EP0840360A2

Wafer support with improved temperature control

Abstract

The disclosure relates to an apparatus for supporting a workpiece in semi-conductor processing equipment. The apparatus has either a mechanical or electrostatic chuck (100) having a workpiece support surface (104) that specifically directs the flow of a heat transfer gas from at least one gas supply port (120) towards a drain port (124). A pressure valve (126) beyond the drain port regulates heat transfer gas pressure to ensure adequate gas density for cooling by conduction and adequate gas flow for controlled leakage through the valve.

EP0840360A2, drawing sheet 1
Sheet 1 of 3

Term

Term ended

Projected expiry passed 5 November 2017, 8.9 years ago.

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

26 claims: 3 independent, 23 dependent

  1. 1
    Apparatus for supporting a workpiece comprising:a chuck having a workpiece support surface with a periphery and a radius;at least one heat transfer gas supply port located in the support surface;a heat transfer gas drain located in the support surface;and a pressure valve attached to the drain via a sub-support surface channel, where the pressure valve contains a ceramic membrane for controlling and limiting flow of heat transfer gas in a volume between the workpiece and the support surface of the chuck.
  2. 14
    Apparatus for supporting a workpiece comprising:a chuck having a workpiece support surface with a periphery and a radius;at least one heat transfer gas supply port located in the support surface;a heat transfer gas drain located in the support surface;a pressure valve attached to the drain via a sub-support surface channel;and a plurality of vanes    wherein said heat transfer gas supply ports, drain, pressure valve, and plurality of vanes produce a controlled and limited flow of heat transfer gas in a volume between the workpiece and the support surface of the chuck.
  3. 26
    Apparatus for retaining a workpiece comprising:a chuck having a workpiece support surface with a periphery and a center;a plurality of heat transfer gas ports positioned proximate the periphery of the support surface;a drain positioned proximate the center of the support surface;a pressure valve attached to the drain via a sub-support surface channel;the pressure valve having,    a casing having a wide end and a narrow end;a two-stage opening extending axially through the casing from the wide end to the narrow end;a porous ceramic membrane adhered to the two-stage opening at the narrow end of the casing;a first set of vanes extending radially inward from the periphery of the support surface;and a second set of vanes positioned proximate each of the heat transfer gas ports, extending radially inward.