LAMBORGHINI Gallardo (2009) - Car

Gallardo (2009) - Car LAMBORGHINI - Free user manual and instructions

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Type Sports car
Brand Lamborghini
Model Gallardo (2009)
Engine 5.0L V10, 552 hp (412 kW) at 8000 rpm
Torque 398 lb-ft (540 Nm) at 6500 rpm
Transmission 6-speed manual or 6-speed e-gear automated manual
Drivetrain Permanent all-wheel drive
Top speed 199 mph (320 km/h)
0-60 mph 3.7 seconds
Fuel type Premium unleaded gasoline
Fuel economy (city/hwy) 12/20 mpg (19.6/11.8 L/100 km)
Weight (dry) 3,197 lbs (1,450 kg)
Length 171.1 in (4,345 mm)
Width 74.8 in (1,900 mm)
Height 45.9 in (1,166 mm)
Wheelbase 100.8 in (2,560 mm)
Seating capacity 2
Cargo volume 4.9 cu ft (0.14 m³) front trunk
Tire size 235/35 ZR19 (front), 295/30 ZR19 (rear)
Brakes Ventilated ceramic composite discs (optional)
Safety features ABS, traction control, stability control, front and side airbags
Maintenance interval Oil change every 5,000 miles; major service every 10,000 miles

Frequently Asked Questions - Gallardo (2009) LAMBORGHINI

What is the top speed of the Lamborghini Gallardo (2009)?
The top speed is 199 mph (320 km/h).
How often should I change the oil in a Gallardo?
Lamborghini recommends an oil change every 5,000 miles (8,000 km) or annually, whichever comes first.
What is the fuel consumption of the 2009 Gallardo?
The EPA estimates fuel economy at 12 mpg city / 20 mpg highway (19.6 L/100 km city, 11.8 L/100 km highway).
Is the Lamborghini Gallardo reliable?
The Gallardo is generally reliable for a supercar, but maintenance costs are high. Common issues include e-gear transmission problems and coolant leaks. Regular servicing is critical.
What transmission options are available?
The 2009 Gallardo offers two transmissions: a 6-speed manual and a 6-speed e-gear automated manual with paddle shifters.
How many seats does the Gallardo have?
The Gallardo is a 2-seater sports car with no rear seats.
What is the horsepower of the 2009 Gallardo?
The 5.0L V10 engine produces 552 hp (412 kW) at 8,000 rpm.
Is the Gallardo all-wheel drive?
Yes, the Gallardo features permanent all-wheel drive for optimal traction and handling.
What type of engine does the Gallardo have?
It has a 5.0-liter V10 naturally aspirated engine with a dry sump lubrication system.
What is the 0-60 mph time?
The Gallardo accelerates from 0-60 mph in approximately 3.7 seconds (with e-gear).

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USER MANUAL Gallardo (2009) LAMBORGHINI

Engine Scan Tool
Engine IDCEH

Edition 09.2009

Refer to Gallardo Repair Manual for any further information

List of Workshop Manual Repair GroupsList of Workshop Manual Repair GroupsList of Workshop Manual Repair Groups

Repair Group

ST - Generic Scan Tool

Technical information should always be available to the foremen and mechanics, because their careful and constant adherence to the instructions is essential to ensure vehicle road-worthiness and safety. In addition, the normal basic safety precautions for working on motor vehicles must, as a matter of course, be observed.

Contents

ST – Generic Scan Tool....1

1 General Information .... 1

1.1 Safety Precautions....1
1.2 Clean Working Conditions 2
1.3 On Board Diagnostic Systems 2
1.4 Malfunction Indicator Lamp Illumination....2
1.5 Controller Area Network Data.Link 2
1.6 Electronic Power Control Warning Lamp....3

2 Description and Operation 4

2.1 Fuel Supply System 4
2.2 Evaporative Emission System....4
2.3 Electronic Engine Power Control....5
2.4 Fuel Injection System....5
2.5 Engine Control Module 5
2.6 Exhaust System Components....6
2.7 Secondary Air Injection System 6
2.8 Ignition System 6
2.9 Automatic Transmission....6

3 Diagnosis and Testing....7

3.1 Preliminary Check....7
3.2 Readiness Code 7
3.3 Diagnostic Modes 01 - 0A....9
3.4 DTC Tables 42

ST – Generic Scan Tool

1 General Information

Included in the contents of this Generic Scan Tool (GST) manual is a summary table of the vehicle specific OBD II Emission Related DTCs. The DTC table contains DTC Malfunction Criteria, Threshold Values, Secondary Parameters, Enabling Conditions, Monitoring Time Length, Frequency of Checks, and MIL Illumination information which can be used to accurately monitor and diagnose emissions related faults and perform functions required to run Modes 01 through 0A with a hand held scan tool. For a further description of specific monitor information, an OBD strategy document is referenced throughout this manual.

⇒ "1.1 Safety Precautions", page 1
⇒ "1.2 Clean Working Conditions", page 2
⇒ "1.3 On Board Diagnostic Systems", page 2
⇒ "1.4 Malfunction Indicator Lamp Illumination", page 2
⇒ "1.5 Controller Area Network Data Link", page 2
⇒ "1.6 Electronic Power Control Warning Lamp", page 3

1.1 Safety Precautions

LAMBORGHINI Gallardo (2009) - Safety Precautions - 1

WARNING

◆ Fuel system is under pressure! Before opening system, place rags around the connection area. Then release pressure by carefully loosening the connection.

- Vehicles with FSI engine: The engine section of the fuel system, after the high pressure pump, is under extremely high pressure! When working on engine or fuel injection system, pressure must be relieved to residual pressure before opening high pressure components. Refer to Repair Manual.

Perform the following steps before beginning work on the fuel supply system:

♦ Disconnect the battery Ground (GND) cable with the ignition switched off. Refer to Repair Manual.
◆ Open the fuel filler flap briefly and then close again.

When removing and installing components from full or partially full fuel tanks, observe the following:

The fuel tank must only be partially full. How much fuel can remain in the fuel tank may be read in the respective work description. Empty the fuel tank if necessary.
Before starting work, switch on the exhaust extraction system and place an extraction hose close to the installation opening of the fuel tank to extract escaping fuel fumes. If no exhaust extraction system is available, a radial fan (as long as motor is not in air flow) with a displacement greater than 15 m3/h can be used.

♦ Prevent fuel from contacting the skin! Wear fuel-resistant gloves!

1.2 Clean Working Conditions

Even minor contaminations can lead to malfunctions in the fuel injection system. When working on the fuel supply/injection system, pay careful attention to the following rules for cleanliness:

♦ Thoroughly clean all unions and adjacent areas with engine or brake cleaner and dry before disconnecting.
◆ Plug open lines and connections immediately with appropriate protective caps.
◆ Place removed parts on a clean surface and cover. Use lint-free cloths.
◆ Install clean components: Remove replacement parts immediately prior to installation. Do not use parts that have been stored unpacked (e.g. in tool boxes etc.).
When the system is open: Do not work with compressed air. Do not move vehicle unless absolutely necessary.
- Separated electrical connectors: Protect from dirt and moisture. Make sure connections are dry when reconnecting.

1.3 On Board Diagnostic Systems

California OBD-II applies to all gasoline engine vehicles up to 14,000 lbs. Gross Vehicle Weight Rating (GVWR) starting in the 1996 MY and all diesel engine vehicles up to 14,000 lbs. GVWR starting in the 1997 MY.

Several states in the northeastern United States have chosen to adopt the California emission regulations starting in the 1998 MY and are known as "Green States".

Green States receive California-certified vehicles for passenger cars and light trucks up to 6,000 lbs. GVWR. Starting in the 2004 MY, Federal vehicle over 8,500 lbs. will start phasing in OBD-II.

Starting in 2004 MY, gasoline-fueled medium duty passenger vehicles are required to have OBD-II. Federal OBD-II applies to all gasoline engine vehicles up to 8,500 lbs. GVWR starting in the 1996 MY and all diesel engine vehicles up to 8,500 lbs. GVWR starting in the 1997 MY.

OBD-II system implementation and operation is described in the remainder of this document.

1.4 Malfunction Indicator Lamp Illumination

If the engine control module recognizes a malfunction that leads to increased emission values, it indicates them by illuminating the malfunction indicator lamp (MIL) which is located in the instrument cluster.

The ECM switches on the MIL after the ignition is switched on. Shortly after the engine is started, the MIL goes out if the ECM does not detect a malfunction that increases the emission values.

If the ECM recognizes a malfunction that leads to increased emissions during the operation of the engine, the ECM switches on the MIL and an entry is stored in the DTC memory of the ECM.

The engine control module (ECM) communicates with data bus capable control modules via a CAN Data Link.

The data bus capable control modules are connected via data bus wires, which are twisted together (CAN high and CAN low), and exchange information with the ECM. Missing or

implausible information on the data bus is recognized and stored as a malfunction based on specific DTC criteria.

The malfunction indicator lamp (MIL) is illuminated as a result of a CAN message sent by the ECM. The MIL can be turned on, turned off, or blink, depending on the message received.

1.6 Electronic Power Control Warning Lamp

The engine control module monitors electronic power control components when the ignition is switched on.

If a malfunction is recognized in the EPC system, the ECM switches on the EPC warning lamp, which is located in the instrument cluster, and an entry is stored in the DTC memory of the ECM.

2 Description and Operation

⇒ "2.1 Fuel Supply System", page 4
⇒ "2.2 Evaporative Emission System", page 4
⇒ "2.3 Electronic Engine Power Control", page 5
⇒ "2.4 Fuel Injection System", page 5
⇒ "2.5 Engine Control Module", page 5
⇒ "2.6 Exhaust System Components", page 6
⇒ "2.7 Secondary Air Injection System", page 6
⇒ "2.8 Ignition System", page 6
⇒ "2.9 Automatic Transmission", page 6

Check for technical bulletins that may supersede any information included in this manual.

Observe all safety precautions:

⇒ "1.1 Safety Precautions", page 1

View clean working conditions:

⇒ "1.2 Clean Working Conditions", page 2

LAMBORGHINI Gallardo (2009) - Description and Operation - 1

Note

All manufacturers special tools as well as common tools may contain a manufacturer specific part number. These tools may be substituted with an equivalent aftermarket tool or are available for purchase through the manufacturer.
◆ Manufacturers special tools as well as common tools that contain a manufacturer specific part number may be referenced in the test procedure illustrations showing the tool use or installation. If the manufacturer specific tool is not being used, an equivalent aftermarket tool may be installed in the same manner as the manufacturers special tool.

2.1 Fuel Supply System

For all fuel supply system component locations, removal/installation procedures and torque specifications, refer to the service manual.

2.2 Evaporative Emission System

The evaporative emission system has been designed to minimize the release of hydrocarbons from the fuel system into the atmosphere. The evaporative system components all work together with the ECM to prevent fuel vapor from escaping and route it to the intake manifold to be burned during normal combustion.

The leak detection system checks the integrity of the evaporative emission system by pressurizing system.

When leak detection is activated, a pump pressurizes the evaporative system.
During the leak diagnosis, the system is monitored for a specific time period. If the pressure does not drop a specific amount during the time period, the system is considered to be sealed.

If the pressure drops greater than a specified amount during a specific time period, the system is pressurized once more.

The engine control module measures the time until the pressure drops again. The control module uses the measured value to determine the size of the leak.

Leak diagnosis is activated automatically shortly following every engine start. If a malfunction is determined, an entry is made to the DTC memory. The Malfunction Indicator Lamp in the instrument cluster is illuminated if the malfunction is recognized for two subsequent starts.

For all evaporative system component locations, hose routing, removal/installation procedures and torque specifications, refer to the service manual.

2.3 Electronic Engine Power Control

For EPC, the throttle valve is not operated by a cable from the accelerator pedal. There is no mechanical connection between the accelerator pedal and the throttle valve.

The position of the accelerator pedal is communicated to engine control module (ECM) by the throttle position sensor / accelerator pedal position sensor 2 (variable resistances; stored in one housing) that are connected with the accelerator pedal.

The accelerator pedal position (driver's intention) is a main input unit for the ECM.

Operation of the throttle valve occurs via an electric motor, the throttle drive for in the throttle valve control module. This is true across the entire engine speed and engine load spectrum.

The throttle valve is operated by the EPC according to specifications of engine control module (ECM).

With engine off and ignition switched on, the ECM controls the throttle drive according to specifications of throttle position sensor / accelerator pedal position sensor 2. This means, if the accelerator pedal is pressed half way, the throttle drive opens the throttle valve to the same degree; i.e. throttle valve is then opened approximately half way.

With engine running under load, ECM can open or close the throttle valve independently of the throttle position sensor / accelerator pedal position sensor 2.

This means, for example, that the throttle valve could be fully opened even though the accelerator pedal has only been pressed half way. This has the advantage of preventing torque losses at the throttle valve.

In addition, it results in a significant reduction in emissions and fuel consumption under certain load conditions.

It would be incorrect to think that EPC consists of only one or two components. EPC is much more of a system containing all components that contribute to recognizing, controlling and monitoring the position of the throttle valve.

2.4 Fuel Injection System

For all fuel injection system component locations, removal/installation procedures and torque specifications, refer to the service manual.

2.5 Engine Control Module

The ECM regulates fuel injection, throttle valve control module, oxygen sensor regulation, ignition, knock control, evaporative emission purge valve, engine speed limitation through the fuel injectors or the power supply relay, as well as OBD functions.

2.6 Exhaust System Components

For all exhaust system, emission control component locations, removal/installation procedures and torque specifications, refer to the service manual.

2.7 Secondary Air Injection System

The secondary air injection system improves the secondary oxidation within the catalytic converter which are due to the rich mixture during the cold start phase where the exhaust emissions contain an increased level of unburned hydrocarbons, thereby reducing harmful emissions. The heat released by secondary oxidation shortens the startup time of the catalytic converter considerably, as well as significantly improves emissions quality during the cold-running phase.

During a cold start, the secondary air injection system injects air behind the exhaust valves. This produces an oxygen rich exhaust gas, causes the after burning and reduces the heating-up phase of the catalytic converter.
In addition, the secondary air injection system is switched on (after a delay) during idle after every subsequent engine start (up to a maximum coolant temperature) and is checked through on board diagnostic functions.

For all secondary air injection system component locations, removal/ installation procedures and torque specifications, refer to the service manual.

2.8 Ignition System

For all ignition and glow plug system component locations, removal/installation procedures and torque specifications, refer to the service manual.

2.9 Automatic Transmission

The transmission control module receives information from transmission related components and uses this information to control shifting and operation of the transmission.

For all automatic transmission component locations, removal/installation procedures and torque specifications, refer to the service manual.

3 Diagnosis and Testing

⇒ "3.1 Preliminary Check", page 7
⇒ "3.2 Readiness Code", page 7
⇒ "3.3 Diagnostic Modes 01 - 0A", page 9
⇒ "3.4 DTC Tables", page 42

3.1 Preliminary Check

Prior to component diagnosis, a preliminary check must be performed.

Check the technical bulletins for information that may supersede any information included in this manual.

  • Connect the scan tool.
  • Switch the ignition on.
  • Using the scan tool, check for any stored or related DTCs.

If other DTCs are stored:

– Repair these DTCs first before performing the following procedure.

If no other DTCs are stored:

  • Using the scan tool, erase the DTC memory. Refer to
    ⇒ "3.3.5 Diagnostic Mode 04 - Erase DTC Memory", page 15.
  • Perform a road test to attempt to duplicate the customers complaint.

If the DTC returns:

- Perform the diagnostic procedure.

If the DTC does not return:

  • The fault is intermittent or a sporadic condition may exist.
  • Check the suspected component, electrical harness and electrical harness connectors for damage, corrosion, loose or broken terminals.
  • If necessary, repair the faulty wiring connection.
  • Perform a road test to verify the repair.

If the DTC returns:

- Perform the diagnostic procedure.

If the DTC does not return:

The fault may have been the result of a loose electrical connection.

  • Generate readiness code. Refer to
    ⇒ "3.2 Readiness Code", page 7.

3.2 Readiness Code

Diagnostics are performed at regular intervals during normal vehicle operation. After repairing an emissions related system, a readiness code is generated by road testing the vehicle.

If a malfunction is recognized during the drive cycle, it will be stored in the DTC memory.

The OBD drive cycle operation will be monitored with a hand held diagnostic tool. Consult the manufacturer's instruction manual for correct tool operation.

The readiness code is erased every time the DTC memory is erased or any time the battery is disconnected. If the DTC memory has been erased or the battery is disconnected, a new readiness code must be generated.

Only erase the DTC memory if a DTC has been stored.

General Recommendations

Most monitors will complete easier and quicker using a “steady-foot” and “smooth” acceleration during the drive cycle operation, cruise, and acceleration modes.

Operating Conditions

For the EVAP monitor test, the coolant temperature and the ambient air temperature must be between 10^ C and 35^ C with a difference between them no greater than 4^ C. The ambient air temperature must not change more than 4^ C during the drive cycle procedure (e.g. when driving out of a heated workshop in the winter).

Test requirements

  • Erase the DTC memory.
  • Coolant temperature must be between 80^ C and 110^ C .
    • The Intake Air Temperature (IAT) must be between 10^ C and 35^ C.
  • Battery voltage must be a minimum of 12.5 volts.
  • Fuel tank level 1/4 to 3/4 full.

LAMBORGHINI Gallardo (2009) - Readiness Code - 1

WARNING

When performing the drive cycle operation, pay strict attention to driving conditions and please observe and obey all posted speed limits. Failure to follow these instructions may result in personal injury or possible death.

