This means your brake pads have become low. Stroke Adaptation Number of Stops Exceeded, VVT Guiding Sensor Solenoid Loss (Bank 1), VVT Eccentric Shaft Sensor Parity Error (Bank 1), VVT Eccentric Shaft Sensor Gradient Error (Bank 1), VVT Reference Sensor Reset Error (Bank 1), Valvetronic actuator motor, position sensors: Signal Implausible, VVT Supply Voltage Sensors High Input (Bank 1), Valvetronic, adjustment range: Travel range not initialized, Valvetronic, adjustment range: Travel limit not learned owing to environmental conditions, VVT Self-Learning Function Storage of Learning Values in EEPROM Not Possible, VVT Load Shedding Relay Control Circuit Input High, VVT Load Shedding Relay Control Circuit Input Low, VVT Load Shedding Relay Control Circuit Input, VVT Sensor Supply Voltage Low Input (Bank 1), VVT Self Learning Function Faulty Adjustment Range (Bank 1), Valvetronic, adjustment range: Range check fault, Valvetronic, adjustment range: Range check, deviation from base learning routine, VVT Self Learning Function Faulty Lower Learning Range (Bank 1), VVT Self Learning Function No Positions Stored (Bank 1), VVT Control Motor Position Control Deviation (Bank 1), Valvetronic system: Closed loop deviation too high, VVT Actuator Monitoring Recognition of Direction of Rotation Plausibility (Bank 1), Valvetronic actuator motor, control-activation Short Circuit to positive, Valvetronic actuator motor, control-activation Short Circuit to ground, Valvetronic actuator motor, control-activation: Open circuit, Cold Start Intake Air Temperature - Too Low, VVT Limp Home Request Full Stroke Position Reached (Bank 1), VVT Limp Home Request Air Mass Plausibility (Bank 1), VVT Overload Protection Control Motor Input Temperature (Bank 1), VVT Overload Protection Current Too High (Bank 1), Charge air temperature: Plausibility, temperature too high, Charge air temperature: Signal, remains stationary, Rail-pressure sensor, operating range: Pressure to high, Rail-pressure sensor, operating range: Pressure to low, Charge air temperature sensor, plausability, cold start: Temperature too high, Charge air temperature sensor, plausability, cold start: Temperature too low, Coolant temperature sensor, plausability, cold start: Temperature too low, Coolant temperature sensor, plausability, cold start: Temperature too high, Rail-pressure sensor, signal: No variation, Valvetronic, adjustment range: Initial learning outside tolerance, Valvetronic, driver circuit component protection: System deactivation, Valvetronic actuator motor, position sensors: Short circuit or line break (open circuit), DME, internal fault, Valvetronic control: Malfunction, Valvetronic actuator motor, position sensors: Malfunction in voltage supply, Valvetronic, overload protection: Driver circuit overloaded, Valvetronic, overload protection: Actuator motor overloaded, Boost pressure - barometric pressure, comparison: Boost air pressure too high, Boost pressure - barometric pressure, comparison: Boost air pressure too low, Differential Pressure Sensor Intake Manifold Pressure Too Low (Bank 1), Differential Pressure Sensor Intake Manifold Pressure Too High (Bank 1), Throttle Position Sensor 'A' and 'B' Range / Performance, Internal Code (Service / End-of-line Test), Ambient Temperature Sensor Faulty CAN Signal, Mass or Volume Air Flow va O2 Sensor Too High (Bank 1), Mass or Volume Air Flow va O2 Sensor Too Low (Bank 1), Intake Temperature Sensor Bank 1 Maximum Temperature Implausible, Differential Pressure Sensor Intake Manifold Pressure Offset (Bank 1), Engine Coolant Temperature Sensor 1 Minimum Temperature Implausible, Throttle valve angle - Intake manifold pressure, comparison: Pressure too low, Manifold Absolute Pressure to Throttle Angle - Too High, Mass or Volume Air Flow 1 Correction Signal Plausibility Too Long, Mass or Volume Air Flow 'A' Maximum Exceeded, Mass or Volume Air Flow 'A' Minimum Fallen Below, Throttle / Pedal Position Sensor / Switch 'A' / 'B' Synchronous Operation Correlation (Bank 1), Engine Oil Separator Heating Circuit High, Engine Oil Separator Heating Circuit Open, Differential Pressure Sensor Intake Manifold High Input (Bank 1), Differential Pressure Sensor Intake Manifold Low Input (Bank 1), Manifold