connector Terminal View

E15a Wiring Harness Connector Pin Definition (1.2L)

E16 Wiring Harness Connector Pin Definition (1.0L)

Air Intake Pressure Sensor

Pin No. Wire Diameter/Color Function

1 0.5 BU/RD Air Intake Pressure/Temperature Sensor Internal Grounding

2 0.5 BU/GN Air Intake Temperature Sensor Signal

3 0.5 YE/BK Air Intake Pressure/Temperature Sensor 5 V Power Supply

4 0.5 YE/BN Air Intake Pressure Sensor Signal

Ignition Coil 2, 3

Pin No. Wire Diameter/Color Function1 1.25 BK/WH Ignition Coil (2, 3) Power Supply

2 1.25 BK/BU Ignition Coil (2, 3) Signal

1 2 3 4

E15a

1 2

E16

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6.1.7-30

MD/MS201 2014.01

6.1.7-30Wiring Harness Connector Terminal View

E16a Wiring Harness Connector Pin Definition (1.2L)

E17 Wiring Harness Connector Pin Definition (1.0L)

Ignition Coil 4

Pin No. Wire Diameter/Color Function1 1.5 RD/BU Ignition Coil 4 (+B, Main Relay Control)

2 1.0 BK Ignition Coil 4 Grounding

3 1.5 BK/RD Ignition Coil 4 Signal

Ignition Coil 1, 4

Pin No. Wire Diameter/Color Function1 1.25 BK/WH Ignition Coil (1, 4) Power Supply

2 1.25 BK/YE Ignition Coil (1, 4) Signal

1 2 3

E16a

1 2

E17

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MD/MS201 2014.01

6.1.7-31 6.1.7-31Wiring Harness Connector Terminal View

E17a Wiring Harness Connector Pin Definition (1.2L)

E18a Wiring Harness Connector Pin Definition (1.2L)

Ignition Coil 3

Pin No. Wire Diameter/Color Function1 1.5 RD/BU Ignition Coil 3 (+B, Main Relay Control)

2 1.0 BK Ignition Coil 3 Grounding

3 1.5 BK/BU Ignition Coil 3 Signal

Ignition Coil 2

Pin No. Wire Diameter/Color Function1 1.5 RD/BU Ignition Coil 2 (+B, Main Relay Control)

2 1.0 BK Ignition Coil 2 Grounding

3 1.5 BK/VT Ignition Coil 2 Signal

1 2 3

E17a

1 2 3

E18a

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6.1.7-32

MD/MS201 2014.01

6.1.7-32Wiring Harness Connector Terminal View

E19a Wiring Harness Connector Pin Definition (1.2L)

Ignition Coil 1

Pin No. Wire Diameter/Color Function1 1.5 RD/BU Ignition Coil 1 (+B, Main Relay Control)

2 1.0 BK Ignition Coil 1 Grounding

3 1.5 BK/YE Ignition Coil 1 Signal

1 2 3

E19a

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MD/MS201 2014.01

6.1.7-33 6.1.7-33Wiring Harness Connector Terminal View

I/P Wiring Harness Connector (P--)

P02 Wiring Harness Connector Pin Definition

P03 Wiring Harness Connector Pin Definition

Compressor

Pin No. Wire Diameter/Color Function1 0.85 OG A/C Compressor Clutch Power Supply

Alternator Connector

Pin No. Wire Diameter/Color Function1 - -

2 1.25 BK/BU Ignition Switch ON Signal

3 0.3 RD/WH Charging Indicator Signal

1

P02

123

P03

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6.1.7-34

MD/MS201 2014.01

6.1.7-34Wiring Harness Connector Terminal View

P04 Wiring Harness Connector Pin Definition

P05 Wiring Harness Connector Pin Definition

Alternator Positive

Pin No. Wire Diameter/Color Function1 8.0 WH Battery Charging Power Supply Output

Front Right Fog Lamp

Pin No. Wire Diameter/Color Function1 1.25 LG Front Right Fog Lamp Power Supply

2 1.25 BK Grounding

1

P04

12

P05

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MD/MS201 2014.01

6.1.7-35 6.1.7-35Wiring Harness Connector Terminal View

P06 Wiring Harness Connector Pin Definition

P07 Wiring Harness Connector Pin Definition

Right Turn Lamp

Pin No. Wire Diameter/Color Function1 0.5 GN/YE Right Turn Lamp Power Supply

2 0.5 BK Grounding

Right Low Beam Regulator Motor

Pin No. Wire Diameter/Color Function1 0.5 BK Right Light Regulator Motor Grounding