Drive Cycle Procedure

  • Connect the scan tool.
  • Switch the ignition on and start the vehicle.
    – Idle the vehicle for 2-3 minutes. This executes the O2S Heater, Misfire, Secondary AIR, Fuel Trim, and Purge system monitors.
  • Drive the vehicle at 45-55 mph for a continuous 7-minute period, avoid stopping. This executes the EVAP, O2S, Fuel Trim, and Misfire monitors.
  • Accelerate the vehicle to an engine speed of 5000 RPM (with automatic transmission use the tip-tronic mode); lift off the throttle until the engine speed is around 1200 rpm. This executes the fuel cut off
  • Accelerate the vehicle smoothly to 60-65 mph, cruise constantly for 5 min, this executes the Catalyst; O2S, Misfire, Fuel Trim, and Purge System monitors.
  • Decelerate and idle the vehicle again for 3 minutes. This executes the Misfire, Secondary AIR, Fuel Trim, and Purge system monitors.

- Check the status of the readiness code.

i Note

Depending on the scan tool used. The readiness code status may be displayed as complete, passed or OK.

- If any engine monitor fails the drive cycle test. Repeat the drive cycle test until all engine monitors have successfully run through and passed.

i Note

When repeating the drive cycle operation for a failed EVAP monitor or thermostat-monitor, allow the engine to cool until the coolant temperature and the ambient air temperature are be between 10^ C and 35^ C with a difference between them no greater than 4^ C is observed and repeat the drive cycle operation.

If the drive cycle operation fails again.

- Check the DTC memory for stored DTC's.

Repair the vehicle if necessary.

- Repeat the drive cycle operation until all engine monitors have successfully run through and passed.

- Remove the scan tool and switch the ignition off.

- End of operation.

3.3 Diagnostic Modes 01 - 0A

⇒ "3.3.1 Diagnostic Mode 01 - Read Current System Data", page 10
⇒ "3.3.2 Diagnostic Mode 02 - Read Operating Conditions", page 12
⇒ "3.3.3 Diagnostic Mode 03 - Read DTC Memory", page 13
⇒ "3.3.4 Interrogating the Fault Memory", page 14
⇒ "3.3.5 Diagnostic Mode 04 - Erase DTC Memory", page 15
⇒ "3.3.6 Diagnostic Mode 05 - Check Lambda Test Results", page 16
⇒ "3.3.7 Diagnostic Mode 06 - Read Test Results for Specific Diagnostic Functions", page 16
→ "3.3.8 Diagnostic Mode 07 - Read Faults Detected During the Current or Last Driving Cycle", page 38
⇒ "3.3.9 Diagnostic Mode 08 - Request Control of On-Board System, Test or Component", page 39
⇒ "3.3.10 Diagnostic Mode 09 - Read Vehicle Information", page 40
⇒ "3.3.11 Diagnostic Mode 0A - Check Permanent DTC Memory", page 41

The information provided in Modes 01 through 09 displays the various levels of emission related data that may be monitored, as well as the ability to retrieve and read stored DTC trouble codes, erase stored DTC trouble codes, generate readiness codes, and select the various PIDs and Test-IDs used within the modes to monitor the engine, and emission related component parameters.

The following table provides a link to all diagnostic modes that monitor all components and systems which influence the emission quality.

i Note

Depending on scan tool and protocol used, the information in diagnostic mode 01 may be referred to by different names such as Test-ID (TID), Hex-ID, Component-ID (CID), or On-Board Diagnostic Monitor Identifier (OBDMID).

3.3.1 Diagnostic Mode 01 - Read Current System Data

Diagnostic Mode 01 makes it possible to access current emissions-related measured values and diagnostic data. The original measured values (no replacement values), input and output data and system status information are displayed using Diagnostic Mode 1.

Test requirement

• Coolant temperature at least 80°C.

Procedure

  • Connect the scan tool.
  • Start the engine and run at idle.
  • Select "Diagnostic Mode 1: Obtain data.".

- From the following table, select the desired the "PID" that is to be monitored, e.g. "PID 05-Coolant temperature".

i Note

More than one "PID" may be selected and monitored.

The current values of the component or system that is being monitored will be displayed on the scan tool screen.

PIDDescription
00Supported definition PIDs01-20
01:Number of malfunctions in Mode 3/MIL, Status/Readiness status
03:Fuel System Status
04:Calculated load value
05:Coolant temperature
06:Oxygen sensor integrator Bank 1 / Bank 3
07:Oxygen sensor adaptation value Bank 1 / Bank 3
08:Oxygen sensor integrator Bank 2 / Bank 4
09:Oxygen sensor adaptation value Bank 2 / Bank 4
0B:Intake manifold pressure
0C:Engine speed
0D:Vehicle speed
0E:Ignition angle cylinder 1
0F:Intake air temperature
10:Air mass
11:Throttle valve position 1 absolute
12:Secondary air injection
13:Location of oxygen sensor LSF
14:LSF sensor voltage Bank 1 Sensor 1, Oxygen sensor integrator Bank 1
15:LSF sensor voltage Bank 1 Sensor 2
16:LSF sensor voltage Bank 1 Sensor 3
18:LSF sensor voltage Bank 2 Sensor 1, Oxygen sensor integrator Bank 2
19:LSF sensor voltage Bank 2 Sensor 2
1A:LSF sensor voltage Bank 2 Sensor 3
1D:OBD requirements
15:LSF sensor voltage Bank 1 Sensor 1, Oxygen sensor integrator Bank 1
17:LSF sensor voltage Bank 2 Sensor 2
19:LSF sensor voltage Bank 3 Sensor 2
1B:LSF sensor voltage Bank 4 Sensor 2
1C:OBD requirements
1F:Time after engine start
20:Supported definition PIDs 21 -40
21:Distance covered with MIL ON
23:Fuel pressure (rail pressure)
2C:EGR activation
2D:EGR error
2E:Tank ventilation valve activation
30:No. of WUCs after erasing DTC memory
31:Distance driven after erasing DTD memory
33:Ambient pressure
34:Oxygen sensor actual value Bank 1 - Sensor 1, Oxygen sensor monitoring pump current Bank 1 - Sensor 1
36:Oxygen sensor actual value Bank 2 - Sensor 1, Oxygen sensor monitoring pump current Bank 2 - Sensor 1
38:Oxygen sensor actual value Bank 3- Sensor 1, Oxygen sensor monitoring pump current Bank 3- Sensor 1
3A:Oxygen sensor actual value Bank 4 - Sensor 1, Oxygen sensor monitoring pump current Bank 4 - Sensor 1
3C:Catalytic converter temperature Bank 1 – Sensor 1
3D:Catalytic converter temperature Bank 2 – Sensor 1
40:Supported definition PIDs41 - 60
41:Monitor status in this driving cycle
42:Control modules system voltage
43:Absolute load value
44:Oxygen sensor specified value
45:Relative throttle valve position
46:Ambient temperature
47:Absolute throttle valve position 2
49:Absolute accelerator pedal position 1
4A:Absolute accelerator pedal position 2
4C:Throttle valve specified position
56:Offset oxygen sensor control behind cat. Bank 1 / Bank 3
$58:Offset oxygen sensor control behind cat. Bank 2 / Bank 4
  • Switch the ignition off.
  • End of diagnosis.

3.3.2 Diagnostic Mode 02 - Read Operating Conditions

When an emissions-related fault (pending DTC, visible in mode 07) is first detected, operating conditions are stored. Mode 02 makes it possible to access this freeze frame data as soon as this fault is shown in mode 03. Each control module only shows freeze frame data for one fault via mode 02. Therefore, there are two priority levels. If there is a malfunction with higher priority, the freeze frame data is overwritten.

– Fault with higher priority: Misfire malfunction or fuel trim malfunction.
– Fault with normal priority: All other emissions-related faults.

LAMBORGHINI Gallardo (2009) - Diagnostic Mode 02 - Read Operating Conditions - 1

Note

Depending on scan tool and protocol used, the information in diagnostic mode 02 may be referred to by different names such as Test-ID (TID), Hex-ID, Component-ID (CID), or On-Board Diagnostic Monitor Identifier (OBDMID).

Procedure

  • Connect the scan tool.
  • Start the engine and run at idle.

LAMBORGHINI Gallardo (2009) - Diagnostic Mode 02 - Read Operating Conditions - 2

Note

If the engine does not start, crank the engine using starter for at least 5 seconds, do not switch the ignition off afterward under any circumstances.

  • Select "Diagnostic Mode 2: Obtain operating conditions.".
  • From the following table, select the desired the "PID", e.g. "PID 05-Coolant temperature" that is to be monitored.

LAMBORGHINI Gallardo (2009) - Diagnostic Mode 02 - Read Operating Conditions - 3

Note

More than one "PID" may be selected and monitored.

The current values of the component or system that is being monitored will be displayed on the scan tool screen.

PIDComponent or System
00Supported definition, PIDs 01-20
02:Fault code that activated the Freeze Frame save
03:Fuel system status
04:Calculated load value
05:Coolant temperature
06:Oxygen sensor integrator Bank 1 / Bank 3
07:Oxygen sensor adaptation value Bank 1 / Bank 3
08:Oxygen sensor integrator Bank 2 / Bank 4

The information and procedures published below are strictly confidential and intended exclusively for authorized operators and individuals. All copyrights are the property of Automobili Lamborghini S.p.A based on copyright law. The company reserves the right to make updates and modifications. The reprinting, reproduction, forwarding to unauthorized people and/or to third parties and partial or entire translation thereof are prohibited without written authorization from Automobili Lamborghini S.p.A.

PIDComponent or System
09:Oxygen sensor adaptation Bank 2 / Bank 4
0B:Intake manifold pressure
0C:Engine speed
0D:Vehicle speed
0E:Ignition angle
0F:Intake air temperature
10:Air mass
11:Absolute throttle valve position 1 (throttle valve signal 1)
12:Secondary air injection status
1F:Time since engine start
20:supported definition, PIDs 21- 40
23:Fuel pressure (rail pressure) (only FSI)
2C:EGR activation (only EGR designs)
2D:EGR error (only EGR designs)
2E:Tank ventilation valve activation
33:Ambient pressure
40:Supported definition, PIDs 41-60
42:Control modules system voltage
43:Absolute load value
44:Oxygen sensor specified value
45:Relative throttle valve position
46:Ambient temperature
47:Absolute throttle valve position 2 (Throttle valve position signal 2)
49:Absolute accelerator pedal position 1
4A:Absolute accelerator pedal position 2 )
4C:Throttle valve specified position
56:Offset oxygen sensor control behind cat., Bank 1 / Bank 3
58:Offset oxygen sensor control behind cat., Bank 2 / Bank 4
  • Switch the ignition off.
  • End of diagnosis.

3.3.3 Diagnostic Mode 03 - Read DTC Memory

Diagnostic Mode 03 makes it possible to read emissions-related faults (confirmed DTCs: faults which have activated the MIL) in the ECM and in the TCM.

When the Engine Control Module (ECM) recognizes an emission related fault it turns on the Malfunction Indicator Lamp (MIL) or if a Electronic Throttle Malfunction is recognized, the Engine Control Module (ECM) turns on the Electronic Power Control (EPC) Warning Lamp which are both located in the instrument cluster.

The DTC's are sorted by SAE code with the DTC tables consisting of a 5-digit alpha-numeric value.

i Note

Depending on scan tool and protocol used, diagnostic mode 03 and the information provided may be referred to by a different name.

The following tables provide a breakdown and explanation of the DTC code.

P-Codes

Component group
PxxxxDTC for the drivetrain
Norm-Code
P 0xxxTroublecodes defined by SAE with specified malfunction texts
P 1xxxAdditional emission relevant DTCs provided by the manufacturer
P 2xxxDTCs defined by SAE with specified texts, from MY2000
P3xxxAdditional emission relevant DTCs provided by the manufacturer from MY 2000
Component group
Repair group
PX0XXFuel and air mixture and additional emission regulations
PX1XXFuel and air ratios
PX2XXFuel and air ratios
PX3X X Ignition system
PX4X X Additional exhaust system
PX5XX Speed and idle control
PX6XX Control module and output signals
Px7x xTransmission
PX8X XTransmission
Px9x xControlmodules, input and output signals

U-Codes

Component group
U x xx XDTC for network (CAN bus)
Norm-Code
U 0 xx xTrouble codes defined by SAE with specified malfunction texts

3.3.4 Interrogating the Fault Memory

Procedure

- Connect the scan tool.

The information and procedures published below are strictly confidential and intended exclusively for authorized operators and individuals. All copyrights are the property of Automobili Lamborghini S.p.A based on copyright law. The company reserves the right to make updates and modifications. The reprinting, reproduction, forwarding to unauthorized people and/or to third parties and partial or entire translation thereof are prohibited without written authorization from Automobili Lamborghini S.p.A.

  • Switch the ignition to the "ON" position.
  • Select "Diagnostic Mode 03: Interrogating fault memory".
  • The stored DTC or DTC's will be displayed on the scan tool screen.

The following table is an example of the DTC information that may be displayed on the scan tool screen:

Indication example Explanation
P0444 SAE Diagnostic Trouble Code (DTC)
Evaporative Emission (EVAP) Canister Purge Regulator ValveMalfunctioning wiring path or malfunctioning component
Circuit Open Malfunction type as next

Refer to the following DTC tables for the diagnostic repair procedure:

◆ SAE P0xxxDTCs. ⇒ "3.4.1 SAE P0xxx DTCs", page 42.
◆ SAE P1xxx-DTCs ⇒ "3.4.2 SAE P1xxx DTCs", page 90.
◆ SAE P2xxxDTCs. => "3.4.3 SAE P2xxx DTCs", page 98.
◆ SAE P3xxxDTCs. ⇒ “3.4.4 SAE P3xxx DTCs”, page 118.
◆ SAE U0xxxDTCs, ⇒ "3.4.5 SAE U0xxx DTCs", page 120.

- Switch the ignition off.

3.3.5 Diagnostic Mode 04 - Erase DTC Memory

Diagnostic Mode 04 makes it possible to erase the DTC memory and to reset all emissions-related diagnostic data. In that way, all faults in the DTC memory in the ECM and TCM are erased. The adaptation values may also be reset.

Emissions-related diagnostic data includes (as applicable):

  • MIL Status
    ◆ - Number of DTCs
    ◆ - Readiness Bits
    ◆ - Confirmed DTCs
    ◆ - Pending DTCs
    ◆ - DTC that belongs to freeze frame
  • Freeze frame data
    ◆ - Test results of specific diagnostic functions
    ◆ - Distance driven with "MIL ON"
    ◆ - Number of Warm-Up Cycles after erasing the DTC memory
    ◆ - Distance driven after erasing the DTC memory
    ◆ - Misfire counter

LAMBORGHINI Gallardo (2009) - Diagnostic Mode 04 - Erase DTC Memory - 1

Note

Depending on scan tool and protocol used, diagnostic mode 04 and the information provided may be referred to by a different name.

Procedure

- Connect the scan tool.

- Switch the ignition to the "ON" position.

- Select "Diagnostic Mode 03: Interrogating fault memory".

- Then select "Mode 4: Reset/delete diagnostic data".

The scan tool will display: "Diagnostic data are being erased".

- Switch the ignition off.

3.3.6 Diagnostic Mode 05 - Check Lambda Test Results

LAMBORGHINI Gallardo (2009) - Diagnostic Mode 05 - Check Lambda Test Results - 1

Note

The diagnostic information for "Diagnostic Mode 5: check lambda test results" is not supported in this section of the 2010 R8 5.2L Generic Scan Tool service manual and has been moved to "Diagnostic Mode 6: Checking test results of components that are not continuously monitored" section.

♦ Refer to “Diagnostic Mode 6: Checking test results of components that are not continuously monitored” for the static values of all oxygen sensors and all emission related components

⇒ "3.3.7 Diagnostic Mode 06 - Read Test Results for Specific Diagnostic Functions", page 16.

LAMBORGHINI Gallardo (2009) - Note - 1

Note

Depending on scan tool and protocol used, diagnostic mode 05 and the information provided may be referred to by a different name.

3.3.7 Diagnostic Mode 06 - Read Test Results for Specific Diagnostic Functions

Diagnostic Mode 06 makes it possible to retrieve test results for special components and systems which are continuously or not continuously monitored. If the diagnosis of a system is complete, the diagnostic result and the corresponding thresholds are saved and displayed in mode 06. This data remains saved (even with the ignition off) until either new diagnostic results become available or the DTC memory is erased.

The values of the individual test results must reach the specified value or must be within the min. and max. limits.

LAMBORGHINI Gallardo (2009) - Diagnostic Mode 06 - Read Test Results for Specific Diagnostic Functions - 1

Note

Depending on the scan tool and protocol used, the information displayed in diagnostic mode 06 may be referred to by different names such as Test-ID (TID), Hex-ID, Component-ID (CID), or On-Board Diagnostic Monitor Identifier (OBDMID).

Test requirements

  • Exhaust system must be properly sealed between catalytic converter and cylinder head.
  • No DTCs in the DTC memory.
    • Coolant temperature at least 80°C.

Work procedure

  • Connect the scan tool.
  • Start the engine and let run at idle speed.
  • Select "Mode 6: Check test the results of components that are not continuously monitored".

Select the desired "Test-ID".

The current minimum and maximum values will be displayed on the scan tool screen.

