EP0107259A2

Method of fabricating a semiconductor device in which a layer is evaporatively deposited on a semiconductor body.

Abstract

Method of fabricating a semiconductor device in which method a layer of an electrically conductive material is evapor deposited on a general plane of a semiconductor chip. The layer is deposited in two steps, initially with an average deposition rate R1 which is not greater than 1 nm/s. and subsequently with an average deposition rate R2 which is greater than 2R1. Continuity defects such as tunneling, thinning and microcracking in the layer as reduced, while the method nearly achieves the throughput of prior art methods.

EP0107259A2, drawing sheet 1
Sheet 1 of 9

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Projected expiry passed 24 October 2003, 22.9 years ago.

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4 claims: 1 independent, 3 dependent

  1. 1
    Method of fabricating a semiconductor device in which method a layer of an electrically conductive material, substantially consisting of aluminium is evaporating deposited on a general plane of a semiconductor chip by directing atoms of the material towards the general plane which has step profiles with surface portions that are inclined and surface portions that are non-inclined with respect to the general plane, characterized in that, the layer is deposited in two steps, initially with an average deposition rate R which is not greater than 1 nm/s. on the non-inclined surface portions until the ratio of the average thickness of the material on the non-inclined surface portions to the height of the step profiles is at least 0.25 and subsequently with an average deposition rate R 2 which is greater than 2R 1 to increase the average thickness of the layer to a selected thickness.
  2. 3
    Method as in Claim 1, characterized in that R 1 on the non-inclined surface portions is in the range of 0.4 to 0.6 nm/s.
  3. 4
    Method as in Claim 1, characterized in that, the ratio of the average thickness of the material on the non-inclined surface portions to the height of the step profiles is about 0.3.