2 0.5 GN Right Low Beam Lamp Height Signal

3 0.5 WH/RD Right Light Regulator Motor Power Supply

12

P06

3 2 1

P07

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6.1.7-36

MD/MS201 2014.01

6.1.7-36Wiring Harness Connector Terminal View

P08 Wiring Harness Connector Pin Definition

P09 Wiring Harness Connector Pin Definition

Right Headlamp

Pin No. Wire Diameter/Color Function1 - -

2 0.5 RD/YE Front Right Position Lamp Power Supply

3 0.5 BK Front Right Position Lamp Grounding

4 1.25 RD/WH Low Beam Lamp Signal Output

5 1.25 WH/RD Right Headlamp Power Supply Input

6 1.25 RD High Beam Lamp Signal Output

Tristate Pressure Switch

Pin No. Wire Diameter/Color Function1 0.5 GN/BU A/C Signal Input

2 0.5 PK/WH A/C Signal Output

3 0.5 BK Medium Pressure Signal Grounding

4 0.5 BU/BK Medium Pressure Signal Input

123

456

P08

1

243

P09

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MD/MS201 2014.01

6.1.7-37 6.1.7-37Wiring Harness Connector Terminal View

P10 Wiring Harness Connector Pin Definition

P11 Wiring Harness Connector Pin Definition

Radiator Fan

Pin No. Wire Diameter/Color Function1 2.0 BU/RD Radiator Fan Motor Power Supply

2 2.0 BK Grounding

Front Wiper Motor

Pin No. Wire Diameter/Color Function1 1.25 BU Front Wiper Motor Low Speed Level Signal

2 1.25 BU/RD Front Wiper Motor High Speed Level Signal

3 1.25 YE/GN Front Wiper Motor Power Supply (IG2)

4 1.25 BU/WH Front Wiper Motor Intermittent Level Signal

12

P10

12

34

P11

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6.1.7-38

MD/MS201 2014.01

6.1.7-38Wiring Harness Connector Terminal View

P12 Wiring Harness Connector Pin Definition

P13 Wiring Harness Connector Pin Definition

Electrical Horn

Pin No. Wire Diameter/Color Function1 0.85 BK Grounding

2 0.85 WH/GN Horn Power Supply

Condenser Fan

Pin No. Wire Diameter/Color Function1 2.0 RD/BK Condenser Fan Motor Power Supply

2 2.0 BK Grounding

12

P12

12

P13

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MD/MS201 2014.01

6.1.7-39 6.1.7-39Wiring Harness Connector Terminal View

P14 Wiring Harness Connector Pin Definition

P15 Wiring Harness Connector Pin Definition

Left Headlamp

Pin No. Wire Diameter/Color Function1 - -

2 0.5 RD/YE Front Left Position Lamp Power Supply

3 0.5 BK Front Left Position Lamp Grounding

4 1.25 RD/WH Low Beam Lamp Signal Output

5 1.25 WH/BU Left Headlamp Power Supply Input

6 1.25 RD High Beam Lamp Signal Output

Left Low Beam Regulator Motor

Pin No. Wire Diameter/Color Function1 0.5 BK Left Light Regulator Motor Grounding

2 0.5 YE Left Low Beam Lamp Height Signal

3 0.5 WH/BU Left Light Regulator Motor Power Supply

123

456

P14

3 2 1

P15

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6.1.7-40

MD/MS201 2014.01

6.1.7-40Wiring Harness Connector Terminal View

P16 Wiring Harness Connector Pin Definition

P17 Wiring Harness Connector Pin Definition

Left Turn Lamp

Pin No. Wire Diameter/Color Function1 0.5 GN/RD Left Turn Lamp Power Supply

2 0.5 BK Grounding

Front Washer Motor

Pin No. Wire Diameter/Color Function1 0.5 GN/YE Grounding

2 0.5 YE/BU Front Washer Motor Power Supply

12

P16

1

2

P17

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MD/MS201 2014.01

6.1.7-41 6.1.7-41Wiring Harness Connector Terminal View

P18 Wiring Harness Connector Pin Definition

P19 Wiring Harness Connector Pin Definition

Front Left Fog Lamp

Pin No. Wire Diameter/Color Function1 1.25 LG Front Left Fog Lamp Power Supply

2 1.25 BK Grounding

Brake Fluid Level Switch

Pin No. Wire Diameter/Color Function1 0.3 BK Grounding

2 0.3 RD/BK Brake Oil Level Switch Power Supply

12

P18

12

P19

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6.1.7-42

MD/MS201 2014.01

6.1.7-42Wiring Harness Connector Terminal View

P20 Wiring Harness Connector Pin Definition

P21 Wiring Harness Connector Pin Definition

Brake Lamp Switch

Pin No. Wire Diameter/Color Function1 0.5 GN/YE Brake Lamp Switch Power Supply

2 0.5 GN/WH Brake Lamp Switch Signal Output

Instrument Cluster

Pin No. Wire Diameter/Color Function1 0.3 GN/YE Right Turn Lamp Signal

2 0.3 GN/RD Left Turn Lamp Signal

3 0.3 RD Low Beam Indicator Signal

4 0.3 RD/WH High Beam Indicator Signal

5 0.3 YE/GN Instrument Cluster Power Supply (IG1)