OBDMID (Hex-ID) Component orSystem
01 (01): ⇒ page 20Oxygen Sensor Monitor Bank 1 - Sensor 1
02 (02): ⇒ page 20Oxygen Sensor Monitor Bank 1 - Sensor 2
05 (05): ⇒ page 22Oxygen Sensor Monitor Bank 2 - Sensor 1
06 (06): ⇒ page 22Oxygen Sensor Monitor Bank 2 - Sensor 2
09 (09): ⇒ page 23Oxygen Sensor Monitor Bank 3 - Sensor 1
10 (0A): ⇒ page 23Oxygen Sensor Monitor Bank 3 - Sensor 2
13 (0D): ⇒ page 24Oxygen Sensor Monitor Bank 4 - Sensor 1
14 (0E): ⇒ page 24Oxygen Sensor Monitor Bank 4 - Sensor 2
33 (21): ⇒ page 25Catalyst Monitor Bank 1
34 (22): ⇒ page 25Catalyst Monitor Bank 2
35 ($23): ⇒ page 26Catalyst Monitor Bank 3

The information and procedures published below are strictly confidential and intended exclusively for authorized operators and individuals. All copyrights are the property of Automobili Lamborghini S.p.A based on copyright law. The company reserves the right to make updates and modifications. The reprinting, reproduction, forwarding to unauthorized people and/or to third parties and partial or entire translation thereof are prohibited without written authorization from Automobili Lamborghini S.p.A.

36 (24): ⇒ page 26Catalyst Monitor Bank 4
58 (3A): ⇒ page 27EVAP Monitor (0.90)
59 (3B): ⇒ page 27EVAP Monitor (0.40)
60 (3C): ⇒ page 27EVAP Monitor (0.20)
61 (3D): ⇒ page 28Purge Flow Monitor
65 (41): ⇒ page 28Oxygen Sensor Heater MonitorBank 1 - Sensor 1
66 (42): ⇒ page 29Oxygen Sensor Heater MonitorBank 1 - Sensor 2
69 (45): ⇒ page 29Oxygen Sensor Heater MonitorBank 2 - Sensor 1
70 (46): ⇒ page 30Oxygen Sensor Heater MonitorBank 2 - Sensor 2
73 (49): ⇒ page 30Oxygen Sensor Heater MonitorBank 3 - Sensor 1
74 (4A): ⇒ page 30Oxygen Sensor Heater MonitorBank 3 - Sensor 2
77 (4D): ⇒ page 31Oxygen Sensor Heater MonitorBank 4 - Sensor 1
78 (4E): ⇒ page 31Oxygen Sensor Heater MonitorBank 4 - Sensor 2
113 (71): ⇒ page 32Secondary Air Injection (AIR) System Bank 1
114 (72): ⇒ page 32Secondary Air Injection (AIR) System Bank 2
115 (73): ⇒ page 33Secondary Air Injection (AIR) System Bank 3
116 (74): ⇒ page 33Secondary Air Injection (AIR) System Bank 4
162 (A2): ⇒ page 33Mis-Fire Cylinder 1 Data
163 (A3): ⇒ page 34Mis-Fire Cylinder 2 Data
164 (A4): ⇒ page 34Mis-Fire Cylinder 3 Data
165 (A5): ⇒ page 35Mis-Fire Cylinder 4 Data
166 (A6): ⇒ page 35Mis-Fire Cylinder 5 Data
OBDMID (Hex-ID) Component orSystem
167 (A7): ⇒ page 33Mis-Fire Cylinder 6 Data
168 (A8): ⇒ page 33Mis-Fire Cylinder 7 Data
169 (A9): ⇒ page 34Mis-Fire Cylinder 8 Data
170 (AA): ⇒ page 34Mis-Fire Cylinder 9 Data
171 ($AB): ⇒ page 35Mis-Fire Cylinder 10 Data

OBDMID 01 (\$01): Oxygen Sensor Monitor Bank 1 - Sensor 1

  • Connect the scan tool.
  • Start the engine and let run at idle speed.
  • Select "Mode 6: Check test the results of components that are not continuously monitored".

Select "OBDMID 01 (\$01)".

  • Select the desired "Test-ID".
  • Check specified values at idle.
Test-ID (TID) (Hex-ID)DTC Component or System Min. Max.Additional Information
131 (83) P0133 Response Check. 0.32 1.999 Refer to DTC P0133 inthe DTC table.
132 (84) P2195 Rationality Check. -0.05999 0.05999 Refer to DTC P2195 inthe DTC table
132 ($84) P2196 Rationality Check. -0.05999 0.05999 Refer to DTC P2196 inthe DTC table
  • If any component or system fails to meet the specified values, refer to Diagnostic "Mode 03: Interrogating Fault Memory" to check for stored DTC's or the corresponding diagnostic repair procedure.
  • Switch the ignition off.

OBDMID 02 (\$02): Oxygen Sensor Monitor Bank 1- Sensor 2

  • Connect the scan tool.
  • Start the engine and let run at idle speed.
  • Select "Mode 6: Check test the results of components that are not continuously monitored".

Select "OBDMID 02 (\$02)".

  • Select the desired "Test-ID".
  • Check specified values at idle.
Test-ID (TID) (Hex-ID)DTC Component or System Min. Max.Additional Information
01 (01) --NO DTC 45 mV 860 mV --
02 (02) --NO DTC 45 mV 860 mV --
07 (07) --NO DTC 0.0 V 450 mV --
08 (08) --NO DTC 450 mV 1.299 V --
129 (81) P0139 Signaactivity check. 0 mV 860 mVRefer to DTC P0139 inthe DTC table.
130 (82) P0139 Signaactivity check. 45 mV 1.299 VRefer to DTC P0139 inthe DTC table.
131 ($83) P0139 Fuel cut off check. 0 V 8.192 V Refer to DTC P0139 inthe DTC table.

- If any component or system fails to meet the specified values, refer to Diagnostic "Mode 03: Interrogating Fault Memory" to check for stored DTC's or the corresponding diagnostic repair procedure.

- Switch the ignition off.

OBDMID 05 (\$05): Oxygen Sensor Monitor Bank 2 - Sensor 1

- Connect the scan tool.

- Start the engine and let run at idle speed.

- Select "Mode 6: Check test the results of components that are not continuously monitored".

Select "OBDMID 05 (\$05)".

- Select the desired "Test-ID".

- Check specified values at idle.

Test-ID (TID) (Hex-ID)DTC Component or System Min. Max.Additional Information
131 (83) P0153 Response Check. 0.32 1.999 Refer to DTC P0153 in the DTC table.
132 (84)P2197Rationality Check.-0.05999-0.05999Refer to DTC P2197 in the DTC table
132 ($84)P2198Rationality Check.-0.05999-0.05999Refer to DTC P2198 in the DTC table

- If any component or system fails to meet the specified values, refer to Diagnostic "Mode 03: Interrogating Fault Memory" to check for stored DTC's or the corresponding diagnostic repair procedure.

- Switch the ignition off.

OBDMID 06 (\$06): Oxygen Sensor Monitor Bank 2 - Sensor 2

- Connect the scan tool.

- Start the engine and let run at idle speed.

- Select "Mode 6: Check test the results of components that are not continuously monitored".

Select "OBDMID 06 (\$06)".

- Select the desired "Test-ID".

- Check specified values at idle.

The information and procedures published below are strictly confidential and intended exclusively for authorized operators and individuals. All copyrights are the property of Automobili Lamborghini S.p.A based on copyright law. The company reserves the right to make updates and modifications. The reprinting, reproduction, forwarding to unauthorized people and/or to third parties and partial or entire translation thereof are prohibited without written authorization from Automobili Lamborghini S.p.A.

Test-ID (TID) (Hex-ID)DTC Component or System Min. Max.Additional Information
01 (01) --NO DTC 45 mV 860 mV --
02 (02) --NO DTC 45 mV 860 mV --
07 (07) --NO DTC 0 mV 8192 mV --
08 (08) --NO DTC 450 mV 1.299 V --
129 (81) P0159 Signal activity check. 0 mV 860 mVRefer to DTC P0159 in the DTC table.
130 (82)P0159Signal activity check.45 mV1.299 mVRefer to DTC P0159 in the DTC table.
131 ($83)P0159Fuel cut off check.0 V202 mVRefer to DTC P0159 in the DTC table.

- If any component or system fails to meet the specified values, refer to Diagnostic "Mode 03: Interrogating Fault Memory" to check for stored DTC's or the corresponding diagnostic repair procedure.

- Switch the ignition off.

OBDMID 09 (\$09): Oxygen Sensor Monitor Bank 3 - Sensor 1

  • Connect the scan tool.
  • Start the engine and let run at idle speed.
  • Select "Mode 6: Check test the results of components that are not continuously monitored".

Select "OBDMID 09 (\$09)".

  • Select the desired "Test-ID".
  • Check specified values at idle.
Test-ID (TID) (Hex-ID)DTC Component or System Min. Max.Additional Information
131 (83)P3209Response Check.0.321.999Refer to DTC P3209 in the DTC table.
132 (84)P3144Rationality Check.-0.059990.05999Refer to DTC P3144 in the DTC table
132 ($84)P3145Rationality Check.-0.059990.05999Refer to DTC P3145 in the DTC table
  • If any component or system fails to meet the specified values, refer to Diagnostic "Mode 03: Interrogating Fault Memory" to check for stored DTC's or the corresponding diagnostic repair procedure.
  • Switch the ignition off.

OBDMID 10 (\$0A): Oxygen Sensor Monitor Bank 3 - Sensor 2

  • Connect the scan tool.
  • Start the engine and let run at idle speed.
  • Select "Mode 6: Check test the results of components that are not continuously monitored".

Select "OBDMID 06 (\$06)".

  • Select the desired "Test-ID".
  • Check specified values at idle.
Test-ID (TID) (Hex-ID)DTC Component or System Min. Max.Additional Information

The information and procedures published below are strictly confidential and intended exclusively for authorized operators and individuals. All copyrights are the property of Automobili Lamborghini S.p.A based on copyright law. The company reserves the right to make updates and modifications. The reprinting, reproduction, forwarding to unauthorized people and/or to third parties and partial or entire translation thereof are prohibited without written authorization from Automobili Lamborghini S.p.A.

01 (01) --NO DTC 79 mV 860 mV --
02 (02) --NO DTC 79 mV 860 mV --
07 (07) --NO DTC 0.0 mV 8192 mV --
08 (08) --NO DTC 450 mV 1.299 V --
129 (81) P0139 Signaactivity check. 0 mV 0.625 VRefer to DTCP0139 inthe DTC table.
130 (82) P3224 Signaactivity check. 0.625 V 1.299V Refer to DTCP3224 inthe DTC table.
131 ($83)P3224Fuel cut off check.0 V0.202 V

- If any component or system fails to meet the specified values, refer to Diagnostic "Mode 03: Interrogating Fault Memory" to check for stored DTC's or the corresponding diagnostic repair procedure.

- Switch the ignition off.

OBDMID 13 (\$0D): Oxygen Sensor Monitor Bank 4 - Sensor 1

  • Connect the scan tool.
  • Start the engine and let run at idle speed.
  • Select "Mode 6: Check test the results of components that are not continuously monitored".

Select "OBDMID 13 (\$0D)".

  • Select the desired "Test-ID".
  • Check specified values at idle.
Test-ID (TID) (Hex-ID)DTCComponent or SystemMin.Max.Additional Information
131 (83)P3239Response Check.0.321.999Refer to DTC P3239 in the DTC table.
132 (84)P3146 Rationality Check.-0.059990.05999Refer to DTC P3146 in the DTC table
132 ($84)P3147 Rationality Check.-0.059990.05999Refer to DTC P3147 in the DTC table
  • If any component or system fails to meet the specified values, refer to Diagnostic "Mode 03: Interrogating Fault Memory" to check for stored DTC's or the corresponding diagnostic repair procedure.
  • Switch the ignition off.

OBDMID 14 (\$0E): Oxygen Sensor Monitor Bank 4 - Sensor 2

  • Connect the scan tool.
  • Start the engine and let run at idle speed.

- Select "Mode 6: Check test the results of components that are not continuously monitored".

Select "OBDMID 14 (\$0E)".

- Select the desired "Test-ID".

- Check specified values at idle.

Test-ID (TID) (Hex-ID)DTC Component or System Min. Max.Additional Information
01 (01) --NO DTC 45 mV 860 mV --
02 (02) --NO DTC 45 mV 860 mV --
07 (07) --NO DTC 0.0 V 450 mV --
08 (08) --NO DTC 450 mV 1.299 mV --
129 (81)P0159Signal activity check.0 mV860 mVRefer to DTC P0159 in the DTC table.
130 (82)P0159Signal activity check.45 mV1.299 mVRefer to DTC P0159 in the DTC table.
131 ($83)P0159Fuel cut off check.0 V0.202 mVRefer to DTC P0159 in the DTC table.

OBDMID 33 (\$21): Catalyst Monitor Bank 1

- Connect the scan tool.

- Start the engine and let run at idle speed.

- Select "Mode 6: Check test the results of components that are not continuously monitored".

Select "OBDMID 33 (\$21)".

- Select the desired "Test-ID".

- Check specified values at idle.

Test-ID (TID) (Hex-ID)DTC Component or System Min. Max.Additional Information
132 ($84) P0420 Conversion Capability (storage) Check.16 mV1.299 mVRefer to DTC P0420 in the DTC table

- If any component or system fails to meet the specified values, refer to Diagnostic "Mode 03: Interrogating Fault Memory" to check for stored DTC's or the corresponding diagnostic repair procedure.

- Switch the ignition off.

OBDMID 34 (\$22): Catalyst Monitor Bank 2

- Connect the scan tool.

- Start the engine and let run at idle speed.

- Select "Mode 6: Check test the results of components that are not continuously monitored".

Select "OBDMID 34 (\$22)".

- Select the desired "Test-ID".

– Check specified values at idle.

The information and procedures published below are strictly confidential and intended exclusively for authorized operators and individuals. All copyrights are the property of Automobili Lamborghini S.p.A based on copyright law. The company reserves the right to make updates and modifications. The reprinting, reproduction, forwarding to unauthorized people and/or to third parties and partial or entire translation thereof are prohibited without written authorization from Automobili Lamborghini S.p.A.

Test-ID (TID) (Hex-ID)DTC Component or System Min. Max.Additional Information
132 ($84) P0430 Conversion Capability (storage) Check.16 mV 1.900 mV Refer to DTC P0430 in the DTC table

- If any component or system fails to meet the specified values, refer to Diagnostic "Mode 03: Interrogating Fault Memory" to check for stored DTC's or the corresponding diagnostic repair procedure.

- Switch the ignition off.

OBDMID 35 (\$23): Catalyst Monitor Bank 3

- Connect the scan tool.

- Start the engine and let run at idle speed.

- Select "Mode 6: Check test the results of components that are not continuously monitored".

Select "OBDMID 35 (\$23)".

- Select the desired "Test-ID".

- Check specified values at idle.

Test-ID (TID) (Hex-ID)DTC Component or System Min. Max.Additional Information
132 ($84) P0420 Conversion Capability (storage) Check.16 mV 1.999 mV Refer to DTC P0420 in the DTC table

- If any component or system fails to meet the specified values, refer to Diagnostic "Mode 03: Interrogating Fault Memory" to check for stored DTC's or the corresponding diagnostic repair procedure.

- Switch the ignition off.

Test-ID 36 (\$24): Catalyst Monitor Bank 4

- Connect the scan tool.

- Start the engine and let run at idle speed.

- Select "Mode 6: Check test the results of components that are not continuously monitored".

Select "OBDMID 35 (\$23)".

- Select the desired "Test-ID".

- Check specified values at idle.

Test-ID (TID) (Hex-ID)DTC Component or System Min. Max.Additional Information
132 ($84) P0430 Conversion Capability (storage) Check.16 mV 1.999 mV Refer to DTC P0430 in the DTC table

- If any component or system fails to meet the specified values, refer to Diagnostic "Mode 03: Interrogating Fault Memory" to check for stored DTC's or the corresponding diagnostic repair procedure.

- Switch the ignition off.

OBDMID 58 (\$3A): Fuel Tank EVAP System Leak Test (0.090")

  • Connect the scan tool.
  • Start the engine and let run at idle speed.
  • Select "Mode 6: Check test the results of components that are not continuously monitored".

Select "OBDMID 59 (\$3B)".

  • Select the desired "Test-ID".
  • Check specified values at idle.
Test-ID (TID) (Hex-ID)DTC Component or System Min. Max.Additional Information
129 ($81)P0455Fuel Tank Leak Test.Large leak.0.95 - 1.1 Sec65535 Refer to DTC P0455 in the DTC table
  • If any component or system fails to meet the specified values, refer to Diagnostic "Mode 03: Interrogating Fault Memory" to check for stored DTC's or the corresponding diagnostic repair procedure.
  • Switch the ignition off.

OBDMID 59 (3B): EVAP Monitor (0.040)

  • Connect the scan tool.
  • Start the engine and let run at idle speed.
  • Select "Mode 6: Check test the results of components that are not continuously monitored".

Select "OBDMID 59 (\$3B)".

  • Select the desired "Test-ID".
  • Check specified values at idle.
Test-ID (TID) (Hex-ID)DTC Component or System Min. Max.Additional Information
129 ($81) P0442 Fuel Tank Leak Test. Small Leak.1.7 - 2.2 Sec65535 Refer to DTC P0442 in the DTC table
  • If any component or system fails to meet the specified values, refer to Diagnostic "Mode 03: Interrogating Fault Memory" to check for stored DTC's or the corresponding diagnostic repair procedure.
  • Switch the ignition off.

