Nova Patents
EP0469604A2

MIS electrode forming process.

Abstract

There is disclosed a process for forming a MIS electrode by forming an insulation film on a substrate of a III-V compound semiconductor, and applying an electrode material thereto, a surface of the substrate being treated with a phosphoric acid-based etchant and selenium or sulfur-passivated, and then an insulation film being formed.

EP0469604A2, drawing sheet 1
Sheet 1 of 5

Term

Term ended

Projected expiry passed 1 August 2011, 15.1 years ago.

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10 claims: 7 independent, 3 dependent

  1. 1
    A process for forming a MIS electrode by forming an insulation film on a substrate of a III-V compound semiconductor, and applying an electrode material thereto, a surface of the substrate being treated with a phosphoric acid-based etchant and sulfur-passivated, and then an insulation film being formed.
  2. 4
    A process for forming a MIS electrode of any preceding claim, wherein the insulation film is formed by ECR-CVD, by sputtering, or by pyrolytic CVD.
  3. 5
    A process for forming a MIS electrode of any preceding claim, wherein the insulation film comprises SiNx and annealed at 380 to 520 °C.
  4. 6
    A process for forming a MIS electrode by forming an insulation film on a substrate of a III-V compound semiconductor, and applying an electrode material thereto, sulfur-passivating a surface of the substrate prior to the formation of the insulation film;and the insulation film being formed by ECR-CVD.
  5. 8
    A process of any preceding claim, wherein the III-V compound semiconductor contains at least either of gallium and arsenic.
  6. 9
    A process for forming a MIS electrode by forming an insulation film on a substrate of a III-V compound semiconductor, and applying an electrode material thereto, a surface of the substrate being treated with a phosphoric acid-based etchant and selenium-passivated, and then an insulation film being formed.
  7. 10
    A process for forming a MIS electrode by forming an insulation film on a substrate of a III-V compound semiconductor, and applying an electrode material thereto, a surface of the substrate being treated with a phosphoric acid-based etchant and passivated by a group VI element having similar characteristics as sulfur, preferably selenium, and then an insulation film being formed.