EP0484142A2

Micro-machined switch and method of fabrication.

Abstract

A miniature electrostatically actuated switch and process for fabricating it in which the switch is operable to connect and disconnect one or more transmission lines laid down on a dielectric substrate of an integrated circuit wafer. The switch is fabricated on the integrated circuit wafer using integrated circuit fabrication processes including thin films of conductive materials and photoresist and selective removal of these films. The switch includes a rotating switch blade which rotates about a hub formed on the dielectric substrate under the influence of electrostatic fields created by control pads and other switch elements formed on the dielectric substrate, whereupon a microwave signal can be switchably transmitted along the transmission line formed on the substrate.

EP0484142A2, drawing sheet 1
Sheet 1 of 4

Term

Term ended

Projected expiry passed 30 October 2011, 14.9 years ago.

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16 claims: 2 independent, 14 dependent

  1. 1
    An electrostatically actuated miniature switch comprising:a substrate of dielectric material having a substantially planar surface;a transmission line for conducting an electrical signal deposited on said surface, said transmission line including a first and a second segment each separated from the other by a gap;a hub deposited on said surface and a switch blade of electrically conductive material deposited above said surface and being operable to rotate about said hub, said switch blade being dimensioned to electrically close the circuit between said transmission line segments when rotated into a closed circuit position;and    control means deposited on said surface and being operable to selectively receive control signals for producing an electrostatic field for operably rotating said switch blade between an open circuit and a closed circuit position.
  2. 16
    A method of making miniature switches on a dielectric substrate having a substantially flat surface comprising the steps of :depositing a photoresist on the surface of the substrate;forming a first pattern of apertures in said third layer conforming to the configuration of a switch blade;depositing conductive material in the first pattern of apertures to fabricate a switch blade;forming a second pattern of apertures in said photoresist in the configuration of a hub to expose the surface of the substrate;depositing conductive material in said second pattern of apertures to fabricate a hub on the substrate around which the switch blade will rotate;and forming a third pattern of apertures in said photoresist in the configuration of electrostatic field control members to expose the surface of said substrate;depositing conductive material in said third pattern of apertures to fabricate control members on the substrate;and removing all of the remaining photoresist.