3) MIL illumination
When the ECM or PCM detects a malfunction related emission during the first driving cycle, the DTC and engine data are stored in the freeze frame memory. The MIL is illuminated only when the ECM or PCM detects the same malfunction related to the DTC in two consecutive driving cycles.
4) MIL elimination
o Misfire and Fuel System Malfunctions
For misfire or fuel system malfunctions, the MIL may be eliminated if the same fault does not reoccur during monitoring in three subsequent sequential driving cycles in which conditions are similar to those under which the malfunction was first detected.
o All Other Malfunctions
For all other faults, the MIL may be extinguished after three subsequent sequential driving cycles during which the monitoring system responsible for illuminating the MIL functions without detecting the malfunction and if no other malfunction has been identified that would independently illuminate the MIL according to the requirements outlined above.
5) Erasing a fault code
The diagnostic system may erase a fault code if the same fault is not re-registered in at least 40 engine warm-up cycles, and the MIL is not illuminated for that fault code.
6) Communication Line (CAN)
- Bus Topology: Line (bus) structure
- Wiring: Twisted pair wire
- Off Board DLC Cable Length : Max. 5m
- Data Transfer Rate Diagnostic : 500 kbps Service Mode (Upgrade, Writing VIN) : 500 or 1Mbps)
7) Driving cycle
A driving cycle consists of engine start up, and engine shut off.
8) Warm-up cycle
A warm-up cycle means sufficient vehicle operation such that the engine coolant temperature has risen by at least 40 degrees Fahrenheit from engine starting and reaches a minimum temperature of at least 160 degrees Fahrenheit.
9) Trip cycle
A trip means vehicle operation (following an engine-off period) of duration and driving mode such that all components and systems are monitored at least once by the diagnostic system except catalyst efficiency or evaporative system monitoring when a steady-speed check is used, subject to the limitation that the manufacturer-defined trip monitoring conditions shall all be encountered at least once during the first engine start portion of the applicable FTP cycle.
11) Freeze frame data
When a freeze frame event is triggered by an emission related DTC, the ECM or PCM stores various vehicle information as it existed the moment the fault occurred. The DTC number along with the engine data can be useful in aiding a technician in locating the cause of the fault. Once the data from the 1st driving cycle DTC occurrence is stored in the freeze frame memory, it will remain there even when the fault occurs again (2nd driving cycle) and the MIL is illuminated.
- Freeze Frame List Calculated Load Value Engine RPM Fuel Trim Fuel Pressure (if available) Vehicle Speed (if available) Coolant Temperature Intake Manifold Pressure (if available) Closed-or Open-loop operation Fault code
1) Catalyst monitoring
The catalyst efficiency monitor is a self-test strategy within the ECM or PCM that uses the downstream Heated Oxygen Sensor (HO2S) to determine when a catalyst has fallen below the minimum level of effectiveness in its ability to control exhaust emission.
2) Misfire monitoring
Misfire is defined as the lack of proper combustion in the cylinder due to the absence of spark, poor fuel metering, or poor compression. Any combustion that does not occur within the cylinder at the proper time is also a misfire. The misfire detection monitor detects fuel, ignition or mechanically induced misfires. The intent is to protect the catalyst from permanent damage and to alert the customer of an emission failure or an inspection maintenance failure by illuminating the MIL. When a misfire is detected, special software called freeze frame data is enabled. The freeze frame data captures the operational state of the vehicle when a fault is detected from misfire detection monitor strategy.
3) Fuel system monitoring
The fuel system monitor is a self-test strategy within the ECM or PCM that monitors the adaptive fuel table The fuel control system uses the adaptive fuel table to compensate for normal variability of the fuel system components caused by wear or aging. During normal vehicle operation, if the fuel system appears biased lean or rich, the adaptive value table will shift the fuel delivery calculations to remove bias.
4) Engine cooling system monitoring
The cooling system monitoring is a self-test strategy within the ECM or PCM that monitors ECTS (Engine Coolant Temperature Sensor) and thermostat about circuit continuity, output range, rationality faults.
5) 02 sensor monitoring
OBD-II regulations require monitoring of the upstream Heated 02 Sensor (H2OS) to detect if the deterioration of the sensor has exceeded thresholds. An additional HO2S is located downstream of the Warm-Up Three Way Catalytic Converter (WU-TWC) to determine the efficiency of the catalyst.
Although the downstream H2OS is similar to the type used for fuel control, it functions differently. The downstream HO2S is monitored to determine if a voltage is generated. That voltage is compared to a calibrated acceptable range.
6) Evaporative emission system monitoring
The EVAP monitoring is a self-test strategy within the ECM or PCM that tests the integrity of the EVAP system. The complete evaporative system detects a leak or leaks that cumulatively are greater than or equal to a leak caused by a 0.040 inch and 0.020 inch diameter orifice.
7) Air conditioning system monitoring
The A/C system monitoring is a self-test strategy within the ECM or PCM that monitors malfunction of all A/C system components at A/C ON.
