calibration SUZUKI SWIFT 2008 2.G Service User Guide
Page 302 of 1496
Downloaded from www.Manualslib.com manuals search engine 1D-17 Engine Mechanical: 
Engine Assembly Removal and InstallationS7RS0B1406011
NOTE
After replacing electric throttle body 
assembly, perform calibration of throttle 
valve referring to “Electric Throttle Body 
System Calibration in Section 1C”.
 
Removal1) Relieve fuel pressure according to “Fuel Pressure  Relief Procedure in Section 1G”.
2) Disconnect negative and pos itive cable at battery.
3) Remove battery and tray.
4) Remove engine hood after disconnecting windshield  washer hose.
5) Remove right and left side engine under covers.
6) Remove A/C compressor belt by referring to  “Compressor Drive Belt Remo val and Installation in 
Section 7B” or “Compressor Drive Belt Removal and 
Installation in Section 7B”.
7) Drain engine oil, transaxle oil and coolant.
8) Remove cowl top plate referring to “Cowl Top  Components in Section 9K”.
9) Remove air cleaner assembly referring to “Air  Cleaner Components”.
10) With hose connected, detach A/C compressor from  its bracket (A/C model) referring to “Compressor 
Assembly Removal and Installation in Section 7B” or 
“Compressor Assembly Removal and Installation in 
Section 7B”.
CAUTION! 
Suspend removed A/C compressor at a place 
where no damage will be caused during 
removal and installation of engine assembly.
 
11) Remove intake manifold rear stiffener (1) from intake manifold and cylinder block. 12) Disconnect the following electric wires:
• MAP sensor (1)
• ECT sensor (2)
•EGR valve (3)
• CMP sensor (4)
• Electric throttle body assembly (5)
• Ignition coil assembly (6)
• Injectors (7)
• Heated oxygen sensor No. 2 (8) and No. 1 (9)
• Oil control valve (10) 
• Engine oil pressure switch (11)
• CKP sensor (12)
• Knock sensor (13)
• Back up light switch (14)
• Generator (15)
• Starting motor (16)
• Ground terminal (17)  from intake manifold
• Battery ground terminal (18) from exhaust  manifold
• Battery ground cable (19) from transaxle
• Magnet clutch switch of A/C compressor (A/C  model)
• Each wire harness clamps
• Output shaft speed sensor  (VSS) (34) (A/T model)
• Solenoid valve (33) (A/T model)
• Transmission range sensor (32) (A/T model)
• Input shaft speed sensor (31) (A/T model)
13) Remove fuse box from its bracket.
14) Disconnect the following cables: • Gear select control cable (23) (M/T model)
• Gear shift control cable (24) (M/T model)
• A/T select cable (A/T model)
15) Disconnect the following hoses: • Brake booster hose (26) from intake manifold
• Radiator inlet and outlet hoses (20) from each pipe
• Heater inlet and outlet hoses (21) from each pipe
• Fuel feed hoses (22) from fuel feed pipe
• EVAP canister purge valve hose (30) from purge  pipe
• A/T fluid cooler hoses (A/T model)
16) With hose connected, detach clutch operating  cylinder (25). (M/T model)
CAUTION! 
Suspend removed clutch operating cylinder 
at a place where no damage will be caused 
during removal and installation of engine 
assembly.
 
1
I6RS0B141014-01  
Page 469 of 1496
Downloaded from www.Manualslib.com manuals search engine Wheels and Tires:  2D-2
Lower than recommended pressure can cause:
• Tire squeal on turns
• Hard Steering
• Rapid and uneven wear on the edges of the tread
• Tire rim bruises and rupture
• Tire cord breakage
• High tire temperature
• Reduced handling
• High fuel consumption
Replacement Tires
When replacement is necessary, the original equipment 
type tire should be used. Refer to the Tire Placard. 
Replacement tires should be of the same size, load 
range and construction as those originally on the vehicle. 
Use of any other size or type tire may affect ride, 
handling, speedometer / odometer calibration, vehicle 
ground clearance and tire or snow chain clearance to the 
body and chassis.
It is recommended that new tires be installed in pairs on 
the same axle. If necessary to replace only one tire, it 
should be paired with the tire  having the most tread, to 
equalize braking traction.
WARNING! 
Do not mix different types of tires on the 
same vehicle such as radial, bias and bias-
belted tires except in emergencies, because 
handling may be seriously affected and may 
result in loss of control.
