EP1502284A2

A method of fabricating vertical devices using a metal support film

Abstract

This record has no abstract on file.

Term

Term ended

Projected expiry passed 31 March 2023, 3.5 years ago.

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61 claims: 4 independent, 57 dependent

  1. 1
    Claims of equivalent WO 03088320 A2 WHAT IS CLAIMED IS:1. A vertical topology device, comprising: a conductive adhesion structure having a first surface and a second surface;a conductive thick film support formed on the first surface;and a semiconductive device having an upper electrical contact and located over the conductive adhesion layer;wherein electrical current can flow between the conductive thick film and the upper electrical contact.
  2. 10
    A vertical topology light emitting device, comprising:a light emitting device having an upper electrical contact over the conductive adhesion layer and an epitaxial buffer layer;a conductive adhesion structure having a first side adjacent the epitaxial buffer layer and a second side;and a conductive thick film formed on the second side;wherein electrical current can flow between the conductive thick film and the upper electrical contact.
  3. 23
    A method of producing semiconductor devices, comprising:epitaxially growing a plurality of semiconductor layers on an insulative substrate;forming trenches through the plurality of semiconductor layers and into the insulative substrate, wherein the trenches define a plurality of individual semiconductor devices;forming a first electrical contact on each individual semiconductor device;attaching a first support stmcture over the first electrical contacts;removing the insulative substrate from the epitaxial semiconductor layers;attaching a conductive second support stmcture in place of the removed insulative substrate;and removing the first support structure.
  4. 43
    A method of making light emitting diodes, comprising:forming a plurality of semiconductor layers on an insulative substrate, including: a GaN buffer layer on the insulative substrate;a first doped GaN layer on the GaN buffer layer;an active layer on the first doped GaN layer;and a second GaN layer on the active layer;forming trenches through the plurality of semiconductor layers and into the insulative substrate, wherein the trenches define a plurality of individual light emitting diodes;forming a first electrical contact on each individual light emitting diodes;attaching a first support structure to the individual light emitting diodes;removing the insulative substrate from the plurality of semiconductor layers;attaching a conductive second support structure in place of the removed insulative substrate;and removing the first support stmcture.