8) Comprehensive components monitoring
The comprehensive components monitoring is a self-test strategy within the ECM or PCM that detects fault of any electronic powertrain components or system that provides input to the ECM or PCM and is not exclusively an input to any other OBD-II monitor.
9) A/C system component monitoring
Requirement
If a vehicle incorporates an engine control strategy that alters off idle fuel and/or spark control when the A/C system is on, the OBD II system shall monitor all electronic air conditioning system components for malfunctions that cause the system to fail to invoke the alternate control while the A/C system is on or cause the system to invoke the alternate control while the A/C system is off.
Additionally, the OBD II system shall monitor for malfunction all electronic air conditioning system components that are used as part of the diagnostic strategy for any other monitored system or component.
Implementation plan
No engine control strategy incorporated that alters off idle fuel and/or spark control when A/C system is on. Malfunction of A/C system components is not used as a part of the diagnostic strategy for other monitored system or component.
Scheme 67
Scheme 68
Scheme 69
Scheme 70
Scheme 71
Scheme 72
Scheme 73
ECM Terminal Function
Connector [ELG-A]
| Pin No. | Description | Connected to |
|---|---|---|
| 1 | 2nd CAN [High] | Multi-Purpose Check Connector |
| 2 | 2nd CAN [Low] | Multi-Purpose Check Connector |
| 3 | ||
| 4 | ||
| 5 | ||
| 6 | ||
| 7 | ||
| 8 | ||
| 9 | ||
| 10 | ||
| 11 | ||
| 12 | ||
| 13 | ||
| 14 | ||
| 15 | Alternator "FR" PWM signal input | Alternator |
| 16 | Ground | Cruise Control Switch |
| 17 | Sensor ground | Fuel Tank Pressure Sensor (FTPS) |
| 18 | A/C Switch "ON" signal input | A/C Control Module |
| 19 | ||
| 20 | ||
| 21 | Brake Switch 2 signal input | Brake Switch |
| 22 | ||
| 23 | Brake Switch 1 signal input | Brake Switch |
| 24 | ||
| 25 | Cruise Control Switch signal input | Cruise Control Switch |
| 26 | ||
| 27 | Immobilizer communication line | Immobilizer Control Unit [Without Button Engine Start System] |
| Instrument Panel Module [With Button Engine Start System] | ||
| 28 | Fuel Tank Pressure Sensor (FTPS) signal input | Fuel Tank Pressure Sensor (FTPS) |
| 29 | Fuel Level Sensor (FLS) [TOTAL] signal input | Fuel Level Sensor (FLS) |
| 30 | Fuel Level Sensor (FLS) [MIDDLE] signal input | Fuel Level Sensor (FLS) |
| 31 | Electrical Load signal input | Head Lamp Relay |
| 32 | A/C Pressure Transducer (APT) signal input | A/C Pressure Transducer (APT) |
| 33 | Sensor ground | A/C Pressure Transducer (APT) |
| Power Steering Pressure Sensor (PSPS) [Without EH PS] | ||
| 34 | ||
| 35 | ||
| 36 | Alternator "C" PWM signal output | Alternator |
| 37 | Canister Close Valve (CCV) control output | Canister Close Valve (CCV) |
| 38 | Battery power (B+) | Main Relay |
| 39 | Battery power (B+) | Main Relay |
| 40 | Battery power (B+) | Main Relay |
| 41 | CAN [High] | Other control module, Data Link Connector (DLC), Multi-Purpose Check Connector |
| 42 | CAN [Low] | Other control module, Data Link Connector (DLC), Multi-Purpose Check Connector |
| 43 | Main Relay control output | Main Relay |
| 44 | Intake Air Temperature Sensor (IATS) signal input | Intake Air Temperature Sensor (IATS) |
| 45 | LIN (Local Interconnect Network) Serial Bus Line | Battery Sensor |
| 46 | Power Steering Pressure Sensor (PSPS) signal input | Power Steering Pressure Sensor (PSPS) [Without EHPS] |
| 47 | Mass Air Flow Sensor (MAFS) signal input | Mass Air Flow Sensor (MAFS) |