 
The metric term for tire infl ation pressure is the kilo 
pascal (kPa). Tire pressures is usually printed in both 
kPa and kgf/cm
2 on the “Tire Placard”.
Metric tire gauges are available from tool suppliers.
The chart, shown the table, converts commonly used 
inflation pressures  from kPa to kgf/cm
2 and psi.
Wheels DescriptionS7RS0B2401002
Wheel Maintenance
Wheel repairs that use welding, heating, or peening are 
not approved. All damaged wheels should be replaced.
Replacement Wheels
Wheels must be replaced if they are bent, dented, have 
excessive lateral or radial runout, air leak through welds, 
have elongated bolt holes, if  lug wheel bolts won’t stay 
tight, or if they are heavily rusted. Wheels with greater 
runout than shown in the following may cause 
objectional vibrations.
Replacement wheels must be equivalent to the original 
equipment wheels in load capacity, diameter, rim with 
offset and mounting configuration. A wheel of improper 
size or type may affect wheel and bearing life, brake 
cooling, speedometer / odometer calibration, vehicle 
ground clearance and tire clearance to body and 
chassis.
How to Measure Wheel Runout
To measure the wheel runout, it is necessary to use an 
accurate dial indicator. The tire may be on or off the 
wheel. The wheel should be  installed to the wheel 
balancer of the like for proper measurement.
Take measurements of both lateral runout “a” and radial 
runout “b” at both inside an d outside of the rim flange. 
With the dial indicator set  in place securely, turn the 
wheel one full revolution slowly and record every reading 
of the indicator.
When the measured runout  exceeds the specification 
and correction by the balancer adjustment is impossible, 
replace the wheel. If the reading is affected by welding, 
paint or scratch, it should be ignored.
Lateral runout limit “a”
: 0.3 mm (0.012 in.)
Radial runout limit “b”
: 0.3 mm (0.012 in.)
kPa kgf/cm2psi
Conversion: 1 psi = 
6.895 kPa 1 kgf/cm
2 = 
98.066 kPa 160 1.6 23
180 1.8 26
200 2.0 29
220 2.2 32
240 2.4 35
260 2.6 38
280 2.8 41
300 3.0 44
I4RS0A240001-01  
Page 496 of 1496
Downloaded from www.Manualslib.com manuals search engine 4-ii Table of Contents
Repair Instructions ..............................................4D-2Parking Brake Inspection and Adjustment ..........4D-2
Parking Brake Cable Removal and Installation ......................................................... 4D-3
Parking Brake Lever Removal and Installation ....4D-3
Specifications .... ...................................................4D-4
Tightening Torque Specifications ........................4D-4
ABS ........................................... .................4E-1
Precautions........................................................... 4E-1
Precautions in Diagnosing Troubles ................... 4E-1
Precautions in On-Vehicle Service...................... 4E-1
Precautions in Hydraulic Unit Operation Check ................................................................ 4E-1
General Description ............................................. 4E-2 ABS Description .................................................. 4E-2
ABS Hydraulic Unit / Control Module Assembly Description ....................................... 4E-2
CAN Communication System Description........... 4E-3
Schematic and Routing Diagram ........................ 4E-4 ABS Schematic ................................................... 4E-4
ABS Wiring Circuit Diagram ................................ 4E-5
Component Location ........... ................................ 4E-7
ABS Components Location ................................. 4E-7
Front Wheel Speed Sensor Components  Location ............................................................ 4E-7
Rear Wheel Speed Sensor Components  Location ............................................................ 4E-8
Diagnostic Information and Procedures ............ 4E-8 ABS Check .......................................................... 4E-8
ABS Warning Light Check................................. 4E-10
EBD Warning Light (Brake Warning Light) Check .............................................................. 4E-10
DTC Check........................................................ 4E-11
DTC Table ......................................................... 4E-11
DTC Clearance ................................................. 4E-12
Scan Tool Data ................................................. 4E-12
ABS Warning Light Does Not Come ON at  Ignition Switch ON .......................................... 4E-13
ABS Warning Light Comes ON Steady ............. 4E-14
EBD Warning Light (Brake Warning Light)  Comes ON Steady .......................................... 4E-15
Serial Data Link Circuit Check .......................... 4E-16
DTC C1021, C1022 / C1025, C1026 / C1031,  C1032 / C1035, C1036:  Right-Front / Left-
Front / Right-Rear / Left-Rear Wheel Speed 
Sensor Circuit or Sensor  Ring ........................ 4E-18
DTC C1041 / C1045 / C1051 / C1055, DTC  C1042 / C1046 / C1052 / C1056: Right-Front 
/ Left-Front / Right-Rear / Left-Rear Inlet 
Solenoid Circuit, Right-Front / Left-Front / 
Right-Rear / Left-Rear Outlet Solenoid 