6 - -

1

2

P20

1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16

26 27 28 29 30 31 3217 18 19 20 21 22 23 24 25

P21

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MD/MS201 2014.01

6.1.7-43 6.1.7-43Wiring Harness Connector Terminal View

Pin No. Wire Diameter/Color Function7 0.5 GN/BK Instrument Cluster Power Supply (IG1)

8 0.5 WH Instrument Cluster Power Supply (B+)

9 0.5 BK Instrument Cluster Signal Grounding

10 0.3 YE/RD Fuel Level Sensor Signal

11 0.3 GN Vehicle Speed Signal Input

12 0.3 WH/BU Speed Sensor Signal

13 0.3 YE/WH Coolant Temperature Sensor Signal

14 - -

15 - -

16 - -

17 0.3 RD/YE Background Lamp Power Supply

18 0.5 BK Lighting Grounding

19 0.3 GY Rear Fog Lamp Indication Signal

20 0.3 LG Front Fog Lamp Indication Signal

21 0.3 BK/RD Door Open Indication Signal

22 0.3 GY/BK Seat Belt Unfastened Warning Signal

23 0.3 YE/BK Engine Oil Pressure Signal

24 0.3 WH/RD Battery Charging Indication Signal

25 - -

26 - -

27 0.3 RD/BK Brake Fluid Level & Parking Brake Indication Signal

28 0.3 VT/YE Engine Fault Indication Signal

29 - -

30 - -

31 - -

32 - -

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6.1.7-44

MD/MS201 2014.01

6.1.7-44Wiring Harness Connector Terminal View

P22 Wiring Harness Connector Pin Definition

P23 Wiring Harness Connector Pin Definition

Diode

Pin No. Wire Diameter/Color Function1 0.5 LG/RD A/C Load Signal Output

2 0.5 PK/WH A/C Load Signal

Diode A

Pin No. Wire Diameter/Color Function1 0.5 RD/YE High Beam ON Signal Input

2 0.5 RD High Beam ON Signal Output

1

2

P22

1

2

P23

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MD/MS201 2014.01

6.1.7-45 6.1.7-45Wiring Harness Connector Terminal View

P24 Wiring Harness Connector Pin Definition

P25 Wiring Harness Connector Pin Definition

Diode B

Pin No. Wire Diameter/Color Function1 0.5 RD/YE Low Beam ON Signal Input

2 0.5 RD/WH Low Beam ON Signal Output

Hazard Warning Lamp Switch

Pin No. Wire Diameter/Color Function1 0.85 YE/GN Hazard Warning Lamp Power Supply Input

2 0.5 GN/YE Right Turn Lamp Power Supply Output

3 0.5 GN/RD Left Turn Lamp Power Supply Output

4 0.5 BK Background Lamp Grounding

5 0.5 RD/YE Hazard Warning Lamp & Background Lamp Power Supply

6 0.85 YE Turn Lamp Power Supply Input (IG1)

7 0.85 RD/BK Turn Lamp Power Supply Input (B+)

8 0.85 GN Turn Lamp Power Supply Output

1

2

P24

123

478 56

P25

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6.1.7-46

MD/MS201 2014.01

6.1.7-46Wiring Harness Connector Terminal View

P26 Wiring Harness Connector Pin Definition

P27 Wiring Harness Connector Pin Definition

A/C Controller

Pin No. Wire Diameter/Color Function1 - -

2 0.5 PK/BK A/C Switch Signal

3 0.5 GN/BU A/C Output

4 0.5 BK/WH A/C Switch Indicator Power Supply

5 0.5 RD/YE Background Lamp Power Supply

6 2.0 PK/BU 3rd Air Volume

7 2.0 YE 2nd Air Volume

8 2.0 PK 1st Air Volume

9 0.5 PK/WH Air Volume ON Signal

10 2.0 BK Grounding

Flasher Relay

Pin No. Wire Diameter/Color Function1 0.85 YE/GN Turn Lamp Combination Switch Signal Input