| 48 | Sensor ground | Accelerator Position Sensor (APS) 2 |
| 49 | Accelerator Position Sensor (APS) 2 signal input | Accelerator Position Sensor (APS) 2 |
| 50 | ||
| 51 | ||
| 52 | Vehicle speed signal input | ESC Control Module |
| 53 | Sensor ground | Intake Air Temperature Sensor (IATS) |
| 54 | Accelerator Position Sensor (APS) 1 signal input | Accelerator Position Sensor (APS) 1 |
| 55 | Sensor ground | Accelerator Position Sensor (APS) 1 |
| 56 | Sensor power (+5V) | Fuel Tank Pressure Sensor (FTPS) |
| 57 | Sensor power (+5V) | Accelerator Position Sensor (APS) 2 |
| 58 | Sensor power (+5V) | A/C Pressure Transducer (APT) |
| Power Steering Pressure Sensor (PSPS) [Without EHPS] | ||
| 59 | Sensor power (+5V) | Accelerator Position Sensor (APS) 1 |
| 60 | ||
| 61 | Engine speed signal output | Power Distribution Module (PDM) |
| 62 | ||
| 63 | Malfunction Indicator Lamp (MIL) control output | Malfunction Indicator Lamp (MIL) |
| 64 | A/C Compressor "CUT" signal output | A/C Control Module |
| 65 | ||
| 66 | Cooling Fan control signal (PWM) control output | Cooling Fan Control Module |
| 67 | ||
| 68 | ||
| 69 | ||
| 70 | Fuel Pump Relay control output | Fuel Pump Relay |
| 71 | Variable Intake Solenoid (VIS) Valve control output | Variable Intake Solenoid (VIS) Valve |
| 72 | Immobilizer Lamp control output | Immobilizer Lamp |
| 73 | ||
| 74 | ||
| 75 | ||
| 76 | ||
| 77 | ||
| 78 | Purge Control Solenoid Valve (PCSV) control output | Purge Control Solenoid Valve (PCSV) |
| 79 | ||
| 80 |
CONNECTOR DESCRIPTION
Connector [CLG-B]
| Pin No. | Description | Connected to |
|---|---|---|
| 1 | ETC Motor [-] control output | ETC Motor |
| 2 | ETC Motor [+] control output | ETC Motor |
| 3 | ||
| 4 | CVVT Oil Temperature Sensor (OTS) signal input | CVVT Oil Temperature Sensor (OTS) |
| 5 | ||
| 6 | ||
| 7 | Engine Coolant Temperature Sensor (ECTS) signal input | Engine Coolant Temperature Sensor (ECTS) |
| 8 | Manifold Absolute Pressure Sensor (MAPS) signal input | Manifold Absolute Pressure Sensor (MAPS) |
| 9 | ||
| 10 | ||
| 11 | Sensor power (+5V) | Manifold Absolute Pressure Sensor (MAPS) |
| 12 | Battery power (B+) | Ignition Switch |
| 13 | Sensor power (+5V) | Throttle Position Sensor (TPS) 2 |
| 14 | Sensor ground | Throttle Position Sensor (TPS) 1 |
| 15 | Sensor power (+5V) | Camshaft Position Sensor (CMPS) [Bank 2/Intake] |
| Camshaft Position Sensor (CMPS) [Bank 2/Exhaust] | ||
| 16 | Sensor power (+5V) | Throttle Position Sensor (TPS) 1 |
| 17 | Sensor ground | Camshaft Position Sensor (CMPS) [Bank 2/Intake] |
| Camshaft Position Sensor (CMPS) [Bank 2/Exhaust] | ||
| 18 | Sensor ground | Camshaft Position Sensor (CMPS) [Bank 1/Intake] |
| Camshaft Position Sensor (CMPS) [Bank 1/Exhaust] | ||
| 19 | Ignition Coil (Cylinder #6) control output | Ignition Coil (Cylinder #6) |
| 20 | ||
| 21 | Crankshaft Position Sensor (CKPS) [High] signal input | Crankshaft Position Sensor (CKPS) |
| 22 | ||
| 23 | Sensor Shield | Knock Sensor (KS) #1 [Bank 1] |
| Knock Sensor (KS) #2 [Bank 2] | ||
| 24 | Camshaft Position Sensor (CMPS)[Bank 2/Intake] signal input | Camshaft Position Sensor (CMPS) [Bank 2/Intake] |
| 25 | Camshaft Position Sensor (CMPS)[Bank 1/Intake] signal input | Camshaft Position Sensor (CMPS) [Bank 1/Intake] |
| 26 | Camshaft Position Sensor (CMPS)[Bank 2/Exhaust] signal input | Camshaft Position Sensor (CMPS) [Bank 2/Exhaust] |
| 27 | Camshaft Position Sensor (CMPS)[Bank 1/Exhaust] signal input | Camshaft Position Sensor (CMPS) [Bank 1/Exhaust] |
| 28 | Sensor ground | Heated Oxygen Sensor (HO2S) [Bank 2/Sensor 1] |
| 29 | Sensor ground | Heated Oxygen Sensor (HO2S) [Bank 2/Sensor 2] |
