EP0246765A2

Apparatus and method for manufacturing planarized aluminium films.

Abstract

An apparatus for planarizing an aluminum layer on a semiconductor wafer includes two deposition sources. The first source applies a refractory metal silicide layer to form a barrier to oxygen. The water is moved to a second deposition source which is an aluminum sputter device including a heater for the wafer, R.F. bias on the wafer and a magnetic mirror behind the wafer to move the plasma away from the wafer.

EP0246765A2, drawing sheet 1
Sheet 1 of 9

Term

Term ended

Projected expiry passed 27 April 2007, 19.4 years ago.

  1. Priority
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  3. Published
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14 claims: 4 independent, 10 dependent

  1. 1
    Apparatus for forming a planarized layer on a semiconductor wafer comprising :deposition means for forming a layer containing a refractory metal over the wafer;sputter means for forming an aluminium layer by sputter deposition over the refractory metal layer;and means for positioning the wafer before said deposition means and said sputter means in sequence without exposing the wafer to oxygen-bearing or nitrogen-bearing gas.
  2. 2
    Apparatus as claimed in Claim 1, wherein said sputter means includes target means having two surfaces, a first of said two surfaces being planar and having an outer circular perimeter, and a second of said two surfaces being a ring around said outer circular perimeter, said second surface being sloped inward from a second outer perimeter toward the center of said ring.
  3. 3
    Apparatus as claimed in Claim 2, wherein said target surfaces are primarily of aluminium, said second target surface being formed on a circular annulus having an axial thickness at an outer perimeter which is greater than an axial thickness at an inner perimeter, the apparatus further comprising means for supplying an ionizable gas to a space adapted to be evacuated, the space being between the target and workpiece, electric field means for establishing an ionizing electric field for the gas in the space, . magnetic field means for establishing a confining magnetic field for the gas ionized by the electric field in the vicinity of the emitting surfaces of the first and second targets, means for mounting the targets so that emitted material is sputtered from the sloped emitting surface outside of the first target, and means for connecting an R.F. bias power source to the workpiece.
  4. 4
    Apparatus as claimed in Claim 3, wherein the electric field means and the magnetic field means include means for establishing separate first and second discharges in the ionized gas immediately above the emitting surfaces of the first and second targets, said separate discharge establishing means including:first and second electric field means for establishing separate first and second ionizing electric fields for the gas above the first and second targets, respectively, and first and second magnetic field means for establishing different confining magnetic fields for the gas ionized by the electric fields in the vicinity of the emitting surfaces of the first and second targets, respectively, the first and second magnetic field means, respectively, including first and second magnetic field sources and pole pieces for coupling flux from the first and second magnetic field sources to the first and second targets.
  5. 5
    Apparatus for forming a planarized layer on a semiconductor wafer comprising :sputter means for forming a layer of material on the semiconductor wafer by sputter deposition, said sputter means including target means having two surfaces, a first of said two surfaces being planar and having an outer perimeter, a second of said two surfaces being a ring around said outer perimeter, said second surface being concave as viewed from the wafer.
  6. 6
    Apparatus as claimed in Claim 5, wherein said sputter means includes means for generating a plasma and including magnetic mirror means in proximity to the wafer for reflecting said plasma from the wafer.
  7. 7
    Apparatus as claimed in Claim 5 or Claim 6 which further includes deposition means for depositing a material including a refractory metal to passivate said wafer.
  8. 8
    Apparatus as claimed in Claim 7 which further includes means to isolate said wafer, said sputter means and said deposition means from oxygen-bearing or nitrogen-bearing gas.
  9. 9
    A method of sputter depositing a planar aluminium layer on an oxygen- or nitrogen-bearing layer on a semiconductor wafer, comprising the steps of :depositing a layer containing a refractory metal on the layer bearing oxygen or nitrogen, and then sputtering an aluminium layer on said layer containing refractory metal without exposing said layer containing refractory metal to oxygen- or nitrogen-bearing gas and while heating the wafer from behind to a temperature of at least 490° C .
  10. 10
    The method of Claim 9, wherein said layer containing refractory metal is at least 200 Angstroms thick.
  11. 11
    The method of Claim 9 or Claim 10, wherein said layer containing refractory metal is deposited by sputter deposition.
  12. 12
    The method of any one of Claims 9-11, wherein said layer containing refractory metal is a layer containing refractory metal silicide.
  13. 13
    The method of Claim 9 or Claim 10, wherein said layer containing a refractory metal is a layer of tantalum silicide at least 200 Angstroms thick which is deposited by sputter deposition.
  14. 14
    The method of Claim 9 or Claim 10, wherein said layer containing refractory metal is a layer of tantalum silicide.