FixVault

PGM-FI Control System

NOTE: Components are grouped into two categories. The first category covers input devices, which control or produce voltage signals monitored by the ECM. See INPUT DEVICES  . The second category covers output signals, which are components controlled by the ECM. See OUTPUT SIGNALS  .

The Programmed Fuel Injection (PGM-FI) system controls the engine emission and performance functions as well as providing information to other vehicle systems. With the ignition switch in RUN or START, battery voltage is supplied from fuse No. 18 to the Engine Control Module (ECM) through the PGM-FI main relay and the Yellow/Black wires. Battery voltage is supplied at all times from fuse No. 33 and the White/Yellow wires to the ECM for memory functions. The ECM is grounded through the Black wires to G101. For component locations, see Fig 2 -Fig 7 . For circuit schematic, see Fig 8 -Fig 21 .

The ECM is self-diagnosing and monitors the sensors for irregular signals. The ECM is programmed with settings for fuel injector discharge duration at various engine speeds and manifold pressures. Discharge duration is modified by signals sent from various sensors to determine final discharge duration. If the engine is cold, the A/C compressor is on, the transmission is in gear (A/T only) or the alternator is charging, the ECM sends signal to the drive by wire system to maintain correct idle speed. The ECM is programmed with settings for basic ignition timing at various engine speeds and manifold pressures. Ignition timing is also adjusted for coolant temperature. A knock control system retards ignition timing when the knock sensor detects detonation. For PGM-FI inputs and outputs, see Fig 1 . The PGM-FI also features the following functions.

To prevent false indications, the Two Trip Detection Method is used for the HO2 S, fuel metering-related systems, idle control system, ECT sensor, EGR system self-diagnostic functions and EVAP control system. When an abnormality occurs, the ECM stores it in its memory. When the same abnormality recurs after the ignition switch is turned OFF and ON again, the ECM informs the driver by lighting the MIL. If misfiring that increases emissions or EVAP control system malfunction is detected during two consecutive driving cycles, or TWC deterioration is detected during three consecutive driving cycles, the ECM turns the MIL on. A "Driving Cycle" consists of starting the engine, beginning closed loop operation, and stopping the engine. To ease troubleshooting, these functions are cancelled when you short the service check connector. The MIL will then blink immediately when an abnormality occurs.

Fig 1: Identifying PGM-FI Inputs And Outputs
G00097453Courtesy of AMERICAN HONDA MOTOR CO., INC.
Fig 2: Locating PGM-FI Components (1 Of 6)
G00097448Courtesy of AMERICAN HONDA MOTOR CO., INC.
Fig 3: Locating PGM-FI Components (2 Of 6)
G00097422Courtesy of AMERICAN HONDA MOTOR CO., INC.
Fig 4: Locating PGM-FI Components (3 Of 6)
G00097449Courtesy of AMERICAN HONDA MOTOR CO., INC.
Fig 5: Locating PGM-FI Components (4 Of 6)
G00097450Courtesy of AMERICAN HONDA MOTOR CO., INC.
Fig 6: Locating PGM-FI Components (5 Of 6)
G00097451Courtesy of AMERICAN HONDA MOTOR CO., INC.
Fig 7: Locating PGM-FI Components (6 Of 6)
G00097452Courtesy of AMERICAN HONDA MOTOR CO., INC.
Fig 8: PGM-FI Circuit Schematic (1 Of 14)
G00097454Courtesy of AMERICAN HONDA MOTOR CO., INC.
Fig 9: PGM-FI Circuit Schematic (2 Of 14)
G00097455Courtesy of AMERICAN HONDA MOTOR CO., INC.
Fig 10: PGM-FI Circuit Schematic (3 Of 14)
G00097456Courtesy of AMERICAN HONDA MOTOR CO., INC.
Fig 11: PGM-FI Circuit Schematic (4 Of 14)
G00104740Courtesy of AMERICAN HONDA MOTOR CO., INC.
Fig 12: PGM-FI Circuit Schematic (5 Of 14)
G00104741Courtesy of AMERICAN HONDA MOTOR CO., INC.
Fig 13: PGM-FI Circuit Schematic (6 Of 14)
G00104742Courtesy of AMERICAN HONDA MOTOR CO., INC.
Fig 14: PGM-FI Circuit Schematic (7 Of 14)
G00104743Courtesy of AMERICAN HONDA MOTOR CO., INC.
Fig 15: PGM-FI Circuit Schematic (8 Of 14)
G00104744Courtesy of AMERICAN HONDA MOTOR CO., INC.
Fig 16: PGM-FI Circuit Schematic (9 Of 14)
G00104745Courtesy of AMERICAN HONDA MOTOR CO., INC.
Fig 17: PGM-FI Circuit Schematic (10 Of 14)
G00104746Courtesy of AMERICAN HONDA MOTOR CO., INC.
Fig 18: PGM-FI Circuit Schematic (11 Of 14)
G00104747Courtesy of AMERICAN HONDA MOTOR CO., INC.
Fig 19: PGM-FI Circuit Schematic (12 Of 14)
G00104748Courtesy of AMERICAN HONDA MOTOR CO., INC.
Fig 20: PGM-FI Circuit Schematic (13 Of 14)
G00104749Courtesy of AMERICAN HONDA MOTOR CO., INC.
Fig 21: PGM-FI Circuit Schematic (14 Of 14)
G00104750Courtesy of AMERICAN HONDA MOTOR CO., INC.