| 30 | Sensor ground | Heated Oxygen Sensor (HO2S) [Bank 1/Sensor 1] |
| 31 | Sensor ground | Heated Oxygen Sensor (HO2S) [Bank 1/Sensor 2] |
| 32 | Sensor power (+5V) | Camshaft Position Sensor (CMPS) [Bank 1/Intake] |
| Camshaft Position Sensor (CMPS) [Bank 1/Exhaust] | ||
| 33 | Sensor ground | Engine Coolant Temperature Sensor (ECTS) |
| 34 | Sensor ground | Manifold Absolute Pressure Sensor (MAPS) |
| CVVT Oil Temperature Sensor (OTS) | ||
| 35 | Power ground | Chassis Ground |
| 36 | Power ground | Chassis Ground |
| 37 | Power ground | Chassis Ground |
| 38 | Power ground | Chassis Ground |
| 39 | Power ground | Chassis Ground |
| 40 | Ignition Coil (Cylinder #4) control output | Ignition Coil (Cylinder #4) |
| 41 | Crankshaft Position Sensor (CKPS) [Low] signal input | Crankshaft Position Sensor (CKPS) |
| 42 | ||
| 43 | ||
| 44 | ||
| 45 | ||
| 46 | ||
| 47 | ||
| 48 | Throttle Position Sensor (TPS) 1 signal input | Throttle Position Sensor (TPS) 1 |
| 49 | Heated Oxygen Sensor (HO2S) [Bank 1/Sensor 1] signal input | Heated Oxygen Sensor (HO2S) [Bank 1/Sensor 1] |
| 50 | Heated Oxygen Sensor (HO2S) [Bank 1/Sensor 2] signal input | Heated Oxygen Sensor (HO2S) [Bank 1/Sensor 2] |
| 51 | Heated Oxygen Sensor (HO2S) [Bank 2/Sensor 1] signal input | Heated Oxygen Sensor (HO2S) [Bank 2/Sensor 1] |
| 52 | Heated Oxygen Sensor (HO2S) [Bank 2/Sensor 2] signal input | Heated Oxygen Sensor (HO2S) [Bank 2/Sensor 2] |
| 53 | Knock Sensor (KS) [Bank 2] [High] signal input | Knock Sensor (KS) [Bank 2] |
| 54 | Knock Sensor (KS) [Bank 2] [Low] signal input | Knock Sensor (KS) [Bank 2] |
| 55 | Knock Sensor (KS) [Bank 1] [Low] signal input | Knock Sensor (KS) [Bank 1] |
| 56 | Knock Sensor (KS) [Bank 1] [High] signal input | Knock Sensor (KS) [Bank 1] |
| 57 | Throttle Position Sensor (TPS) 2 signal input | Throttle Position Sensor (TPS) 2 |
| 58 | Sensor ground | Throttle Position Sensor (TPS) 2 |
| 59 | ||
| 60 | Ignition Coil (Cylinder #2) control output | Ignition Coil (Cylinder #2) |
| 61 | CVVT Oil Control Valve (OCV) [Bank 2/Intake] control output | CVVT Oil Control Valve (OCV) [Bank 2/Intake] |
| 62 | CVVT Oil Control Valve (OCV) [Bank 1/Intake] control output | CVVT Oil Control Valve (OCV) [Bank 1/Intake] |
| 63 | Injector (Cylinder #2) control output | Injector (Cylinder #2) |
| 64 | Injector (Cylinder #3) control output | Injector (Cylinder #3) |
| 65 | CVVT Oil Control Valve (OCV) [Bank 1/Exhaust] control output | CVVT Oil Control Valve (OCV) [Bank 1/Exhaust] |
| 66 | CVVT Oil Control Valve (OCV) [Bank 2/Exhaust] control output | CVVT Oil Control Valve (OCV) [Bank 2/Exhaust] |
| 67 | Heated Oxygen Sensor (HO2S) [Bank 2/Sensor 1] Heater control output | Heated Oxygen Sensor (HO2S) [Bank 2/Sensor 1] |
| 68 | Injector (Cylinder #4) control output | Injector (Cylinder #4) |
| 69 | Injector (Cylinder #5) control output | Injector (Cylinder #5) |
| 70 | Heated Oxygen Sensor (HO2S) [Bank 1/Sensor 1] Heater control output | Heated Oxygen Sensor (HO2S) [Bank 1/Sensor 1] |
| 71 | Injector (Cylinder #6) control output | Injector (Cylinder #6) |
| 72 | Injector (Cylinder #1) control output | Injector (Cylinder #1) |
| 73 | Heated Oxygen Sensor (HO2S) [Bank 2/Sensor 2] Heater control output | Heated Oxygen Sensor (HO2S) [Bank 2/Sensor 2] |
| 74 | Heated Oxygen Sensor (HO2S) [Bank 1/Sensor 2] Heater control output | Heated Oxygen Sensor (HO2S) [Bank 1/Sensor 2] |
| 75 | ||
| 76 | Battery power (B+) | Battery |
| 77 | Ignition Coil (Cylinder #3) control output | Ignition Coil (Cylinder #3) |
