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P0629 — Fuel Pump Control Circuit High

Generic OBD-II · all makesPowertrain (engine & transmission)

P0629 indicates the Powertrain Control Module (PCM) has detected an abnormally high voltage in the fuel pump control circuit. The fuel pump is normally switched on through a relay or an electronic driver module, and this code sets when the monitored signal falls outside the expected range. The condition can prevent the pump from delivering proper fuel pressure, leading to drivability or no-start symptoms.

Symptoms

What causes it — most likely first

1. Faulty fuel pump

An internal short, high resistance, or mechanical binding in the fuel pump motor can alter the control circuit's voltage and is the most common hardware failure associated with P0629.

2. Wiring fault in the control circuit

Chafed, broken, or corroded wiring between the PCM, relay or driver module, and the fuel pump—particularly a short to voltage on the control side—commonly produces a high-voltage reading.

3. Failed fuel pump relay or driver module

Many vehicles use a relay or a dedicated Fuel Pump Driver Module (FPDM) to switch the pump. A stuck or shorted switching device can leave the circuit in a high state.

4. Corroded or loose connector

Moisture intrusion, pin damage, or a poor terminal fit at the fuel pump harness, relay socket, or PCM connector can cause the circuit to read high and set the code.

5. Open or high-resistance ground at the pump

A broken, loose, or corroded ground path at the fuel pump can force the PCM's monitoring circuit to register an abnormally high voltage on the control line.

6. Faulty PCM (uncommon)

Although the PCM monitors this circuit, an internal driver fault is rare compared with the field components above and should only be considered after they are ruled out by direct testing.

How it's diagnosed

  1. Retrieve all stored DTCs and freeze-frame data with a scan tool to confirm P0629 and check for related fuel pressure or sensor codes.
  2. Listen for the fuel pump prime cycle with the key on, and inspect the fuel pump fuse and relay; substitute a known-good relay of the same type if available.
  3. Connect a fuel pressure gauge to verify that pump output meets manufacturer specification; no or low pressure points toward a pump or supply problem.
  4. Back-probe voltage and ground at the fuel pump harness connector with the pump commanded on, and visually inspect the harness for chafing, heat damage, or signs of a short to power.
  5. Test the Fuel Pump Driver Module (if equipped) for proper switching signals, and check the control wire from the driver or relay back to the PCM for shorts or opens.
  6. If all external components, grounds, and wiring test good, evaluate the PCM's fuel pump command output and consider internal PCM failure only as a last resort.

Code facts & related codes

SystemPowertrain (engine & transmission)
StandardizationSAE generic — identical on every make

Frequently asked

Is the fuel pump itself usually the problem?

Often, yes. A failing or internally shorted fuel pump is one of the more common causes of P0629 because abnormal pump current directly affects the control-circuit voltage the PCM is monitoring.

Do I need to replace the PCM to fix P0629?

Almost never. The PCM monitors the circuit but is rarely the failed component. Drivers are sometimes steered toward a PCM replacement, but the actual fault is almost always in the pump, relay, driver module, wiring, or connectors. A PCM should be replaced only after every other possibility has been ruled out by direct circuit testing.

Can I keep driving with P0629 set?

It is not advisable. The fuel pump may run intermittently, at reduced output, or not at all, which can leave you stranded or cause engine damage from a lean operating condition.

How is the fuel pump control circuit actually tested?

With a digital multimeter or lab scope, voltage and ground are measured at the pump connector while the pump is commanded on, and the control wire is back-probed at the relay or driver module. Resistance and insulation tests on the harness identify shorts, opens, or high-resistance connections.