• 22-01-2025
  • 16 min.
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P2113 Throttle/Pedal Position Sensor "B" Minimum Stop Performance

The P2113 Throttle/Pedal Position Sensor "B" Minimum Stop Performance diagnostic trouble code indicates that the Engine Control Module (ECM/PCM) has detected a problem with the minimum-stop performance of the Throttle/Pedal Position Sensor "B".

In simple terms, the vehicle's computer expects the throttle or accelerator-pedal position system to reach a specific calibrated minimum position when the throttle is closed, but the sensor "B" signal does not reach, maintain, or behave as expected at that position.

Modern vehicles commonly use Electronic Throttle Control (ETC) systems rather than a traditional mechanical accelerator cable. These systems use multiple position sensors and redundant signals so the ECM can continuously verify throttle and accelerator-pedal operation.

When the ECM detects that the "B" sensor channel does not meet the expected minimum-stop performance, it can store P2113.

Depending on the vehicle, the ECM may also activate:

  • Check Engine Light

  • Reduced engine power

  • Fail-safe mode

  • Limp mode

  • Limited engine RPM

  • Poor accelerator response

  • Electronic throttle-control warning

P2113 does not automatically mean the throttle body or accelerator pedal needs to be replaced. Carbon buildup, throttle-plate binding, incorrect adaptation, sensor problems, wiring faults, connector problems, reference-voltage issues, and poor electrical grounds can also cause this code.


What Does P2113 Mean?

P2113 means the ECM/PCM has detected that Throttle/Pedal Position Sensor "B" is not performing correctly at its minimum stop position.

The code has three important parts:

Throttle/Pedal Position Sensor

The electronic throttle system monitors accelerator-pedal and/or throttle position using position sensors.

Sensor "B"

The letter "B" identifies one of the sensor channels used by the vehicle's electronic throttle-control system.

The exact physical sensor represented by "B" is manufacturer-specific.

Depending on the vehicle design, it may be associated with:

  • Accelerator pedal position

  • Throttle position

  • Electronic throttle-body position

Therefore, the generic OBD-II description alone cannot identify the exact physical component.

Minimum Stop Performance

The ECM expects the sensor to report a predictable value when the throttle system reaches its minimum calibrated position.

If the sensor does not reach the expected value or behaves incorrectly at the minimum position, P2113 may be stored.


What Is a Minimum Stop?

The minimum stop is the calibrated minimum operating position of the electronic throttle system.

An electronic throttle plate is not necessarily designed to close completely against the throttle bore. A small calibrated opening may be maintained for airflow and idle control.

The ECM knows the expected position and sensor signal associated with this minimum operating point.

If the actual sensor reading does not correspond to the expected minimum position, the ECM can identify a minimum-stop performance problem.

Possible causes include:

  • Carbon buildup

  • Dirt around the throttle plate

  • Throttle plate binding

  • Incorrect throttle adaptation

  • Sensor wear

  • Sensor electrical failure

  • Wiring problems

  • Incorrect reference voltage

  • Poor sensor ground

  • Throttle-body damage


How Does the Electronic Throttle System Work?

A typical electronic throttle system works as follows:

  1. The driver presses or releases the accelerator pedal.

  2. Accelerator-pedal position sensors detect pedal movement.

  3. The pedal sensors send redundant signals to the ECM.

  4. The ECM calculates the driver's requested engine torque.

  5. The ECM determines the required throttle position.

  6. An electric throttle actuator moves the throttle plate.

  7. Throttle-position sensors report the actual throttle position.

  8. The ECM compares the sensor signals with the commanded position.

  9. The ECM continuously monitors minimum and maximum positions.

  10. The ECM checks whether the redundant signals remain plausible.

  11. If the minimum position is outside the expected range, a fault such as P2113 may be stored.

The redundancy is important because the electronic throttle system directly influences engine torque and accelerator response.


Symptoms of P2113

Symptoms vary depending on the vehicle and severity of the fault.

Check Engine Light

The Check Engine Light may illuminate when P2113 is stored.


