Claims
- 1. An electromagnetic fuel injection valve including a coil to generate a magnetic field to separate a valve element from a valve seat, magnetic field generating means for generating a magnetic field to hold a separation state of said valve element from said valve seat, fuel injection means for opening/closing a fuel flowing gap between said valve element and said valve seat through which fuel passes, and control means to control said opening/closing said fuel flowing gap, said electromagnetic fuel injection valve comprising:
- a detection unit to detect at least one of information on increasing/decreasing of said magnetic field generated by said coil and information on increasing/decreasing of a pressing force on said valve element; and
- an adjustment unit to change a time interval for flowing current in said coil based on said detected information.
- 2. An electromagnetic fuel injection valve including a coil to generate a magnetic field to separate a valve element from a valve seat, a holding unit to hold a separation state of said valve element from said valve seat, a fuel injection valve to open/close a fuel flowing gap between said valve element and said valve seat through which fuel passes, and a control unit to control opening/closing of said fuel flowing gap, said electromagnetic fuel injection valve comprising:
- a sensor to detect at least one of information on increasing/decreasing of said magnetic field generated by said coil and information on increasing/decreasing of a pressing force on said valve element;
- wherein said control unit controls a time interval for flowing current in said coil, based on an output signal of said sensor.
- 3. An electromagnetic fuel injection valve according to claim 2, wherein said sensor detects increasing/decreasing of said pressing force on said valve element, based on information of the pressure of fuel to be injected.
- 4. An electromagnetic fuel injection valve according to claim 2, wherein said sensor detects increasing/decreasing of said magnetic field generated by said coil, based on information of the voltage of a power source feeding current to said coil.
- 5. An electromagnetic fuel injection valve according to claim 2, wherein said coil is connected to a battery arranged in a vehicle, and is driven by power fed from said battery.
- 6. An electromagnetic fuel injection valve according to claim 2, wherein said holding unit is another coil connected to the same power source as that to which said coil is connected, and is constructed such that a current saturation value of said holding unit is lower than that of said coil.
- 7. An electromagnetic fuel injection valve according to claim 6, wherein said control unit stops flowing of current to said coil used as said holding unit for a period other than a period during which fuel injection is performed, and feeds current to said coil used as said holding unit for a period during which current is fed to said coil to generate a magnetic field to separate said valve element from a valve seat.
- 8. A method of injecting fuel into each cylinder of a vehicle from a fuel injector by driving a valve element of a fuel injection valve for opening/closing a fuel flowing gap between said valve element and said valve seat through which fuel passes, with feeding current to a coil provided in said fuel injection valve, said method comprising the steps of:
- separating a valve element from a valve seat by feeding current to a coil provided in said fuel injection valve;
- holding a separation state of said valve element from said valve seat with a holding unit of said valve element, provided in said fuel injection valve; and
- adjusting a time interval for flowing current in said coil based on at least one of information on increasing/decreasing of said magnetic field generated by said coil and information on increasing/decreasing of a pressing force on said valve element.
- 9. An electromagnetic fuel injection valve including a valve element for opening/closing a fuel flowing gap between said valve element and a valve seat, through which fuel passes, a movable member movably provided in a direction of the axis of said valve along with said valve element, a core provided so as to surround said movable member with a gap between said core and said movable member, said gap forming a passage of a magnetic field, a coil wound on said core for generating a magnetic field to separate said valve element from said valve seat, a holding unit for holding a separation state of said valve element from said valve seat, wherein said coil and said holding unit are serially arranged in said direction of said axis of said valve, and said coil is arranged nearer to said fuel flowing gap than said holding unit.
Priority Claims (3)
Number |
Date |
Country |
Kind |
9-170498 |
Jun 1997 |
JPX |
|
9-243688 |
Sep 1997 |
JPX |
|
10-57699 |
Mar 1998 |
JPX |
|
CROSS-REFERENCE TO RELATED APPLICATION
This application is a divisional of application Ser. No. 09/105,208, filed Jun. 26, 1998, the entire disclosure of which is hereby incorporated by reference, now U.S. Pat. No. 5,992,391.
US Referenced Citations (4)
Foreign Referenced Citations (4)
Number |
Date |
Country |
251561 |
Jan 1988 |
EPX |
6-241137 |
Aug 1994 |
JPX |
8-45735 |
Feb 1996 |
JPX |
8-326620 |
Dec 1996 |
JPX |
Divisions (1)
|
Number |
Date |
Country |
Parent |
105208 |
Jun 1998 |
|