Absolute Pressure Sensor High (Bank 1), Manifold Absolute Pressure Sensor Low (Bank 1), Fuel trim, Injector aging long term adaptation too high (Bank 1), Throttle valve, operation: Resistance to motion, too slow, arometric pressure, operating range: Pressure too high, Barometric Pressure, operating range: Pressure implausible, Boost Pressure Control, deactivation: Boost pressure build-up blocked, Boost Pressure Control, Boost Pressure too high, Boost Pressure Control, Boost Pressure too low, Manifold Absolute Pressure Maximum Pressure Implausible, Manifold Absolute Pressure Minimum Pressure Implausible, Turbocharger / Supercharger Boost Pressure, Pressure Front of Throttle Valve too High, Turbocharger / Supercharger Boost Pressure, Pressure Front of Throttle Valve too Low, Turbocharger / Supercharger Boost Pressure, Maximum Pressure Front of Throttle Valve Implausible, Turbocharger / Supercharger Boost Pressure, Minimum Pressure Front of Throttle Valve Implausible, Absolute Pressure Sensor, intake manifold, plausibility, shutdown phase : Pressure too high, Boost Pressure Sensor, plausibility, shutdown phase : Pressure too low, Boost Pressure Sensor, plausibility, shutdown phase : Pressure too high, Barometric Pressure Sensor, plausibility, shutdown phase : Pressure too low, Barometric Pressure Sensor, plausibility, shutdown phase : Pressure too high, Boost Pressure - barometric pressure, comparison: Boost pressure too high, Boost Pressure - barometric pressure, comparison: Boost pressure too low, Camshaft Position Sensor Rationality Check (Inlet - Outlet), Intake Camshaft: Angular offset to crankshaft is outside tolerance range, Exhaust Camshaft: Angular offset to crankshaft is outside tolerance range, Knock Control Super Knocking Caused by Defective Ignition Coil, Knock Control Super Knocking Caused by Defective Knock Sensor, Knock Control Torque Limitation Caused by Too High Number of Super Knocking, Knock Control Permanent Limitation Caused by Too High Number of Super Knocking, Knock Control Fuel Cutoff Due to Super Knocking, Knock Control Fuel Cutoff Due to Super Knocking Cylinder 1, Super knock on cylinder 1: Injection Deactivation, Knock Control Fuel Cutoff Due to Super Knocking Cylinder 2, Knock Control Fuel Cutoff Due to Super Knocking Cylinder 3, Knock Control Fuel Cutoff Due to Super Knocking Cylinder 4, Knock sensor, electrical: Signal input 'A', short circuit to ground, Knock sensor, electrical: Signal input 'A', short circuit to positive, Knock sensor, electrical: Signal input 'B', short circuit to ground, Knock sensor, electrical: Signal input 'B', short circuit to positive, VANOS intake: Closed loop control fault, camshaft sticks, Exhaust camshaft, mechanical: Assembly faulty, Exhaust camshaft, mechanical: Incorrect installation, Ignition-angle adjustment at part load, cold start: Ignition angle advanced too far, Tank fuel-level sensor, left signal: CAN value implausible, Tank fuel-level sensor, right signal: CAN value implausible, DMTL Tank Leakage (Diagnostic Module Tank Leakage), DMTL, system fault: Abort due to current fluctuations during reference measurement, DMTL Pump current too high during switching solenoid test, DMTL, system fault: Pump current reaches limit during valve test, DMTL, system fault: Pump current too low during reference measurement, DMTL, system fault: Pump current too high during reference measurement, Fuel level / Fuel consumption correlation, Tank fuel-level sensor: Fuel consumption rate does not correlate with change fuel level, Battery Sensor Extended Communication Circuit, Intelligent battery sensor, signal: Software fault, Fuel Rail Pressure Too Low-Cold Start Cycle, Tank fuel level sensor, right, signal: Short circuit to ground, 'A' Camshaft Position Actuator Control Circuit Low (Bank 1), VANOS intake side solenoid valve, control activation: Short circuit to ground, 'A' Camshaft Position Actuator Control Circuit High (Bank 1), VANOS intake side solenoid valve, control activation: Short circuit to positive, 'B' Camshaft Position Actuator Control Circuit Low (Bank 1), VANOS exhaust side solenoid valve, control activation: Short circuit to ground, 'B' Camshaft Position Actuator Control Circuit High (Bank 1), VANOS exhaust side