2 0.85 GN Turn Lamp Relay Power Supply

3 0.85 BK Grounding

12345

678910

P26

1

23

P27

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MD/MS201 2014.01

6.1.7-47 6.1.7-47Wiring Harness Connector Terminal View

P28 Wiring Harness Connector Pin Definition

P29 Wiring Harness Connector Pin Definition (MS201)

Heater Motor

Pin No. Wire Diameter/Color Function1 2.0 RD/GN Heater Motor Power Supply

2 2.0 PK/BU Heater Motor Signal Output

Central Lock Controller

Pin No. Wire Diameter/Color Function1 1.25 RD/WH Central Lock Controller Power Supply (B+)

2 1.25 BK Central Lock Controller Grounding

3 - -

4 - -

5 1.25 WH/BK Central Lock Controller Power Supply (ACC)

6 0.5 GN/YE Right Turn Lamp

7 0.5 GN/RD Left Turn Lamp

8 0.85 WH Door Unlocking Power Supply

9 0.85 BU Door Locking Power Supply

10 0.5 BK/RD Door Signal Switch

1

2

P28

12345

12 11 10 9 8 7 6

P29

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6.1.7-48

MD/MS201 2014.01

6.1.7-48Wiring Harness Connector Terminal View

P30 Wiring Harness Connector Pin Definition

Pin No. Wire Diameter/Color Function11 0.5 YE Locking Switch Signal A

12 0.5 WH/YE Locking Switch Signal B

Combination Switch (Lighting)

Pin No. Wire Diameter/Color Function1 0.5 RD/YE Fog Lamp Power Supply

2 0.5 GY Rear Fog Lamp Power Supply Output

3 0.5 LG/RD Front Fog Lamp Switch Signal Output

4 - -

5 0.5 YE/RD Position Lamp & Background Lamp Power Supply Input

6 - -

7 2.0 BK Grounding

8 0.5 RD/YE Position Lamp & Background Lamp Power Supply Output

9 1.25 RD High Beam Signal

10 1.25 RD/WH Low Beam Signal

11 0.5 GN/YE Right Turn Lamp

12 0.5 YE/GN Turn Lamp Power Supply

13 0.5 GN/RD Left Turn Lamp

561213 7891011

1234

P30

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MD/MS201 2014.01

6.1.7-49 6.1.7-49Wiring Harness Connector Terminal View

P31 Wiring Harness Connector Pin Definition

P32 Wiring Harness Connector Pin Definition

Ignition switch

Pin No. Wire Diameter/Color Function1 1.25 BU Ignition switch ACC

2 3.0 YE/BK Ignition switch IG1

3 3.0 WH/GN Ignition Switch Power Supply 1

4 3.0 RD/BK Ignition Switch Power Supply 2

5 3.0 BK/BU Ignition switch IG2

6 2.0 BK/YE Ignition switch ST

Horn Switch

Pin No. Wire Diameter/Color Function1 0.5 YE Horn Signal

123

456

P31

1

P32

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6.1.7-50

MD/MS201 2014.01

6.1.7-50Wiring Harness Connector Terminal View

P33 Wiring Harness Connector Pin Definition

P34 Wiring Harness Connector Pin Definition

Combination Switch (Wiper)

Pin No. Wire Diameter/Color Function1 - -

2 1.25 BU/RD Front Wiper Motor High Speed Level Signal Output

3 1.25 YE/GN Wiper Combination Switch Power Supply (IG1)

4 1.25 BU Front Wiper Motor Low Speed Level Signal Output

5 1.25 BU/WH Front Wiper Motor Intermittent Level Signal Output

6 1.25 BK Grounding

7 0.5 GN/YE Front Washer Motor Signal

8 - -

9 - -

10 - -

Radio

Pin No. Wire Diameter/Color Function1 0.5 WH Radio Power Supply (+B)

2 0.5 BU/RD Front Right Speaker Positive

110 23456789

P33

123

478 56

P34

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MD/MS201 2014.01

6.1.7-51 6.1.7-51Wiring Harness Connector Terminal View

P35 Wiring Harness Connector Pin Definition

Pin No. Wire Diameter/Color Function3 0.5 RD Front Left Speaker Positive

4 0.85 BK Radio Grounding

5 0.85 WH/BK Radio Power Supply (ACC)