Circuit .............................................................. 4E-20
DTC C1057: Power Source  Circuit ................... 4E-21
DTC C1061: ABS Pump Motor and/or Motor  Driver Circuit ................................................... 4E-22
DTC C1063: Solenoid Valve Power Supply  Driver Circuit ................................................... 4E-23
DTC C1071: ABS Control Module..................... 4E-24 DTC U1073: Control Module Communication 
Bus Off ............................................................ 4E-25
DTC U1100: Lost Communication with ECM  (Reception Error)............................................. 4E-27
Repair Instructions ............ ................................ 4E-28
ABS Hydraulic Unit Operati on Check................ 4E-28
ABS Hydraulic Unit  / Control Module 
Assembly Components ...... ............................. 4E-29
ABS Hydraulic Unit  / Control Module 
Assembly On-Vehicle Inspection .................... 4E-29
ABS Hydraulic Unit  / Control Module 
Assembly Removal and Inst allation ................ 4E-29
Front / Rear Wheel Speed Sensor On-Vehicle  Inspection ........................................................ 4E-31
Front Wheel Speed Sensor Removal and  Installation ....................................................... 4E-32
Front Wheel Speed Sensor  Inspection ............. 4E-32
Rear Wheel Speed Sensor Removal and  Installation ....................................................... 4E-33
Rear Wheel Speed Sensor  Inspection .............. 4E-34
Front Wheel Encoder On-Veh icle Inspection .... 4E-34
Front wheel Enco der Removal and 
Installation ....................................................... 4E-34
Rear Wheel Encoder On-Veh icle Inspection..... 4E-34
Rear Wheel Encoder Removal and  Installation ....................................................... 4E-34
Specifications ..................... ................................ 4E-35
Tightening Torque Specifications ...................... 4E-35
Special Tools and Equipmen t ........................... 4E-35
Special Tool ...................................................... 4E-35
Electronic Stability Prog ram ...................4F-1
Precautions ........................................................... 4F-1
Precautions in Diagnosing Troubles ................... 4F-1
Precautions in On-Vehicle Service...................... 4F-1
Precautions in Hydraulic Unit Operation Check ................................................................ 4F-1
Precautions in Sensor Calibration ....................... 4F-1
Precautions in Speedometer Test or Other  Tests ................................................................. 4F-2
General Description ............................................. 4F-2 Electronic Stability Program Description ............. 4F-2
Electronic Stability Program  Construction ........... 4F-3
ESP®  Hydraulic Unit / Control Module 
Assembly Description........................................ 4F-5
Warning Lamp, Indicator Lamp Description ........ 4F-6
CAN Communication System Description........... 4F-6
CAN Communication System For Electronic  Stability Program Description ............................ 4F-7
Schematic and Routing Diagram ........................ 4F-8 Electronic Stability Program Schematic .............. 4F-8
Electronic Stability Program Wiring Circuit Diagram............................................................. 4F-9
Component Location ............ ............................. 4F-11
Electronic Stability  Program Component 
Location........................................................... 4F-11
Diagnostic Information and Procedures .......... 4F-12 Electronic Stability Program  System Check ...... 4F-12
ESP®  Warning lamp Check .............................. 4F-14  
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ABS Warning Lamp Check ............................... 4F-14
EBD Warning Lamp (Brake Warning Lamp)  Check .............................................................. 4F-15
DTC Check ....................................................... 4F-15
DTC Table ......................................................... 4F-15
DTC Clearance ................................................. 4F-18
Fail-Safe Table ................ .................................. 4F-19
Scan Tool Data ................................................. 4F-20
Visual Inspection ............................................... 4F-21
ESP ® Warning Lamp Does Not Come ON at 
Ignition Switch ON .......................................... 4F-21
ESP ® Warning Lamp Comes ON Steady......... 4F-22
ABS Warning Lamp Does Not Come ON at  Ignition Switch ON .......................................... 4F-23
ABS Warning Lamp Comes  ON Steady............ 4F-24
EBD Warning Lamp (Brake Warning Lamp)  Comes ON Steady .......................................... 4F-24
Serial Data Link Circuit Check .......................... 4F-26
DTC C1016: Stop Lamp Swit ch Circuit Failure .. 4F-28
DTC C1017 / C1023: Yaw Rate / G Sensor  Assembly Failure ............................................ 4F-29
DTC C1018: Brake Fluid Le vel Switch Failure .. 4F-30