solenoid valve, control activation: Short circuit to positive, Post Catalyst Fuel Trim System too lean (Bank 1), Pre-catalyst oxygen sensor, mixture fine tuning: Exhaust gas behind catalytic converter too lean, Before catalyst oxygen sensor, system check: Signal stuck at rich, Post Catalyst Fuel Trim System too rich (Bank 1), Pre-catalyst oxygen sensor, mixture fine tuning: Exhaust gas behind catalytic converter too rich, Before catalyst oxygen sensor, system check: Signal stuck at lean, Throttle Actuator 'A' Control Motor Circuit Open, Throttle Actuator 'A' Control Motor Circuit Low, Throttle Actuator 'A' Control Motor Circuit High, DME, Internal Fault, throttle valve control: Overheated or current too high, Throttle / Pedal position sensor 'D' Circuit, Throttle / Pedal position sensor 'D' Circuit Low, Throttle / Pedal position sensor 'D' Circuit High, Throttle / Pedal position sensor 'E' Circuit Low, Throttle / Pedal position sensor 'E' Circuit High, Throttle / Pedal position sensor 'D ' 'E' Voltage Correlation, Fuel Injector Group 'A' Supply Voltage Circuit Open, Fuel Injector Group 'A' Supply Voltage Circuit Low, Fuel Injector Group 'A' Supply Voltage Circuit High, Pre-catalyst oxygen sensor, plausibility: Mixture behind catalytic converter to rich, Pre-catalyst oxygen sensor, plausibility: Mixture behind catalytic converter to lean, Barometric Pressure Sensor 'A' Circuit Low, Barometric Pressure Sensor 'A' Circuit High, O2 Sensor Reference Circuit Continuity (Bank 1 Sensor 1), O2 Sensor Reference Voltage Circuit Open (Bank 1 Sensor 1), Oxygen Sensor before catalytic converter, electrical: Open Circuit, virtual ground, O2 Sensor Signal Stuck Lean (Bank 1 Sensor 2), O2 Sensor Signal Stuck Rich (Bank 1 Sensor 2), DMTL lead diagnosis pump, control activation: Open circuit, DMTL lead diagnosis pump, control activation: Short circuit to ground, DMTL lead diagnosis pump, control activation: Short circuit to positive, DMTL, heater, activation: Short circuit to ground, DMTL, heater, activation: Short circuit to positive, O2 Sensor Oxygen Sample Error (Bank 1 Sensor 1), Oxygen sensor before catalytic converter, installation: Sensor is not installed correctly in exhaust system, DMTL solenoid valve, control activation: Open Circuit, DMTL solenoid valve, control activation: Short circuit to ground, DMTL solenoid valve, control activation: Short circuit to positive, EVAP evaporative emissions valve: Sticks in closed position, EVAP evaporative emissions valve: jammed open, ECM/PCM Power Relay Sense Circuit Range / Performance, O2 Sensor Pumping Circuit Open (Bank 1 Sensor 1), Pressure Control Solenoid 'D' Control Circuit Range / Performance, Pressure Control Solenoid 'D' Control Circuit Low, Pressure Control Solenoid 'D' Control Circuit High, Pressure Control Solenoid 'E' Control Circuit Range / Performance, Pressure Control Solenoid 'E' Control Circuit Low, Pressure Control Solenoid 'E' Control Circuit High, Pressure Control Solenoid 'F' Control Circuit Range / Performance, Pressure Control Solenoid 'F' Control Circuit Low, Pressure Control Solenoid 'F' Control Circuit High, Torque Converter Clutch Pressure Control Solenoid Control Circuit Range / Performance, Torque Converter Clutch Pressure Control Solenoid Control Circuit High, Torque Converter Clutch Pressure Control Solenoid Control Circuit Low, Boost Pressure Control Deviation, plausibility (low or high boost pressure detected), Fuel Rail Pressure, Preassure-Rate-Controlled, Maximum Pressure Exceeded, Adaptation Value too high (Bank 1 Sensor ), O2 Sensor IC supply Voltage too Low (Bank 1 Sensor 1), O2 Sensor Ceramic Internal Resistance Adjusted Value Plausibility (Bank 1 Sensor 1), O2 Sensor Lambda Controller Value above threshold due to open pumping circuit (Bank 1 Sensor 1), Oxygen sensor before catalytic converter, pumping current wire: Oxygen sensor control valve above threshold due to open pump wire, O2 Sensor Signal too low during coast down fuel cut off (Bank 1 Sensor 1), O2 Sensor Disturbed SPI WRAF-IC (bank 1 Sensor 1), DME, internal fault, oxygen sensor before catalytic converter: Communication fault, O2 Sensor Initialization Error WRAF-IC (Bank 1 Sensor 1), DME, internal fault, oxygen sensor before catalytic