Reduced Engine Power

The ECM may intentionally limit engine torque if it cannot reliably determine throttle position.


Limp Mode

The vehicle may enter a fail-safe operating strategy.

Possible restrictions include:

  • Engine RPM

  • Throttle opening

  • Engine torque

  • Accelerator response


Poor Throttle Response

The accelerator may feel delayed, inconsistent, or less responsive than normal.


Limited Acceleration

The vehicle may have reduced acceleration, especially if the ECM limits throttle operation.


Rough Idle

If the throttle cannot reach its expected minimum position, idle control may become unstable.


High or Unstable Idle

If the throttle plate remains slightly more open than commanded, additional engine airflow can cause an abnormal idle speed.


Engine Stalling

A severe electronic throttle problem can contribute to engine stalling, particularly when the throttle returns toward its minimum position.


Throttle Hesitation

The engine may hesitate during acceleration or when the accelerator pedal is released.


Engine Surging

Incorrect throttle-position feedback can sometimes contribute to unwanted changes in engine speed.


Cruise Control Deactivation

Cruise control may be disabled because it depends on reliable electronic throttle operation.


Electronic Throttle Warning

Some vehicles may display an electronic throttle-control warning or similar message.


Reduced Power Message

Some vehicles may display a Reduced Engine Power warning when the ECM activates a fail-safe strategy.


Common Causes of P2113

Dirty Throttle Body

Carbon buildup around the throttle plate can prevent it from reaching its calibrated minimum position.

Deposits may accumulate around:

  • Throttle plate edges

  • Throttle bore

  • Throttle shaft

If contamination is the cause, cleaning the throttle body according to the manufacturer's procedure may restore correct operation.

However, cleaning the throttle body should not automatically be considered the complete repair.


Throttle Plate Binding

The throttle plate may not return smoothly to its minimum position.

Possible causes include:

  • Carbon deposits

  • Dirt

  • Foreign material

  • Damaged throttle plate

  • Bent throttle shaft

  • Internal mechanical wear


Incorrect Throttle Adaptation

Some vehicles require the ECM to learn the throttle body's minimum position.

An adaptation problem can occur after:

  • Throttle-body replacement

  • Throttle-body cleaning

  • Battery disconnection

  • ECM replacement

  • Software updates


Faulty Throttle Position Sensor

The throttle body may contain multiple position sensors.

If the sensor associated with channel "B" develops:

  • Internal wear

  • Signal dropout

  • Dead spots

  • Incorrect output

  • Internal electrical failure

the ECM may detect an abnormal minimum-stop condition.


Faulty Accelerator Pedal Position Sensor

On vehicles where sensor "B" corresponds to an accelerator-pedal position channel, an internal pedal sensor fault can cause P2113.

This is why the vehicle-specific wiring diagram and manufacturer diagnostic information are important.


Damaged Throttle Body

An internal throttle-body fault can involve:

  • Position sensors

  • Actuator motor

  • Internal gears

  • Throttle shaft

  • Throttle plate

  • Electronics


Damaged Wiring

Inspect the relevant sensor circuit for:

  • Broken wires

  • Chafing

  • Heat damage

  • Melted insulation

  • Pinched wires

  • Vibration damage

  • Poor previous repairs


Corroded Connector

Moisture or corrosion can alter the sensor signal.

Look for:

  • Green corrosion

  • Oxidation

  • Water intrusion

  • Loose terminals

  • Bent pins

  • Poor terminal tension


Incorrect 5-Volt Reference

Many throttle and pedal position sensors use a regulated reference voltage.

A problem with this circuit can affect one or several sensors.

Possible causes include:

  • Short to ground

  • Short to voltage

  • Damaged wiring

  • Another sensor affecting a shared reference circuit

  • ECM reference-circuit problems


Sensor Ground Problem

A poor sensor ground can change the voltage signal reported to the ECM.

