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Method of manufacturing micromechanical devices

  • US 5,206,983 A
  • Filed: 06/24/1991
  • Issued: 05/04/1993
  • Est. Priority Date: 06/24/1991
  • Status: Expired due to Term
First Claim
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1. A method of making a micromachined magnetically actuated device comprising:

  • (a) forming a sacrificial release layer of material on the surface of a substrate, the material of the sacrificial release layer being dissolvable in a liquid which does not affect the substrate;

    (b) applying a plating base at least over the sacrificial release layer, the plating base being formed of a metal;

    (c) forming a layer of casting material over the plating base to at least the desired thickness of a rotor structure to be formed, the deposited casting material being susceptible to X-rays such that the casting material exposed to X-rays can be dissolved in a selected developer solvent;

    (d) exposing the casting materials to X-rays in a pattern over the plating base, the pattern including a circular outer ring, a bar-section extending through the center of the ring and connecting the ring with no exposure being made of the casting material in openings between the bar and the outer ring;

    (e) removing the casting material with the developer solvent in those areas which have been exposed to X-rays while leaving the remaining casting material to define a mold area over the plating base;

    (f) depositing a solid metal into the mold area onto the plating base by electroplating to build up a rotor in the mold area;

    (g) removing the remaining casting material;

    (h) removing the plating base around the deposited metal rotor to allow access to the sacrificial release layer;

    (i) removing the sacrificial release layer to free the deposited metal rotor from the substrate;

    (j) applying the plating base onto the surface of another substrate, the plating base being formed of a metal;

    (k) forming a layer of casting material over the plating base to at least the desired thickness of a stator structure to be formed, the deposited casting material being susceptible to X-rays such that the casting material exposed to X-rays can be dissolved in a selected developer solvent;

    (1) exposing the casting material to X-rays in a pattern over the plating base, the pattern including areas surrounding a central region sized to accept the rotor;

    (m) removing the casting material with the developer solvent in those areas which have been exposed to X-rays while leaving the remaining casting material to define a mold area over the plating base;

    (n) depositing a solid metal into the mold area onto the plating base by electroplating to form stator pole pieces surrounding the region of the rotor, and removing the remaining casting material to leave the stator pole pieces isolated on the substrate; and

    (o) assembling the rotor into the region between the stator pole pieces.

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