Claims
- 1. In an individual ignition type ignition coil for use in an engine in which a center core, a secondary coil wound on a secondary bobbin and a primary coil wound on a primary bobbin are installed concentrically from an inner side of a coil case in order, at upper portion of said coil case a circuit case having a connector is installed inside an ignition unit of the ignition coil, and said ignition coil is connected directly to a respective spark plug of said engine, the ignition coil for use in the engine characterized in thatan insulation resin is filled up between said secondary bobbin and said center core; at an upper end opening of said secondary bobbin said insulation resin is carried out a compression molding and a hemisphere dent is formed at said upper end opening of said secondary bobbin; in said circuit case having said connector, a bottom portion of said circuit case is communicated to an upper portion of said coil case; an epoxy resin is filled up extending over between from an interior portion of said circuit case having said connector to said secondary coil and said primary bobbin of said coil case and between said primary coil to said coil case; and said hemisphere dent formed on said insulation resin is buried by said molding resin.
- 2. An ignition coil for use in an engine according to claim 1, characterized in thatsaid insulation resin is a resin having an flexibility and said molding resin filled up on above said insulation resin is a hard resin.
- 3. An individual ignition type ignition coil for use in an engine according to claim 1, characterized in thatsaid insulation resin is an epoxy resin having an flexibility and said molding resin filled up on above said insulation bobbin.
- 4. An engine having a plastic head cover, characterized in thata cylinder head of the engine is covered by a plastic head cover; a respective spark plug mounted in said cylinder head is connected directly to an individual ignition type ignition coil which is prepared for each of said spark plug; said individual ignition type ignition coil comprises a coil portion in which a center core, a secondary coil wound on a secondary bobbin and a primary coil wound on a primary bobbin are installed concentrically inside a thin narrow cylindrical shape coil case and a circuit case having a connector which is provided at an upper portion of said coil case and has an ignition circuit unit inside; said coil portion is penetrated through said plastic head cover and the center of gravity of said ignition coil is positioned at a lower position from said plastic head cover; and said circuit case having said connector is fixed to an outer face of said plastic head cover.
- 5. An engine having a plastic head cover according to claim 4, characterized in thatsaid center of gravity of said ignition coil is positioned at a plug hole which is provided on said cylinder head or at a spark plug which communicates to said plug hole.
- 6. An individual ignition type ignition coil which is connectable directly to a respective spark plug of an internal combustion engine, comprisinga center core, a secondary coil would on a secondary bobbin and a primary coil wound on a primary bobbin are installed concentrically from an inner side of a coil case in order with an insulating resin between said secondary bobbin and said center core; wherein said secondary bobbin is constituted by a material in which the coefficient of thermal expansion at 20° C.-150° C. has a 10-45×10−6 in a flowability direction and including a cross direction during a molding and said insulating resin is a soft resin in which a glass transition point is at least less than a normal temperature (20° C.) and has an elasticity at more than the glass transition point.
- 7. An individual ignition type ignition coil which is connectable directly to a respective spark plug of an internal combustion engine, comprisinga center core, a secondary coil wound on a secondary bobbin and a primary coil wound on a primary bobbin are installed concentrically from an inner side of a coil case in order with an insulation resin between said secondary bobbin and said center core; wherein said secondary bobbin is formed by polyphenylene sulfide (hereinafter, it is called in abbreviation as PPS) or a mixture material comprised of PPS and other resin and said insulation resin in an insulation resin having a glass transition point Tg which satisfies a condition of an allowable stress of said secondary bobbin>a generation stress (from −40° C. to a glass transition point Tg of said insulation resin) and said insulation resin is carried out a compression molding.
- 8. An individual ignition type ignition coil according to claim 7, whereinsaid primary bobbin is constituted by PPS and a mixture compression resin of PPS and material similar to that of said secondary bobbin.
- 9. An individual ignition type ignition coil which is connectable directly to a respective spark plug of an internal combustion engine, comprisinga center core, a secondary coil wound on a secondary bobbin and a primary coil wound on a primary bobbin which are installed concentrically from an inner side of a coil case in order; said secondary bobbin being formed by PPS or a resin mixture including PPS; an insulating thermoplastic resin which fills up a surrounding portion of said center core, said secondary coil wound on said secondary bobbin and said primary coil wound on said primary bobbin; wherein said thermoplastic resin filled up between said secondary bobbin and said center core is a resin having a glass transition point Tg which satisfies a condition.