converter" Initialization fault, Sensor operating temperature not reached (Bank 1 Sensor 1), High pressure fuel system, fuel pressure, maximum pressure exceeded, High pressure fuel system, fuel pressure, pressure falls below minimum threshold, Fuel system: Pressure too high, emergency running mode with low pressure, Fuel system: Pressure briefly too high, RPM and load factor limited, Fuel pressure: Pressure drop below minimum, injection deactivation to protect catalyst, Fuel Rail Pressure Pressure-Rate-Controlled, fallen below minimum pressure, Cylinder 1 High Pressure Injector Low Side Circuit Open, Cylinder 1 High Pressure Injector Low Side Circuit Low, Cylinder 1 High Pressure Injector Low Side Circuit High, Cylinder 1 High Pressure Injector Low Side Booster Time Error, Cylinder 2 High Pressure Injector Low Side Circuit Open, Cylinder 2 High Pressure Injector Low Side Circuit Low, Cylinder 2 High Pressure Injector Low Side Circuit High, Cylinder 2 High Pressure Injector Low Side Booster Time Error, Cylinder 3 High Pressure Injector Low Side Circuit Open, Cylinder 3 High Pressure Injector Low Side Circuit Low, Cylinder 3 High Pressure Injector Low Side Circuit High, Cylinder 3 High Pressure Injector Low Side Booster Time Error, Cylinder 4 High Pressure Injector Low Side Circuit Open, Cylinder 4 High Pressure Injector Low Side Circuit Low, Cylinder 4 High Pressure Injector Low Side Circuit High, Cylinder 4 High Pressure Injector Low Side Booster Time Error, Cylinder 1 High Pressure Injector High Side Circuit Shorted to Coil, Cylinder 2 High Pressure Injector High Side Circuit Shorted to Coil, Cylinder 3 High Pressure Injector High Side Circuit Shorted to Coil, Cylinder 4 High Pressure Injector High Side Circuit Shorted to Coil, Engine Coolant Temperature Signal Stuck Low, Engine Coolant Temperature Gradient too High, PT CAN communications fault: CAN bus off or CAN bus defective, CAN message monitoring ASC/DSC Alive check, Ambient pressure sensor maximum pressure implausible, Ambient pressure sensor minimum pressure implausible, Control Module Monitoring Ignition Timing Plausibility, Control Module Monitoring Relative Charge Plausibility, DME, internal fault Version encoding monitor, Control Module Monitoring Version coding plausibility, Control Module Monitoring Injection time relative fuel quantity plausibility, Control Module Monitoring Fuel Correction Error, DMW, internal fault: Mixture correction factor plausibility monitor, Control Module Monitoring TPU Chip defective, Control Module Monitoring Air Mass Flow Balancing, Control Ramge Monitoring, Control Module Monitoring Fuel Pressure Sender, Alternator, plausibility, temperature, over temperature calculated, Alternator, plausibility, electrical: Calculated, DME, internal fault, electric accelerator pedal monitor: RPM sensor, DME, internal fault Level 1 injection quantity limitation monitor, DME, internal fault Level 2 injection quantity limitation monitor, DME, internal fault, electric accelerator pedal monitor: Ignition timing monitoring, DME, internal fault Relative Fuel mass plausibility monitor, DME, internal fault, electric accelerator pedal monitor: AD converter test voltage check, DME, internal fault, electric accelerator pedal monitor: Airflow calibration, DME, internal fault, electric accelerator pedal monitor, Implausible drivetrain conversion ratio, DME, internal fault: monitoring of specified lambda value, Lost communication with Anti-lock Brakes System (ABS) Control Module, Lost communication with vehicle immobilizer control module, PT CAN. This means one of your driving lights has stopped working and requires either a bulb replacement or fuse replacement. For example, if your vehicle's OBD detects a leak in the evaporative emission system, you may see a P0442 code. The fault is recognized when, prior to engine start, the absolute boost pressure is greater than 3.0 bar, or the absolute boost pressure is greater than 1.4 bar. If ignored, you risk overheating your engine very quickly. Release short on Circuit 631 (T/R) to Circuit 57 (BK). Whether you're driving a Mini Cooper, Mini Countryman, Mini Clubman, Mini Convertible, or another model, the warning lights on the dashboard follow a traffic light colour system: Green: