EP0116451A2

Magnetic transducer structure having reduced track width and a method of manufacturing thereof.

Abstract

A transducer and method are described where track width reducing notches are filled with a nonmagnetic material which is heated to or slightly over its softening temperature but below its melting temperature. Concentrated high pressure at discrete locations is applied to the softened nonmagnetic material too enhance flow thereof into the notches.

EP0116451A2, drawing sheet 1
Sheet 1 of 11

Term

Term ended

Projected expiry passed 3 February 2004, 22.6 years ago.

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30 claims: 8 independent, 22 dependent

  1. 1
    A method of making a magnetic transducer having confronting magnetic poles abutting at a transducing gap plane to define a transducing gap therebetween, said abutting poles having a width reduced at a transducer-to-recording medium surface to define a transducing gap width which is reduced with respect to the width of said transducer, comprising the steps of:providing a notch (12;120) inwardly of said transducer-to-recording medium surface, and transversely with respect to said transducing gap plane;providing a nonmagnetic, electrically insulating material having a viscosity and hardness similar to glasses;and heating said nonmagnetic material at least to a softening temperature but below a melting temperaturc thereof and applying thereto a concentrated pressure at least at one discrete location to enhance flow of the material into said notch.
  2. 2
    A method of making a magnetic transducer having a notch filled with a nonmagnetic material to reduce a transducing gap width thereof, comprising the steps of:forming corresponding blocks of magnetic material having confronting surfaces defining a transducing gap plane;providing at least one notch (12;120;222) in at least one block intercepting said transducing gap plane to obtain a notched block;arranging in the proximity of said notch a nonmagnetic, electrically insulating glassy material;and heating said nonmagnetic material at least to a softening temperature but below a melting temperature thereof and applying thereto a concentrated pressure at least at one discrete location to enhance flow of the material into said notch.
  3. 13
    A method according to any of claims 9 to 12 wherein the step of assembling and joining together at least two composite blocks further comprises inserting nonmagnetic spacers between said composite blocks to separate said blocks from each other, respectively.
  4. 15
    A method according to any of claims 2 to 14 in which the step of applying said concentrated pressure to said nonmagnetic material is carried out by means of a fixture, said fixture comprising:a bottom portion having a groove for receiving said notched block;and a top portion having a lower surface adapted to apply said concentrated pressure to said nonmagnetic material at least at one said discrete location thereof when said fixture is assembled with said notched block and said nonmagnetic material arranged between said bottom and top portion thereof.
  5. 16
    A magnetic transducer comprising complementary cores made of a magnetic material forming a substantially closed magnetic path, said cores having magnetic poles abutting to define a transducing gap therebetween, said transducer having a notch intercepting at least one of said complementary cores at a transducer-to-magnetic medium surface to define a transducing gap width smaller than a width of said magnetic cores, said notch being filled with a nonmagnetic electrically insulating glassy material said nonmagnetic material having a softening temperature lower and a melting temperature higher than a critical temperature above which the permeability of said magnetic material is reduced, said transducer having its permeability substantially unchanged relative to the permeability of said magnetic material prior to filling said notches with said nonmagnetic material.
  6. 27
    A magnetic transducer comprising complementary cores made of a magnetic material forming a substantially closed magnetic path, said cores having magnetic poles abutting to define a transducing gap therebetween, said transducer having a coplanar notch intercepting said respective complementary cores at a transducer-to-magnetic medium surface to define a transducing gap width smaller than the width of said magnetic cores, said notch being filled with a nonmagnetic electrically insulating glassy material and wherein said abutting magnetic poles have zero misalignment in the direction of said transducing gap width.
  7. 28
    As a subcombination, a fixture, comprising:a bottom portion having a groove for receiving a notched block to be filled with a filler material;and a top portion having a lower surface adapted to apply a concentrated pressure at least at one discrete location in the direction of said bottom portion when said top portion is assembled with said bottom portion with said notched block and filler material arranged therebetween.
  8. 29
    A method of filling an opening provided in a magnetic material, comprising the steps of:providing a magnetic material having a critical temperature above which the permeability of said magnetic material is reduced;providing an opening in said magnetic material;providing a filling material having a softening temperature lower with respect to a melting temperature thereof;heating said filling material at least to its softening temperature but below a melting temperature thereof;and applying to said heated filling material a concentrated pressure at least at one discrete location thereof to enhance flow thereof into said opening.