Possible causes include:

  • Corroded ground

  • Loose connection

  • Broken ground wire

  • High resistance

  • Excessive voltage drop


Low System Voltage

A weak battery or unstable electrical supply can interfere with electronic throttle operation.


Charging-System Problem

An alternator or voltage-regulation problem can cause unstable system voltage and contribute to electronic throttle faults.


Faulty ECM/PCM

An ECM/PCM fault is possible but generally less common than a:

  • Sensor fault

  • Throttle-body fault

  • Wiring problem

  • Connector problem

  • Reference-voltage problem

  • Ground problem

  • Adaptation issue

The ECM should normally be considered only after the rest of the system has been properly tested.


Vehicles Commonly Affected by P2113

P2113 can occur on many OBD-II vehicles equipped with electronic throttle-control systems.

Examples may include:

  • Ford F-150

  • Ford Mustang

  • Ford Explorer

  • Ford Focus

  • Ford Escape

  • Ford Fusion

  • Ford Ranger

  • Chevrolet Silverado

  • Chevrolet Tahoe

  • Chevrolet Camaro

  • Chevrolet Malibu

  • GMC Sierra

  • GMC Yukon

  • Cadillac Escalade

  • Dodge Charger

  • Dodge Challenger

  • Ram 1500

  • Jeep Grand Cherokee

  • Jeep Wrangler

  • Chrysler Pacifica

  • Toyota Camry

  • Toyota Corolla

  • Toyota Tundra

  • Toyota Tacoma

  • Honda Accord

  • Honda Civic

  • Honda CR-V

  • Nissan Altima

  • Nissan Pathfinder

  • Nissan Titan

  • BMW 3 Series

  • BMW 5 Series

  • Mercedes-Benz C-Class

  • Mercedes-Benz E-Class

  • Volkswagen Golf

  • Volkswagen Passat

  • Audi A4

  • Audi A6

This list is not exhaustive.

P2113 can occur on any vehicle where the ECM monitors a position channel identified as "B" and detects abnormal minimum-stop performance.

Important: The exact definition of sensor "B", the affected component, sensor voltage range, minimum-stop threshold, and diagnostic procedure vary by manufacturer.


How Is P2113 Diagnosed?

P2113 should be diagnosed systematically because the problem can originate from either a mechanical throttle problem or an electrical/sensor problem.

Replacing the throttle body immediately is not always appropriate.


Check for Additional Trouble Codes

Perform a complete diagnostic scan.

Look for related codes such as:

  • P2100

  • P2101

  • P2102

  • P2103

  • P2110

  • P2111

  • P2112

  • P2114

  • P2115

  • P2116

  • P2117

  • P2118

  • P2119

  • P2120

  • P2121

  • P2122

  • P2123

  • P2124

  • P2125

  • P2126

  • P2127

  • P2128

  • P2129

  • P2130

  • P2131

  • P2132

  • P2133

  • P2134

  • P2135

  • P2136

  • P2137

  • P2138

  • P2139

  • P2140

Also check for:

  • 5-volt reference codes

  • Accelerator-pedal position codes

  • Throttle-position sensor codes

  • Battery-voltage codes

  • Communication codes

Additional codes can help determine whether the fault involves the throttle body, accelerator pedal, wiring, or shared electrical circuits.


Check Freeze-Frame Data

Review the conditions under which P2113 was stored.

Useful parameters include:

  • Engine RPM

  • Vehicle speed

  • Accelerator pedal position

  • Commanded throttle position

  • Actual throttle position

  • Sensor "B" value

  • Battery voltage

  • Engine coolant temperature

  • Engine load

Determine whether the fault occurred:

  • At startup

  • At idle

  • During acceleration

  • During deceleration

  • When the accelerator was released

  • At a specific engine temperature

  • During low system voltage

This information is particularly useful when the problem is intermittent.


Monitor Sensor "B" Live Data

Use a capable diagnostic scan tool to monitor the position parameter associated with sensor "B".

Slowly press and release the accelerator pedal while observing the signal.