| 78 | Ignition Coil (Cylinder #5) control output | Ignition Coil (Cylinder #5) |
| 79 | Ignition Coil (Cylinder #1) control output | Ignition Coil (Cylinder #1) |
| 80 |
CONNECTOR DESCRIPTION
Connector [ELG-A]
| Pin No. | Description | Condition | Type | Level |
|---|---|---|---|---|
| 1 | 2nd CAN [High] | RECESSIVE | Pulse | 2.0 ~ 3.0V |
| DOMINANT | 2.75 ~ 4.5V | |||
| 2 | 2nd CAN [Low] | RECESSIVE | Pulse | 2.0 ~ 3.0V |
| DOMINANT | 0.5 ~ 2.25V | |||
| 3 | ||||
| 4 | ||||
| 5 | ||||
| 6 | ||||
| 7 | ||||
| 8 | ||||
| 9 | ||||
| 10 | ||||
| 11 | ||||
| 12 | ||||
| 13 | ||||
| 14 | ||||
| 15 | Alternator "FR" PWM signal input | Idle | PWM | High: Battery voltage |
| Low: Max. 1.5V | ||||
| 133 < Frequency < 200Hz | ||||
| 5 < Duty < 95% | ||||
| 16 | Ground | Idle | DC | Max. 150mV |
| 17 | Sensor ground | Idle | DC | Max. 150mV |
| 18 | A/C Switch "ON" signal input | S/W ON | DC | Min. 5.7V |
| S/W OFF | DC | Max. 1.0 V | ||
| 19 | ||||
| 20 | ||||
| 21 | Brake Switch 2 signal input | Brake ON | DC | Max. 0.5V |
| Brake OFF | Battery Voltage | |||
| 22 | ||||
| 23 | Brake Switch 1 signal input | Brake ON | DC | Battery Voltage |
| Brake OFF | Max. 0.5V | |||
| 24 | ||||
| 25 | Cruise Control Switch signal input | MAIN | DC | 11.1 ~ 12.1V |
| SET | 1.0 ~ 1.8V | |||
| CANCEL | 0.5 ~ 0.5V | |||
| RESUME | 2.5 ~ 3.5V | |||
| 26 | ||||
| 27 | Immobilizer communication line | When transmitting | DC | Hi: Min. Vbatt X 80% |
| Lo: Max. Vbatt X 20% | ||||
| When receiving | Hi: Min. Vbatt X 70% | |||
| Lo: Max. Vbatt X 30% | ||||
| 28 | Fuel Tank Pressure Sensor (FTPS) signal input | Idle | DC | 0.14 ~ 4.86V |
| 29 | Fuel Level Sensor (FLS) [TOTAL] signal input | Idle | DC | 0.88 ~ 8.45V |
| 30 | Fuel Level Sensor (FLS) [MIDDLE] signal input | Idle | DC | 0.3 ~ 4.9V |
| 31 | Electrical Load signal input | |||
| 32 | A/C Pressure Transducer (APT) signal input | A/C ON | DC | 0.5 ~ 4.5V |
| 33 | Sensor ground | Idle | DC | Max. 150mV |
| 34 | ||||
| 35 | ||||
| 36 | Alternator "C" PWM control output | Idle | PWM | High: Min. 4.0V |
| Low: Max. 2.0V | ||||
| 37 | Canister Close Valve (CCV) control output | Open | DC | Battery Voltage |
| Close | Max. 1.0V | |||
| 38 | Battery power (B+) | Idle | DC | Battery Voltage |
| 39 | Battery power (B+) | Idle | DC | Battery Voltage |
| 40 | Battery power (B+) | Idle | DC | Battery Voltage |
| 41 | CAN [High] | RECESSIVE | Pulse | 2.0 ~ 3.0V |
| DOMINANT | 2.75 ~ 4.5V | |||
| 42 | CAN [Low] | RECESSIVE | Pulse | 2.0 ~ 3.0V |
| DOMINANT | 0.5 ~ 2.25V | |||
| 43 | Main Relay control output | Relay ON | DC | Max. 1.7V |
| Relay OFF | Battery Voltage | |||
| 44 | Intake Air Temperature Sensor (IATS) signal input | Idle | DC | 4.85V (-40°C) |
| 0.07V (150°C) | ||||
| 45 | LIN (Local Interconnect Network) Serial Bus Line | When transmitting | DC | Hi: Min. Vbatt X 80% |
| Lo: Max. Vbatt X 20% | ||||
| When receiving | Hi: Min. Vbatt X 70% | |||
| Lo: Max. Vbatt X 30% | ||||
| 46 | Power Steering Pressure Sensor (PSPS) signal input | Idle | DC | 0.3 ~ 4.53V |
| 47 | Mass Air Flow Sensor (MAFS) signal input | Idle | Pulse | High: Min. 4.5V |
| Low: Max. 0.6V | ||||
| 768 < Frequency < 12,032Hz | ||||
| Duty= 50% | ||||
| 48 | Sensor ground | Idle | DC | Max. 150mV |
| 49 | Accelerator Position Sensor (APS) 2 signal input | C.T | DC | 0.29 ~ 0.46V |
| W.O.T | 1.93 ~ 2.18V | |||
| 50 | ||||
| 51 | ||||
| 52 | Vehicle speed signal input | Vehicle Run | Pulse | High: Min. 4.0V |
| Low: Max. 1.1V | ||||
| 6.4 < Frequency < 1,534Hz | ||||
| Duty= 50% | ||||
| 53 | Sensor ground | Idle | DC | Max. 150mV |
| 54 | Accelerator Position Sensor (APS) 1 signal input | C.T | DC | 0.58 ~ 0.93V |
