AU2005299977A1

Method for plasma enhanced bonding and bonded structures formed by plasma enhanced bonding

Abstract

An electronic device comprises a substrate (110) comprising a first surface and a second surface, a substrate carrier (105) comprising a first surface and a second surface, and an inorganic material (120) bonding the second surface of the substrate (110) and the second surface of the substrate carrier (105).

Term

Term ended

Projected expiry passed 4 October 2025, 1 year ago.

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59 claims: 8 independent, 51 dependent

  1. 1
    CLAIMS What is aimed is:1. An electronic device (100) comprising: a substrate (110) comprising a first surface and a second surface;a substrate carrier (105) comprising a first surface and a second surface;and an inorganic material (120) bonding the second surface of the substrate and the second surface of the substrate carrier.
  2. 9
    A fluid ejection device (200) comprising:a substrate (220) comprising a first surface including a plurality of fluid ejection elements (230) formed thereon and a second surface, and at least one fluid path (240) between the first surface and the second surface;a substrate carrier (205) comprising a first surface and a second surface, at least one fluid outlet (245) coupled with the at least one fluid path (240);and an inorganic material (250) between the second surface of the substrate (220) and the second surface of the substrate carrier (205) that bonds the second surface of the substrate (220) and the first substrate of the substrate carrier (205).
  3. 15
    An electronic device comprising:a first substrate (220) comprising a first surface including at least one electronic element (230) formed thereon and a second surface;a second substrate (205) comprising a first surface and a second surface;and means (250) for covalently bonding the second surface of the first substrate (220) and the second surface of the second substrate (205).
  4. 20
    A method of forming an electronic device, comprising:wet treating at least a surface of a plasma treated first substrate (110);mating the surface of the plasma treated substrate with a surface of a second substrate (105) comprising a plasma treated inorganic material formed thereon;and annealing the first substrate and the second substrate after mating to form a covalent bond between the surface of the first substrate and inorganic material on the surface of the second substrate. WO 2006/047052 PCT/US2005/035772
  5. 29
    A method of forming an electronic device, comprising:applying a layer of inorganic material (120) to a surface of a substrate carrier (105);plasma treating the surface of a substrate carrier (105);plasma treating a surface of a substrate (110);wet treating at least the inorganic material (120);WO 2006/047052 PCT/US2005/035772 mating the surface of the substrate (110) with the inorganic material (120) formed on the surface of the substrate carrier (105);and annealing the substrate (110) and substrate carrier (105) after mating to form a covalent bond (120) between the surface of the substrate and inorganic material on the surface of the substrate carrier, wherein the inorganic material has a desired height variation prior to plasma treatment.
  6. 39
    A microelectromechanical device (700) comprising:a first substrate (715) comprising a first surface and a second surface;a second substrate (710) comprising a first surface and a second surface, wherein the first surface of the second substrate (710) is bonded to the second surface of the second substrate (710);and a third substrate (725) comprising a first surface and a second surface;an inorganic material (720) bonding the second surface of the third substrate (725) and the first surface of the first substrate (715).
  7. 45
    A fluid ejection device comprising:a substrate comprising (220) a first surface including a plurality of fluid WO 2006/047052 PCT/US2005/035772 ejection elements (230) formed thereon and a second surface that is subject to plasma treatment;and a substrate carrier (208) comprising a first surface and a second surface that is subject to plasma treatment that is bonded to the second surface of the substrate.
  8. 51
    A method of forming an electronic device, comprising:applying a liquid to at least a surface of a plasma treated first substrate;mating the surface of the plasma treated substrate with a surface of a substrate carrier;and annealing the first substrate and the second substrate after mating to form a covalent bond between the first substrate and the substrate carrier. WO 2006/047052 PCT/US2005/035772