Nova Patents
EP1521307A2

High-voltage semiconductor devices

Abstract

A high-voltage transistor with a low specific on-state resistance and that supports high voltage in the off-state includes one or more source regions disposed adjacent to a multi-layered extended drain structure which comprises extended drift regions separated from field plate members by one or more dielectric layers. With the field plate members at the lowest circuit potential, the transistor supports high voltages applied to the drain in the off-state. The layered structure may be fabricated in a variety of orientations. A MOSFET structure may be incorporated into the device adjacent to the source region, or, alternatively, the MOSFET structure may be omitted to produce a high-voltage transistor structure having a stand-alone drift region.

EP1521307A2, drawing sheet 1
Sheet 1 of 10

Term

Term ended

Projected expiry passed 16 August 2022, 4.1 years ago.

  1. Priority
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  4. Projected expiry
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10 claims: 2 independent, 8 dependent

  1. 1
    A lateral high-voltage transistor fabricated on a substrate comprising:an insulating layer that covers a top surface of the substrate;a drain region of a first conductivity type disposed above the insulating layer;a source region of the first conductivity type;a plurality of parallel-arranged drift regions of the first conductivity type disposed above the insulating layer, each of the drift regions extending in a first direction from the drain region to the source region, adjacent ones of the drift regions being separated in a second direction substantially orthogonal to the first direction by a dielectric layer;a field plate member disposed within each dielectric layer, the field plate member being fully insulated from the drift regions.
  2. 6
    A lateral high-voltage transistor comprising:a drain region of a first conductivity type;a source region of the first conductivity type;a plurality of drift regions of the first conductivity type arranged substantially in parallel and extending in a first direction from the drain region to the source region, adjacent ones of the drift regions being separated in a second direction substantially orthogonal to the first direction by a dielectric layer;at least one field plate member disposed within the dielectric layer, the at least one field plate member being fully insulated from the drift regions an electrically isolated from the drain region.