| W.O.T | 3.85 ~ 4.35V | |||
| 55 | Sensor ground | Idle | DC | Max. 150mV |
| 56 | Sensor power (+5V) | Idle | DC | 4.9 ~ 5.1V |
| 57 | Sensor power (+5V) | Idle | DC | 4.9 ~ 5.1V |
| 58 | Sensor power (+5V) | Idle | DC | 4.9 ~ 5.1V |
| 59 | Sensor power (+5V) | Idle | DC | 4.9 ~ 5.1V |
| 60 | ||||
| 61 | Engine speed signal output | Idle | Pulse | High: Battery Voltage |
| Low: Max. 1.1V | ||||
| 0 < Frequency < 350Hz | ||||
| 47.5 < Duty < 52.5% | ||||
| 62 | ||||
| 63 | Malfunction Indicator Lamp (MIL) control output | MIL ON | DC | Max. 0.5V |
| MIL OFF | Battery Voltage | |||
| 64 | A/C Compressor "CUT" signal output | |||
| 65 | ||||
| 66 | Cooling Fan control signal (PWM) control output | Idle | Pulse | High: Battery Voltage |
| Low: Max. 0.5V | ||||
| Frequency=300Hz | ||||
| 0 < Duty < 100% | ||||
| 67 | ||||
| 68 | ||||
| 69 | ||||
| 70 | Fuel Pump Relay control output | Relay ON | DC | Max. 1.1V |
| Relay OFF | Battery Voltage | |||
| 71 | Variable Intake Solenoid (VIS) Valve control output | Valve Open | DC | Battery Voltage |
| Valve Close | Max. 1.1V | |||
| 72 | Immobilizer Lamp control output | Lamp ON | DC | Max. 1.1V |
| Lamp OFF | Battery Voltage | |||
| 73 | ||||
| 74 | ||||
| 75 | ||||
| 76 | ||||
| 77 | ||||
| 78 | Purge Control Solenoid Valve (PCSV) control output | Idle | Pulse | High: Battery Voltage |
| Low: Max. 1.0V | ||||
| Frequency=30Hz | ||||
| 0 < Duty < 100% | ||||
| 79 | ||||
| 80 |
CONNECTOR DESCRIPTION
Connector [CLG-B]
| Pin No. | Description | Condition | Type | Level |
|---|---|---|---|---|
| 1 | ETC Motor [-] control output | Idle | PWM | Battery Voltage |
| 2 | ETC Motor [+] control output | Idle | Pulse | High: Battery Voltage |
| Low: Max. 1.0V | ||||
| 1,500 < Frequency < 2,400Hz | ||||
| 0 < Duty < 98% | ||||
| 3 | ||||
| 4 | CVVT Oil Temperature Sensor (OTS) signal input | Idle | DC | 0.15(150°C) ~ 4.85V (-40°C) |
| 5 | ||||
| 6 | ||||
| 7 | Engine Coolant Temperature Sensor (ECTS) signal input | Idle | DC | 0 ~ 5.0V |
| 8 | Manifold Absolute Pressure Sensor (MAPS) signal input | Idle | DC | 4.43V (107kPa) |
| 0.75V (20kPa) | ||||
| 9 | ||||
| 10 | ||||
| 11 | Sensor power (+5V) | Idle | DC | 4.9 ~ 5.1V |
| 12 | Battery power (B+) | Idle | DC | Battery Voltage |
| 13 | Sensor power (+5V) | Idle | DC | 4.9 ~ 5.1V |
| 14 | Sensor ground | Idle | DC | Max. 150mV |
| 15 | Sensor power (+5V) | Idle | DC | 4.9 ~ 5.1V |
| 16 | Sensor power (+5V) | Idle | DC | 4.9 ~ 5.1V |
| 17 | Sensor ground | Idle | DC | Max. 150mV |
| 18 | Sensor ground | Idle | DC | Max. 150mV |
| 19 | Ignition Coil (Cylinder #6) control output | Idle | Pulse | Vpeak = 400V |
| 0 < Frequency < 58.3Hz | ||||
| 20 | ||||
| 21 | Crankshaft Position Sensor (CKPS) [High] signal input | Idle | SINE Wave | 0.4 < Vp_p < 200V |
| 55 < Frequency < 7,000Hz | ||||
| 22 | ||||
| 23 | Sensor Shield | Idle | DC | Max. 150mV |
| 24 | Camshaft Position Sensor (CMPS) [Bank2/Intake] signal input | Idle | Pulse | High: 3.2 ~ Vcc |
| Low: Max. 0.7V | ||||
| 0 < Frequency < 350Hz | ||||
| 25 | Camshaft Position Sensor (CMPS) [Bank 1/Intake] signal input | Idle | Pulse | High: 3.2 ~ Vcc |
| Low: Max. 0.7V | ||||
| 0 < Frequency < 350Hz | ||||
| 26 | Camshaft Position Sensor (CMPS) [Bank 2/Exhaust] signal input | Idle | Pulse | High: 3.2 ~ Vcc |
| Low: Max. 0.7V | ||||
| 0 < Frequency < 350Hz | ||||
| 27 | Camshaft Position Sensor (CMPS) [Bank 1/Exhaust] signal input | Idle | Pulse | High: 3.2 ~ Vcc |
| Low: Max. 0.7V | ||||
| 0 < Frequency < 350Hz | ||||
| 28 | Sensor ground | Idle | DC | Max. 150mV |
| 29 | Sensor ground | Idle | DC | Max. 150mV |
