IP Library Granted Patent US 11,955,361
Granted Patent B2
US 11,955,361 · App. 17/686,324 · Granted Apr 9, 2024

Electrostatic chuck with mesas

Inventors: Vijay D. Parkhe (San Jose, CA); Ashutosh Agarwal (San Jose, CA)
Assignee: Applied Materials, Inc.
H01L21/6833H01J37/32715H01L21/68757
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Quick Facts
Patent No.
US 11,955,361
App. No.
17/686,324
Granted
Apr 9, 2024
Kind
B2
Abstract

Electrostatic chucks (ESCs) for plasma processing chambers, and methods of fabricating ESCs, are described. In an example, a substrate support assembly includes a ceramic top plate having a top surface with a processing region. One or more electrodes is within the ceramic top plate. A plurality of mesas is within the processing region and on the top surface of the ceramic plate or vertically over an edge of one of the one or more electrodes.

Claims (33)

1. A substrate support assembly, comprising:

a ceramic top plate having a top surface with a processing region;

one or more DC braze connections within the ceramic top plate;

one or more electrodes within the ceramic top plate; and

a plurality of mesas within the processing region and on the top surface of the ceramic top plate, wherein none of the plurality of mesas are vertically over the one or more DC braze connections, and wherein all of the plurality of mesas are fully over a corresponding one of the one or more electrodes.

2. The substrate support assembly of claim 1 , wherein the plurality of mesas is continuous with the top surface of the ceramic top plate.

3. The substrate support assembly of claim 1 , wherein the ceramic top plate comprises aluminum nitride.

4. The substrate support assembly of claim 1 , wherein the ceramic top plate comprises aluminum oxide.

5. The substrate support assembly of claim 1 , wherein the one or more electrodes comprise molybdenum.

6. A substrate support assembly, comprising:

a ceramic top plate having a top surface with a processing region;

a molybdenum mesh within the ceramic top plate;

a nickel rod in the ceramic top plate and coupled to the molybdenum mesh by a metal paste, the nickel rod being at a distance greater than 1 mm from the top surface of the ceramic top plate; and

a plurality of mesas within the processing region and on the top surface of the ceramic top plate, wherein all of the plurality of mesas are fully over the molybdenum mesh.

7. The substrate support assembly of claim 6 , wherein the metal paste comprises tungsten or molybdenum.

8. The substrate support assembly of claim 6 , wherein the nickel rod is at approximately 2 mm from the top surface of the ceramic top plate.

9. The substrate support assembly of claim 6 , wherein the ceramic top plate comprises aluminum nitride.

10. The substrate support assembly of claim 6 , wherein the ceramic top plate comprises aluminum oxide.

11. A substrate support assembly, comprising:

a ceramic top plate having a top surface with a processing region, the top surface having one or more high topography regions and one or more electrodes within the ceramic top plate; and

a plurality of mesas within the processing region and on the top surface of the ceramic top plate, wherein none of the plurality of mesas are on the one or more high topography regions of the top surface of the processing region, and wherein all of the plurality of mesas are fully over a corresponding one of the one or more electrodes.

12. The substrate support assembly of claim 11 , wherein the plurality of mesas is continuous with the top surface of the ceramic top plate.

13. The substrate support assembly of claim 11 , wherein the ceramic top plate comprises aluminum nitride.

14. The substrate support assembly of claim 11 , wherein the ceramic top plate comprises aluminum oxide.

15. The substrate support assembly of claim 11 , further comprising one or more electrodes comprising molybdenum.

16. A substrate support assembly, comprising:

a ceramic top plate having a top surface with a processing region, the top surface having one or more stress regions;

one or more electrodes within the ceramic top plate; and

a plurality of mesas within the processing region and on the top surface of the ceramic top plate, wherein none of the plurality of mesas are on the one or more stress regions of the top surface of the processing region, and wherein all of the plurality of mesas are fully over a corresponding one of the one or more electrodes.

17. The substrate support assembly of claim 16 , wherein the plurality of mesas is continuous with the top surface of the ceramic top plate.

18. The substrate support assembly of claim 16 , wherein the ceramic top plate comprises aluminum nitride.

19. The substrate support assembly of claim 16 , wherein the ceramic top plate comprises aluminum oxide.

20. The substrate support assembly of claim 16 , further comprising one or more electrodes comprising molybdenum.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 14, 2022
From: PARKHE, VIJAY D.; AGARWAL, ASHUTOSH
To: APPLIED MATERIALS, INC.
Reel/Frame 059257/0899 →
Continuity (2)
Provisional Application 63175218 · Apr 15, 2021
Related Publication 20220336249A1 · Oct 20, 2022