the system is working correctly or is currently in use. The fault is recognized when the leak diagnosis pump's current fails to reach a specified limit within a time window defined in the program map. The Society of Automotive Engineers (SAE) developed the OBD II system and they specified that diagnostic codes comprise 5 digits. A MINI's self-diagnosis and reporting system is referred to as on-board diagnostics (OBD) in the automotive industry. This means your front automatic high-beam driving lights are on. Does anybody have a clue? You can find common Mini Cooper fault codes on this page that when clicked take you to a detailed description. Let's see what the most common warning lights on the Mini Cooper dashboard lights mean; 1-) It is a warning lights that indicates that the Front Fog Light is on. 2002-2022 The Myteebrite Performance Group, Inc. All Rights Reserved. This means your windscreen is being heated to melt frost or ice. This short must be made after the diagnostic trouble code flashes completely one time, but before the warning light stays on continuously. Fuel Volume Regulator Control Circuit Open. This means your front high-beam driving lights are on. If in doubt, seek the services of a mechanic or dealership as soon as possible. Car MPG; 2023 Cars MPG; Car Test Game; For Shop Owners; MINI OBDII Codes List. If you've plugged into your car's diagnostic port and aren't reading anything, you might think that your OBD-II brain has been fried, but don't declare it dead yet. Our price is lower than the manufacturer's "minimum advertised price." This website uses cookies to provide you with a great user experience and to ensure proper functionality of the shopping cart and checkout progress. Yellow: something is not working correctly - take extra care and check it out as soon as possible. The status of the various vehicle emissions and control systems can be accessed by the owner or a repair expert using OBD systems.When diagnosing issues inside a MINI, the current protocol, OBD-II, enables access to data from the computer [electronic control unit (ECU)] and is a useful tool. The most common reason for getting no OBD code is simply a blown fuse. If you would like your login information reset, click on the button below to request your login information to be reset. . Bad catalytic converter? OBD-II Trouble Codes When your vehicle has a problem and your check engine light comes on, the On-Board Diagnostics (OBD) system in your vehicle will also trigger a code that can be used to diagnose what might be wrong. 20.0 Correction factor for Fuel consumption . This symbol represents excessive heat from your engines radiator. This may be difficult to check and may require visiting a mechanic as soon as possible. This means your steering wheel is locked. Additionally, you can use a cheap scan tool or OBD-II Bluetooth reader and use an app like Torque or OBD Check to connect to a smartphone.Note: Every manufacturer gives a DTC code a different definition. ---- Steps to Secret Menu ----. 2 Control unit provides a substitute value if a failure occurs in an engine performance related component, such as MINI Cooper R50 R52 R52S R53 R55 R55S R56 R56S R57 R57S R58 R58S R59 R59S R60 R60S R61 R61S F54 F54S F55 F55S F56 F56S F57 F57S F60 F60S BMW X1 MINI COOPER PERFORMANCE, MINI COOPER PARTS, Countryman, lifted countryman, lifted mini cooper, mini cooper ecu reflash, mini cooper ecu tuning. Part Design and Appearance:Parts advertised and displayed may differ slightly in design, color and appearance from the images provided but the fit and function will be as advertised. P0003. When illuminating green, this is operating perfectly but when yellow, a fault may exist. Hi please can you recommend a code reader resetter with the ability to code in fuel injectors on a 2007 Mini Cooper S turbo. Click here to learn about cookie settings. Apparently, when battery voltage drops below the threshold value, the ELV light can be triggered and the steering column may become locked. 