6 0.5 RD/YE Background Lamp Power Supply

7 0.5 BU/BK Front Right Speaker Negative

8 0.5 RD/BK Front Left Speaker Negative

DLC

Pin No. Wire Diameter/Color Function1 - -

2 - -

3 - -

4 - -

5 - -

6 - -

7 - -

8 0.5 PK/BU DLC Power Supply

9 - -

10 - -

11 - -

12 0.5 BK Grounding

13 0.5 BK Grounding

14 - -

15 0.5 LG/WH K-line

16 - -

12345678

910111213141516

P35

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6.1.7-52

MD/MS201 2014.01

6.1.7-52Wiring Harness Connector Terminal View

P36 Wiring Harness Connector Pin Definition

P37 Wiring Harness Connector Pin Definition

Cigarette Lighter Negative

Pin No. Wire Diameter/Color Function1 1.25 BK Grounding

Cigarette Lighter Positive

Pin No. Wire Diameter/Color Function1 1.25 WH/BK Cigarette Lighter Power Supply

1

P36

1

P37

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MD/MS201 2014.01

6.1.7-53 6.1.7-53Wiring Harness Connector Terminal View

P38 Wiring Harness Connector Pin Definition

P39 Wiring Harness Connector Pin Definition

Governor Resistor

Pin No. Wire Diameter/Color Function1 2.0 YE Heater Motor Medium Speed Level Output

2 2.0 PK Heater Motor Low Speed Level Output

3 - -

4 2.0 PK/BU Heater Motor High Speed Level Output

Evaporator Thermistor

Pin No. Wire Diameter/Color Function1 0.5 BU/RD Evaporator Thermistor Internal Grounding

2 0.5 LG/BK Evaporator Thermistor Signal

12

34

P38

12

P39

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6.1.7-54

MD/MS201 2014.01

6.1.7-54Wiring Harness Connector Terminal View

P41 Wiring Harness Connector Pin Definition

Lighting Power Control Switch

Pin No. Wire Diameter/Color Function1 0.5 BK Lighting Control Grounding

2 0.5 WH/BU Lighting Control Power Supply

3 0.5 BK Background Lamp Grounding

4 0.5 BN Right Low Beam Lamp Height Signal

5 0.5 YE Left Low Beam Lamp Height Signal

6 0.5 RD/YE Background Lamp Power Supply

12

3456

P41

Page 285: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

MD/MS201 2014.01

6.1.7-55 6.1.7-55Wiring Harness Connector Terminal View

Floor Wiring Harness Connector (S--)

S01 Wiring Harness Connector Pin Definition

S02 Wiring Harness Connector Pin Definition

Fuel Pump

Pin No. Wire Diameter/Color Function1 0.5 BK/YE Fuel Level Sensor Grounding

2 1.25 BK Fuel Pump Grounding

3 0.5 YE/RD Fuel Level Sensor Power Supply

4 1.25 BU/WH Fuel pump Power Supply

Front Right Door Signal Lamp Switch

Pin No. Wire Diameter/Color Function1 0.5 BK/RD Front Right Door Signal Lamp Switch Signal

1

2

3

4

S01

1

S02

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6.1.7-56

MD/MS201 2014.01

6.1.7-56Wiring Harness Connector Terminal View

S03 Wiring Harness Connector Pin Definition

S04 Wiring Harness Connector Pin Definition

Seat Belt Switch

Pin No. Wire Diameter/Color Function1 0.5 BK Seat Belt Switch Grounding

2 0.5 GY/BK Seat Belt Switch Power Supply

Front Left Door Signal Lamp Switch

Pin No. Wire Diameter/Color Function1 0.5 BK/RD Front Left Door Signal Lamp Switch Signal

1

2

S03

1

S04

Page 287: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay

MD/MS201 2014.01

6.1.7-57 6.1.7-57Wiring Harness Connector Terminal View

S05 Wiring Harness Connector Pin Definition

Rear Right Combination Lamp

Pin No. Wire Diameter/Color Function1 0.5 RD/YE Rear Right Position Lamp Power Supply

2 0.5 GN/RD Rear Right Turn Lamp Power Supply

3 0.5 GY Rear Right Fog Lamp Power Supply

4 0.5 GN/WH Rear Right Brake Lamp Power Supply

5 0.5 RD Rear Right Backup Lamp Power Supply

6 1.25 BK Rear Right Combination Lamp Grounding

123

6 5 4

S05

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6.1.7-58

MD/MS201 2014.01

6.1.7-58Wiring Harness Connector Terminal View

S06 Wiring Harness Connector Pin Definition

S07 Wiring Harness Connector Pin Definition

Right License lamp

Pin No. Wire Diameter/Color Function1 0.5 RD/YE License lamp Power Supply

2 0.5 BK Grounding

Rear Left Combination Lamp

Pin No. Wire Diameter/Color Function1 0.5 RD/YE Rear Left Position Lamp Power Supply

