EP1440460A2

Formation of sic backside ohmic contacts for semiconductor devices

Abstract

This record has no abstract on file.

Term

Term ended

Projected expiry passed 10 October 2022, 4 years ago.

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25 claims: 4 independent, 21 dependent

  1. 1
    Claims of equivalent WO 03038877 A2 CLAIMS:1. A method for forming an ohmic contact to silicon carbide for a semiconductor device, the method comprising: implanting phosphorus atoms into a surface of an n-type silicon carbide substrate thereby forming a layer on the silicon carbide substrate having an increased concentration of phosphorus;annealing the implanted silicon carbide substrate;and depositing a layer of metal on the implanted surface of the silicon carbide that forms an ohmic contact between the phosphorus-implanted silicon carbide and the deposited metal.
  2. 14
    A semiconductor device comprising:an n-type silicon carbide substrate having a first surface and a second surface;at least one epitaxial layer on said first surface of said silicon carbide substrate;a zone of increasing phosphorus concentration in said silicon carbide substrate and extending from said second surface of said subsfrate toward said first surface;and a layer of metal deposited on said second surface of said semiconductor substrate that forms an ohmic contact at the interface of said metal and said zone of increased carrier concentration.
  3. 16
    A semiconductor device comprising:a silicon carbide substrate having a first surface and a second surface and an initial carrier concenfration imparting an n-type conductivity to said subsfrate;at least one epitaxial layer on said first surface of silicon carbide subsfrate;> a zone of increased carrier concentration in said silicon carbide substrate and extending from said second surface of said silicon carbide subsfrate toward said first surface, said zone being characterized by a concentration of phosphorus that progressively decreases from said second surface toward said first surface;and an ohmic contact on said second surface of said silicon carbide substrate.
  4. 20
    A light emitting diode comprising:an n-type silicon carbide substrate having respective first and second surfaces;a Group IE nitride active region on said first surface said substrate;an epitaxial layer on said active region;a zone of increased carrier concentration in said silicon carbide substrate and extending from said second surface of said silicon carbide subsfrate toward said first surface;an ohmic contact on said second surface of said substrate;and an ohmic contact on said epitaxial layer.