OBDMID 60 (3C): EVAP Monitor (0.020)

  • Connect the scan tool.
  • Start the engine and let run at idle speed.
  • Select "Mode 6: Check test the results of components that are not continuously monitored".

Select "OBDMID 60 (\$3C)".

  • Select the desired "Test-ID".
  • Check specified values at idle.
Test-ID (TID) (Hex-ID)DTC Component or System Min. Max.Additional Information
129 ($81) P0456 Fuel Tank Leak Test. Pin hole Leak.4.0...5.0 Sec65535 Refer to DTC P0456 in the DTC table

- If any component or system fails to meet the specified values, refer to Diagnostic "Mode 03: Interrogating Fault Memory" to check for stored DTC's or the corresponding diagnostic repair procedure.

- Switch the ignition off.

- End of diagnosis.

OBDMID 61 (3D): Tank Vent Valve function check

  • Connect the scan tool.
  • Start the engine and let run at idle speed.
  • Select "Mode 6: Check test the results of components that are not continuously monitored".

Select "OBDMID 61 (\$3D)".

  • Select the desired "Test-ID".
  • Check specified values at idle.
Test-ID (TID) (Hex-ID)DTC Component or System Min. Max.Additional Information
128 (80) P0441 Function Check. 0.1 1.999 Refer to DTC P0441 in the DTC table
130 (82) --NO DTC 0.0498 10.0 --
130 ($82) --NO DTC -10.0 0.0498 --
  • If any component or system fails to meet the specified values, refer to Diagnostic "Mode 03: Interrogating Fault Memory" to check for stored DTC's or the corresponding diagnostic repair procedure.
  • Switch the ignition off.

OBDMID 65 (\$41): Oxygen Sensor Heater Monitor Bank 1 – Sensor 1

  • Connect the scan tool.
  • Start the engine and let run at idle speed.
  • Select "Mode 6: Check test the results of components that are not continuously monitored".

Select "OBDMID 65 (\$41)".

  • Select the desired "Test-ID".
  • Check specified values at idle.
Test-ID (TID) (Hex-ID)DTC Component or System Min. Max.Additional Information
133 ($85) P0135 Readiness Check.684.99°C1200°CRefer to DTC P0135 in the DTC table.

- If any component or system fails to meet the specified values, refer to Diagnostic "Mode 03: Interrogating Fault Memory" to check for stored DTC's or the corresponding diagnostic repair procedure.

- Switch the ignition off.

OBDMID 66 (\$42): Oxygen Sensor Heater Monitor Bank 1 – Sensor 2

  • Connect the scan tool.
  • Start the engine and let run at idle speed.
  • Select "Mode 6: Check test the results of components that are not continuously monitored".
    Select "OBDMID 66 (\$42)".
  • Select the desired "Test-ID".
  • Check specified values at idle.
Test-ID (TID) (Hex-ID)DTC Component or System Min. Max. Additional Information
129 ($81) P0141 Readiness Check. 560 22950 Refer to DTC P0141 in the DTC table.
  • If any component or system fails to meet the specified values, refer to Diagnostic "Mode 03: Interrogating Fault Memory" to check for stored DTC's or the corresponding diagnostic repair procedure.
  • Switch the ignition off.

OBDMID 69 (\$45): Oxygen Sensor Heater Monitor Bank 2- Sensor 1

  • Connect the scan tool.
  • Start the engine and let run at idle speed.
  • Select "Mode 6: Check test the results of components that are not continuously monitored".

Select "OBDMID 69 (\$45)".

  • Select the desired "Test-ID".
  • Check specified values at idle.
Test-ID (TID) (Hex-ID)DTC Component or System Min. Max.Additional Information
133 ($85) P0135 Readiness Check.684.99°C1200°CRefer to DTC P0135 in the DTC table.

- If any component or system fails to meet the specified values, refer to Diagnostic "Mode 03: Interrogating Fault Memory" to check for stored DTC's or the corresponding diagnostic repair procedure.

- Switch the ignition off.

OBDMID 70 (\$46): Oxygen Sensor Heater Monitor Bank 2 – Sensor 2

  • Connect the scan tool.
  • Start the engine and let run at idle speed.
  • Select "Mode 6: Check test the results of components that are not continuously monitored".

Select "OBDMID 70 (\$46)".

  • Select the desired "Test-ID".
  • Check specified values at idle.
Test-ID (TID) (Hex-ID)DTC Component or System Min. Max.Additional Information
129 ($81) P0161 Readiness Check. 0 560..22950Refer to DTC P0161 in the DTC table.

- If any of the components or systems fail to meet the specified values, refer to Diagnostic "Mode 03: Interrogating Fault Memory" to check for stored DTC's or the corresponding diagnostic repair procedure.

- Switch the ignition off.

OBDMID 73 (\$49): Oxygen Sensor Heater Monitor Bank 3 – Sensor 1

  • Connect the scan tool.
  • Start the engine and let run at idle speed.
  • Select "Mode 6: Check test the results of components that are not continuously monitored".

Select "OBDMID 73 (\$49)".

  • Select the desired "Test-ID".
  • Check specified values at idle.
Test-ID (TID) (Hex-ID)DTC Component or System Min. Max.Additional Information
133 ($85) P3252 Readiness Check.684.998°C1200°CRefer to DTC P3252 in the DTC table.
  • If any component or system fails to meet the specified values, refer to Diagnostic "Mode 03: Interrogating Fault Memory" to check for stored DTC's or the corresponding diagnostic repair procedure.
  • Switch the ignition off.

OBDMID 74 (\$4A): Oxygen Sensor Heater Monitor Bank 3 – Sensor 2

  • Connect the scan tool.
  • Start the engine and let run at idle speed.

- Select "Mode 6: Check test the results of components that are not continuously monitored".

Select "OBDMID 70 (\$46)".

- Select the desired "Test-ID".

- Check specified values at idle.

Test-ID (TID) (Hex-ID)DTC Component or System Min. Max.Additional Information
129 ($81) P3218 Readiness Check. 0 7 -10 Refer to DTC P3218 in the DTC table.

- If any of the components or systems fail to meet the specified values, refer to Diagnostic "Mode 03: Interrogating Fault Memory" to check for stored DTC's or the corresponding diagnostic repair procedure.

- Switch the ignition off.

OBDMID 77 (\$4D): Oxygen Sensor Heater Monitor Bank 4 – Sensor 1

- Connect the scan tool.

- Start the engine and let run at idle speed.

- Select "Mode 6: Check test the results of components that are not continuously monitored".

Select "OBDMID 77 (\$4D)".

- Select the desired "Test-ID".

- Check specified values at idle.

Test-ID (TID) (Hex-ID)DTC Component or System Min. Max.Additional Information
133 ($85) P33153 Readiness Check.684.998°C1200°CRefer to DTC P3153 in the DTC table.

- If any component or system fails to meet the specified values, refer to Diagnostic "Mode 03: Interrogating Fault Memory" to check for stored DTC's or the corresponding diagnostic repair procedure.

- Switch the ignition off.

OBDMID 78 (\$4E): Oxygen Sensor Heater Monitor Bank 4 – Sensor 2

- Connect the scan tool.

- Start the engine and let run at idle speed.

- Select "Mode 6: Check test the results of components that are not continuously monitored".

Select "OBDMID 78 (\$4E)".

- Select the desired "Test-ID".

– Check specified values at idle.

Test-ID (TID) (Hex-ID)DTC Component or System Min. Max.Additional Information
129 ($81) P3248 Readiness Check. 0 7 -10 Refer toDTC P3248 inthe DTC table.

- If any of the components or systems fail to meet the specified values, refer to Diagnostic "Mode 03: Interrogating Fault Memory" to check for stored DTC's or the corresponding diagnostic repair procedure.

- Switch the ignition off.

OBDMID \$71 (113): Secondary Air Injection (AIR) System 1 (Bank 1)

  • Connect the scan tool.
  • Start the engine and let run at idle speed.
  • Select "Mode 6: Check test the results of components that are not continuously monitored".

Select "OBDMID 71 (\$113)".

  • Select the desired "Test-ID".
  • Check specified values at idle.
Test-ID (TID) (Hex-ID)DTC Component or System Min. Max. Additional Information
128 ($80) P0491 Function Check 0.0468 -- Refer to DTC P0491 in the DTC table.
  • If any of the components or systems fail to meet the specified values, refer to Diagnostic "Mode 03: Interrogating Fault Memory" to check for stored DTC's or the corresponding diagnostic repair procedure.
  • Switch the ignition off.

OBDMID \$72 (114): Secondary Air Injection (AIR) System 2 (Bank 2)

  • Connect the scan tool.
  • Start the engine and let run at idle speed.
  • Select "Mode 6: Check test the results of components that are not continuously monitored".

Select "Test-ID 72 (\$114)".

  • Select the desired "Test-ID".
  • Check specified values at idle.
Test-ID (TID) (Hex-ID)DTC Component or System Min. Max.Additional Information
128 ($80) P0492 Function Check 0.0468 -- Refer to DTC P0492 inthe DTC table.

- If any of the components or systems fail to meet the specified values, refer to Diagnostic "Mode 03: Interrogating Fault Memory" to check for stored DTC's or the corresponding diagnostic repair procedure.

- Switch the ignition off.

OBDMID \$73 (115): Secondary Air Injection (AIR) System 3 (Bank 3)

  • Connect the scan tool.
  • Start the engine and let run at idle speed.
  • Select "Mode 6: Check test the results of components that are not continuously monitored".

Select "OBDMID 115 (\$73)".

  • Select the desired "Test-ID".
  • Check specified values at idle.
Test-ID (TID) (Hex-ID)DTC Component or System Min. Max.Additional Information
128 ($80) P1497 Function Check 0.0468 -- Refer to DTC P1497 inthe DTC table.
  • If any of the components or systems fail to meet the specified values, refer to Diagnostic "Mode 03: Interrogating Fault Memory" to check for stored DTC's or the corresponding diagnostic repair procedure.
  • Switch the ignition off.

OBDMID \$74 (116): Secondary Air Injection (AIR) System 4 (Bank 4)

  • Connect the scan tool.
  • Start the engine and let run at idle speed.
  • Select "Mode 6: Check test the results of components that are not continuously monitored".

Select "OBDMID 116 (\$74)".

  • Select the desired "Test-ID".
    – Check specified values at idle.
Test-ID (TID) (Hex-ID)DTC Component or System Min. Max. Additional Information
128 ($80) P1498 Function Check 0.0468 -- Refer to DTC P1498 inthe DTC table.
  • If any of the components or systems fail to meet the specified values, refer to Diagnostic "Mode 03: Interrogating Fault Memory" to check for stored DTC's or the corresponding diagnostic repair procedure.
  • Switch the ignition off.

OBDMID 162 (\$A2): Mis-Fire Cylinder 1 Data

  • Connect the scan tool.
  • Start the engine and let run at idle speed.
  • Select "Mode 6: Check test the results of components that are not continuously monitored".

Select "OBDMID 162 (\$A2)".

  • Select the desired "Test-ID (TID)" or "Hex-ID".
  • Check specified values at idle.
Test-ID (TID) (Hex-ID)DTC Component or System Min./Max.Values Additional Information
11 (0B)P0301 Crankshaft speed fluctuation, single or multiple misfire check.0 - 65535 (counts) Refer to DTC P0301 in the DTC table
12 (0C)P0301 Crankshaft speed fluctuation, single or multiple misfire check.0 - 65535 (counts) Refer to DTC P0301 in the DTC table
  • If any of the components or systems fail to meet the specified values, refer to Diagnostic "Mode 03: Interrogating Fault Memory" to check for stored DTC's or the corresponding diagnostic repair procedure.
  • Switch the ignition off.

OBDMID 163 (\$A3): Mis-Fire Cylinder 2 Data

  • Connect the scan tool.
  • Start the engine and let run at idle speed.
  • Select "Mode 6: Check test the results of components that are not continuously monitored".

Select "OBDMID 163 (\$A3)".

  • Select the desired "Test-ID (TID)" or "Hex-ID".
    – Check specified values at idle.
Test-ID (TID) (Hex-ID)DTC Component or System Min./Max.Values Additional Information
11 (0B)P0302 Crankshaft speed fluctuation, single or multiple misfire check.0 - 65535 (counts) Refer to DTC P0302 in the DTC table
12 (0C)P0302 Crankshaft speed fluctuation, single or multiple misfire check.0 - 65535 (counts) Refer to DTC P0302 in the DTC table
  • If any of the components or systems fail to meet the specified values, refer to Diagnostic "Mode 03: Interrogating Fault Memory" to check for stored DTC's or the corresponding diagnostic repair procedure.
  • Switch the ignition off.

OBDMID 164 (\$A4): Mis-Fire Cylinder 3 Data

  • Connect the scan tool.
  • Start the engine and let run at idle speed.
  • Select "Mode 6: Check test the results of components that are not continuously monitored".

Select "OBDMID 164 (\$A4)".

- Select the desired "Test-ID (TID)" or "Hex-ID".

- Check specified values at idle.

Test-ID (TID) (Hex-ID)DTC Component or System Min./Max.Values Additional Information
11 (0B)P0303 Crankshaft speed fluctuation, single or multiple misfire check.0 - 65535 (counts) Refer to DTC P0303 in the DTC table
12 (0C)P0303 Crankshaft speed fluctuation, single or multiple misfire check.0 - 65535 (counts) Refer to DTC P0303 in the DTC table

- If any of the components or systems fail to meet the specified values, refer to Diagnostic "Mode 03: Interrogating Fault Memory" to check for stored DTC's or the corresponding diagnostic repair procedure.

- Switch the ignition off.

OBDMID 165 (\$A5): Mis-Fire Cylinder 4 Data

- Connect the scan tool.

- Start the engine and let run at idle speed.

- Select "Mode 6: Check test the results of components that are not continuously monitored".

Select "OBDMID 165 (\$A5)".

- Select the desired "Test-ID (TID)" or "Hex-ID".

- Check specified values at idle.

Test-ID (TID) (Hex-ID)DTC Component or System Min./Max.Values Additional Information
11 (0B)P0304 Crankshaft speed fluctuation, single or multiple misfire check.0 - 65535 (counts) Refer to DTC P0304 in the DTC table
12 (0C)P0304 Crankshaft speed fluctuation, single or multiple misfire check.0 - 65535 (counts) Refer to DTC P0304 in the DTC table

- If any of the components or systems fail to meet the specified values, refer to Diagnostic "Mode 03: Interrogating Fault Memory" to check for stored DTC's or the corresponding diagnostic repair procedure.

- Switch the ignition off.

OBDMID 166 (\$A6): Mis-Fire Cylinder 5 Data

- Connect the scan tool.

- Start the engine and let run at idle speed.

- Select "Mode 6: Check test the results of components that are not continuously monitored".

Select "OBDMID 166 (\$A6)".

- Select the desired "Test-ID (TID)" or "Hex-ID".

- Check specified values at idle.

Test-ID (TID) (Hex-ID)DTC Component or System Min./Max.Values Additional Information
11 (0B)P0305 Crankshaft speed fluctuation, single or multiple misfire check.0 - 65535 (counts) Refer to DTC P0305 in the DTC table
12 (0C)P0305 Crankshaft speed fluctuation, single or multiple misfire check.0 - 65535 (counts) Refer to DTC P0305 in the DTC table

- If any of the components or systems fail to meet the specified values, refer to Diagnostic "Mode 03: Interrogating Fault Memory" to check for stored DTC's or the corresponding diagnostic repair procedure.

- Switch the ignition off.

OBDMID 167 (\$A7): Mis-Fire Cylinder 6 Data

- Connect the scan tool.

- Start the engine and let run at idle speed.

- Select "Mode 6: Check test the results of components that are not continuously monitored".

Select "OBDMID 167 (\$A7)".

- Select the desired "Test-ID (TID)" or "Hex-ID".

- Check specified values at idle.

Test-ID (TID) (Hex-ID)DTC Component or System Min./Max.Values Additional Information
11 (0B)P0306 Crankshaft speed fluctuation, single or multiple misfire check.0 - 65535 (counts) Refer to DTC P0306 in the DTC table
12 (0C)P0306 Crankshaft speed fluctuation, single or multiple misfire check.0 - 65535 (counts) Refer to DTC P0306 in the DTC table

- If any of the components or systems fail to meet the specified values, refer to Diagnostic "Mode 03: Interrogating Fault Memory" to check for stored DTC's or the corresponding diagnostic repair procedure.

- Switch the ignition off.

OBDMID 168 (\$A8): Mis-Fire Cylinder 7 Data

- Connect the scan tool.

- Start the engine and let run at idle speed.

- Select "Mode 6: Check test the results of components that are not continuously monitored".

Select "OBDMID 168 (\$A8)".

- Select the desired "Test-ID (TID)" or "Hex-ID".

- Check specified values at idle.

Test-ID (TID) (Hex-ID)DTC Component or System Min./Max.Values Additional Information
11 (0B)P0307 Crankshaft speed fluctuation, single or multiple misfire check.0 - 65535 (counts) Refer to DTC P0307 in the DTC table
12 (0C)P0307 Crankshaft speed fluctuation, single or multiple misfire check.0 - 65535 (counts) Refer to DTC P0307 in the DTC table

- If any of the components or systems fail to meet the specified values, refer to Diagnostic "Mode 03: Interrogating Fault Memory" to check for stored DTC's or the corresponding diagnostic repair procedure.

