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P2119 Throttle Actuator Control Throttle Body Range

OBD-II Trouble Code Technical Description

Article by
John Ingalls
John Ingalls
Former Service Manager & Air Force Mechanic

Throttle Actuator Control Throttle Body Range/Performance

What does that mean?

This generic powertrain diagnostic trouble code (DTC) typically applies to all OBD-II equipped vehicles that use a drive-by-wire throttle control system including but not limited to vehicles from Ford, Mazda, Nissan, Chevy, Toyota, Cadillac, GMC, Land Rover, etc.

The P2119 OBD-II trouble code is one of number of possible codes that indicates that the Powertrain Control Module (PCM) has detected a malfunction with the operation of the Throttle Actuator Control System.

There are six codes that are associated with Throttle Actuator Control System malfunctions and they are P2107, P2108, P2111, P2112, P2118 and P2119. Code P2119 is set by the PCM when the Throttle Actuator Throtle Body is out of range or not performing properly.

The PCM controls the Throttle Actuator Control System by monitoring one or more throttle position sensors. The operation of the throttle body is determined by the position of the throttle plate that is controlled by one or more Throttle Actuator Control Motors. The PCM also monitors the accelerator pedal position sensor to determine how fast the driver wants to go and then determines the appropriate throttle response. The PCM accomplishes this by a changing current flow to the Throttle Actuator Control Motor that moves the throttle plate to the desired position. Some malfunctions will cause the PCM to restrict the operation of the Throttle Actuator Control System. This is known as fail-safe or limp mode where the engine is held at idle or may not start at all.

Code Severity & Symptoms

The severity of this code can be moderate to severe based on the specific malfunction. Symptoms of a P2119 trouble code may include:

Common Causes Of A P2119 Code

Possible causes of this code may include:

Common Repairs

Diagnostic and Repair Procedures

Check for TSBs

The first step in the troubleshooting process for any malfunction is to research the Technical Service Bulletins (TSB's) for the specific vehicle by year, model and power plant. In some circumstances this can save a lot of time in the long run by pointing you in the right direction.

The second step is to locate all of the components associated with the Throttle Actuator Control System. This will include the throttle body, throttle position sensor, throttle actuator control motor, the PCM and the accelerator position sensor on a simplex system. Once these components are located a thorough visual inspection should be performed to check all of the associated wiring for obvious defects such as scraping, rubbing, bare wires, burn spots or melted plastic. Next is to check the connectors to every component for security, corrosion and damaged pins.

The last visual and physical inspection is the throttle plate. With the ignition switch off, you should be able to rotate the throttle plate by pushing in on it. It should rotate to the wide open position. If there is sludge behind the plate it should be cleaned while it is accessible.

Advanced Steps

The advanced steps become very vehicle specific and require the appropriate advanced equipment to perform accurately. These procedures require a digital multi meter and the specific technical references for the vehicle. Voltage requirements will very based of the specific year, model and engine in the vehicle.

Circuit Checks

With the ignition switch in the off position, disconnect the electrical connector at the throttle body. Locate the 2 pins that go the motor or motors on the throttle body. Using a digital ohmmeter set to ohms, check the resistance of the motor or motors. The motor should read approximately between 2 and 25 ohms depending on the specific vehicle (check manufacturers specs for your vehicle). If the resistance is either too high or too low, the throttle body will need to be replaced. If all tests have passed so far, you will want to check the voltage signals to the motor.

If this process identifies the absence of a power source or ground, continuity testing may be required to check the integrity of the wiring. Continuity tests should always by performed with the power removed from the circuit and the normal readings should be 0 ohms of resistance unless otherwise specified by the technical data. Resistance or no continuity is an indication of faulty wiring that must be repaired or replaced.

Hopefully, the information in this article has been helpful to point you in the right direction to correct the problem with your Throttle Actuator Control System. This article is strictly informational and the specific technical data and service bulletins for your vehicle should always take priority.

Related P2119 DTC Discussions

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