EP0352004A2

Method and apparatus for endpoint detection in a semiconductor wafer etching system.

Abstract

The disclosure relates to a method for endpoint detection in a semiconductor wafer etching ysstem characterised in the steps of: 1) scanning a semiconductor wafer (10) with a narrowly focussed laser beam (24); 2) analyzing a reflected portion of the beam to determine a preferred parking spot (P) on a preferred flat area (#8) of the wafer; 3) parking the beams at the preferred spot; and 4) analyzing the reflected portion of the beam to determine when the preferred flat area has been etched through. The beam spot (18) of the laser beam (24) is amller than the width of the preferred flat area to eliminate noise generated at the transition boundaries of the flat area. Preferably, the wafer is scanned several times along the same beam path to permit the comparison of several scans to determine the preferred parking spot. The apparatus includes a beam forming assembled (62, 64, 66); a scanning assembly which causes the laser beam to scan across the wafer; a detection assembly (76) responsive to a portiom of the laser beam which is reflected off the wafer; and a controller (78) which operates the laser and the scanning assembly and which is responsive to an output of the detection assembly. When output of the detection assembly indicates a cessation of the characteristic etching curve, the controller develops an endpoint detection signal which can automatically shut down the etching system.

EP0352004A2, drawing sheet 1
Sheet 1 of 10

Term

Term ended

Projected expiry passed 11 July 2009, 17.2 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

31 claims: 10 independent, 21 dependent

  1. 1
    A method for endpoint detection in a semiconductor wafer etching system comprising the steps of:scanning a semiconductor wafer surface with a narrowly focussed beam of radiant energy and detecting a reflected portion of said beam;analyzing said reflected portion to determine a preferred parking spot on a preferred flat area of said surface, said preferred flat area having a minimum transverse dimension greater than a spot size of said beam;parking said beam at said preferred spot;analyzing said reflected portion of said beam to determine when said preferred flat area has been etched through.
  2. 5
    A method as claimed in any of claims 1 to 4 wherein said step of analyzing said reflected portion of said beam to determine when said surface at said preferred flat are has been etched through includes comparing an actual etcgubg cyrve with a projected etching curve.
  3. 6
    A method for finding a preferred parking spot for a laser beam of a laser beam interferometer comprising the steps of:making at least one scan along a scan path on a semiconductor wafer surface with a narrowly focussed laser beam and detecting a reflected portion of said beam;analyzing said reflected portion of said beam to determine a preferred parking spot within a preferred flat area having a minimum transverse dimension which is larger than a spot size of said laser beam.
  4. 15
    A method for endpoint detection in a semiconductor wafer etching system comprising the steps of:parking a beam of radiant energy on a spot of a semiconductor wafer surface;detecting a reflected portion of said beam to determine an actual etching curve;and analyzing said reflected portion to determine when said surface at said preferred spot has been etched through by comparing said actual etching curve to a projected etching curve.
  5. 17
    A method for focussing a beam of radiant energy comprising:scanning a beam of radiant energy across a test pattern comprising areas of differing reflectivity;detecting the variance in a reflected portion of said beam as it is scanned across said test pattern;and adjusting said beam to minimize said variance.
  6. 21
    A laser interferometer endpoint detection system comprising:beam forming means adapted to produce a narrowly focussed beam spot;scanning means coupled to said beam forming means and adapted to scan said beam spot across a surface of a semiconductor wafer in discrete steps;detection means responsive to a reflected portion of said beam spot which is reflected from said semiconductor wafer;environmental isolation means for isolating said beam forming means and said detection means from said semiconductor wafer;and control means having an input coupled to said detection means and having an output coupled to said scanning means, said control means being operative to cause said scanning means to scan across a preferred flat area which is wider than said beam spot plus one discrete step, said control means being further operative to develop an endpoint detection signal when the output said detection means indicates the cessation of a characteristic etching curve.
  7. 25
    A laser interferometer endpoint detection system as as claimed in any of claims 21 to 24 wherein said detection means includes a photodetector and detection optics for focussing said reflected beam on said photodetector.
  8. 26
    A laser interferometer endpoint detection system as claimed in any of Claims 21 to 25 wherein said environmental isolation means includes window means disposed between said beam forming mean sand said semiconductor wafer.
  9. 27
    A laser interferometer endpoint detection system as claimed in Claim 26 wherein said window means is adapted to isolate thermally the beam forming means side of said window from the semiconductor wafer side of said window.
  10. 28
    A laser interferometer endpoint detection system as claimed in Claim 26 or Claim 27 wherein said window means includes a plurality of spaced-apart panes.
  11. 29
    A laser interferometer endpoint detection system as claimed in Claim 28 further comprising heating means for heating at least the pane closest to said semiconductor wafer.
  12. 30
    A laser interferometer endpoint detection system as claimed in any of Claims 26 to 29 wherein said environmental isolation means further comprises enclosure means at least partially enclosing said beam forming means.
  13. 31
    A laser interferometer endpoint detection system as claims in any of Claims 21 to 30 further comprising beam focussing means coupled to said beam forming means and adapted to focus said beam spot on said semiconductor wafer.
Independent claims13