- Switch the ignition off.

Test-ID 169 (\$A9): Mis-Fire Cylinder 8 Data

- Connect the scan tool.

- Start the engine and let run at idle speed.

- Select "Mode 6: Check test the results of components that are not continuously monitored".

Select "Test-ID 169 (\$A9)".

- Select the desired "Test-ID (TID)" or "Hex-ID".

- Check specified values at idle.

Test-ID (TID) (Hex-ID)DTC Component or System Min./Max.Values Additional Information
11 (0B)P0308 Crankshaft speed fluctuation, single or multiple misfire check.0 - 65535 (counts) Refer to DTC P0308 in the DTC table
12 (0C)P0308 Crankshaft speed fluctuation, single or multiple misfire check.0 - 65535 (counts) Refer to DTC P0308 in the DTC table

- If any of the components or systems fail to meet the specified values, refer to Diagnostic "Mode 03: Interrogating Fault Memory" to check for stored DTC's or the corresponding diagnostic repair procedure.

- Switch the ignition off.

Test-ID 170 (\$AA): Mis-Fire Cylinder 9 Data

- Connect the scan tool.

- Start the engine and let run at idle speed.

- Select "Mode 6: Check test the results of components that are not continuously monitored".

Select "Test-ID 170 (\$AA)".

- Select the desired "Test-ID (TID)" or "Hex-ID".

- Check specified values at idle.

Test-ID (TID) (Hex-ID)DTC Component or System Min./Max.Values Additional Information
11 (0B)P0309 Crankshaft speed fluctuation, single or multiple misfire check.0 - 65535 (counts) Refer to DTC P0309 in the DTC table
12 (0C)P0309 Crankshaft speed fluctuation, single or multiple misfire check.0 - 65535 (counts) Refer to DTC P0309 in the DTC table

- If any of the components or systems fail to meet the specified values, refer to Diagnostic "Mode 03: Interrogating Fault Memory" to check for stored DTC's or the corresponding diagnostic repair procedure.

- Switch the ignition off.

Test-ID 171 (\$AB): Mis-Fire Cylinder 10 Data

- Connect the scan tool.

- Start the engine and let run at idle speed.

- Select "Mode 6: Check test the results of components that are not continuously monitored".

Select "Test-ID 171 (\$AB)".

- Select the desired "Test-ID (TID)" or "Hex-ID".

- Check specified values at idle.

Test-ID (TID) (Hex-ID)DTC Component or System Min./Max.Values Additional Information
11 (0B)P0310 Crankshaft speed fluctuation, single or multiple misfire check.0 - 65535 (counts) Refer to DTC P0310 in the DTC table
12 (0C)P0310 Crankshaft speed fluctuation, single or multiple misfire check.0 - 65535 (counts) Refer to DTC P0310 in the DTC table

- If any of the components or systems fail to meet the specified values, refer to Diagnostic "Mode 03: Interrogating Fault Memory" to check for stored DTC's or the corresponding diagnostic repair procedure.

- Switch the ignition off.

3.3.8 Diagnostic Mode 07 - Read Faults Detected During the Current or Last Driving Cycle

Mode 07 makes it possible to check emissions-related faults which appeared during the current or last driving cycle (pending DTCs).

A pending DTC is saved the first time a fault is detected (output via Mode 07).

- If the fault is detected again by the end of the following driving cycle, a confirmed DTC is entered (output via Mode 03) and the MIL is activated.

- If this malfunction is not detected again by the end of the following driving cycle, the corresponding pending code will be deleted at the end of the driving cycle.

Note

Depending on scan tool and protocol used, some of the information provided may be referred to by a different name.

Procedure

- Connect the scan tool.

- Start the engine and run at idle.

i Note

If the engine does not start, crank the engine using starter for at least 5 seconds. Do not switch the ignition off afterward.

- Select "Mode 7: Check test results of components that are continuously monitored".

The number of pending DTCs or "0 malfunctions detected" will be displayed on the scan tool screen.

– Refer to the following DTC tables for the diagnostic repair procedure:

◆ SAE P0xxx DTCs ⇒ "3.4.1 SAE P0xxx DTCs", page 42.

◆ SAE P1xxx DTCs ⇒ “3.4.2 SAE P1xxx DTCs”, page 90.

◆ SAE P2xxx DTCs ⇒ “3.4.3 SAE P2xxx DTCs”, page 98.

◆ SAE P3xxx DTCs ⇒ “3.4.4 SAE P3xxx DTCs”, page 118.

◆ SAE U0xxx DTCs ⇒ “3.4.5 SAE U0xxx DTCs”, page 120.

- Switch the ignition off.

3.3.9 Diagnostic Mode 08 - Request Control of On-Board System, Test or Component

Diagnostic Mode 08 is used to control the operation of an onboard system, test or component. A Mode 8 service can be used to turn on-board system ON or OFF, or to cycle an on-board system, test or component ON or OFF for a specific period of time. The service can also be used to request system status or to report test results.

Diagnostic Mode 08, TID \$01

Diagnostic Mode 08, TID \$01 is used to determine if the evaporative system may be leaking.

Note

Depending on scan tool and protocol used, diagnostic mode 08 and the information provided may be referred to by a different name.

i Note

If the accelerator pedal is depressed during the test, the test will be aborted.

Test requirements

  • No DTCs stored in the DTC memory.
  • Intake Air Temperature (IAT) maximum 60^ .
    • Coolant temperature 80 tp 110°C.
  • Throttle valve angle 12.0 to 16.0% .

Procedure

  • Connect the scan tool.
  • Start the engine and run at idle for at least 15 minutes.
  • Select "Mode 8: Tank Leak Test".
  • Select "Test-ID 01: Tank Leak Test".
  • Check the specified value of the tank leak test at idle.
  • The following will be displayed on the scan tool screen:
Tank leak test Specified value
♦ Test function active♦ Test function is being initiated, please wait♦ Test off♦ Test abortedTest OK

- Switch the ignition off.

If the specified value is obtained:

  • Refer to "Diagnostic mode 03: Interrogating fault memory" to check for any DTC's that may be stored.
  • To repeat the tank test, switch the ignition off and start the engine again and let run for 15 minutes at idle.
  • Switch the ignition off.
  • End of diagnosis.

3.3.10 Diagnostic Mode 09 - Read Vehicle Information

Diagnostic Mode 09 makes it possible to access vehicle-specific information from the ECM and the TCM (where applicable).

Note

Depending on scan tool and protocol used, Diagnostic Mode 09 and the information provided may be referred to by a different name.

Test requirement

- No DTCs stored in the DTC memory.

Procedure

  • Connect the scan tool.
  • Switch the ignition on.
  • Select "Mode 09: Vehicle information".
  • Select the desired "Test-ID".
  • The information requested will be displayed on the scan tool screen.

The following table is a numerical list of all "Test-IDs" that may be selected.

Test-IDDiagnostic text
02: Vehicle identification number e.g.
♦ A different 17 digit number will be displayed for each vehicle
04: Calibration identification e.g.
♦ Engine Control Module (ECM)
♦ Transmission Control Module (TCM)
06: CVN (check sum) e.g.
♦ EC5AE460 the check sum is different for every control module version
♦ 000D105
08: In Use Performance Tracking
  • Switch the ignition off.
  • End of diagnosis.

3.3.11 Diagnostic Mode 0A - Check Permanent DTC Memory

Mode 0A - Check Permanent DTC Memory (Request emissions related diagnostic trouble codes with permanent status after code clear)

Permanent Fault Codes From MY 2010 with Phase-In conforming to CCR 1968.2 (d)(2.2.5): 50% from MY 2010 / 75% from MY 2011 / 100% from MY 2012 The vehicle only participates in Phase-In if all of the OBD-relevant control modules in the vehicle meet these requirements.

Mode 0A may only be supported exclusively by OBD control modules in US vehicles. Mode 0A may not be supported in EOBD vehicles, meaning the control module may not send a response here.

Mode 0A enables the request of all OBD-relevant faults with the status "Permanent Fault Code": - Permanent Fault Codes are Confirmed Fault Codes that are currently activating the MIL. That means faults that are still displayed in Mode 03 but no longer activate the MIL (History Fault Codes) are not Permanent Fault Codes. - Permanent Fault Codes are updated in Mode 0A at the same time as NVRAM storage immediately after switching the ignition off. A newly detected Permanent Fault Code is only visible after switching the ignition off/on in Mode 0A. - Permanent Fault Codes may only be erased in the control module after they are corrected as long as the last diagnostic result was a PASS and the MIL is no longer activated by this fault. The Permanent Fault Codes should be erased from Mode 0A at the same time the MIL switches off when the ignition is switched off/on. - Permanent Fault Codes may not be erased by clearing the DTC memory or disconnecting the power supply. Storage in NVRAM is required.

- Permanent Fault Codes may only be erased after clearing the DTC memory under the following conditions: - As long as no FAIL diagnostic result was detected for a Permanent Fault Code – and at least one PASS diagnostic result was detected - and the Minimum Trip Conditions for a General Denominator (without considering high/ambient temperature) were met in this phase in any DCY after erasing the DTC memory. - The engine control module relays the message "Minimum Trip conditions met" to all other OBD control modules via CAN: CAN message OBD_01, Byte 8, Bit 4: OBD_Minimum_Trip - Permanent Fault Codes may NOT be erased if the diagnostic result is FAIL after clearing the DTC memory. A Pending Fault Code should be stored and the DTC memory line should be overwritten with new Freeze Frame data. (Exception: If the Pending Fault Code is corrected without a Confirmed Fault Code being detected, the Permanent Fault Code may also be erased under the conditions described below.) – Permanent Fault Codes should be erased in engine control modules after Update Programming. At this time, all readiness bits (Mode 01 PID \$01) must be reset to "not complete" [(g)(4.4.6)(D)]. Permanent Fault Codes should not be erased in OBD control modules with Comprehensive Components (CCM) as a single readiness bit if the identical program/data status is being programmed. If a different program/data status is being programmed, Permanent Fault Codes should be erased after Update Programming. - The procedure in Mode 01 through Mode 09 and in the service tester is NOT affected by implementation of the Permanent Fault Codes.

3.4 DTC Tables

⇒ "3.4.1 SAE P0xxx DTCs", page 42
⇒ "3.4.2 SAE P1xxx DTCs", page 90
⇒ "3.4.3 SAE P2xxx DTCs", page 98
⇒ "3.4.4 SAE P3xxx DTCs", page 118
⇒ "3.4.5 SAE U0xxx DTCs", page 120

3.4.1 SAE P0xxx DTCs

Fuel, air mixture, and additional emissions regulations

DTCError MessageDiagnostic ProcedureMalfunction Criteria and Threshold ValueSecondary Parameters with Enable ConditionsMonitoring Time LengthFrequency of checks, MIL Illum
P000AIntake (A) Cam shaft Position Slow Response Bank 1- Check Camshaft Adjustment Valve 1 -N205-.Adjustment angle difference < 5.3...6.6 °CA/s• Engine speed, >550 RPM • ECT, >-7.5°C • Time after engine start, >3.5 Sec. • Number of checks 3 • number of checks@normal operation 3 • Time length for more than 1.5 Sec. • Camshaft position change, >4° CA2 Sec • Continuous• 2 DCY
P000BIntake (B) Cam shaft Position Slow Response Bank 1- Check Camshaft Adjustment Valve 1 (exhaust) - N318-.Adjustment angle difference < 5.3...6.6 °CA/s·Engine speed, >550 RPM·ECT, >-7.5°C·Time after engine start, >3.5 Sec.·Number of checks 3·number of checks@normal operation 3·Time length for more than 1.5 Sec.2 Sec · Continuous·2 DCY
P000CIntake (A) Cam shaft Position Slow Response Bank 2- Check Camshaft Adjustment Valve 2 -N208-.Adjustment angle difference < 5.3...6.6 °CA/s·Engine speed, >550 RPM·ECT, >-7.5°C·Time after engine start, >3.5 Sec.·Number of checks 3·number of checks@normal operation 3·Time length for more than 1.5 Sec.·Camshaft position change, >4° CA2 Sec · Continuous·2 DCY
P000DIntake (B) Cam shaft Position Slow Response Bank 2- Check Camshaft Adjustment Valve 2 (exhaust) - N319-.Adjustment angle difference < 5.3...6.6 °CA/s·Engine speed, >550 RPM·ECT, >-7.5°C·Time after engine start, >3.5 Sec.·Number of checks 3·number of checks@normal operation 3·Time length for more than 1.5 Sec.2 Sec · Continuous·2 DCY
P008AFuel System Pressure Sensor Low pressure system- Check Low Fuel Pressure Sensor - G410-.Actual pressure, < 0.08 MPa-- 5 Sec · Continuous·2 DCY
P008BFuel System Pressure Sensor Low pressure system- Check Low Fuel Pressure Sensor - G410-.Actual pressure, >0.08 MPa-- 5 Sec • Continuous• 2 DCY
P0010Intake (A) Camshaft Position Actuator Circuit / Open (Bank 1)- Check Camshaft Adjustment Valve 1-N205-.Signal voltage 4.4-5.6 V• Camshaft valve, Commanded off• Engine speed, >40 RPM0.5 Sec • Continuous• 2 DCY
P0011Intake (A) Camshaft Position Timing - Over-Advanced (Bank 1)- Check Camshaft Adjustment Valve 1-N205-.Adjustment angle difference >8 ...10 °CA• Engine speed, >550 RPM• ECT, >-7.5°C• Time after engine start, >3.5 Sec.• Number of checks 3• number of checks@normal operation 3• Time length for more than 1.5 Sec.2 Sec • Continuous• 2 DCY
P0013"B" Camshaft Position - Actuator Circuit Bank- Check Camshaft Adjustment Valve 1 (exhaust) - N318-.Signal voltage 4.4...5.6 V• Camshaft valve, Off• Engine speed, >80 RPM0.5 Sec • Continuous• 2 DCY
P0014"B" Camshaft Position - Timing Over-Advanced or System Performance Bank 1- Check Camshaft Adjustment Valve 1 (exhaust) - N318-.Adjustment angle difference >8...10 °CA/s• Engine speed, >550 RPM• ECT, >-7.5°C• Time after engine start, >3.5 Sec.• Number of checks 3• number of checks@normal operation 3• Time length for more than 1.5 Sec.2 Sec • Continuous• 2 DCY
P0016Crankshaft Position - Camshaft Position Correlation Bank 1 Sensor A- Check Camshaft Adjustment Valve 1-N205-.Adaptive value at limit >11° CA• Engine speed, <1000 RPM• Engine load, <30%• ECT, -15-110°C• Time after engine start, >5 Sec.0.6 Sec • Multiple• 2 DCY

The information and procedures published below are strictly confidential and intended exclusively for authorized operators and individuals. All copyrights are the property of Automobili Lamborghini S.p.A based on copyright law. The company reserves the right to make updates and modifications. The reprinting, reproduction, forwarding to unauthorized people and/or to third parties and partial or entire translation thereof are prohibited without written authorization from Automobili Lamborghini S.p.A.

DTCError MessageDiagnostic ProcedureMalfunction Criteria and Threshold ValueSecondary Parameters with Enable ConditionsMonitoring Time LengthFrequency of checks, MIL Illum
P0017Crankshaft Position - Camshaft Position Correlation Bank 1 Sensor B- Check Camshaft Adjustment Valve 1 (exhaust) - N318-.Adaptive value at limit >11° CA·Engine speed, <1000 RPM·Engine load, <30%·ECT, -15-110°C·Time after engine start, >5 Sec.0.6 Sec. ·Multiple ·2 DCY
P0018Crankshaft Position - Camshaft Position Correlation Bank 2 Sensor A- Check Camshaft Adjustment Valve 2 -N208-.Adaptive value at limit >11° CA·Engine speed, <1000 RPM·Engine load, <30%·ECT, -15-110°C·Time after engine start, >5 Sec.0.6 Sec ·Multiple ·2 DCY
P0019Crankshaft Position - Camshaft Position Correlation Bank 2 Sensor B- Check Camshaft Adjustment Valve 2 (exhaust) - N319-.Adaptive value at limit >11° CA·Engine speed, <1000 RPM·Engine load, <30%·ECT, -15-110°C·Time after engine start, >5 Sec.0.6 Sec ·Multiple ·2 DCY
P0020"A" Camshaft Position Actuator Circuit Bank 2- Check Camshaft Adjustment Valve 2 -N208-.Signal voltage 4.4...5.6 V·Camshaft valve, Commanded off·Engine speed, >40 RPM0.5 Sec ·Continuous ·2 DCY
P0021Intake (A) Camshaft Position Timing - Over-Advanced (Bank 2)- Check Camshaft Adjustment Valve 2 -N208-.Adjustment angle difference >8 ...10 °CA·Engine speed, >550 RPM·ECT, >-7.5°C·Time after engine start, >3.5 Sec.·Number of checks 3·number of checks@normal operation 3·Time length for more than 1.5 Sec.2 Sec ·Continuous ·2 DCY
P0023"B" Camshaft Position - Actuator Circuit Bank 2- Check Camshaft Adjustment Valve 2 (exhaust) - N319-.Signal voltage 4.4...5.6 V·Camshaft valve, Off·Engine speed, >80 RPM0.5 Sec ·Continuous ·2 DCY
P0024"B" Camshaft Position - Timing Over-Advanced or System Performance Bank 2- Check Camshaft Adjustment Valve 2 (exhaust) - N319-.Adjustment angle difference >8...10 °CA/s·Engine speed, >550 RPM·ECT, >-7.5°C·Time after engine start, >3.5 Sec.·Number of checks 3·Time length for more than 1.5 Sec.2 Sec ·Continuous ·2 DCY

The information and procedures published below are strictly confidential and intended exclusively for authorized operators and individuals. All copyrights are the property of Automobili Lamborghini S.p.A based on copyright law. The company reserves the right to make updates and modifications. The reprinting, reproduction, forwarding to unauthorized people and/or to third parties and partial or entire translation thereof are prohibited without written authorization from Automobili Lamborghini S.p.A.