Look for:

  • Smooth signal movement

  • Correct minimum value

  • Sudden jumps

  • Signal dropouts

  • Dead spots

  • Unstable readings

  • Incorrect return-to-minimum behavior

The exact expected values are manufacturer-specific.


Check the Minimum Position

With the accelerator released, compare the reported sensor value with the manufacturer's specified minimum value.

If the sensor does not reach the expected minimum value, investigate:

  • Throttle-body position

  • Accelerator-pedal position

  • Sensor calibration

  • Wiring

  • Reference voltage

  • Ground


Inspect the Throttle Body

Inspect for:

  • Carbon deposits

  • Dirt

  • Foreign material

  • Mechanical damage

  • Throttle plate binding

  • Damaged gears

If contamination is found, follow the manufacturer's cleaning procedure.

Do not force an electronic throttle plate open if the manufacturer specifically warns against manual movement.


Check Throttle Plate Return

The throttle plate should return consistently to the calibrated minimum position.

If it sticks, returns slowly, or stops at different positions, a mechanical throttle-body problem may be present.


Check Throttle Position Sensor Signals

Where applicable, compare redundant throttle-position signals.

Look for:

  • Signal dropouts

  • Dead spots

  • Sudden voltage changes

  • Incorrect minimum values

  • Correlation errors

A sensor that appears normal through most of its operating range but becomes abnormal near the minimum position is particularly relevant to a minimum-stop performance code.


Check Accelerator Pedal Position Sensors

If the manufacturer's diagnostic information identifies sensor "B" as part of the accelerator pedal, monitor the pedal sensors.

The signals should:

  • Start at the correct minimum value.

  • Increase smoothly.

  • Remain within specification.

  • Maintain the required correlation.

  • Return correctly when the pedal is released.


Check the 5-Volt Reference

Measure the reference voltage according to the manufacturer's diagnostic procedure.

If multiple sensors share the reference circuit, check whether other sensors are also affected.


Check Sensor Ground

Perform a sensor-ground test.

Look for:

  • High resistance

  • Excessive voltage drop

  • Corrosion

  • Loose connections

  • Damaged wiring


Inspect Wiring and Connectors

Inspect the relevant circuit for:

  • Broken wires

  • Chafing

  • Melted insulation

  • Corrosion

  • Water intrusion

  • Loose terminals

  • Bent pins

  • Backed-out terminals


Perform a Wiggle Test

While monitoring sensor "B" data, carefully move the wiring harness and connector.

If the signal changes unexpectedly, investigate the wiring and connector.


Check Battery and Charging Voltage

Verify:

  • Battery condition

  • Battery terminals

  • Alternator output

  • Charging voltage

  • Engine grounds

  • Chassis grounds

Stable electrical voltage is important for electronic throttle-control operation.


Perform Throttle Adaptation or Relearn

If required by the manufacturer, perform the appropriate throttle adaptation procedure.

This may be necessary after:

  • Throttle-body cleaning

  • Throttle-body replacement

  • Battery disconnection

  • ECM replacement

  • Related throttle repairs

Do not assume that a generic throttle relearn procedure applies to every vehicle.


Check Technical Service Bulletins

Manufacturer service information may identify known problems involving:

  • Minimum-stop calibration

  • Position-sensor failures

  • Throttle-body contamination

  • Wiring defects

  • Connector problems

  • Software issues

  • Adaptation procedures


How to Fix P2113

The correct repair depends on the cause confirmed during diagnosis.

Clean the Throttle Body

If carbon buildup prevents the throttle plate from reaching the minimum position, clean it according to the manufacturer's procedure.

Perform any required adaptation afterward.


Repair Throttle Plate Binding

If mechanical binding is confirmed, repair or replace the throttle-body assembly as required.


Perform Throttle Adaptation

If the ECM has lost the learned minimum position, perform the correct manufacturer-specific adaptation procedure.


Replace the Faulty Position Sensor

If the sensor is serviceable separately and testing confirms failure, replace it.

On many modern vehicles, position sensors are integrated into the throttle body or accelerator-pedal assembly.