- 10. An individual ignition type ignition coil which is connectable directly to a respective spark plug of an internal combustion engine, comprisinga center core, a secondary coil wound on a secondary bobbin and a primary coil wound on a primary bobbin which are installed concentrically from an inner side of a coil case in order; said secondary bobbin being formed by PPS or a resin mixture including PPS; an insulation thermoplastic resin which fills up a surrounding portion of said center core, said secondary coil wound on said secondary bobbin and said primary coil wound on said primary bobbin; wherein said thermoplastic resin filled up between said secondary bobbin and said center core is a flexibility resin in which a glass transition point Tg is at least less than 20° C. and Young's modulus is less than 1×108 (Pa) at more than the glass transition point.
- 11. An individual ignition type ignition coil which is connectable directly to a respective spark plug of an internal combustion engine, comprisinga center core, a secondary coil wound on a secondary bobbin and a primary coil wound on a primary bobbin which are installed concentrically from an inner side of a coil case in order; said secondary bobbin being formed by PPS or a resin mixture material comprised of PPS; an insulation thermoplastic resin which fills up a surrounding portion of said center core, said secondary coil wound on said secondary bobbin and said primary coil wound on said primary bobbin; wherein said thermoplastic resin filled up between said secondary bobbin and said center core is constituted by a resin which has a specific dielectric constant substantially the same as that of said secondary bobbin.
- 12. An individual ignition type ignition coil according to claim 7, wherein said coil case is formed by polybutylene-terephthalate;an insulation use thermoplastic resin fills up a surrounding portion of said center core, said secondary coil wound on said secondary bobbin and said primary coil wound on said primary bobbin; said thermoplastic resin filled up between said secondary bobbin and said center core is a flexible resin in which a glass transition point Tg is at least less than 2020 C. and Young's modulus is less than 1×108 (Pa) at more than the glass transition point; and said resin which fills up a surrounding portion of said secondary bobbin and a surrounding portion of said primary coil is an epoxy resin which has a glass transition point of 120-140° C. after a hardening.
- 13. An individual ignition type ignition coil according to claim 7, wherein said coil case is formed by a thermoplastic resin mixture comprised of a modified PPO blending agent and PPS;said thermoplastic resin filled up between said secondary bobbin and said center core is a flexible resin in which a glass transition point Tg is at least less than 20° C. and Young's modulus is less than 1×108 (Pa) at more than the glass transition point; and said resin which fills up a surrounding portion of said secondary bobbin and a surrounding portion of said primary coil is an epoxy resin which has a glass transition point after a hardening of 120-140° C.
- 14. An individual ignition type ignition coil for use in an engine according to claim 13, whereinsaid secondary bobbin is a material in which inorganic powders comprised of glass fibers and tarc of 50-70 wt % in a total are mixed with PPS.
- 15. An individual ignition type ignition coil for use in an engine according to claim 13, whereinsaid secondary bobbin is a material in which silica powders and melting glass powders of 50-70 wt % in a total are mixed with PPS.
- 16. In an individual ignition type ignition coil in which the ignition coil has a center core, a primary coil wound on a primary bobbin and a secondary coil wound on a secondary bobbin in an inner side thereof, and the ignition coil is used by mounting a respective spark plug hole of an engine and connecting directly to a respective spark plug, characterized in thatsaid secondary bobbin wound said secondary coil is arranged in an inner side of said primary bobbin; said two bobbins provide a detent member for detenting relatively said two bobbins together with; a head of said secondary bobbin is projected over from an upper portion of said primary bobbin; and said secondary bobbin head provides an engagement portion which engages with a bobbin detent member which is provided at a rotating shaft side, when said secondary bobbin is set to said rotating shaft of a winding machine.
- 17. In an individual ignition type ignition coil in which the ignition coil has a center core, a primary coil wound on a primary bobbin and a secondary coil wound on a secondary bobbin in an inner side thereof, and the ignition coil is used by mounting a respective spark plug hole of an engine and connecting directly to a respective spark plug, characterized in thatsaid secondary bobbin wound said secondary coil in arranged in an inner side of said primary bobbin; said two bobbins provide a detent member for detenting relatively said two bobbins together with; a head of said secondary bobbin is projected over from an upper portion of said primary bobbin; a secondary bobbin side provides a primary and secondary coil serving terminal for connection a primary coil one end and a secondary coil one end and a primary coil terminal for connecting a primary coil another end to a drive element for ignition control; and said secondary bobbin head provides an engagement portion which engages with a bobbin detent member which is provided at a rotating shaft side, when said secondary bobbin is set to said rotating shaft of a winding machine.