| 30 | Sensor ground | Idle | DC | Max. 150mV |
| 31 | Sensor ground | Idle | DC | Max. 150mV |
| 32 | Sensor power (+5V) | Idle | DC | 4.9 ~ 5.1V |
| 33 | Sensor ground | Idle | DC | Max. 150mV |
| 34 | Sensor ground | Idle | DC | Max. 150mV |
| 35 | Power ground | Idle | DC | Max. 150mV |
| 36 | Power ground | Idle | DC | Max. 150mV |
| 37 | Power ground | Idle | DC | Max. 150mV |
| 38 | Power ground | Idle | DC | Max. 150mV |
| 39 | Power ground | Idle | DC | Max. 150mV |
| 40 | Ignition Coil (Cylinder #4) control output | Idle | Pulse | Vpeak = 400V |
| 0 < Frequency < 58.3Hz | ||||
| 41 | Crankshaft Position Sensor (CKPS) [Low] signal input | Idle | SINE Wave | 0.4 < Vp_p < 200V |
| 55 < Frequency < 7,000Hz | ||||
| 42 | ||||
| 43 | ||||
| 44 | ||||
| 45 | ||||
| 46 | ||||
| 47 | ||||
| 48 | Throttle Position Sensor (TPS) 1 signal input | C.T | DC | 0.25 ~ 0.9V |
| W.O.T | Min. 4.0V | |||
| 49 | Heated Oxygen Sensor (HO2S) [Bank 1/Sensor 1] signal input | RICH | DC | 0.75 ~ 0.92V |
| LEAN | 0.04 ~ 0.1V | |||
| 50 | Heated Oxygen Sensor (HO2S) [Bank 1/Sensor 2] signal input | RICH | DC | 0.75 ~ 0.92V |
| LEAN | 0.04 ~ 0.1V | |||
| 51 | Heated Oxygen Sensor (HO2S) [Bank 2/Sensor 1] signal input | RICH | DC | 0.75 ~ 0.92V |
| LEAN | 0.04 ~ 0.1V | |||
| 52 | Heated Oxygen Sensor (HO2S) [Bank 2/Sensor 2] signal input | RICH | DC | 0.75 ~ 0.92V |
| LEAN | 0.04 ~ 0.1V | |||
| 53 | Knock Sensor (KS) [Bank 2] [High] signal input | Knocking | Variable Frequency | 0.3 ~ 0.3V |
| Normal | 0V | |||
| 54 | Knock Sensor (KS) [Bank 2] [Low] signal input | Knocking | Variable Frequency | 0.3 ~ 0.3V |
| Normal | 0V | |||
| 55 | Knock Sensor (KS) [Bank 1] [Low] signal input | Knocking | Variable Frequency | 0.3 ~ 0.3V |
| Normal | 0V | |||
| 56 | Knock Sensor (KS) [Bank 1] [High] signal input | Knocking | Variable Frequency | 0.3 ~ 0.3V |
| Normal | 0V | |||
| 57 | Throttle Position Sensor (TPS) 2 signal input | C.T | DC | Min. 4.0V |
| W.O.T | 0.25 ~ 0.9V | |||
| 58 | Sensor ground | Idle | DC | Max. 150mV |
| 59 | ||||
| 60 | Ignition Coil (Cylinder #2) control output | Idle | Pulse | Vpeak = 400V |
| 0 < Frequency < 58.3Hz | ||||
| 61 | CVVT Oil Control Valve (OCV) [Bank 2/Intake] control output | Idle | PWM | High: Battery Voltage |
| Low: Max. 1.0V | ||||
| Frequency=128Hz | ||||
| 0 < Duty < 100% | ||||
| 62 | CVVT Oil Control Valve (OCV) [Bank 1/Intake] control output | Idle | PWM | High: Battery Voltage |
| Low: Max. 1.0V | ||||
| Frequency=128Hz | ||||
| 0 < Duty < 100% | ||||
| 63 | Injector (Cylinder #2) control output | Idle | PWM | High: Battery Voltage |
| Low: Max. 1.0V | ||||
| 0 < Frequency < 58.3Hz | ||||
| 47 < Vpeak < 64V | ||||
| 64 | Injector (Cylinder #3) control output | Idle | PWM | High: Battery Voltage |
| Low: Max. 1.0V | ||||
| 0 < Frequency < 58.3Hz | ||||
| 47 < Vpeak < 64V | ||||
| 65 | CVVT Oil Control Valve (OCV) [Bank 1/Exhaust] control output | Idle | PWM | High: Battery Voltage |
| Low: Max. 1.0V | ||||
| Frequency=128Hz | ||||
| 0 < Duty < 100% | ||||
| 66 | CVVT Oil Control Valve (OCV) [Bank 2/Exhaust] control output | Idle | PWM | High: Battery Voltage |
| Low: Max. 1.0V | ||||
| Frequency=128Hz | ||||
| 0 < Duty < 100% | ||||
| 67 | Heated Oxygen Sensor (HO2S) [Bank 2/Sensor 1] Heater control output | Idle | PWM | High: Battery Voltage |
| Low: Max. 1.15V | ||||
| 0 < Duty < 100% | ||||
| 68 | Injector (Cylinder #4) control output | Idle | PWM | High: Battery Voltage |
| Low: Max. 1.0V | ||||
| 0 < Frequency < 58.3Hz | ||||
| 47 < Vpeak < 64V | ||||
| 69 | Injector (Cylinder #5) control output | Idle | PWM | High: Battery Voltage |