Replace the Throttle Body

If testing confirms an internal throttle-body fault involving the sensor, actuator, gears, or electronics, replace the throttle-body assembly.


Replace the Accelerator Pedal Assembly

If sensor "B" is part of the accelerator pedal assembly and testing confirms an internal pedal-position sensor failure, the pedal assembly may need replacement.


Repair Damaged Wiring

Repair or replace wiring affected by:

  • Heat

  • Chafing

  • Vibration

  • Corrosion

  • Pinching

  • Previous repairs


Repair or Replace Connectors

Replace damaged terminals or connector housings and restore proper terminal tension.


Repair 5-Volt Reference Problems

If the reference voltage is outside specification, identify and repair the short, open circuit, or other cause before replacing the sensor.


Repair Sensor Ground Problems

Repair loose, corroded, damaged, or high-resistance sensor grounds.


Repair Charging-System Problems

Correct battery, alternator, or charging-system problems if unstable voltage is contributing to the fault.


Update ECM/PCM Software

If manufacturer service information identifies a software/calibration problem, perform the appropriate update.


Replace the ECM/PCM

The ECM/PCM should only be considered after the sensor, throttle body, accelerator pedal, wiring, reference voltage, grounds, power supply, and calibration have been properly tested.


What Happens If P2113 Is Ignored?

P2113 should not be ignored because the affected position sensor is part of the electronic throttle-control safety system.

Possible consequences include:

  • Reduced engine power

  • Poor throttle response

  • Limp mode

  • Limited acceleration

  • Rough or unstable idle

  • Engine stalling

  • Cruise-control deactivation

  • Additional throttle-control codes

  • Increased emissions

If the ECM cannot reliably determine the minimum throttle position, it may restrict engine torque as a safety measure.


Can You Drive With P2113?

Driving with P2113 depends on the vehicle's symptoms.

A vehicle with a minor or intermittent problem may remain driveable, while another vehicle may immediately enter reduced-power mode.

A short trip may be possible if:

  • The engine runs normally.

  • Accelerator response is predictable.

  • There is no significant loss of power.

  • The engine does not stall.

  • No serious warning messages are displayed.

Avoid continued driving if there is:

  • Sudden loss of acceleration

  • Unpredictable throttle response

  • Severe hesitation

  • Repeated stalling

  • Reduced-power mode

  • Very limited engine RPM

  • Multiple electronic throttle warnings

If accelerator response becomes unpredictable, the vehicle should be inspected promptly.


Is P2113 a Serious Code?

P2113 is generally considered a moderate to high-severity diagnostic trouble code.

The electronic throttle system directly affects engine torque and acceleration, so a minimum-stop performance fault can affect drivability and safety.

The severity is higher if the vehicle:

  • Enters limp mode

  • Loses significant power

  • Stalls

  • Has unpredictable accelerator response

  • Cannot accelerate normally

If the vehicle suddenly loses throttle response or displays a reduced-power warning, the problem should be treated as high priority.