- 18. An individual ignition type ignition coil for use in an engine in which the ignition coil has a center core, a primary coil wound on a primary bobbin and a secondary coil wound on a secondary bobbin in an inner side thereof, and the ignition coil is used by mounting a respective spark plug hole of an engine and connecting directly to a respective spark plug,said secondary bobbin wound said secondary coil is arranged in an inner side of said primary bobbin; and a secondary bobbin side provides a primary and secondary coil serving terminal for connecting one end of a primary coil and one end of a secondary coil, and a primary coil terminal for connecting another end of the primary coil to a drive element for an ignition control, a circuit case for accommodating a drive circuit for an ignition control and having a power supply and an ignition signal input use connector terminal is molded separately from said coil case, said circuit case is combined at an upper end of said coil case by means of a fitting-into and an adhesion manner; under a combined condition, a metal case of said drive circuit which is accommodated in said circuit case is positioned right above said head of said secondary bobbin; and each one end of one end of a connector terminal of said circuit case and a draw-out terminal of said drive circuit is set to overlap in said circuit case to a coil terminal of said primary and secondary coils terminal which is provided on said secondary bobbin head and to a primary coil terminal, and said overlapped terminals are weld together with.
- 19. An individual ignition type ignition coil for use in an engine in which the ignition coil has a center core, a primary coil wound on a primary bobbin and a secondary coil wound on a secondary bobbin in an inner side thereof, and the ignition coil is used by mounting a respective spark plug hole of an engine and connecting directly to a respective spark plug,said secondary bobbin wound said secondary coil is arranged in an inner side of said primary bobbin; and a secondary bobbin side provides a primary and secondary coil serving terminal for connecting one end of a primary coil and one end of a secondary coil, and a primary coil terminal for connecting another end of the primary coil to a drive element for an ignition control, said coil terminal of said primary and secondary coils serving terminal provides a primary coil wind-up portion and a secondary coil wind-up portion to a single terminal metal fitting.
- 20. An individual ignition type ignition coil for use in an engine in which the ignition coil has a center core, a primary coil wound on a primary bobbin and a secondary coil wound on a secondary bobbin in an inner side thereof, and the ignition coil is used by mounting a respective spark plug hole of an engine and connecting directly to a respective spark plug,said secondary bobbin wound said secondary coil is arranged in an inner side of said primary bobbin; and a secondary bobbin side provides a primary and secondary coil serving terminal for connecting one end of a primary coil and one end of a secondary coil, and a primary coil terminal for connecting another end of the primary coil to a drive element for an ignition control, said secondary bobbin has a cylindrical shape having a bottom portion and at said bottom portion a high voltage diode which is connected to a high voltage side one end of said secondary coil is provided, and a concave portion for positioning is arranged at an outer periphery near said bottom portion; in said primary bobbin a bottom portion has an opening, through said opening said high voltage diode is projected out from said primary bobbin bottom portion and is connected to a high voltage terminal of said coil case; at said primary bobbin bottom portion, a pair of opposing secondary bobbin receiving portions are projected from said primary bobbin bottom portion toward a lower portion by sandwiching said opening; and a dent portion which engages with said concave portion is provided to said secondary bobbin receiving portion, and in accordance with a concave and dent engagement a relative detent between said primary bobbin and said secondary bobbin is carried.
- 21. An individual ignition type ignition coil for use in an engine in which the ignition coil has a center core, a primary coil wound on a primary bobbin and a secondary coil wound on a secondary bobbin in an inner side thereof, and the ignition coil is used by mounting a respective spark plug hole of an engine and connecting directly to a respective spark plug,said secondary bobbin wound said secondary coil is arranged in an inner side of said primary bobbin; and a secondary bobbin side provides a primary and secondary coil serving terminal for connecting one end of a primary coil and one end of a secondary coil, and a primary coil terminal for connecting another end of the primary coil to a drive element for an ignition control, a circuit case for accommodating a drive circuit for an ignition control and having a power supply and an ignition signal input use connector terminal is arranged an upper portion of said coil case; and to said circuit case an ignition noise prevention capacitor which is connected electrically to said drive circuit for the ignition control is enclosed.
- 22. A method of manufacturing an individual ignition type ignition coil in which the ignition coil has a center core, a primary coil wound on a primary bobbin and a secondary coil wound on a secondary bobbin in an inner side thereof, and the ignition coil is used by mounting a respective spark plug hold of an engine and connecting directly to a respective spark plug, comprisingto insert said secondary bobbin at an inner side of said primary bobbin, forming an outer diameter of said secondary bobbin smaller than an inner diameter of said primary bobbin and said two bobbins with a detent member for detenting said two bobbins relative to each other; using a secondary bobbin side to provide a primary-and-secondary coils-serving terminal as a power supply input terminal and a primary coil terminal for connecting said primary coil to a drive element for an ignition control; rotating said secondary bobbin to wind said secondary coil on said secondary bobbin, connecting one end of said secondary coil to said primary-and-secondary coils-serving terminal; and fitting said primary coil into said primary bobbin at an outer side of said secondary bobbin and rotating said primary bobbin together with said secondary bobbin to wind said primary coil to said primary bobbin, connecting one end of said primary coil to said primary and secondary coils serving terminal, and connecting another end of said primary coil to said primary coil terminal.