2 0.5 GN/YE Rear Left Turn Lamp Power Supply

3 0.5 GY Rear Left Fog Lamp Power Supply

4 0.5 GN/WH Rear Left Brake Lamp Power Supply

5 0.5 RD Rear Left Backup Lamp Power Supply

6 1.25 BK Rear Left Combination Lamp Grounding

1

2

S06

123

6 5 4

S07

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MD/MS201 2014.01

6.1.7-59 6.1.7-59Wiring Harness Connector Terminal View

S08 Wiring Harness Connector Pin Definition

S09 Wiring Harness Connector Pin Definition

Rear Left License Lamp

Pin No. Wire Diameter/Color Function1 0.5 RD/YE License lamp Power Supply

2 0.5 BK Grounding

Vehicle Speed Sensor

Pin No. Wire Diameter/Color Function1 0.5 YE/BN Vehicle Speed Sensor Power Supply

2 0.5 BK Grounding

3 0.5 GN Vehicle Speed Sensor Signal

1

2

S08

1 2 3

S09

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6.1.7-60

MD/MS201 2014.01

6.1.7-60Wiring Harness Connector Terminal View

S10 Wiring Harness Connector Pin Definition

S11 Wiring Harness Connector Pin Definition (MD201)

Rear Oxygen Sensor

Pin No. Wire Diameter/Color Function1 0.5 WH/RD Rear Oxygen Sensor Heating Signal

2 0.5 YE Rear Oxygen Sensor Signal

3 1.25 RD/GN Rear Oxygen Sensor Heating Power Supply

4 0.5 YE/GN Rear Oxygen Sensor Grounding

Backup Lamp Switch

Pin No. Wire Diameter/Color Function1 0.5 YE/BN Backup Lamp Power Supply Input

2 0.5 RD Backup Lamp Power Supply Output

12

34

S10

21

S11

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MD/MS201 2014.01

6.1.7-61 6.1.7-61Wiring Harness Connector Terminal View

S11a Wiring Harness Connector Pin Definition (MS201)

S12 Wiring Harness Connector Pin Definition (MD201)

Backup Lamp Switch

Pin No. Wire Diameter/Color Function1 0.5 YE/BN Backup Lamp Power Supply Input

2 0.5 RD Backup Lamp Power Supply Output

Starting Motor Switch

Pin No. Wire Diameter/Color Function1 2.0 BK/YE Starting Motor Switch Power Supply

21

S11a

1

S12

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6.1.7-62

MD/MS201 2014.01

6.1.7-62Wiring Harness Connector Terminal View

S12a Wiring Harness Connector Pin Definition (MS201)

S13 Wiring Harness Connector Pin Definition

Starting Motor Switch

Pin No. Wire Diameter/Color Function1 2.0 BK/YE Starting Switch Power Supply

Starting Motor Switch

Pin No. Wire Diameter/Color Function1 15.0 RD Starting Motor Power Supply

1

S12a

1

S13

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MD/MS201 2014.01

6.1.7-63 6.1.7-63Wiring Harness Connector Terminal View

S14 Wiring Harness Connector Pin Definition

S15 Wiring Harness Connector Pin Definition

Parking Brake Switch

Pin No. Wire Diameter/Color Function1 0.5 RD/BK Parking Brake Switch Signal

Battery Positive

Pin No. Wire Diameter/Color Function1 15.0 RD Battery Power Supply

1

S14

1

S15

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6.1.7-64

MD/MS201 2014.01

6.1.7-64Wiring Harness Connector Terminal View

S16 Wiring Harness Connector Pin Definition

Battery Negative

Pin No. Wire Diameter/Color Function1 15.0 BK Battery Grounding

S16

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MD/MS201 2014.01

6.1.7-65 6.1.7-65Wiring Harness Connector Terminal View

Door Wiring Harness Connector (D--)

D01 Wiring Harness Connector Pin Definition (MS201)

