US20030192469A1

Process for controlling denuded zone depth in an ideal oxygen precipitating silicon wafer

Claim Score by NHIP

Read claim 1, the broadest

Abstract

The present invention is directed to a single crystal Czochralski-type silicon wafer, and a process for the preparation thereof, which has a non-uniform distribution of crystal lattice vacancies therein, the peak concentration being present in the wafer bulk between an imaginary central plane and a surface of the wafer, such that, upon being subjected to the heat treatment cycles of essentially any arbitrary electronic device manufacturing process, the wafer forms oxygen precipitates in the wafer bulk and a thin or shallow precipitate-free zone near the wafer surface.

US20030192469A1, drawing sheet 1
Sheet 1 of 3

Term

Term ended

Projected expiry passed 22 October 2022, 3.9 years ago.

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69 claims: 2 independent, 67 dependent

  1. 1
    Broadest claimClaim Score 44, average(NHIP)A wafer sliced from a single crystal silicon ingot grown in accordance with the Czochralski method, the wafer comprising:a front surface, a back surface, an imaginary central plane approximately equidistant between the front and back surfaces, a front surface layer which comprises a region of the wafer between the front surface and a distance, D 1 , measured from the front surface and toward the central plane, and a bulk layer which comprises the imaginary central plane but not the front surface layer, and a non-uniform concentration of crystal lattice vacancies in which a peak concentration is in the bulk layer between the central plane and the front surface layer, the concentration generally decreasing in the direction of both the front surface layer and the central plane, wherein (i) D 1 is at least about 5 microns but less than about 30 microns, and (ii) upon being subjected to an oxygen precipitation heat-treatment at a temperature in excess of about 700° C., the surface layer has less than about 1×10 7 cm −3 oxygen precipitates while the bulk layer has more than about 1×10 7 cm −3 oxygen precipitates.
  2. 30
    A process for preparing a silicon wafer, the wafer being sliced from a single crystal silicon ingot grown in accordance with the Czochralski method and having a front surface, a back surface, an imaginary central plane approximately equidistant between the front and back surfaces, a front surface layer which comprises a region of the wafer between the front surface and a distance, D 1 , which as measured from the front surface and toward the central plane is greater than about 5 microns but less than about 30 microns, and a bulk layer which comprises the imaginary central plane but not the front surface layer, the process comprising:heat-treating the single crystal silicon wafer in an atmosphere comprising a nitrogen-containing gas and an oxygen-containing gas, the concentration of oxygen in the atmosphere being less than about 500 PPMA, to form crystal lattice vacancies in the front surface layer and in the bulk layer;cooling the heat-treated wafer to produce therein a non-uniform concentration of crystal lattice vacancies in which a peak concentration is in the bulk layer between the central plane and the front surface layer, the concentration generally decreasing in the direction of both the front surface layer and the central plane, and subjecting the cooled wafer to an oxygen precipitation heat-treatment at a temperature in excess of about 700° C. to form a wafer having a denuded zone in the front surface layer and oxygen precipitates in the bulk layer.