EP0057745A2

Rate and depth monitor for silicon etching.

Abstract

An in situ thickness change monitor for determining thickness change in opaque product material (1), such as silicon, in chamber apparatus, such as reactive ion etching apparatus, operative to produce such thickness change. Reference material (19) having thickness change properties, such as etch rate, correlatable to the product material thickness change properties is deposited upon a substrate (17) having an index of refraction such as to form a monitor exhibiting an optical discontinuity. With the monitor positioned within the chamber with the product material, light directed thereto acts to provide reflected beams producing light having an intensity variation due to interference indicative of the thickness of the reference material. Changes in the thickness of the reference material (d') are correlated to changes in thickness of the product material (d).

EP0057745A2, drawing sheet 1
Sheet 1 of 4

Term

Term ended

Projected expiry passed 16 September 2001, 25 years ago.

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10 claims: 2 independent, 8 dependent

  1. 1
    A process for in situ monitoring thickness changes of a layer (1) of product material in an environment arranged to produce such changes, characterized by the steps of:selecting a reference material (19) which exhibits characteristics in said environment correlatable to those of the product material in said environment, depositing said reference material on a substrate (17) therefor to form a monitor that exhibits an optical discontinuity between said reference material and substrate, positioning said monitor in said environment with said product material so that said reference material and product material undergo thickness changes, and monitoring optically the thickness changes of said reference material and correlating said changes to thickness changes of said product material.
  2. 6
    Apparatus for the in situ monitoring of changes in thickness of product material (1) in a chamber arranged to produce such changes, characterized by monitor means positioned within said chamber, said monitor means including a layer of preferably transparent reference material (19) exhibiting thickness changing properties correlatable to such properties of said product material, and including a substrate (17) arranged so that an optical discontinuity exists between said reference material and said substrate, a light source (27) for directing light to said monitor means to produce reflected light from both said reference material and said substrate, and detector means (59, 61) to change said reflected light to a signal indicative of the thickness of said reference material.