Vehicle applicability: This diagnostic supplement covers multiple Ford vehicles and engines. Follow the application named in the source below. Some references apply to vehicles other than Mustang.
1-74 Description and Operation
Fuel Systems
Fuel Pump Control — EcoSport And KA
The output signal from the PCM or BCM controls the electric fuel pump. With the PCM power relay contacts closed, VPWR is sent to the coil of the fuel pump relay. For electric fuel pump operation, the PCM or BCM grounds the FP circuit, which is connected to the coil of the fuel pump relay. This energizes the coil and closes the contacts of the relay, sending B+ through the FPPWR circuit to the electric fuel pump. When the ignition is turned ON, the electric fuel pump runs for about 1 second and is turned OFF by the PCM or BCM if engine rotation is not detected.
Fuel Pump Monitor — EcoSport And KA
The FPM circuit is spliced into the FPPWR circuit and is used by the PCM for diagnostic purposes. The PCM sources a low current voltage down the FPM circuit. With the fuel pump OFF, this voltage is pulled low by the path to ground through the fuel pump. With the fuel pump OFF and the FPM circuit low, the PCM can verify the FPM and FPPWR circuits are complete from the FPM splice through the fuel pump to ground. This also confirms that the FPPWR or FPM circuits are not short to power. With the fuel pump ON, voltage is now being supplied from the fuel pump relay to the FPPWR and FPM circuits. With the fuel pump ON and the FPM circuit high, the PCM can verify the FPPWR circuit from the fuel pump relay to the FPM splice is complete. It can also verify the fuel pump relay contacts are closed and there is a B+ supply to the fuel pump relay.
Mechanical Returnless Fuel System (MRFS) — All Others
NOTE: The MRFS can be configured with a dual or variable speed fuel pump. The MRFS incorporates a fuel pump control module which is used to control the speed of the fuel pump. For additional information, refer to Powertrain Control Hardware in this section.
The MRFS uses a fuel tank with reservoir, the fuel pump, the fuel pump control module, the fuel pressure regulator, the fuel filter, the fuel supply line, the fuel rail, and fuel injectors.
For vehicles with gasoline direct fuel injection, a pressure accumulator is incorporated into the fuel line to prevent fuel vapor formation after several hours of cold soak and reduce crank time.
For additional information on the fuel system components, refer to Engine Control Components in this section. Operation of the system is as follows:
1. The fuel delivery system is enabled during ignition ON, engine OFF for 1 second and during crank or running mode once the PCM receives a CKP sensor signal. On vehicles with gasoline direct fuel injection, the high pressure fuel system may be under vacuum after several hours of cold soak. Fuel vapor may collect at the fuel injection pump, causing a long start condition. To prevent this, the fuel pump relay is energized for 1 or 2 seconds, depending on application, as soon as the dome light is commanded ON. This causes the fuel pump control module and the fuel pump to cycle for 1 or 2 seconds and purge any trapped air or fuel vapor from the high pressure fuel system.
2. The fuel pump logic is defined in the fuel system control strategy and executed by the PCM.
3. The fuel pump control module relay provides voltage to the fuel pump control module. Some vehicles use a replaceable relay inside the battery junction box; others use an internal relay in the body control module (BCM).
4. The PCM commands a duty cycle to the fuel pump control module. The fuel pump control module reports diagnostic information to the PCM. The fuel pump control module controls the voltage to the FP based on the duty cycle request from the PCM. Voltage for the fuel pump is supplied by the fuel pump control module relay.
5. For vehicles with gasoline direct fuel injection, a fuel pressure sensor monitors the low pressure fuel system.
6. For vehicles with gasoline direct fuel injection, the fuel injection pump raises fuel system pressure to as high as 15 MPa (2175 psi), and delivers it to the fuel rail.
7. The fuel injector is a solenoid-operated valve that meters the fuel flow to each combustion cylinder. The fuel injector is opened and closed a constant number of times per crankshaft revolution. The amount of fuel is controlled by the length of time the fuel injector is held open. The fuel injector is normally closed and is operated by the PCM.
8. There are 3 to 5 filtering or screening devices in the fuel delivery system. For additional information, refer to Fuel Systems, in this section.
9. The FP assembly contains the fuel pump, the fuel pressure regulator, lifetime fuel filter and the fuel sender assembly. The fuel pressure regulator is attached to the FP assembly and regulates the pressure of the fuel supplied to the fuel injectors. The fuel pressure regulator controls the pressure of the clean fuel as the fuel returns from the fuel filter. The fuel pressure regulator is a diaphragm-operated relief valve. Fuel pressure is established by a spring preload applied to the diaphragm. The FP assembly is located in the fuel tank.
2016 Powertrain Control/Emissions Diagnosis, Gasoline Engines, 3/2015
2016 Mustang workshop publication supplied to Mustang Atlas. Original technical text and illustrations; HTML formatting by Mustang Atlas. Source page numbering is retained for traceability. Follow the configuration, revision, warnings, and cross-references in the material. About this edition.