| Low: Max. 1.0V | ||||
| 0 < Frequency < 58.3Hz | ||||
| 47 < Vpeak < 64V | ||||
| 70 | Heated Oxygen Sensor (HO2S) [Bank 1/Sensor 1] Heater control output | Idle | PWM | High: Battery Voltage |
| Low: Max. 1.15V | ||||
| 0 < Duty < 100% | ||||
| 71 | Injector (Cylinder #6) control output | Idle | PWM | High: Battery Voltage |
| Low: Max. 1.0V | ||||
| 0 < Frequency < 58.3Hz | ||||
| 47 < Vpeak < 64V | ||||
| 72 | Injector (Cylinder #1) control output | Idle | PWM | High: Battery Voltage |
| Low: Max. 1.0V | ||||
| 0 < Frequency < 58.3Hz | ||||
| 47 < Vpeak < 64V | ||||
| 73 | Heated Oxygen Sensor (HO2S) [Bank 2/Sensor 2] Heater control output | Idle | PWM | High: Battery Voltage |
| Low: Max. 1.15V | ||||
| 0 < Duty < 100% | ||||
| 74 | Heated Oxygen Sensor (HO2S) [Bank 1/Sensor 2] Heater control output | Idle | PWM | High: Battery Voltage |
| Low: Max. 1.15V | ||||
| 0 < Duty < 100% | ||||
| 75 | ||||
| 76 | Battery power (B+) | Idle | DC | Battery Voltage |
| 77 | Ignition Coil (Cylinder #3) control output | Idle | Pulse | Vpeak = 400V |
| 0 < Frequency < 58.3Hz | ||||
| 78 | Ignition Coil (Cylinder #5) control output | Idle | Pulse | Vpeak = 400V |
| 0 < Frequency < 58.3Hz | ||||
| 79 | Ignition Coil (Cylinder #1) control output | Idle | Pulse | Vpeak = 400V |
| 0 < Frequency < 58.3Hz | ||||
| 80 |
CONNECTOR DESCRIPTION
Scheme 74
Scheme 75
Scheme 76
Scheme 77
Scheme 78
VIN programming procedure
VIN (Vehicle Identification Number) is a number that has the vehicle's information (Maker, Vehicle Type, Vehicle Line/Series, Body Type, Engine Type, Transmission Type, Model Year, Plant Location and so forth. For more information, please refer to the GENERAL INFORMATION (ENGINE (G6DB/G6DA - GSL 3.3/3.8)) ). When replacing an ECM, the VIN must be programmed in the ECM. If there is no VIN in ECM memory, the fault code (DTC P0630) is set.
| CAUTION | The programmed VIN cannot be changed. When writing the VIN, confirm the VIN carefully |
Scheme 79
Scheme 80
Scheme 81
Scheme 82
Scheme 83
- Select "Vehicle" and "Engine" (For example, TUCSON 2.0L L4).
- Select "VIN WRITING".
- Check the PCM status. NOTE: VIRGIN: VIN is not programmed LEARNT: VIN has been already programmed Is the PCM status "VIRGIN"? YES Go to next step 4. NO END
- Write the VIN with cursor, function and number keys. WARNING: Before pressing the "ENTER" key, confirm the VIN again because the programmed VIN cannot be changed.
- After verifying the written VIN, press the "ENTER" key.
- Turn the ignition switch OFF, and then turn ON.
- Verify the programmed VIN in the ECM memory.
Throttle Position Sensor (TPS)
- Connect a scantool on the Data Link Connector (DLC).
- Start the engine and measure the output voltage of TPS 1 and 2 at C.T. and W.O.T. THROTTLE POSITION SENSOR (TPS) VOLTAGE SPECIFICATION Throttle Angle Output Voltage (V) TPS1 TPS 2 C.T 0.25 ~ 0.9 Min.4.0 W.O.T Min.4.0 0.25 ~ 0.9
- Turn the ignition switch OFF and disconnect the scantool from the DLC.
- Disconnect the ETC module connector and measure the resistance between the ETC module terminals 4 and 8 (TPS 1). Specification: Refer to " «SPECIFICATION»(ref-345901-S37730635912009102300000) "
- Measure resistance between the ETC module terminals 1 and 5 (TPS 2). Specification: Refer to " «SPECIFICATION»(ref-345901-S37730635912009102300000) "
ETC Motor
- Turn the ignition switch OFF.
- Disconnect the ETC module connector.
- Measure resistance between the ETC module terminals 2 and 3.
- Check that the resistance is within the specification. Specification: Refer to " «SPECIFICATION»(ref-345901-S37730635912009102300000) "