D02 Wiring Harness Connector Pin Definition

Front Left Door Fastener

Pin No. Wire Diameter/Color Function1 0.5 WH/YE Locking Switch Signal A

2 0.5 BK Locking Switch Grounding

3 0.5 YE Locking Switch Signal B

4 0.85 WH Front Left Door Lock Motor Unlocking Power Supply

5 - -

6 0.85 BU Front Left Door Lock Motor Locking Power Supply

Front Left Door Power Window Switch

Pin No. Wire Diameter/Color Function1 2.0 BK Grounding

2 2.0 RD/WH Passenger Side Door Glass Up Control

3 2.0 GN/WH Passenger Side Door Glass Down Control

4 2.0 RD Driver Side Door Glass Up Power Supply

5

1 2 3

4 6

D01

57

23

6

1

8 4

D02

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6.1.7-66

MD/MS201 2014.01

6.1.7-66Wiring Harness Connector Terminal View

D03 Wiring Harness Connector Pin Definition

D04 Wiring Harness Connector Pin Definition

Pin No. Wire Diameter/Color Function5 - -

6 2.0 RD/YE Front Right Door Control Power Supply Output

7 2.0 WH/BN Power Window Main Switch Power Supply

8 2.0 GN Driver Side Door Glass Down Power Supply

Front Left Door Power Window Motor

Pin No. Wire Diameter/Color Function1 2.0 GN Driver Side Door Glass Down Power Supply

2 2.0 RD Driver Side Door Glass Up Power Supply

Front Left Speaker

Pin No. Wire Diameter/Color Function1 0.5 RD/BK Front Left Speaker Negative

2 0.5 RD Front Left Speaker Positive

2 1

D03

1

2

D04

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MD/MS201 2014.01

6.1.7-67 6.1.7-67Wiring Harness Connector Terminal View

D05 Wiring Harness Connector Pin Definition

D06 Wiring Harness Connector Pin Definition

Front Right Speaker

Pin No. Wire Diameter/Color Function1 0.5 BU/BK Front Right Speaker Negative

2 0.5 BU/RD Front Right Speaker Positive

Front Right Door Power Window Motor

Pin No. Wire Diameter/Color Function

1 2.0 GN Passenger Side Door Glass Down Power Supply

2 2.0 RD Passenger Side Door Glass Up Power Supply

1

2

D05

2 1

D06

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6.1.7-68

MD/MS201 2014.01

6.1.7-68Wiring Harness Connector Terminal View

D07 Wiring Harness Connector Pin Definition

D08 Wiring Harness Connector Pin Definition (MS201)

Front Right Door Power Window Switch

Pin No. Wire Diameter/Color Function1 2.0 RD Passenger Side Door Glass Up Power Supply

2 2.0 GN/WH Passenger Side Glass Down Signal Controlled by Driver Side

3 2.0 GN Passenger Side Door Glass Down Power Supply

4 2.0 BK Grounding

5 - -

6 2.0 RD/WH Passenger Side Glass Up Signal Controlled by Driver Side

7 2.0 RD/YE Front Right Door Control Power Supply

8 2.0 BU/YE Front Right Door Power Window Switch Power Supply

Front Right Door Fastener

Pin No. Wire Diameter/Color Function1 0.85 BU Front Right Door Lock Motor Locking Power Supply

2 0.85 WH Front Right Door Lock Motor Unlocking Power Supply

57

23

6

1

8 4

D07

2 1

D08

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MD/MS201 2014.01

6.1.7-69 6.1.7-69Wiring Harness Connector Terminal View

D09 Wiring Harness Connector Pin Definition (MS201)

D10 Wiring Harness Connector Pin Definition (MS201)

Rear Left Door Fastener

Pin No. Wire Diameter/Color Function

1 0.85 BU Rear Left Door Lock Motor Locking Power Supply

2 0.85 WH Rear Left Door Lock Motor Unlocking Power Supply

Rear Right Door Fastener

Pin No. Wire Diameter/Color Function

1 0.85 BU Rear Right Door Lock Motor Locking Power Supply

2 0.85 WH Rear Right Door Lock Motor Unlocking Power Supply

2 1

D09

2 1

D10

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6.1.7-70

MD/MS201 2014.01

6.1.7-70Wiring Harness Connector Terminal View

Roof Wiring Harness Connector (L--)