DTCError MessageDiagnostic ProcedureMalfunction Criteria and Threshold ValueSecondary Parameters with Enable ConditionsMonitoring Time LengthFrequency of checks, MIL Illum
P0030HO2S Heater Control Circuit (Bank 1, Sensor 1)- Check Oxygen Sensor (O2S) Heater -Z19-.Signal voltage >4.4-5.6 V• Heater, Commanded off• Engine speed, >40 RPM5 Sec • Multiple• 2 DCY
P0031HO2S Heater Control Circuit Low (Bank 1, Sensor 1)- Check Oxygen Sensor (O2S) Heater -Z19-.Signal voltage < 2.15-2.25 V• Heater, Commanded off• Engine speed, >40 RPM5 Sec • Multiple• 2 DCY
P0032HO2S Heater Control Circuit High (Bank 1, Sensor 1)- Check Oxygen Sensor (O2S) Heater -Z19-.Heater current, >2.2 A• Heater, Commanded on• Engine speed, >40 RPM5 Sec • Multiple• 2 DCY
P0036HO2S Heater Control Circuit (Bank 1, Sensor 2)- Oxygen Sensor (O2S) 1 (behind Three Way Catalytic Converter(TWC)) Heater - Z29-.Heater voltage, 4.4-5.6 V• Heater, Commanded off• Engine speed, >40 RPM0.5 Sec • Multiple• 2 DCY
P0037HO2S Heater Control Circuit Low (Bank 1, Sensor 2)- Oxygen Sensor (O2S) 1 (behind Three Way Catalytic Converter (TWC)) Heater - Z29-.Signal voltage, <2.15-3.25 V• Heater, Commanded off• Engine speed, >40 RPM0.5 Sec • Multiple• 2 DCY
P0038HO2S Heater Control Circuit High (Bank 1, Sensor 2)- Oxygen Sensor (O2S) 1 (behind Three Way Catalytic Converter (TWC)) Heater - Z29-.Signal current, >3 A• Heater, Commanded on• Engine speed, >40 RPM0.5 Sec • Multiple• 2 DCY
P0050HO2S Heater Control Circuit Bank 2 Sensor 1- Check Oxygen Sensor (O2S) 2 Heater - Z28-.Signal voltage >4.4-5.6 V• Heater, Commanded off• Engine speed, >40 RPM5 Sec • Multiple• 2 DCY
P0051HO2S Heater Control Circuit Low Bank 2 Sensor 1- Check Oxygen Sensor (O2S) 2 Heater - Z28-.Signal voltage < 2.15-2.25 V• Heater, Commanded off• Engine speed, >40 RPM5 Sec • Multiple• 2 DCY
P0052HO2S Heater Control Circuit High Bank 2 Sensor 1- Check Oxygen Sensor (O2S) 2 Heater - Z28-.Heater current, >2.2 A• Heater, Commanded on• Engine speed, >40 RPM5 Sec • Multiple• 2 DCY

The information and procedures published below are strictly confidential and intended exclusively for authorized operators and individuals. All copyrights are the property of Automobili Lamborghini S.p.A based on copyright law. The company reserves the right to make updates and modifications. The reprinting, reproduction, forwarding to unauthorized people and/or to third parties and partial or entire translation thereof are prohibited without written authorization from Automobili Lamborghini S.p.A.

DTCError MessageDiagnostic ProcedureMalfunction Criteria and Threshold ValueSecondary Parameters with Enable ConditionsMonitoring Time LengthFrequency of checks, MIL Illum
P0056HO2S Heater Control Circuit Bank 2 Sensor 2- Check Oxygen Sensor (O2S) 2 (behind Three Way Catalytic Converter (TWC)) Heater - Z30-.Heater voltage, 4.4-5.6 V• Heater, Commanded off• Engine speed, >40 RPM0.5 Sec • Multiple• 2 DCY
P0057HO2S Heater Control Circuit Low Bank 2 Sensor 2- Check Oxygen Sensor (O2S) 2 (behind Three Way Catalytic Converter (TWC)) Heater - Z30-.Signal voltage, <2.15-3.25 V• Heater, Commanded off• Engine speed, >40 RPM0.5 Sec • Multiple• 2 DCY
P0058HO2S Heater Control Circuit High Bank 2 Sensor 2- Check Oxygen Sensor (O2S) 2 (behind Three Way Catalytic Converter (TWC)) Heater - Z30-.Signal current, >3 A• Heater, Commanded on• Engine speed, >40 RPM0.5 Sec • Multiple• 2 DCY
P0070Ambient Air Temperature Sensor,ambient temperature < -50°CCAN active 6 Sec • Continuous• 2 DCY
P0071Ambient Air Temperature Sensor,• temperature minus engine temperature @ engine start >40...25 K• engine time >6...18 H• ambient air temperature @ engine start <40...25 K• engine temperature @ engine start < 1.5°C• time since engine start >60 Sec• ambient temperature @ engine start <= 5.25°C• vehicle speed >25 MPH• for time >30 Sec• intake air temperature@ engine start <= 5.25°C0 Sec • Once/ DCY• 2 DCY
P0072Ambient Air Temperature Sensor,ambient temperature >87°CCAN active 6 Sec • Continuous• 2 DCY
P0087Fuel Rail/ System Pressure - Too Low- Check Low Fuel Pressure Sensor - G410-.• Pressure control activity, >0.28 MPa• Fuel trim activity, 0.9...2• Difference between actual pressure - Target pressure < -1.2MPa• Lambda control, Closed loop• EVAP purge flow, < 15 kg/h• ECT >60°C• IAT < 60°C• Engine speed, 500...900 RPM• Engine load, 10...20%• Fuel cut off, Not active10 Sec • Continuous• 2 DCY

The information and procedures published below are strictly confidential and intended exclusively for authorized operators and individuals. All copyrights are the property of Automobili Lamborghini S.p.A based on copyright law. The company reserves the right to make updates and modifications. The reprinting, reproduction, forwarding to unauthorized people and/or to third parties and partial or entire translation thereof are prohibited without written authorization from Automobili Lamborghini S.p.A.

DTCError MessageDiagnostic ProcedureMalfunction Criteria and Threshold ValueSecondary Parameters with Enable ConditionsMonitoring Time LengthFrequency of checks, MIL Illum
P0089Fuel Pressure Regulator 1 Performance- Check Fuel Pressure Sensor - G247-.· Difference between actual pressure - Target pressure < -0.2 MPa · Difference between actual pressure - Target pressure >0.15 MPa · Pressure control activity >0.450 < -0.250 MPa· Time after engine start, 60 Sec. · Fuel cut off, Not active · Time after fuel cut off, 20 Sec. · Time after engine start, 60 Sec.· 6 Sec · 5 Sec · 120 Sec· Continuous · 2 DCY
P01002 MAF Sensors MAF 1 MAF 2PWM length 0 uSecengine speed >80 RPMSec · Continuous· 2 DCY
P01012 MAF Sensors MAF 1· mass air flowHFM2 vs. lower threshold map HFM2 < 0 .. 450 kg/h · mass air flow HFM2 vs. upper threshold map >55... 1082· DTC P1009 (Map) detected · engine speed 1300 .. 5000 RPM · throttle position >12% · vehicle speed 19 .. 99 MPH2 Sec · multiple· 2 DCY
P01022 MAF Sensors MAF 1 MAF 2PWM length < 83 uSecengine speed >80 RPMSec · Continuous· 2 DCY
P01032 MAF Sensors MAF 1 MAF 2PWM length >4500 uSecengine speed >80 RPMSec · Continuous· 2 DCY
P0111Intake Air Temperature Sensor 1 Circuit Rationality CheckIAT engine tempeture @ engine start and IAT minus ambient air temperature @ engine start >40...25 K• engine time >6....18 H• ambient air temperature @ engine start <40...25 K• engine temperature @ engine start < 1.5°C• time since engine start >60 Sec• ambient temperature @ engine start <= 5.25°C• vehicle speed >25 MPH• for time >30 Sec• intake air temperature @ engine start <= 5.25°C0 Sec • Once/ DCY• 2 DCY
P0112Intake Air Temperature Sensor 1 Circuit LowIAT >125.0°C ---2 Sec • Continuous• 2 DCY
P0113Intake Air Temperature Sensor 1 Circuit HighIAT < -36°C - 2Sec • Continuous• 2 DCY
P0116Engine Coolant Temperature Sensor 1 Circuit Range/ Performance· delta ECT <3K · engine temperature minus ambient air temperature @ engine start and engine temperature minus IAT @ engine start > 40...25 K· ECT @ start > 50°C · driving condition one time > 600 Sec · vehicle speed 0.... 99 MPH · mass air flow 0.... 1000 kg/h · and if " no pass result during driving" · ignition off > 600 Sec · engine off time >6....18 H · |intake air temperature @ engine start < 40...25°C · minus ambient air temperature @ engine start| · engine temperature @ engine start < 1.5°C · minus engine temperature @ condition: time since engine start > 60 Sec · ambient temperature @ engine start minus ambient temperature @ condition: <= 5.25°C · vehicle speed > 25 MPH for time >30 Sec · intake air temperature @ engine start minus intake air temperature @ condition: <= 5.25°C · vehicle speed > 25 MPH · for time >30 Sec600 Sec · Once/ DCY · 2 DCY
P0117Engine Coolant Temperature Sensor 1 Circuit LowShort ground-ECT > 141°C-- 2 Sec to Continuous· 2 DCY
P0118Engine Coolant Temperature Sensor 1 Circuit HighShort battery positive or open circuit- ECT < - 45.75°C-- 2 Sec to Continuous· 2 DCY
P0121Throttle Position Sensor 1 Bank 1 Bank 2• TPS1 - TPS2 > 6.3%• and actual TPS 1 - calc. value > actual TPS 2 - calc. value 1 %• actual TPS 1 - calc. value > 9%• TPS electrical range no failure• unthrottled condition not fulfilled• engine speed > 480 RPM• OR• engine speed > 1200 RPM• TPS electrical range no failure• unthrottled condition not fulfilled• engine speed > 480 RPM0.42 Sec • Continuous• 2 DCY
P0122Throttle Position Sensor 1 Bank 1 Bank 2signal < 0.313 V-- 14 Seve/Continuous• 2 DCY
P0123Throttle Position Sensor 1 Bank 1 Bank 2signal > 4.69 V--- 14 Seve/Continuous• 2 DCY
P0130O2 Sensor Circuit• element temperature < 640°C• OR• heater resistance > 950 Ω• exhaerogas temp. > 330°C• fuel cut off not active13 Sec • multiple• 2 DCY
P0131O2 Sensor Circuit , Bank 1- Sensor 1 Low Voltage• virtual mass(VM) voltage < 2 V• Nernst voltage (UN) < 1.75 V• adjustment voltage (IA) < 0.3 V• adjustment voltage (IP) < 0.3 Vengine speed > 25 RPM2 Sec • Continuous• 2 DCY
P0132O2 Sensor Circuit High Voltage• virtual mass(VM) voltage >3 V• Nernst voltage (UN) > 4 V• adjustment voltage (IA) > 1.5 V• adjustment voltage (IP) > 1.5 Vengine speed > 25 RPM2 Sec • Continuous• 2 DCY

The information and procedures published below are strictly confidential and intended exclusively for authorized operators and individuals. All copyrights are the property of Automobili Lamborghini S.p.A based on copyright law. The company reserves the right to make updates and modifications. The reprinting, reproduction, forwarding to unauthorized people and/or to third parties and partial or entire translation thereof are prohibited without written authorization from Automobili Lamborghini S.p.A.

DTCError MessageDiagnostic ProcedureMalfunction Criteria and Threshold ValueSecondary Parameters with Enable ConditionsMonitoring Time LengthFrequency of checks, MIL Illum
P0133O2 Circuit Slow Response• lower valueof both area ratios R2L and L2L in case of symmetric fault < 0.4 • AND • lower value of both counters for area ratio R2L and L2R >= 5• O2S front -- min.operation temperatur is reached > 720°C (for LSU 4.9) • O2S front - time since operation readiness > 10 Sec • O2S front no sensor fault detected in current driving cycle • engine speed 1200 ... 3520 RPM • engine load 15 ... 70% • exhaust system lag time calculation 0.07 ... 0.35 Sec • load gradient threshold <= 10% • gradient of exhaust system lag time calculation <=0.5% • ECT >= 50.3°C • Catalyst temperature >=400°C • lambda control A/ F-Ratio set-point stoichiometric prior to diagnostic fuel steps • lambda control 2. control loop deactivated • forced lambda oscillation deactivated • misfire monitor no fault • canister purge valve no fault • SAIR no fault • EGR no fault • Fuel System additive adaption no fault • VVT no fault • relative fuel amount from transient compensation (wall-applied fuel dynamics and canister purge dynamics) <= 0.160 Sec • Once/ DCY • 2 DCY
P0135O2 Sensor Heater Circuielement temperature < 720°Cheaters control activeheater duty cycle 100%fuel cut off not activeexhaust gas temp. > 300°Ctime after engine start > 50 Secengine shut off time > 300 SecECT@start > -9.8°Cfuel cut off not active45 Sec • multiple• 2 DCY
P0136Oxygen Sensor rear Bank 1 Bank 2delta O2Ssignal rear > 2 Vnumber of heater coupling faults > 4O2S rear readyexhaust gas temp. 250 ... 800°Cfor > 30 Secengine speed > 25 RPM50 Sec • multiple• 2 DCY
P0137O2 Sensor Circuit (Bank 1, Sensor 2)voltage < 60 mV warm engine conditionsO2Signal dewpoint exceededO2S rear fully heated upengine speed > 25 RPMexhaust gas temp. 250 ... 800°Cfor > 30 Sec60 Sec • multiple• 2 DCY
P0138O2 Circuit High Voltagesignal > 1.3O2S rear voltage point exceededO2S rear fully heated upengine speed > 25 RPMexhaust gas temp. 250 ... 800°Cfor > 30 Sec5.1 Sec • multiple• 2 DCY
P0139O2 Circuit Slow Response• O2S rearsignal not oscillating at reference 635...659 mV• O2S signal rear during fuel cut off > 200 mV• mass air flow 17.5...140 kg/h• O2S rear readiness > 30 Sec• modeled exhaust gas temp. > 350°C• fuel cut off > 3.5 Sec• O2S signal rear > 580 mV• O2S rear readiness > 30• modeled exhaust gas temp. > 350°C125 Sec • multiple• 2 DCY
P0140O2 Circuit No Activity Detected• voltage 401 .. 499 mV• exhaust gas temp. > 600°C• and O2S rear internal resistance > 20KΩ• O2Signal ready• exhaust gas temp. 250 ... 800°C• for > 30 Sec• engine speed > 25 RPM200 Sec • multiple• 2 DCY
P0141HO2S Heater Control Circuit High Bank 2 Sensor 2- Check Oxygen Sensor (O2S) 2 (behind Three Way Catalytic Converter (TWC)) Heater - Z30-.• heater resistance 0.88 ... 31.2KΩ• depends on catalyst temp.• modeled exhaust gas temp. 270... 600°C• heater commanded on• engine shut off time >300 Sec• IAT > - 8.3°C10 Sec • multiple• 2 DCY
P0150O2 Sensor Circuit• element temperature < 640°C• OR• heater resistance > 950 Ω• exhaust gas temp. > 330°C• fuel cut off not active13 Sec • multiple• 2 DCY
P0151O2 Sensor Circuit , Bank 1-Sensor 1 Low Voltage• virtual mass(VM) voltage < 2 V• Nernst voltage (UN) < 1.75 V• adjustment voltage (IA) < 0.3 V• adjustment voltage (IP) < 0.3 Vengine speed > 25 RPM2 Sec • Continuous• 2 DCY

The information and procedures published below are strictly confidential and intended exclusively for authorized operators and individuals. All copyrights are the property of Automobili Lamborghini S.p.A based on copyright law. The company reserves the right to make updates and modifications. The reprinting, reproduction, forwarding to unauthorized people and/or to third parties and partial or entire translation thereof are prohibited without written authorization from Automobili Lamborghini S.p.A.