- 23. A method of manufacturing an individual ignition type ignition coil in which the ignition coil has a center core, a primary coil wound on a primary bobbin and a secondary coil wound on a secondary bobbin in an inner side thereof, and the ignition coil is used by mounting a respective spark plug hole of an engine and connecting directly to a respective spark plug, comprisingto insert said secondary bobbin at an inner side of said primary bobbin, forming an outer diameter of said secondary bobbin smaller than an inner diameter of said primary bobbin and said two bobbins with a detent member for detenting said two bobbins relative to each other; using a secondary bobbin side to provide a bobbin head which is projected over from an upper end of said primary bobbin and to said bobbin head an engagement portion which is engaged with a bobbin detent member provided at a rotating shaft side when said secondary bobbin is set to said rotating shaft of a winding machine; carrying out a winding working of said secondary coil and said primary coil by a stand winding machine; inserting, through said bobbin head, said secondary bobbin to said rotating shaft of said winding machine, winding said secondary coil on said secondary bobbin; and leaving an installation of said secondary bobbin to said winding machine and thereby fitting said primary bobbin into at an outer side of said secondary bobbin, and rotating said primary bobbin together with said secondary bobbin to wind said primary coil on said primary bobbin.
- 24. A method of manufacturing an individual ignition type ignition coil in which the ignition coil has a center core, a primary coil wound on a primary bobbin and a secondary coil wound on a secondary bobbin in an inner side thereof, and the ignition coil is used by mounting a respective spark plug hole of an engine and connecting directly to a respective spark plug, comprisingto insert said secondary bobbin at inner side of said primary bobbin, forming an outer diameter of said secondary bobbin smaller than an inner diameter of said primary bobbin and said two bobbins with a detent member for detenting said two bobbins relative to each other; providing a side secondary bobbin as a bobbin head which is projected over from an upper end of said primary bobbin, providing to said bobbin head an engagement portion which is engaged with a bobbin detent member at a rotating shaft side when said secondary bobbin is set to said rotating shaft of a winding machine; providing a winding machine for said secondary coil and a winding machine for said primary coil, detachably providing a rotating shaft for the winding to serve as said primary winding machine and said secondary winding machine; installing said rotating shaft to said secondary winding machine, through said bobbin head inserting said secondary bobbin to said rotating shaft of said secondary winding machine by said secondary bobbin together with said rotating shaft, winding said secondary coil on said secondary bobbin; and thereafter, by leaving an installation of said secondary bobbin to said winding machine, taking off said rotating shaft, fitting into said primary bobbin at an outer side of said secondary bobbin through said bobbin detent member through said two bobbin detent member, and rotating said primary bobbin together with said secondary bobbin, so that said primary coil is wound on said primary bobbin.
- 25. A method of manufacturing an individual ignition type ignition coil in which the ignition coil has a center core, a primary coil wound on a primary bobbin and a secondary coil wound on a secondary bobbin in an inner side thereof, and the ignition coil is used by mounting a respective spark plug hole of an engine and connecting directly to a respective spark plug, comprisingto insert said secondary bobbin at inner side of said primary bobbin, forming an outer diameter of said secondary bobbin smaller than an inner diameter of said primary bobbin and said two bobbins with a detent member for detenting said two bobbins relative to each other; providing a side secondary bobbin as a bobbin head which is projected over from an upper end of said primary bobbin and, to said bobbin head, an engagement portion which is engaged with a bobbin detent member provided at a rotating shaft side when said secondary bobbin is set to said rotating shaft of a winding machine; separately providing a winding machine for said secondary coil and a winding machine for said primary coil, with a rotating shaft for the winding being of a common type; through said bobbin head, inserting said secondary bobbin to said rotating shaft of said winding machine and, by said secondary bobbin together with said rotating shaft, winding said secondary coil on said secondary bobbin; and taking off said secondary bobbin from said secondary winding machine through said secondary bobbin head such that said primary bobbin is inserted at an outer side of said secondary bobbin through said bobbin detent member, and rotating said primary bobbin together with said secondary bobbin to wind said primary coil on said primary bobbin.
Priority Claims (2)
Number |
Date |
Country |
Kind |
9-134069 |
May 1997 |
JP |
|
9-181559 |
Jul 1997 |
JP |
|
Parent Case Info
This application is a division of application Ser. No. 09,424,480, filed Feb. 14, 2000 now U.S. Pat. No. 6,332,458, which is a 371 of PCT/JP98/62244 filed May 22, 1998.
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