DTC 1020: Master Cylinder Pressure Sensor  Power Supply Failure ...................................... 4F-31
DTC C1021, C1022 / C1025, C1026 / C1031,  C1032 / C1035, C1036: Wheel Speed 
Sensor Circuit or Encode r Failure ................... 4F-32
DTC C1024: Steering  Angle Sensor Circuit 
Failure ............................................................. 4F-34
DTC C1027: ESP ® OFF Switch Circuit 
Failure ............................................................. 4F-34
DTC C1028: Master Cylinder Pressure  Sensor Circuit Failure ....... .............................. 4F-35
DTC C1034: Yaw Rate / G Sensor Assembly  Power Supply Failure ...................................... 4F-36
DTC C1037: Steering Angle Sensor Power  Supply Failure ................................................. 4F-37
DTC C1038: Steering Angle Sensor Detect  Rolling Counter Fa ilure from ESP® Control 
Module ............................................................ 4F-38
DTC C1039: Yaw Rate / G Sensor Assembly  Internal Failure .............. .................................. 4F-39
DTC C1040: Stability Control System  Function Failure .............................................. 4F-39
DTC C1041 / C1042 / C1043 / C1044 / C1045  / C1046 / C1051 / C1052 / C1053 / C1054 / 
C1055 / C1056: Solenoid Circuit Failure ......... 4F-40
DTC C1057: ESP ® Control Module Power 
Supply Circuit Failure .... .................................. 4F-41
DTC C1061: Pump Motor and/or Motor Driver  Circuit Failure .................................................. 4F-42
DTC C1063: Solenoid Valve Power Supply  Driver Circuit Failure ....................................... 4F-43
DTC 1071: ESP ® Control Module Internal 
Defect.............................................................. 4F-44 DTC C1073: Lost Communication With Yaw 
Rate / G Sensor Assembly .............................. 4F-45
DTC C1075 / 1076 / 1078: Sensor Calibration  Incomplete.......................... ............................. 4F-46
DTC C1090: Invalid  Communication with 
ECM ................................................................ 4F-47
DTC C1091 / C1094: ECM Data in CAN Line  Failure / Invalid Torque Control 
Communication with ECM .. ............................. 4F-48
DTC U1073: Control Module Communication  Bus Off ............................................................ 4F-49
DTC U1100: Lost Communication with ECM  (Reception Error)............................................. 4F-50
DTC U1126: Lost Communication with  Steering Angle Sensor (Reception Error)........ 4F-51
DTC U1140: Lost Communication with BCM  (Reception Error)............................................. 4F-52
Repair Instructions ........... ................................. 4F-54
ESP®  Hydraulic Unit Operation Check ............. 4F-54
Sensor Calibration............................................. 4F-54
ESP®  Hydraulic Unit / Control Module 
Assembly On-Vehicle Inspection .................... 4F-55
ESP ® Hydraulic 
 Unit / Control Module 
Assembly Removal and Inst allation ................ 4F-56
Front / Rear Wheel Speed Sensor On-Vehicle  Inspection ........................................................ 4F-57
Front Wheel Speed Sensor Removal and  Installation ....................................................... 4F-58
Front Wheel Speed Sensor  Inspection ............. 4F-59
Rear Wheel Speed Sensor Removal and  Installation ....................................................... 4F-59
Rear Wheel Speed Sensor  Inspection .............. 4F-60
Front Wheel Encode r On-Vehicle Inspection .... 4F-61
Front Wheel Encoder Removal and  Installation ....................................................... 4F-61
Rear Wheel Encoder On-Veh icle Inspection..... 4F-61
Rear Wheel Encoder Removal and  Installation ....................................................... 4F-61
Master Cylinder Pressure  Sensor On-Vehicle 
Inspection ........................................................ 4F-61
Yaw Rate / G Sensor Assembly On-Vehicle  Inspection ........................................................ 4F-62
Yaw Rate / G Sensor Assembly Removal and  Installation ....................................................... 4F-63
Yaw Rate / G Sensor Inspection ....................... 4F-64
Steering Angle Sensor On-Vehicle Inspection .. 4F-64
Steering Angle Sensor Removal and  Installation ....................................................... 4F-65
Steering Angle Sensor Inspection ..................... 4F-65
ESP®  OFF Switch Removal an d Installation .... 4F-65
ESP®  OFF Switch Inspection ........................... 4F-65
Specifications .................... ................................. 4F-66
Tightening Torque Specifications ...................... 4F-66
Special Tools and Equipmen t ........................... 4F-66
Special Tool ...................................................... 4F-66  
Page 575 of 1496
Downloaded from www.Manualslib.com manuals search engine Electronic Stability Program:  4F-1
Brakes
Electronic Stability Program
Precautions
Precautions in Diagnosing TroublesS7RS0B4600001
To ensure that the trouble diagnosis is done accurately 
and smoothly, observe the following and follow 
“Electronic Stability Program System Check”.
