Nova Patents
CA2520140C

Split-channel antifuse array architecture

Abstract

Generally, the present invention provides a variable thickness gate oxide anti-fusetransistor device that can be employed in a non-volatile, one-time-programmable (OTP)memory array application. The anti-fuse transistor can be fabricated with standard CMOStechnology, and is configured as a standard transistor element having a source diffusion,gate oxide, polysilicon gate and optional drain diffusion. The variable gate oxideunderneath the polysilicon gate consists of a thick gate oxide region and a thin gate oxideregion, where the thin gate oxide region acts as a localized breakdown voltage zone. Aconductive channel between the polysilicon gate and the channel region can be formed inthe localized breakdown voltage zone during a programming operation. In a memoryarray application, a wordline read current applied to the polysilicon gate can be sensedthrough a bitline connected to the source diffusion, via the channel of the anti-fusetransistor. More specifically, the present invention provides an effective method forutilizing split channel MOS structures as an anti-fuse cell suitable for OTP memories.

CA2520140C, drawing sheet 1
Sheet 1 of 13

Term

Term ended

Expired 6 May 2025, 1.4 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

29 claims: 5 independent, 24 dependent

  1. 1
    CA 02520140 2006-09-27 What is claimed is:1. An anti-fuse transistor formed on a semiconductor material comprising: a polysilicon gate over a channel region in a substrate, the channel having a preset length;a diffusion region proximate to a first end of the channel region;an isolation region proximate to a second end of the channel region;a variable thickness gate oxide between the polysilicon gate and the substrate, the variable thickness gate oxide having a thick gate oxide portion extending from the first end of the channel region to a predetermined distance of the preset length, a thin gate oxide portion extending from the predetermined distance to the second end of the channel region;a breakdown resistant access edge proximate to the first end of the channel region for conducting current between the polysilicon gate and the diffusion region;and an oxide breakdown zone proximate to the second end of the channel region, the oxide breakdown zone fusible to form a conductive link between the polysilicon gate and the channel region.
  2. 10
    An anti-fuse memory array comprising:a plurality of anti-fuse transistors arranged in rows and columns, each anti-fuse transistor including a polysilicon gate over a channel region in a substrate, the channel having a preset length;a diffusion region proximate to a first end of the channel region;a variable thickness gate oxide between the polysilicon gate and the substrate, the variable thickness gate oxide having a thick gate oxide portion extending from the first end of the channel region to a predetermined distance of the preset length, and a thin gate oxide portion extending from the predetermined distance to a second end of the channel region, -26CA 02520140 2005-10-20 an oxide breakdown zone proximate to the second end of the channel region fusible to form a conductive link between the polysilicon gate and the channel region;bitlines coupled to the diffusion regions of a column of anti-fuse transistors;and, wordlines coupled to the polysilicon gates of a row of anti-fuse transistors.
  3. 15
    A method of forming a variable thickness gate oxide for an anti-fuse transistor having a channel region and a diffusion region, comprising the steps of:a) forming a field oxide surrounding the channel region and the diffusion region;b) growing an intermediate oxide in the channel region;c) removing the intermediate oxide from a thin oxide region of the channel region;-27CA 02520140 2005-10-20 d) growing a thin oxide over the thin oxide region and the intermediate oxide;e) forming a common gate over the thin oxide, the intermediate oxide and the field oxide;and, f) forming the diffusion region adjacent the intermediate oxide.
  4. 23
    An anti-fuse transistor formed on a semiconductor material comprising:an active channel area;a polysilicon gate formed over the active channel area to define a fusible edge and an access edge;a thick gate oxide adjacent to the access edge;a first diffusion region adjacent to the access edge;a second diffusion region adjacent to the fusible edge;and a thin gate oxide over the active channel area adjacent to the fusible edge, the thin gate oxide having a lower breakdown voltage than the thick gate oxide for forming a conductive link between the polysilicon gate and the active channel area.
  5. 29
    An anti-fuse transistor formed on a semiconductor material comprising:an active channel area;a polysilicon gate formed over the active channel area to define a fusible area, an access edge and an isolation edge;a thick gate oxide adjacent to the access edge;a diffusion region adjacent to the access edge;a field oxide adjacent to the isolation edge;and a thin gate oxide having a fusible area between the thick gate oxide and the isolation edge, the fusible area having a lower breakdown voltage than the thick gate oxide for forming a conductive link between the polysilicon gate and the active channel area.