DTCError MessageDiagnostic ProcedureMalfunction Criteria and Threshold ValueSecondary Parameters with Enable ConditionsMonitoring Time LengthFrequency of checks, MIL Illum
P0152O2 Sensor Circuit High Voltage• virtual mass(VM) voltage >3 V• Nernst voltage (UN) >4 V• adjustment voltage (IA) >1.5 V• adjustment voltage (IP) >1.5 V RPMengine speed >25 RPM2 Sec • Continuous• 2 DCY
P0153O2 Circuit Slow Response• lower valueof both area ratios R2L and L2L in case of symmetric fault < 0.4• AND• lower value of both counters for area ratio R2L and L2R >= 5• O2S front -- min.operation temperatur is reached >720°C (for LSU 4.9)• O2S front - time since operation readiness >10 Sec• O2S front no sensor fault detected in current driving cycle• engine speed 1200 ... 3520 RPM• engine load 15 ... 70%• exhaust system lag time calculation 0.07 ... 0.35 Sec• load gradient threshold <= 10%• gradient of exhaust system lag time calculation <=0.5%• ECT >= 50.3°C• Catalyst temperature >=400°C• lambda control A/F-Ratio set-point stoichiometric prior to diagnostic fuel steps• lambda control 2. control loop deactivated• forced lambda oscillation deactivated• misfire monitor no fault• canister purge valve no fault• SAIR no fault• EGR no fault• Fuel System additive adaption no fault• VVT no fault• relative fuel amount from transient compensation (wall-applied fuel dynamics and canister purge dynamics) <= 0.160 Sec • Once/ DCY• 2 DCY

The information and procedures published below are strictly confidential and intended exclusively for authorized operators and individuals. All copyrights are the property of Automobili Lamborghini S.p.A based on copyright law. The company reserves the right to make updates and modifications. The reprinting, reproduction, forwarding to unauthorized people and/or to third parties and partial or entire translation thereof are prohibited without written authorization from Automobili Lamborghini S.p.A.

DTCError MessageDiagnostic ProcedureMalfunction Criteria and Threshold ValueSecondary Parameters with Enable ConditionsMonitoring Time LengthFrequency of checks, MIL Illum
P0155O2 Sensor Heater Circuitelement temperature < 720°Cheaters control activeheater duty cycle 100%fuel cut off not activeexhaust gas temp. > 300°Ctime after engine start > 50 Secengine shut off time > 300 SecECT@start > -9.8°Cfuel cut off not active45 Sec • multiple• 2 DCY
P0156Oxygen Sensor rear Bank 1 Bank 2• delta O2Ssignal rear > 2 Vnumber of heater coupling faults > 4O2S rear readyexhaust gas temp. 250 ... 800°Cfor > 30 Secengine speed > 25 RPM50 Sec • multiple• 2 DCY
P0157O2 Sensor Circuit, Bank 2- Sensor 2 Low Voltagevoltage < 60 mV warm engine conditionsO2Signal dewpoint exceededO2S rear fully heated upengine speed > 25 RPMexhaust gas temp. 250 ... 800°Cfor > 30 Sec60 Sec • multiple• 2 DCY
P0158O2 Sensor Circuit, High Voltagesignal > 1.3O2S rear voltage point exceededO2S rear fully heated upengine speed > 25 RPMexhaust gas temp. 250 ... 800°Cfor > 30 Sec5.1 Sec • multiple• 2 DCY
P0159O2 Sensor Circuit, Slow Response• O2S rearsignal not oscillating at reference 635...659 mVO2S signal rear during fuel cut off > 200 mVmass air flow 17.5...140 kg/hO2S rear readiness > 30 Secmodeled exhaust gas temp. > 350°Cfuel cut off > 3.5 SecO2S signal rear > 580 mVO2S rear readiness > 30modeled exhaust gas temp. > 350°C125 Sec • multiple• 2 DCY

The information and procedures published below are strictly confidential and intended exclusively for authorized operators and individuals. All copyrights are the property of Automobili Lamborghini S.p.A based on copyright law. The company reserves the right to make updates and modifications. The reprinting, reproduction, forwarding to unauthorized people and/or to third parties and partial or entire translation thereof are prohibited without written authorization from Automobili Lamborghini S.p.A.

DTCError MessageDiagnostic ProcedureMalfunction Criteria and Threshold ValueSecondary Parameters with Enable ConditionsMonitoring Time LengthFrequency of checks, MIL Illum
P0160O2 Sensor Circuit No Activity Detectedvoltage 401 .. 499 mVexhaust gas temp. > 600°Cand O2S rear internal resistance > 20KΩO2Signal readyexhaust gas temp. 250 ... 800°Cfor > 30 Secengine speed > 25 RPM200 Sec · multiple· 2 DCY
P0161HO2S Heater Control Circuit High Bank 2 Sensor 2- Check Oxygen Sensor (O2S) 2 (behind Three Way Catalytic Converter (TWC)) Heater - Z30-.heater resistance 0.88 ... 31.2KΩdepends on catalyst temp.modeled exhaust gas temp. 270... 600°Cheater commanded onengine shut off time >300 SecIAT > - 8.3°C10 Sec · multiple· 2 DCY
P0171Fuel System additive Bank 1 Bank 2- Check the Fuel pressure regulator and residual pressure.- Check intake system for leaks (false air).adaptive value > 5 %lambda control closed loopevap purge valve closedECT > 60°Cor substitute ECTIAT < 60°Cengine speed < 880 RPMmass air flow < 20 kg/h45 Sec · Continuous· 2 DCY
P0171Fuel System multiplicative Bank 1 Bank 2- Check the Fuel pressure regulator and residual pressure.- Check intake system for leaks (false air).adaptive value > - 20 %lambda control closed loopevap purge valve closedECT > 60°Cor substitute ECTIAT < 60°Cengine speed 1200...3720 RPMmass air flow 22.5...110 kg/h45 Sec · Continuous· 2 DCY
P0172Fuel System additive Bank 1 Bank 2- Check the Fuel pressure regulator and residual pressure.- Check intake system for leaks (false air).adaptive value < 5 %lambda control closed loopevap purge valve closedECT > 60°Cor substitute ECTIAT < 60°Cengine speed < 880 RPMmass air flow < 20 kg/h45 Sec · Continuous· 2 DCY
P0172Fuel System multiplicative Bank 1 Bank 2- Check the Fuel pressure regulator and residual pressure.- Check intake system for leaks (false air).adaptive value < - 20 %· lambda control closed loop· evap purge valve closed· ECT >60°C· or substitute ECT· IAT < 60°C· engine speed 1200...3720 RPM· mass air flow 22.5...110 kg/h45 Sec · Continuous· 2 DCY
P0174Fuel System additive Bank 1 Bank 2- Check the Fuel pressure regulator and residual pressure.- Check intake system for leaks (false air).adaptive value >5 %· lambda control closed loop· evap purge valve closed· ECT >60°C· or substitute ECT· IAT < 60°C· engine speed < 880 RPM· mass air flow < 20 kg/h45 Sec · Continuous· 2 DCY
P0174Fuel System multiplicative Bank 1 Bank 2- Check the Fuel pressure regulator and residual pressure.- Check intake system for leaks (false air).adaptive value > - 20 %· lambda control closed loop· evap purge valve closed· ECT >60°C· or substitute ECT· IAT < 60°C· engine speed 1200...3720 RPM· mass air flow 22.5...110 kg/h45 Sec · Continuous· 2 DCY
P0175Fuel System additive Bank 1 Bank 2- Check the Fuel pressure regulator and residual pressure.- Check intake system for leaks (false air).adaptive value < 5 %· lambda control closed loop· evap purge valve closed· ECT >60°C· or substitute ECT· IAT < 60°C· engine speed < 880 RPM· mass air flow < 20 kg/h45 Sec · Continuous· 2 DCY
P0175Fuel System multiplicative Bank 1 Bank 2- Check the Fuel pressure regulator and residual pressure.- Check intake system for leaks (false air).adaptive value < - 20 %· lambda control closed loop· evap purge valve closed· ECT > 60°C· or substitute ECT· IAT < 60°C· engine speed 1200...3720 RPM· mass air flow 22.5...110 kg/h45 Sec · Continuous· 2 DCY
P0190Fuel Rail Pressure Sensor- Check Fuel Pressure Sensor - G247-.signal voltage > 4.8 V-- 0.5 Sec · Continuous· 2 DCY
P0191Fuel Rail Pressure Sensor- Check Fuel Pressure Sensor - G247-Rail pressure > 13.5 mPa-- 5 Sec · Continuous· 2 DCY
P0192Fuel Rail Pressure Sensor- Check Fuel Pressure Sensor - G247-.signal voltage < 0.2 V-- 0.5 Sec · Continuous· 2 DCY
P0221Throttle Position Sensor2 Bank1 Bank 2· TPS - TPS 2> 6.3%· actual TPS 2 - calc. value > actual TPS 1 - calc. value· actual TPS 2 - calc. value > 9%· TPS electrical range no failure· unthrottled condition not fulfilled· engine speed > 480 or engine speed > 1200· TPS electrical range no failure· unthrottled condition not fulfilled· engine speed > 4800.42 Sec · Multiple· 2 DCY
P0222Throttle Position Sensor2 Bank1 Bank 2signal < 0.215 V-- 0.14 Voltage Continuous· 2 DCY
P0223Throttle Position Sensor2 Bank1 Bank 2signal > 4.78 V-- 0.14 Voltage Continuous· 2 DCY
P0201Injector Circuit / Open - Cylinder 1- Check the Fuel injectors -N30, N31, N32, N33, N84, N84, N85, N86-.signal current < 2.1 A· injection valve commanded on· high pressure system current > 2.6 A· engine speed > 80 RPM0.2 Sec · Continuous· 2 DCY
P0202Injector Circuit / Open - Cylinder 2- Check the Fuel injectors -N30, N31, N32, N33, N84, N84, N85, N86-.signal current < 2.1 A· injection valve commanded on· high pressure system current > 2.6 A· engine speed > 80 RPM0.2 Sec · Continuous· 2 DCY
P0203Injector Circuit / Open - Cylinder 3- Check the Fuel injectors -N30, N31, N32, N33, N84, N84, N85, N86-.signal current < 2.1 A· injection valve commanded on· high pressure system current > 2.6 A· engine speed > 80 RPM0.2 Sec · Continuous· 2 DCY
P0204Injector Circuit / Open - Cylinder 4- Check the Fuel injectors -N30, N31, N32, N33, N84, N84, N85, N86-.signal current < 2.1 A· injection valve commanded on· high pressure system current > 2.6 A· engine speed > 80 RPM0.2 Sec · Continuous· 2 DCY
P0205Injector Circuit / Open - Cylinder 5- Check the Fuel injectors -N30, N31, N32, N33, N84, N84, N85, N86-.signal current < 2.1 A· injection valve commanded on· high pressure system current > 2.6 A· engine speed > 80 RPM0.2 Sec · Continuous· 2 DCY
P0206Injector Circuit / Open - Cylinder 6- Check the Fuel injectors -N84, N85, N86, N299, N300-.signal current < 2.1 A· injection valve commanded on· high pressure system current > 2.6 A· engine speed > 80 RPM0.2 Sec · Continuous· 2 DCY
P0207Injector Circuit / Open - Cylinder 7- Check the Fuel injectors -N84, N85, N86, N299, N300-.signal current < 2.1 A· injection valve commanded on· high pressure system current > 2.6 A· engine speed > 80 RPM0.2 Sec · Continuous· 2 DCY
P0208Injector Circuit / Open - Cylinder 8- Check the Fuel injectors -N84,N85, N86, N299, N300-.signal current < 2.1 A· injection valve commanded on· high pressure system current > 2.6 A· engine speed > 80 RPM0.2 Sec · Continuous· 2 DCY
P0209Injector Circuit / Open - Cylinder 9- Check the Fuel injectors -N84, N85, N86, N299, N300-.signal current < 2.1 A· injection valve commanded on· high pressure system current > 2.6 A· engine speed > 80 RPM0.2 Sec · Continuous· 2 DCY
P0210Injector Circuit / Open - Cylinder 10- Check the Fuel injectors -N84, N85, N86, N299, N300-.signal current < 2.1 A· injection valve commanded on· high pressure system current > 2.6 A· engine speed > 80 RPM0.2 Sec · Continuous· 2 DCY
P0261Injection Valves - low side cylinder #1- Check the Fuel injectors -N30, N31, N32, N33, N84, N84, N85, N86-.signal current < 2.1 A· injection valve commanded on· high pressure system current > 4.2 A· engine speed > 80 RPM2 Sec · Continuous· 2 DCY
P0262Injection Valves - low side cylinder #1- Check the Fuel injectors -N30, N31, N32, N33, N84, N84, N85, N86-.signal current > 14.7 A· injection valve commanded on· engine speed > 80 RPM2 Sec · Continuous· 2 DCY
P0264Injection Valves - low side cylinder #2- Check the Fuel injectors -N30, N31, N32, N33, N84, N84, N85, N86-.signal current < 2.1 A· injection valve commanded on· high pressure system current > 4.2 A· engine speed > 80 RPM2 Sec · Continuous· 2 DCY
P0265Injection Valves - low side cylinder #2- Check the Fuel injectors -N30, N31, N32, N33, N84, N84, N85, N86-.signal current > 14.7 A· injection valve commanded on· engine speed > 80 RPM2 Sec · Continuous· 2 DCY
P0267Injection Valves - low side cylinder #3- Check the Fuel injectors -N30, N31, N32, N33, N84, N84, N85, N86-.signal current < 2.1 A· injection valve commanded on· high pressure system current > 4.2 A· engine speed > 80 RPM2 Sec · Continuous· 2 DCY
P0268Injection Valves - low side cylinder #3- Check the Fuel injectors -N30, N31, N32, N33, N84, N84, N85, N86-.signal current > 14.7 A· injection valve commanded on· engine speed > 80 RPM2 Sec · Continuous· 2 DCY
P0270Injection Valves - low side cylinder #4- Check the Fuel injectors -N30, N31, N32, N33, N84, N84, N85, N86-.signal current < 2.1 A· injection valve commanded on· high pressure system current > 4.2 A· engine speed > 80 RPM2 Sec · Continuous· 2 DCY
P0271Injection Valves - low side cylinder #4- Check the Fuel injectors -N30, N31, N32, N33, N84, N84, N85, N86-.signal current > 14.7 A· injection valve commanded on· engine speed > 80 RPM2 Sec · Continuous· 2 DCY
P0273Injection Valves - low side cylinder #5- Check the Fuel injectors -N30, N31, N32, N33, N84, N84, N85, N86-.signal current < 2.1 A· injection valve commanded on· high pressure system current > 4.2 A· engine speed > 80 RPM2 Sec · Continuous· 2 DCY
P0274Injection Valves - low side cylinder #5- Check the Fuel injectors -N30, N31, N32, N33, N84, N84, N85, N86-.signal current > 14.7 A· injection valve commanded on· engine speed > 80 RPM2 Sec · Continuous· 2 DCY
P0276Injection Valves - low side cylinder #6- Check the Fuel injectors -N84, N85, N86, N299, N300-.signal current < 2.1 A· injection valve commanded on· high pressure system current > 4.2 A· engine speed > 80 RPM2 Sec· Continuous· 2 DCY
P0277Injection Valves - low side cylinder #6- Check the Fuel injectors -N84, N85, N86, N299, N300-.signal current > 14.7 A· injection valve commanded on· engine speed > 80 RPM2 Sec· Continuous· 2 DCY
P0279Injection Valves - low side cylinder #7- Check the Fuel injectors -N84, N85, N86, N299, N300-.signal current < 2.1 A· injection valve commanded on· high pressure system current > 4.2 A· engine speed > 80 RPM2 Sec· Continuous· 2 DCY
P0280Injection Valves - low side cylinder #7- Check the Fuel injectors -N84, N85, N86, N299, N300-.signal current > 14.7 A· injection valve commanded on· engine speed > 80 RPM2 Sec· Continuous· 2 DCY
P0282Injection Valves - low side cylinder #8- Check the Fuel injectors -N84, N85, N86, N299, N300-.signal current < 2.1 A· injection valve commanded on · high pressure system current > 4.2 A · engine speed > 80 RPM2 Sec· Continuous· 2 DCY
P02823Injection Valves - low side cylinder #8- Check the Fuel injectors -N84, N85, N86, N299, N300-.signal current > 14.7 A· injection valve commanded on · engine speed > 80 RPM2 Sec· Continuous· 2 DCY
P0285Injection Valves - low side cylinder #9- Check the Fuel injectors -N84, N85, N86, N299, N300-.signal current < 2.1 A· injection valve commanded on · high pressure system current > 4.2 A · engine speed > 80 RPM2 Sec· Continuous· 2 DCY
P0286Injection Valves - low side cylinder #9- Check the Fuel injectors -N84, N85, N86, N299, N300-.signal current > 14.7 A· injection valve commanded on · engine speed > 80 RPM2 Sec· Continuous· 2 DCY
P0288Injection Valves - low side cylinder #10- Check the Fuel injectors -N84, N85, N86, N299, N300-.signal current < 2.1 A· injection valve commanded on · high pressure system current > 4.2 A · engine speed > 80 RPM2 Sec· Continuous· 2 DCY
P0289Injection Valves - low side cylinder #10- Check the Fuel injectors -N84, N85, N86, N299, N300-.signal current > 14.7 A· injection valve commanded on · engine speed > 80 RPM2 Sec· Continuous· 2 DCY
P010B(MAF 2) · mass air flowHFM2 vs. lower threshold map HFM2 < 0 .. 450 kg/h · mass air flow HFM2 vs. upper threshold map > 55... 1082· DTC P1009 (Map) detected · engine speed 1300 .. 5000 RPM · throttle position > 12% · vehicle speed 19 .. 99 MPH2 Sec· Multiple· 2 DCY
P010C2 MAF SensorsMAF 1MAF 2PWM length < 83 uSecengine speed > 80 MPH1 Sec· Continuous· 2 DCY
P010D2 MAF SensorsMAF 1MAF 2PWM length > 4500 uSecengine speed > 80 MPH1 Sec· Continuous· 2 DCY
P010E2 MAF SensorsMAF 1MAF 2PWM length 0 uSecengine speed > 80 MPH1 Sec· Continuous· 2 DCY