• Diagnostic information stored in ESP® control module 
memory can be cleared as well as checked by using 
SUZUKI scan tool. Before us ing scan tool, read its 
Operator’s (Instruction) Manual carefully to have good 
understanding as to what functions are available and 
how to use it.
• If the vehicles was operated in any of the following  ways, ESP ® warning lamp may light momentarily but 
this does not indicate anything abnormal in ESP ®.
– The vehicle was driven with parking brake pulled.
– The vehicle was driven with brake dragging.
– The vehicle was stuck in mud, sand, etc.
– Wheel spin occurred while driving.
– Wheel(s) was rotated while the vehicle was jacked  up.
• Be sure to use the trouble diagnosis procedure as  described in “Electronic  Stability Program System 
Check”. Failure to follow it may resu lt in incorrect 
diagnosis. (Some other diagnosis trouble code may 
be stored by mistake in the memory of ESP ® control 
module during inspection.)
• When disconnecting ESP ® control module connector 
(1), pull down the lock lever (2) of connector.
When connecting, set the connector on ESP ® 
hydraulic unit / control module assembly and pull up 
the lock lever (2) until it locks. • Communication of ECM, BCM, ESP
® control module, 
keyless start control module (if equipped), steering 
angle sensor and combination meter is established by 
CAN (Controller Area Network).
Therefore, be sure to read “Precautions for Installing 
Mobile Communication Equipment in Section 00” 
before inspection and handling CAN communication 
line.
Precautions in On-Vehicle ServiceS7RS0B4600002
When connector is connected to ESP ® hydraulic unit / 
control module assembly, do not disconnect connectors 
of sensors with ignition switch ON. Otherwise, DTC will 
be set in ESP ® control module.
Precautions in Hydraulic Unit Operation CheckS7RS0B4600003
ESP®  hydraulic unit / control module assembly function 
is checked by correct wheel lock / release condition 
when brake pressure is pressurized / depressurized 
using SUZUKI scan tool. The hydraulic unit operation 
check referring to “ESP ® Hydraulic Unit Operation 
Check” should be performed to confirm the correct brake 
pipe connection in the following cases.
• ESP®  hydraulic unit / contro l module assembly was 
replaced.
• Brake pipe and/or hose were replaced.
Precautions in Sensor CalibrationS7RS0B4600004
ESP ® control module stores calibration points data of yaw rate / G sensor assembly and master cylinder pressure 
sensor. Steering angle sensor stores calibration point data of itself.
TCS and stability control system use these sets of data.
When the following operation is done, sensor calibration should  be performed since the original calibration points are 
deleted.
[A]: Disconnect [C]: Pull down to disconnect
[B]: Connect [D]: Pull up to connect
21
C D
[A]
[B]
I4RH01450001-01  
Page 576 of 1496
Downloaded from www.Manualslib.com manuals search engine 4F-2 Electronic Stability Program: 
Perform sensor calibration according to “Sensor Calibration”.
Precautions in Speedometer Test or Other TestsS7RS0B4600005
When performing speedometer or other tests using speedometer tester or chassis dynamometer, ESP® function must 
be deactivated by ESP ® OFF switch or using SUZUKI scan to ol to complete the tests correctly. 
When using SUZUKI scan tool, set to the “MISC. TEST” mode to stop the ESP ® function. Refer to SUZUKI scan tool 
operator's manual for further details.
General Description
Electronic Stability Program DescriptionS7RS0B4601006
Electronic Stability Program (ESP ®) is an auxiliary function  to enable the vehicle to av oid a danger safely while the 
vehicle is running, stopping or turning.