2. This car code reader supports all OBD2 functions and full BMW systems diagnosis to read & clear the fault codes, show you the live data in graph on the 2.8" TFT screen and turn off the MIL after repair or maintenance. the P0456 and P0442 indicates an EVAP system leak. Select Your Car Type to Ensure Proper Part Fitment, Fault Error Codes For All Mini Cooper (2002 +), OBD2 Engine Code Reader & Reset Scan Tool for MINI Coopers, MINI Cooper OBD2 Engine Fault Code Reader & Reset scan tool, MINI Cooper OBD2 Engine Diagnostic Code Reader & Reset scan tool, OBD2 Engine Fault Code Reader and Reset Scan Tool for All MINI Coopers, Vtec Conversion B&d Series Chipped Obd1 Ecu For Classic Mini Cooper, MINI Cooper OBD2 Engine Code Reader & Reset Scan Tool, Vtec Conversion B16 Type R Series Chipped Ecu Obd1 For Classic Mini Cooper, Mini Cooper Obd2 Connector Bluetooth Or Wireless, Mini Cooper Bluetooth Obd Ii Wireless Connector For Android Devices, Mini Cooper Obd Ii Wireless Connector For Iphone, Mini Cooper Obd2 Engine Fault Code Reader & Reset Scan Tool, Mini Cooper Obd Ii Fault Code Reader Reset Scan Tool -, Bluetooth OBDII Wireless Connector for ALL MINI Cooper Models, OBD2 Engine Fault Code Reader and Reset Scan Tool for the MINI Cooper, Unichip Flux2 Obd Monitoring Module Black - Cooper & S, 'A' Camshaft Position Slow Response (Bank 1), Fuel Volume Regulator Control Circuit Open, Fuel Volume Regulator Control Circuit Low, Fuel Volume Regulator Control Circuit High, VANOS intake-side solenoid valve, control-activation: Open circuit, 'A' Camshaft Position Timing Over-Advanced or System Performance (Bank 1), 'A' Camshaft Position Timing Over-Retarded (Bank 1), VANOS Intake: Closed-loop control fault, camshaft sticks, VANOS Exhaust-side solenoid valve, control-activation: Open circuit, 'B' Camshaft Position Actuator Circuit Open (Bank 1), 'B' Camshaft Position Timing Over-Advanced or System Performance (Bank 1), 'B' Camshaft Position Timing Over-Retarded (Bank 1), VANOS Exhaust: Closed-loop control fault, camshaft sticks, VANOS Exhaust; Closed-loop control fault, position not reached, Camshaft Position Sensor Correlation (Bank 1 Sensor 'A'), Camshaft Position Sensor Correlation (Bank 1 Sensor 'B'), HO2S Heater Control Circuit (Bank 1 Sensor 1), HO2S Heater Control Circuit Low (Bank 1 Sensor 1), HO2S Heater Control Circuit High (Bank 1 Sensor 1), Turbocharger / Supercharger Bypass Valve Control Circuit, Turbocharger / Supercharger Bypass Valve Control Circuit Low, Turbocharger / Supercharger Bypass Valve Control Circuit High, HO2S Heater Control Circuit (Bank 1 Sensor 2), HO2S Heater Control Circuit Low (Bank 1 Sensor 2), HO2S Heater Control Circuit High (Bank 1 Sensor 2), Turbocharger / Supercharger Bypass Valve Control Circuit Range / Performance, Ambient Air Temperature Sensor Circuit Range / Performance, Ambient Air Temperature Sensor Circuit Low, Ambient Air Temperature Sensor Circuit High, Charge-air temperature sensor, voltage change: Too rapid, Charge-air temperature sensor, electrical: Short circuit to ground, Charge-air temperature sensor, electrical: Short circuit to positive, Mass Airflow System, Plausibility: Air mass too low, Mass Airflow System, Plausibility: Air mass too high, Mass or Volume Air Flow Circuit Low Input, Mass or Volume Air Flow Circuit High Input, Manifold Absolute Pressure/Barometric Pressure Control Circuit Low Input, Manifold Absolute Pressure/Barometric Pressure Control Circuit High Input, Intake Air Temperature Sensor Bank 1 Temperature Range / Performance, Intake Air Temperature Sensor 1 Circuit Low, Intake Air Temperature Sensor 1 Circuit High, Coolant Temperature Sensor rationality Check, Throttle/Pedal Position Sensor/Switch 'A' Circuit, Throttle/Pedal Position Sensor/Switch 'A' Circuit Range / Performance, Throttle/Pedal Position Sensor/Switch 'A' Circuit Low, Throttle/Pedal Position Sensor/Switch 'A' Circuit High, Coolant Thermostat (Coolant Temperature Blow Thermostat Regulation Temperature), Program map thermostat: Sticking in open position, Barometric Pressure, operating range: Pressure too low, Before-catalyst oxygen sensor, electrical: Nernst-cell resistance or ceramic temperature implausible, wiring or heater fault, O2 Sensor Circuit Low Voltage (Bank1 Sensor 1), O2 Sensor Circuit High Voltage (Bank1 Sensor 1), O2 Sensor Circuit Slow Response (Bank1 Sensor 1), O2 Sensor Heater Circuit (Bank 1 Sensor 1).
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