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DTCError MessageDiagnostic ProcedureMalfunction Criteria and Threshold ValueSecondary Parameters with Enable ConditionsMonitoring Time LengthFrequency of checks, MIL Illum
P018AFuel Rail Pressure Sensor- Check Fuel Pressure Sensor - G247-.signal voltage > 4.8 V--- 0.5 Sec• Continuous • 2 DCY
P018BFuel Rail Pressure Sensor- Check Fuel Pressure Sensor - G247-.Rail pressure > 13.5 mPa--- 5 Sec• Continuous • 2 DCY
P018CFuel Rail Pressure Sensor- Check Fuel Pressure Sensor - G247-.signal voltage < 0.2 V--- 0.5 Sec• Continuous • 2 DCY
P025AFuel Pump Open circuitsignal > 4.4 .. 5.6 Vengine speedage 40 RPM0.5 Sec• Continuous • 2 DCY
P025CFuel Pump short to groundsignal < 2.15 .. 3.25 Vengine speedage 40 RPM0.43 Sec• Continuous • 2 DCY
P025DFuel Pump short to B+signal > 1.1 Aengine speedage 40 RPM0.5 Sec• Continuous • 2 DCY

Ignition System

DTCError MessageDiagnostic ProcedureMalfunction Criteria and Threshold ValueSecondary Parameters with Enable ConditionsMonitoring Time LengthFrequency of checks, MIL Illum
P0300Random Misfire Detected- Check fuel injectors.- Check Ignition Coils with Power Output Stage.- Check Spark plugs.- Check fuel pump delivery and quantity.- Check Fuel pressure regulator and residual pressure before high pressure fuel pumps. Refer to Repair Manual.· Emission threshold 1st interval %(MR), >1.9% · calibrated threshold 1st interval misfire rate (MR) >1.5% · Catalyst damage misfire rate (MR), >5%· Time after engine start, 0 · camshaft revolution 1 Rev · Engine speed range, idle150-8500 RPM ·Engine torque, >0 (Nm) · Fuel cut off, Not active · ECT at start, >-9°C · If ECT at start, < -9°C then wait until actual ECT, >18°C ·IAT >-48°C· 1000 Rev. · 200 Rev.· Continuous · 2 DCY · Immed.
P0301Cylinder 1 Misfire Detected- Check fuel injector - N30-. - Check Ignition Coil with Power Output Stage - N70-. - Check Spark plugs.- Check the intake system for leaks . - Check fuel pump delivery and quantity . - Check Fuel pressure regulator and residual pressure before high pressure fuel pumps. Refer to Repair Manual.· Emission threshold 1st interval %(MR), >1.9% · calibrated threshold 1st interval misfire rate (MR) >1.5% · Catalyst damage misfire rate (MR), >5%· Time after engine start, 0 · camshaft revolution 1 Rev · Engine speed range, idle150-8500 RPM ·Engine torque , >0 (Nm) · Fuel cut off, Not active · ECT at start, >-9°C · If ECT at start, < -9°C then wait until actual ECT, >18°C ·IAT >-48°C· 1000 Rev. · 200 Rev.· Continuous · 2 DCY · Immed.
P0302Cylinder 2 Misfire Detected- Check fuel injector - N31-. - Check Ignition Coil with Power Output Stage - N127-. - Check Spark plugs. - Check the intake system for leaks . - Check fuel pump delivery and quantity . - Check Fuel pressure regulator and residual pressure before high pressure fuel pumps . Refer to Repair Manual.· Emission threshold 1st interval %(MR), > 1.9% · calibrated threshold 1st interval misfire rate (MR) > 1.5% · Catalyst damage misfire rate (MR), > 5%· Time after engine start, 0 · camshaft revolution 1 Rev · Engine speed range, idle150-8500 RPM ·Engine torque, > 0 (Nm) · Fuel cut off, Not active · ECT at start, > -9°C · If ECT at start, < -9°C then wait until actual ECT, > 18°C ·IAT > -48°C· 1000 Rev. · 200 Rev.· Continuous · 2 DCY · Immed.
P0303Cylinder 3 Misfire Detected- Check fuel injector - N32-. - Check Ignition Coil with Power Output Stage - N291-. - Check Spark plugs. - Check the intake system for leaks. - Check fuel pump delivery and quantity . - Check Fuel pressure regulator and residual pressure before high pressure fuel pumps . Refer to Repair Manual.· Emission threshold 1st interval %(MR), > 1.9% · calibrated threshold 1st interval misfire rate (MR) > 1.5% · Catalyst damage misfire rate (MR), > 5%· Time after engine start, 0 · camshaft revolution 1 Rev · Engine speed range, idle 150-8500 RPM ·Engine torque, > 0 (Nm) · Fuel cut off, Not active · ECT at start, > -9°C · If ECT at start, < -9°C then wait until actual ECT, > 18°C ·IAT > -48°C· 1000 Rev. · 200 Rev.· Continuous · 2 DCY · Immed.
P0304Cylinder 4 Misfire Detected- Check fuel injector - N33-. - Check Ignition Coil with Power Output Stage - N292-. - Check Spark plugs. - Check the intake system for leaks . - Check fuel pump delivery and quantity . - Check Fuel pressure regulator and residual pressure before high pressure fuel pumps . Refer to Repair Manual.· Emission threshold 1st interval %(MR), > 1.9% · calibrated threshold 1st interval misfire rate (MR) > 1.5% · Catalyst damage misfire rate (MR), > 5%· Time after engine start, 0 · camshaft revolution 1 Rev · Engine speed range, idle150-8500 RPM ·Engine torque, > 0 (Nm) · Fuel cut off, Not active · ECT at start, > -9°C · If ECT at start, < -9°C then wait until actual ECT, > 18°C ·IAT > -48°C· 1000 Rev. · 200 Rev.· Continuous · 2 DCY · Immed.
P0305Cylinder 5 Misfire Detected- Check fuel injector - N83-. - Check Ignition Coil with Power Output Stage - N323-. - Check Spark plugs. - Check the intake system for leaks. - Check fuel pump delivery and quantity . - Check Fuel pressure regulator and residual pressure before high pressure fuel pumps . Refer to Repair Manual.· Emission threshold 1st interval %(MR), > 1.9% · calibrated threshold 1st interval misfire rate (MR) > 1.5% · Catalyst damage misfire rate (MR), > 5%· Time after engine start, 0 · camshaft revolution 1 Rev · Engine speed range, idle 150-8500 RPM ·Engine torque, > 0 (Nm) · Fuel cut off, Not active · ECT at start, > -9°C · If ECT at start, < -9°C then wait until actual ECT, > 18°C ·IAT > -48°C· 1000 Rev. · 200 Rev.· Continuous · 2 DCY · Immed.
P0306Cylinder 6 Misfire Detected- Check fuel injector - N84-. - Check Ignition Coil with Power Output Stage - N324-. - Check Spark plugs. - Check the intake system for leaks . - Check fuel pump delivery and quantity . - Check Fuel pressure regulator and residual pressure before high pressure fuel pumps . Refer to Repair Manual.· Emission threshold 1st interval % (MR), > 1.9% · calibrated threshold 1st interval misfire rate (MR) > 1.5% · Catalyst damage misfire rate (MR), > 5%· Time after engine start, 0 · camshaft revolution 1 Rev · Engine speed range, idle150-8500 RPM ·Engine torque, > 0 (Nm) · Fuel cut off, Not active · ECT at start, > -9°C · If ECT at start, < -9°C then wait until actual ECT, > 18°C ·IAT > -48°C· 1000 Rev. · 200 Rev.· Continuous · 2 DCY · Immed.
P0307Cylinder 7 Misfire Detected- Check fuel injector - N85-. - Check Ignition Coil with Power Output Stage - N325-. - Check Spark plugs. - Check the intake system for leaks. - Check fuel pump delivery and quantity . - Check Fuel pressure regulator and residual pressure before high pressure fuel pumps . Refer to Repair Manual.· Emission threshold 1st interval % (MR), > 1.9% · calibrated threshold 1st interval misfire rate (MR) > 1.5% · Catalyst damage misfire rate (MR), > 5%· Time after engine start, 0 · camshaft revolution 1 Rev · Engine speed range,idle150-8500 RPM ·Engine torque, > 0 (Nm) · Fuel cut off, Not active · ECT at start, > -9°C · If ECT at start, < -9°C then wait until actual ECT, > 18°C ·IAT > -48°C· 1000 Rev. · 200 Rev.· Continuous · 2 DCY · Immed.
P0308Cylinder 8 Misfire Detected- Check fuel injector - N86-. - Check Ignition Coil with Power Output Stage - N326-. - Check Spark plugs. - Check the intake system for leaks . - Check fuel pump delivery and quantity . - Check Fuel pressure regulator and residual pressure before high pressure fuel pumps . Refer to Repair Manual.· Emission threshold 1st interval % (MR), > 1.9% · calibrated threshold 1st interval misfire rate (MR) > 1.5% · Catalyst damage misfire rate (MR), > 5%· Time after engine start, 0 · camshaft revolution 1 Rev · Engine speed range, idle150-8500 RPM ·Engine torque, > 0 (Nm) · Fuel cut off, Not active · ECT at start, > -9°C · If ECT at start, < -9°C then wait until actual ECT, > 18°C ·IAT > -48°C· 1000 Rev. · 200 Rev.· Continuous · 2 DCY · Immed.
P0309Cylinder 9 Misfire Detected- Check fuel injector - N299-. - Check Ignition Coil with Power Output Stage - N327-. - Check Spark plugs. - Check the intake system for leaks . - Check fuel pump delivery and quantity . - Check Fuel pressure regulator and residual pressure before high pressure fuel pumps . Refer to Repair Manual.· Emission threshold 1st interval % (MR), > 1.9% · calibrated threshold 1st interval misfire rate (MR) > 1.5% · Catalyst damage misfire rate (MR), > 5%· Time after engine start,0 · camshaft revolution 1 Rev · Engine speed range, idle150-8500 RPM ·Engine torque, > 0 (Nm) · Fuel cut off, Not active · ECT at start, > -9°C · If ECT at start, < -9°C then wait until actual ECT, > 18°C ·IAT > -48°C· 1000 Rev. · 200 Rev.·Continuous · 2 DCY · Immed.
P0310Cylinder 10 Misfire Detected- Check fuel injector - N300-. - Check Ignition Coil with Power Output Stage - N328-. - Check Spark plugs. - Check the intake system for leaks . - Check fuel pump delivery and quantity . - Check Fuel pressure regulator and residual pressure before high pressure fuel pumps . Refer to Repair Manual.· Emission threshold 1st interval %(MR), >1.9% · calibrated threshold 1st interval misfire rate (MR) >1.5% · Catalyst damage misfire rate (MR), >5%· Time after engine start, 0 · camshaft revolution 1 Rev · Engine speed range, idle150-8500 RPM ·Engine torque, >0 (Nm) ·Fuel cut off, Not active ·ECT at start, >-9°C ·If ECT at start, < -9°C then wait until actual ECT, >18°C ·IAT >-48°C·1000 Rev. ·200 Rev.·Continuous ·2 DCY ·Immed.
P0321Ignition/ Distributor Engine Speed Input Circuit Range/ Performance- Check Engine Speed (RPM) Sensor -G28-.· Counted versus referenced teeth, >1 · Reference gap during engine start, not detected · Teeth during engine start, detected · Reference gap at normal operation, lost·Engine speed, >0 RPM · Crankshaft revolutions, 2 revs0.5 Sec·Continuous ·2 DCY
P0322Ignition/ Distributor Engine Speed Input Circuit No Signal- Check Engine Speed (RPM) Sensor -G28-.·Engine speed, No signal ·Phase signal, O.K.·Camshaft revolutions, 4 revs0.5 Sec·Continuous ·2 DCY
P0341Camshaft Position Sensor A Circuit Range/ Performance (Bank 1 or single sensor)- Check Camshaft Position (CMP) Sensor - G40-.Phase changes last 10 revs < 11 or >13— 0.5 Sec·Continuous ·2 DCY
P0342Camshaft Position Sensor A Circuit Low Input (Bank 1 or single sensor)- Check Camshaft Position (CMP) Sensor - G40-.Signal low voltage, 10 Rev.— 0.5 Sec·Continuous ·2 DCY
P0343Camshaft Position Sensor A Circuit High Input (Bank 1 or single sensor)- Check Camshaft Position (CMP) Sensor - G40-.Signal voltage high, 10 rev.— 0.5 Sec• Continuous • 2 DCY
P0346Camshaft Position Sensor "A" Circuit Range/ Performance Bank 2- Check Camshaft Position (CMP) Sensor 2 - G163-.Phase changes last 10 revs < 11 or > 13— 0.5 Sec• Continuous • 2 DCY
P0347Camshaft Position Sensor "A" Circuit Low Bank 2- Check Camshaft Position (CMP) Sensor 2 - G163-.Signal low voltage, 10 Rev.— 0.5 Sec• Continuous • 2 DCY
P0348Camshaft Position Sensor "A" Circuit High Bank 2- Check Camshaft Position (CMP) Sensor 2 - G163-.Signal voltage high, 10 rev.— 0.5 Sec• Continuous • 2 DCY
P0351Ignition Coil A Primary/ Secondary Circuit- Check Ignition Coil with Power Output Stage - N70-.Signal current, < 4.95...8.82 mA• Engine speed, 1400-7000 RPM• Ignition, Synchronized0.5 Sec• Continuous • 2 DCY
P0352Ignition Coil B Primary/ Secondary Circuit- Check Ignition Coil with Power Output Stage - N127-.Signal current, < 4.95...8.82 mA• Engine speed, 1400-7000 RPM• Ignition, Synchronized0.5 Sec• Continuous • 2 DCY
P0353Ignition Coil C Primary/ Secondary Circuit- Check Ignition Coil with Power Output Stage - N291-.Signal current, < 4.95...8.82 mA• Engine speed, 1400-7000 RPM• Ignition, Synchronized0.5 Sec• Continuous • 2 DCY
P0354Ignition Coil D Primary/ Secondary Circuit- Check Ignition Coil with Power Output Stage - N292-.Signal current, < 4.95...8.82 mA• Engine speed, 1400-7000 RPM• Ignition, Synchronized0.5 Sec• Continuous • 2 DCY
P0355Ignition Coil "E" Primary/ Secondary Circuit- Check Ignition Coil with Power Output Stage - N323-.Signal current, < 4.95...8.82 mA• Engine speed, 1400-7000 RPM• Ignition, Synchronized0.5 Sec• Continuous • 2 DCY
P0356Ignition Coil "F" Primary/ Secondary Circuit- Check Ignition Coil with Power Output Stage - N324-.Signal current, < 4.95...8.82 mA• Engine speed, 1400-7000 RPM• Ignition, Synchronized0.5 Sec• Continuous • 2 DCY
P0357Ignition Coil "G" Primary/ Secondary Circuit- Check Ignition Coil with Power Output Stage - N325-.Signal current, < 4.95...8.82 mA• Engine speed, 1400-7000 RPM• Ignition, Synchronized0.5 Sec• Continuous• 2 DCY
P0358Ignition Coil "H" Primary/ Secondary Circuit- Check Ignition Coil with Power Output Stage - N326-.Signal current, < 4.95...8.82 mA• Engine speed, 1400-7000 RPM• Ignition, Synchronized0.5 Sec• Continuous• 2 DCY
P0359Ignition Coil "I" Primary/ Secondary Circuit- Check Ignition Coil with Power Output Stage - N327-.Signal current, < 4.95...8.82 mA• Engine speed, 1400-7000 RPM• Ignition, Synchronized0.5 Sec• Continuous• 2 DCY
P0360Ignition Coil "J" Primary/ Secondary Circuit- Check Ignition Coil with Power Output Stage - N328-.Signal current, < 4.95...8.82 mA• Engine speed, 1400-7000 RPM• Ignition, Synchronized0.5 Sec• Continuous• 2 DCY
P0366Camshaft Position Sensor "B" Circuit Range/ Performance Bank 1- Check Camshaft Position (CMP) Sensor 3 - G300-.Phase changes last 10 revs < 11 or > 13— 0.5 Sec• Continuous• 2 DCY
P0367Camshaft Position Sensor "B" Circuit Low Bank 1- Check Camshaft Position (CMP) Sensor 3 - G300-.Signal low voltage, 10 Rev.— 0.5 Sec• Continuous• 2 DCY
P0368Camshaft Position Sensor "B" Circuit High Bank 1- Check Camshaft Position (CMP) Sensor 3 - G300-.Signal voltage high, 10 rev.— 0.5 Sec• Continuous• 2 DCY
P0391Camshaft Position Sensor "B" Circuit Range/ Performance Bank 2- Check Camshaft Position (CMP) Sensor 4 - G301-.Phase changes last 10 revs < 11 or > 13— 0.5 Sec• Continuous• 2 DCY
P0392Camshaft Position Sensor "B" Circuit Low Bank 2- Check Camshaft Position (CMP) Sensor 4 - G301-.Signal low voltage, 10 Rev.— 0.5 Sec• Continuous• 2 DCY
P0393Camshaft Position Sensor "B" Circuit High Bank 2- Check Camshaft Position (CMP) Sensor 4 - G301-.Signal voltage high, 10 rev.— 0.5 Sec• Continuous• 2 DCY
Manual assistant
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Product information

Brand : LAMBORGHINI

Model : Gallardo (2009)

Category : Car