Electronic Stability Program (ESP ®) consists of following functions.
ESP ® is a registered trademark of Daimler Chrysler AG.
Antilock Brake System (ABS)
This system prevents tire locking which may occur when br ake is applied suddenly or on slippery roads. With this 
function, as the vehicle body is kept in the stable state an d tires unlocked, the driver can avoid any obstacle by turning 
the steering wheel.
Electronic Brake force Distribution (EBD)
This function distributes braking force of front and rear  wheels properly according to the vehicle load condition.
With this function, the braking force of the front and rear  wheels is controlled for the optimum effect to secure the 
maximum braking force regardless of the loadage.
Traction Control System (TCS)
This system controls the engine and brake to prevent the dr iving wheels from spinning at the time of starting and 
accelerating. Particularly, this fu nction is helpful for safe driving on muddy or icy roads. When ESP ® control module 
detects wheel spinning using information from the yaw rate  sensor and wheel speed sensor, it lower the engine torque 
by closing the electronic controlled thro ttle and controlling ignition. At the same time, brake is applied to the spinning 
tire.
Stability Control
This function controls the vehicle body  in the stable state by controlling the engine and braking so as to prevent the 
vehicle from over-steering or under-steering while turning.
When under-steering occurs, this function lowers the engine torque and applies brake to the inner rear wheel in the 
vehicle forward direction so as to pr event the vehicle from moving outward.
When over-steering occurs, this function applies brake to the  outer front wheel in the vehicle forward direction so as to 
prevent the vehicle from moving inward. Sensor Procedures required calibration
Steering angle sensor • Power is not su pplied to steering angle sensor. (battery, fuse and/or connector is 
removed.)
• Steering angle sensor is replaced.
• Power is not supplied to ESP ® control module. (battery,  fuse and/or connector is 
removed.)
• ESP®  hydraulic unit / control module assembly is replaced.
Master cylinder pressure sensor • ESP®  hydraulic unit / control module assembly is removed or replaced.
Yaw rate / G sensor assembly • Yaw rate / G sensor assembly is removed or replaced.
• ESP® hydraulic unit / control module assembly is replaced.  
Page 580 of 1496
Downloaded from www.Manualslib.com manuals search engine 4F-6 Electronic Stability Program: 
Warning Lamp, Indicator Lamp DescriptionS7RS0B4601003
There are five types of warning lamp and indicator lamp in instrument cluster, which are controlled by ESP ® control 
module. They give warning / indication to driver by  changing the modes light ON / blinking / light OFF.
The followings are the condition and operation of warning lamps and indicator lamps.
CAN Communication System DescriptionS7RS0B4601004
Refer to “CAN Communication System  Description in Section 1A” for CAN communication system description. ESP ® 
control module communicates control data with each control module as follows.
ESP ® Control Module Transmission Data
1
245
3
I6RS0B460002-01
1. ESP ® warning lamp 3. ABS warning lamp 5. ESP ® OFF lamp
2. EBD warning lamp (brake warning lamp) 4. SLIP indicator lamp
Warning lamp / Indicator  lamp Condition and operation
ABS warning lamp If ABS has abnor mality, the lamp turns “ON”.
EBD warning lamp  (brake warning 
lamp) • If EBD system has abnormality, the lamp turns “ON”.
• If bake fluid level in reservoir is lower 
than minimum level, the lamp turns “ON”.
• Parking brake switch is ON, the lamp turns “ON”.
ESP ® warning lamp If ESP ® systems has abnormality, the lamp turns “ON”.
SLIP indicator lamp • If stability cont rol system and traction control system is active, the lamp blinks 
at 5 Hz.
• If Steering angle sensor calibration is incompleted, the lamp blinks at 1 Hz.
ESP ® OFF lamp • If ESP ® OFF switch is turned “ON”, the ESP ® OFF lamp light  up. When it is 
“ON”, TCS and stability control system functions are controlled not to work. 
• ESP®  OFF lamp light up to indicate th at brake control of traction control 
function is controlled not to act if brake pad temperature is over 320  °C (608  °F) 
and any of wheel is in wheel spin condition.
Combination
meter
Transmit DATA
ESP® control
moduleECMSteering angle sensor
Torque request signal
Wheel speed signal (front right)
Wheel speed signal (front left)
ESP® status signal
ABS active signal
ABS indication signal
EBD indication signal
Steering angle neutral position
I7RS0B460004-01