IP Library › Granted Patent US 8,444,926
Granted Patent B2
US 8,444,926 · App. 11/668,947 · Granted May 21, 2013

Processing chamber with heated chamber liner

Inventors: Mark A. Fodor (Redwood City, CA); Sophia M. Velastegui (Cupertino, CA); Bok Hoen Kim (San Jose, CA); Dale R. DuBois (Los Gatos, CA)
Assignee: Applied Materials, Inc.
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Quick Facts
Patent No.
US 8,444,926
App. No.
11/668,947
Granted
May 21, 2013
Kind
B2
Abstract

A heater liner assembly suitable for covering the interior of a plasma processing chamber is provided. In some embodiments, a liner assembly for a processing chamber can include a heating element embedded in a body. A flange extending outward from an outer diameter of the body includes an upper surface having a sealing surface and at least one pad that extends from the upper surface of the flange to an elevation beyond the sealing surface. The pad contributes to control of the temperature of the liner assembly by maintaining the liner assembly spaced apart from the processing chamber.

Claims (40)

1. A processing chamber, comprising:

a chamber body having sidewalls, a bottom, and a chamber lid coupled to a top portion of the chamber body, defining one or more processing regions therein; and

a liner assembly, comprising:

a liner body removably disposable within the sidewalls of the processing chamber;

a heater embedded in the liner body;

a flange extending outward from an outer diameter of the liner body, a portion of an upper surface of the flange forming a sealing surface;

a recess formed in the upper surface of the flange; and

a plurality of cylindrical contact pads extending from the upper surface of the flange to an elevation above the sealing surface, wherein each of the plurality of cylindrical contact pads contacts a portion of the chamber lid, and the liner body, the flange and the plurality of cylindrical contact pads integrally forming a unitary heated liner wherein the plurality of cylindrical contact pads minimize a contact area between the chamber lid and the liner assembly.

2. The processing chamber of claim 1 , wherein the liner assembly further comprises:

at least one groove formed in the liner body, wherein the groove is disposed on a side of the liner body opposite to the plurality of cylindrical contact pads.

3. The processing chamber of claim 1 , wherein the heater further comprises:

at least one resistive heating element.

4. The processing chamber of claim 1 , wherein the heater is configured to provide greater heating capacity along a first perimeter section of the liner body relative to a second perimeter section.

5. The processing chamber of claim 1 , wherein the heater further comprises:

a plurality of resistive heating elements.

6. The processing chamber of claim 5 , wherein the resistive heating elements are arranged in a polar array.

7. The processing chamber of claim 5 , wherein the resistive heating elements are disposed more densely in one region relative to another region.

8. The processing chamber of claim 1 , wherein an inner diameter surface of the liner body bounds a portion of a pumping cavity.

9. The processing chamber of claim 8 , wherein a pumping aperture disposed through the liner body fluidly couples to the pumping cavity through the inner diameter surface.

10. The processing chamber of claim 8 further comprising:

a pumping liner forming an inner boundary of the pumping cavity.

11. The processing chamber of claim 10 , wherein the pumping liner further comprises:

a plurality of pumping ports formed therethrough and fluidly coupled to the pumping cavity.

12. A processing chamber, comprising:

a chamber body having sidewalls, a bottom, and a chamber lid coupled to a top portion of the chamber body, defining one or more processing regions therein; and

a liner assembly, comprising:

a ceramic body removably disposable within the sidewalls of the processing chamber and having an inner diameter surface bounding a portion of a pumping cavity;

a pumping aperture disposed through the body and fluidly coupled to the pumping cavity through the inner diameter surface;

a heater embedded in the body;

a flange extending outward from an outer diameter of the body, a portion of an upper surface of the flange forming a sealing surface; and

a plurality of cylindrical contact pads extending from the upper surface of the flange to an elevation above the sealing surface, the body, the flange and the plurality of cylindrical contact pads integrally forming a unitary heated liner, wherein each of the plurality of cylindrical contact pads contacts a portion of the chamber lid, and at least one groove is disposed on a side of the ceramic body opposite to the plurality of cylindrical contact pads wherein the plurality of cylindrical contact pads minimize a contact area between the chamber lid and the liner assembly.

13. A processing chamber, comprising:

a chamber body having sidewalls, a bottom, and a chamber lid coupled to a top portion of the chamber body, defining one or more processing regions therein; and

a liner assembly, comprising:

a heater liner removably disposed between a pumping liner and sidewalls of the processing chamber;

a flange extending outward from an outer diameter of the heater liner, wherein the flange has an annular groove formed therein and a portion of an upper surface of the flange forms a sealing surface; and

a plurality of cylindrical contact pads extending from the upper surface of the flange, wherein each of the plurality of cylindrical contact pads contacts a portion of the chamber lid, and wherein the annular groove is disposed on a side of the heater liner opposite to the plurality of cylindrical contact pads and the heater liner, the flange and the plurality of cylindrical contact pads integrally forming a unitary heater liner body wherein the plurality of cylindrical contact pads minimize a contact area between the chamber lid and the liner assembly.

14. The processing chamber of claim 1 , wherein the sealing surface is maintained spaced from the chamber lid by the plurality of cylindrical contact pads.

15. The processing chamber of claim 12 , wherein the sealing surface is maintained spaced from the chamber lid by the plurality of cylindrical contact pads.

16. The processing chamber of claim 13 , wherein the sealing surface is maintained spaced from the chamber lid by the plurality of cylindrical contact pads.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 30, 2007
From: FODOR, MARK A.; KIM, BOK HOEN; DUBOIS, DALE R.; VELASTEGUI, SOPHIA M.
To: APPLIED MATERIALS, INC.
Reel/Frame 018825/0327 →
Continuity (1)
Related Publication 20080178797A1 · Jul 31, 2008