L01 Wiring Harness Connector Pin Definition

Map Lamp

Pin No. Wire Diameter/Color Function1 0.5 BK Map Lamp Grounding

2 0.5 WH Map Lamp Power Supply

3 0.5 BK/RD Map Lamp DR Position Signal Output

1 2 3

L01

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MD/MS201 2014.01

6.1.8-1 6.1.8-1Abbreviation

Abbreviation List

Abbreviation English Full Name Chinese NameA/C Air Conditioning 空调

AAT Ambient Air Temperature 大气温度

ABS Anti-lock Brake System 防抱死制动系统

AM/FM Amplitude Modulation/ Frequency Modulation 调幅 / 调频

APP Accelerator Pedal Position 加速踏板位置

ASR Acceleration Slip Regulation 加速防滑控制系统

AT Automatic Transmission 自动变速器

ATF Automatic Transmission Fluid 自动变速器油

BCM Body Control Module 车身控制模块

CAN Controller Area Network 控制器局域网

CD Compact Disc CD

CHMSL Center High Mounted Stop Lamp 中央高位制动灯

CKP Crankshaft Position Sensor 曲轴位置传感器

CMP Camshaft Position Sensor 凸轮轴位置传感器

CRK Crank 曲轴

DDM Driver Door Module 驾驶员门控模块

DLC Data Link Connector 诊断接口

DOHC Double Overhead Camshaft 双顶置凸轮轴

DTC Diagnostic Trouble Code 故障代码

DVD Digital Video Disk DVD

EBD Electric Brakeforce Distribution 电子制动力分配

ECM Engine Control Module 发动机控制模块

ECT Engine Coolant Temperature 发动机冷却液温度

EGR Exhaust-Gas Recirculation 废气再循环

EOBD European On Board Diagnostic 欧洲车载诊断系统

ESP Electronic Stability Program 电子稳定程序

ETC Electronic Throttle Control 电子节气门控制

EVAP Evaporative Emission Control System 燃油蒸发排放系统

FWD Front Wheel Drive 前轮驱动

GPS Global Positioning System 全球定位系统

GVM Gross Vehicle Mass 车辆总重量

HCU Hydraulic Control Unit 液压控制单元

HFM Hands Free Module 免提电话模块

HID High Intensity Discharge 高强度放电

HO2S Heated Oxygen Sensor 氧传感器

HVAC Heating, Ventilation and Air Conditioning 暖风、通风和空调总成

I/P Instrument Panel 仪表板

6.1.8 Abbreviation

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6.1.8-2

MD/MS201 2014.01

6.1.8-2Abbreviation

Abbreviation English Full Name Chinese NameIAC Idle Air Control Valve 怠速空气控制阀

IAT Intake Air Temperature 进气温度

ICU Integrated Control Unit 集成控制单元

IPC Instrument Panel Cluster 组合仪表

ISO International Standards Organization 国际标准化组织

ISS Input Shaft Speed 输入轴转速传感器

KS Knock Sensor 爆震传感器

LED Light Emitting Diode 发光二极管

LF Left Front 左前

LIN Local Interconnect Network 局部互联网络

LR Left Rear 左后

MAF Mass Air Flow 质量空气流量

MAP Manifold Absolute Pressure 进气歧管绝对压力

MIL Malfunction Indicator Lamp 故障指示灯

MP3 MPEG Audio Layer 3 MP3

MT Manual Transmission 手动变速器

MTC Manual Temperature Control 手动温度控制

MY Model Year 车型年款

OBD-II On Board Diagnostic II 第二代车载诊断系统

OEM Original Equipment Manufacturer 原始设备制造商

PAM Parking Aid Module 停车辅助模块

PCV Positive Crankcase Ventilation 曲轴箱强制通风

PDC Power Distribution Center 配电中心

PDM Passenger Door Mudule 乘客门控模块

PIN Personal Identification Number 个人身份号码

PWM Pulse Width Modulation 脉宽调制

RF Right Front 右前

RR Right Rear 右后

SAE Society of Automotive Engineers 美国汽车工程师学会

SAS Steering Angle Sensor 转向角度传感器

SCCM Steering Column Control Module 转向管柱控制模块

SDM Supplemental Diagnostic Module 安全气囊控制模块

SFI Sequential Fuel Injection 顺序燃油喷射

SOHC Single Overhead Camshaft 单顶置凸轮轴

SRI Service Reminder Indicator 维修提示指示灯

SRS Supplemental Restraint System 安全气囊系统

TCC Torque Converter Clutch 变矩器离合器

TCM Transmission Control Module 变速器控制模块

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MD/MS201 2014.01

6.1.8-3 6.1.8-3Abbreviation

Caution:For abbreviations not in this list, please refer to the MD/MS201 Service Manual.

Abbreviation English Full Name Chinese NameTIR Total Indicator Reading 百分表总读数

TPMS Tire Pressure Monitoring System 轮胎压力监控系统

TPS Throttle Position Switch Sensor 节气门位置开关传感器

TRS Transmission Range Sensor 变速器档位传感器

TSB Technical Service Bulletin 技术服务公报

TWC Three-way Catalyst 三元催化转换剂

VFD Vacuum Fluorescent Display 真空荧光显示器

VIN Vehicle Identification Number 车辆识别码

VSS Vehicle Speed Sensor 车速传感器

WSS Wheel Speed Sensor 轮速传感器

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Page 306: Table of Contentstigertruck.com/wp-content/uploads/2015/12/MS201_Wiring Diagram.pdffuses in the main fuse and relay box; Code IF represents fuses in instrument panel fuse and relay