EP0735577A2

Deposition process and apparatus therefor

Abstract

A method and apparatus for depositing material to conformally cover or fill holes within the surface of a semiconductor substrate (18). The preferred method includes the steps of coherently depositing a first thickness of the material onto the surface of the substrate (18); reverse sputtering the deposited material so as to coat the sidewalls of the contact holes with the deposited material; after the first thickness of the material is deposited onto the surface of the substrate (18); and while depositing the second thickness of the material onto the surface of the substrate (18), heating the substrate (18) to enhance reflow of the material being deposited.

EP0735577A2, drawing sheet 1
Sheet 1 of 5

Term

Term ended

Projected expiry passed 14 December 2015, 10.8 years ago.

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

22 claims: 2 independent, 20 dependent

  1. 1
    A method for depositing material within contact holes (2) formed within a surface of a semiconductor substrate (18) comprising:depositing a first thickness of the material onto the surface of the substrate (18);so as to partially fill the holes (2), and reverse sputtering the deposited material so as to coat the sidewalls (4) of the contact holes (2) with the deposited material.
  2. 10
    The method of any of claims 2 to 9 wherein the step of reverse sputtering comprises applying a positive bias voltage to the substrate (18) during the step of depositing the first thickness, whereby the positive voltage attracts ions to bombard and reverse sputter the substrate (18) during the deposition of the first thickness.
  3. 17
    The method of any of claims 13 to 16 wherein the step of heating further comprises heating the platform on which the substrate (18) is supported.
  4. 18
    The method of any of claims 13 to 17 wherein the step of heating comprises heating the surface of the substrate (18) from a heat source located on the side of the substrate (18) on which said second thickness of material is being deposited to thereby enhance reflow of the material being deposited.
  5. 19
    The method of any of claims 13 to 18 wherein the step of depositing is performed in a first deposition chamber, the step of depositing a second thickness of material is performed in a second deposition chamber, and the substrate (18) is transferred from the first chamber to the second chamber under vacuum between the resputtering step and the deposition of the second thickness.
  6. 20
    The method of any of claims 13 to 19 further comprising forming a planarized layer of material on the substrate (18) comprising:coherently depositing the first thickness of the material onto said surface of the substrate (18);simultaneous with the step of coherently depositing, reverse sputtering the deposited material so as to completely and continuously coat the sidewalls of the contact holes (2) with the deposited material;while reverse sputtering the deposited material, maintaining the temperature of the substrate (18) sufficiently low to prevent the coating from becoming discontinuous;and while depositing the second thickness of said material onto the surface of the substrate (18), heating the surface from a heat source located above the substrate (18) to enhance reflow of the material being deposited.
  7. 21
    Apparatus for forming a planarized layer of material on a substrate (18) which includes contact holes (2) that are formed within a surface of the substrate (18), comprising:a deposition chamber (10);a sputter target (14) made of a constituent of said material;a platform (16) for holding the substrate (18);a collimation filter (40) between said target (14) and said platform (16);a first power supply (34) connected to the sputter target (14);a second supply (50) connected to the platform (16);a control module (71) programmed to carry out the following steps: coherently depositing a first thickness of the material onto the surface of the substrate (18);reverse sputtering the deposited material so as to coat the sidewalls (4) of the contact holes (2) with the deposited material;after the first thickness of said material is deposited onto the surface of the substrate (18), depositing a second thickness of said material onto the surface of the substrate (18);and while depositing the second thickness of said material onto the surface of the substrate (18) heating the substrate (18) to enhance reflow of the material being deposited.