EP0452091A2

Improved electrically programmable antifuse element incorporating a dielectric and amorphous silicon interlayer.

Abstract

An electrically programmable antifuse element incorporates a composite interlayer of dielectric material and amorphous silicon interposed between two electrodes. The lower electrode may be formed from a refractory metal such as tungsten. Preferably, a thin layer of titanium is deposited over the tungsten layer and its surface is then oxidized to form a thin layer of titanium oxide which serves as the dielectric material of the composite dielectric/amorphous silicon interlayer. A layer of amorphous silicon is then deposited on top of the titanium oxide dielectric to complete the formation of the composite interlayer. A topmost layer of a refractory metal such as tungsten is then applied over the amorphous silicon to form the topmost electrode of the antifuse.

EP0452091A2, drawing sheet 1
Sheet 1 of 5

Term

Term ended

Projected expiry passed 9 April 2011, 15.5 years ago.

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21 claims: 3 independent, 18 dependent

  1. 1
    An electrically programmable antifuse element disposed on a semiconductor substrate in an integrated circuit comprising:a first electrode,    a dielectric layer disposed over said first electrode,    an amorphous silicon layer disposed over said dielectric layer, and    a second electrode disposed over said layer of amorphous silicon.
  2. 5
    An electrically programmable antifuse element according to any one of claims 1 to 4, wherein said first electrode includes a composite layer comprising a first layer of a refractory metal and a layer of titanium over said first layer.
  3. 11
    An electrically programmable antifuse element according to any one of claims 1 to 8, wherein said dielectric layer comprises a layer of silicon nitride.
  4. 13
    An electrically programmable antifuse element according to any one of claims 1 to 8, wherein said dielectric layer includes a first layer of silicon nitride, and a second layer of silicon dioxide over said layer of silicon nitride.
  5. 15
    An electrically programmable antifuse element according to any one of claims 1 to 8, wherein said dielectric layer includes a first layer of silicon dioxide, and a second layer of silicon nitride over said layer of silicon dioxide.
  6. 17
    A semiconductor device disposed on a semiconductor substrate including a plurality of electrically programmable low impedance antifuse elements, each of said antifuse elements being in accordance with any preceding claim.
  7. 18
    A method of forming an electrically programmable, low impedance antifuse element on a semiconductor substrate comprising the steps of:forming a first electrode over a selected portion of said substrate,    forming an insulating layer over said first electrode,    forming an opening in said insulative layer to create an exposed portio of said first electrode in a region where said antifuse element is to be located, forming a dielectric layer over said exposed portion of said first electrode layer,    forming an amorphous silicon layer over said dielectric layer, and    forming an upper electrode over said amorphous silicon layer.