P2113 vs. Related Throttle and Pedal Codes

Code General Description
P2113 Throttle/Pedal Position Sensor "B" Minimum Stop Performance
P2114 Throttle/Pedal Position Sensor "C" Minimum Stop Performance
P2115 Throttle/Pedal Position Sensor "D" Minimum Stop Performance
P2116 Throttle/Pedal Position Sensor "E" Minimum Stop Performance
P2117 Throttle/Pedal Position Sensor "F" Minimum Stop Performance
P2118 Throttle Actuator Control Motor Current Range/Performance
P2119 Throttle Actuator Control Throttle Body Range/Performance
P2120 Throttle/Pedal Position Sensor/Switch "D" Circuit Malfunction
P2121 Throttle/Pedal Position Sensor/Switch "D" Circuit Range/Performance
P2122 Throttle/Pedal Position Sensor/Switch "D" Circuit Low Input
P2123 Throttle/Pedal Position Sensor/Switch "D" Circuit High Input
P2124 Throttle/Pedal Position Sensor/Switch "D" Circuit Intermittent
P2125 Throttle/Pedal Position Sensor/Switch "E" Circuit Malfunction
P2126 Throttle/Pedal Position Sensor/Switch "E" Circuit Range/Performance
P2127 Throttle/Pedal Position Sensor/Switch "E" Circuit Low Input
P2128 Throttle/Pedal Position Sensor/Switch "E" Circuit High Input
P2129 Throttle/Pedal Position Sensor/Switch "E" Circuit Intermittent
P2130 Throttle/Pedal Position Sensor/Switch "F" Circuit Malfunction
P2131 Throttle/Pedal Position Sensor/Switch "F" Circuit Range/Performance
P2132 Throttle/Pedal Position Sensor/Switch "F" Circuit Low Input
P2133 Throttle/Pedal Position Sensor/Switch "F" Circuit High Input
P2134 Throttle/Pedal Position Sensor/Switch "F" Circuit Intermittent
P2135 Throttle Position Sensor A/B Voltage Correlation

The distinction is important:

  • P2113 focuses specifically on the minimum-stop performance of sensor "B".

  • P2114 focuses specifically on the minimum-stop performance of sensor "C".

  • P2115 focuses specifically on the minimum-stop performance of sensor "D".

  • P2116 focuses specifically on the minimum-stop performance of sensor "E".

  • P2117 focuses specifically on the minimum-stop performance of sensor "F".

  • P2118 concerns throttle actuator motor current range/performance.

  • P2119 concerns throttle-body range/performance.

  • P2120–P2124 concern the "D" throttle/pedal sensor circuit.

  • P2125–P2129 concern the "E" throttle/pedal sensor circuit.

  • P2130–P2134 concern the "F" throttle/pedal sensor circuit.

  • P2135 concerns throttle-position sensor A/B correlation.

If P2113 appears together with other throttle or pedal-position codes, the combination may provide additional clues about the affected sensor channel or electrical circuit. However, the exact relationship is manufacturer-specific.


How to Prevent P2113

Recommended practices include:

  • Keep the throttle body clean according to manufacturer recommendations.

  • Follow the correct procedure when cleaning an electronic throttle body.

  • Perform required throttle adaptation after applicable repairs.

  • Protect throttle and pedal sensor wiring from heat.

  • Prevent wiring from rubbing against metal.

  • Keep electrical connectors clean and dry.

  • Maintain battery terminals.

  • Maintain engine and chassis grounds.

  • Maintain the charging system.

  • Use correct throttle-body and accelerator-pedal components.

  • Avoid poorly installed throttle-control modifications.

  • Address Check Engine Light warnings promptly.


Final Thoughts

The P2113 Throttle/Pedal Position Sensor "B" Minimum Stop Performance diagnostic trouble code indicates that the ECM/PCM has detected an abnormal minimum-position condition involving the sensor "B" channel of the electronic throttle/pedal system.

Possible causes include:

  • Dirty throttle body

  • Carbon buildup

  • Throttle plate binding

  • Incorrect throttle adaptation

  • Faulty throttle-position sensor

  • Faulty accelerator-pedal position sensor

  • Damaged throttle body

  • Damaged wiring

  • Corroded or loose connectors

  • Incorrect 5-volt reference

  • Poor sensor ground

  • Low system voltage

  • Charging-system problems

  • Software/calibration issues

  • ECM/PCM faults

The most important point is that P2113 does not automatically mean the throttle body or accelerator pedal must be replaced.

A proper diagnosis should first identify exactly which component and sensor channel the vehicle manufacturer associates with "B". The technician should then verify the sensor's minimum value, inspect the throttle plate and minimum stop, compare live sensor data, check the 5-volt reference and sensor ground, inspect wiring and connectors, verify battery/charging voltage, and perform any required throttle adaptation.

If the vehicle has severe power loss, unpredictable accelerator response, repeated stalling, or reduced-power mode, the fault should be diagnosed promptly because the electronic throttle system is directly involved in engine torque control and vehicle acceleration.