EP0328104A2

Magnetic head and method of manufacturing the same.

Abstract

A magnetic head comprises a pair of magnetic core halves (1a, 1b), which are abutted with each other through a nonmagnetic material to define a magnetic gap (2), and ferromagnetic thin films (3a, 3b). The magnetic core halves (1a, 1b), which are formed of ferromagnetic oxide, have gap forming surfaces to be abutted with each other. The ferromagnetic metal thin films (3a, 3b) are selectively formed on the gap forming surfaces of the pair of magnetic core halves (1a, 1b). A ferromagnetic thin film (3b) is so formed that portion (12b, 12c, 12d) to be provided with a track width regulating groove (13b), a coil groove (13c) or a joining member receiving groove (13d) is exposed within a gap forming surface of one magnetic core half member (7b). Another ferromagnetic thin film (3a) is so formed that, in a gap forming surface of another magnetic core half member (7a), a portion (12e, 12f) opposite to the coil groove (13c) or the joining member receiving groove (13d) to be provided in the gap forming surface of the magnetic core half member (7b) is exposed. These ferromagnetic thin films (3a, 3b) are selectively formed by ion beam etching. Grooves (13b, 13c, 13d) are provided in one magnetic core half (1b) by mechanical working through a dicing saw or the like.

EP0328104A2, drawing sheet 1
Sheet 1 of 20

Term

Term ended

Projected expiry passed 9 February 2009, 17.6 years ago.

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10 claims: 3 independent, 7 dependent

  1. 1
    A method of manufacturing a magnetic head having a magnetic gap (2) between a pair of magnetic core halves (1a, 1b) abutted with each other through a nonmagnetic material, said method comprising the steps of:preparing first and second magnetic core half members (7a, 7b) of ferromagnetic oxide having gap forming surfaces to be abutted with each other for defining said magnetic gap;selectively forming ferromagnetic thin films (3a, 3b) of a ferromagnetic metal material on said gap forming surfaces of said first and second magnetic core half members, said ferromagnetic thin films being so formed as to expose a portion (12b, 12c, 12d) to be provided with a track width regulating groove, a coil groove or a joining member receiving groove within said gap forming surface of said first magnetic core half member, and to expose, in said gap forming surface of said second magnetic core half member, a portion (12e, 12f) to be opposite to said coil groove or said joining member receiving groove to be provided on said gap forming surface of said first magnetic core half member;performing mechanical working on said exposed portion of said gap forming surfaces thereby to provide a track width regulating groove (13b), a coil groove (13c) or a joining member receiving groove (13d) in said first magnetic core half member;and abutting said first and second magnetic core half members between said gap forming surfaces to join the same with each other.
  2. 2
    A method of manufacturing a magnetic head in accordance with claim 1, wherein said step of selectively forming said ferromagnetic thin films comprises the steps of:forming ferromagnetic thin films (3a, 3b) of a ferromagnetic metal material entirely over said gap forming surfaces of said first and second magnetic core half members;and selectively removing said ferromagnetic thin films by etching processing.
  3. 3
    A method of manufacturing a magnetic head in accordance with claim 1, wherein said step of abutting said first and second magnetic core half members to join the same with each other includes:formation of a first magnetic gap (2b) by abutment and joining of said first and second magnetic half members between said exposed portions within said gap forming surfaces;and formation of a second magnetic gap (2a) by abutment and joining of said first and second magnetic core half members between said portions provided with said ferromagnetic thin films within said gap forming surfaces.
  4. 4
    A method of manufacturing a magnetic head in accordance with claim 1, wherein said step of selectively forming said ferromagnetic thin films includes interposition of heat-resistant thin films (17a, 17b) between said magnetic core half members and said ferromagnetic thin films.
  5. 5
    A method of manufacturing a magnetic head having a magnetic gap (2) between a pair of magnetic core halves (1a, 1b) abutted with each other through a nonmagnetic material, said method comprising the steps of:preparing first and second magnetic core half members (7a, 7b) of ferromagnetic oxide having gap forming surfaces to be abutted with each other for defining said magnetic gap;forming track width regulating grooves (13a, 13b) on said gap forming surfaces of said first and second magnetic core half members;filling said track width regulating grooves with joining members (4);selectively forming ferromagnetic thin films (3a, 3b) of a ferromagnetic metal material on said gap forming surfaces of said first and second magnetic core half members, said ferromagnetic thin films being so formed as to expose a portion (12c, 12d) to be provided with a coil groove or a joining member receiving groove within said gap forming surface of said first magnetic core half member, and to expose, in said gap forming surface of said second magnetic core half member, a portion (12e, 12f) to be opposite to said coil groove or said joining member receiving groove to be provided in said gap forming surface of said first magnetic core half member;performing mechanical working on said exposed portions of said gap forming surfaces thereby to provide a coil groove (13c) or a joining member receiving groove (13d) in said first magnetic core half member;and abutting said first and second magnetic core half members between said gap forming surfaces to join the same with each other.
  6. 6
    A method of manufacturing a magnetic head in accordance with claim 5, wherein said step of selectively forming said ferromagnetic thin films comprises the steps of:forming ferromagnetic thin films (3a, 3b) of a ferromagnetic metal material entirely over said gap forming surfaces of said first and second magnetic core half members;and selectively removing said ferromagnetic thin films by etching processing.
  7. 7
    A method of manufacturing a magnetic head in accordance with claim 6 , wherein said step of selectively removing said ferromagnetic thin films includes removal of said ferromagnetic thin films (3a, 3b) by ion beam etching (20).
  8. 8
    A magnetic head having a magnetic gap (2) between a pair of magnetic core halves (1a, 1b) abutted with each other through a nonmagnetic material, said magnetic head comprising:first and second magnetic core halves (1a, 1b) of ferromagnetic oxide having gap forming surfaces to be abutted with each other for defining said magnetic gap;and ferromagnetic thin films (3a, 3b) of a ferromagnetic metal material being so selectively formed on said gap forming surfaces as to define a coil groove (13c) or a joining member receiving groove (13d) filled with a joining member on said gap forming surface of said first magnetic core half and to expose a portion (12e, 12f) of said gap forming surface of said second magnetic core half being opposite to said coil groove or said joining member receiving groove provided on said gap forming surface of said first magnetic core half.
  9. 9
    A magnetic head in accordance with claim 8, further comprising heat-resistant thin films (17a, 17b) interposed between said magnetic core halves and said ferromagnetic thin films.
  10. 10
    A magnetic head in accordance with claim 8, wherein said magnetic gap includes:a first magnetic gap (2b) defined by abutment of said first and second magnetic core halves between exposed portions of said gap forming surfaces;and a second magnetic gap (2b) defined by abutment of said first and second magnetic core halves between portions of said gap forming surfaces provided with said ferromagnetic thin films.