IP Library Granted Patent US 10,062,598
Granted Patent B2
US 10,062,598 · App. 14/698,793 · Granted Aug 28, 2018

Thermal processing susceptor

Inventors: Anhthu Ngo (San Jose, CA); Zuoming Zhu (Sunnyvale, CA); Balasubramanian Ramachandran (Santa Clara, CA); Paul Brillhart (Pleasanton, CA); Edric Tong (Sunnyvale, CA); Anzhong Chang (San Jose, CA); Kin Pong Lo (Fremont, CA); Kartik Shah (Sunnyvale, CA); Schubert S. Chu (San Francisco, CA); Zhepeng Cong (Vancouver, WA); James Francis Mack (Woodside, CA); Nyi O. Myo (San Jose, CA); Kevin Joseph Bautista (San Jose, CA); Xuebin Li (Sunnyvale, CA); Yi-Chiau Huang (Fremont, CA); Zhiyuan Ye (San Jose, CA)
Assignee: APPLIED MATERIALS, INC.
H01L21/68735B05C13/00B05C13/02C30B25/12H01L21/67326H01L21/6875H01L21/68785C23C16/4585
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Quick Facts
Patent No.
US 10,062,598
App. No.
14/698,793
Granted
Aug 28, 2018
Kind
B2
Abstract

In one embodiment, a susceptor for thermal processing is provided. The susceptor includes an outer rim surrounding and coupled to an inner dish, the outer rim having an inner edge and an outer edge. The susceptor further includes one or more structures for reducing a contacting surface area between a substrate and the susceptor when the substrate is supported by the susceptor. At least one of the one or more structures is coupled to the inner dish proximate the inner edge of the outer rim.

Claims (29)

1. A susceptor for a thermal processing chamber comprising:

an inner dish extending across a center of the susceptor;

an outer rim surrounding the center of the susceptor and coupled to the inner dish, the outer rim having an inner edge and an outer edge;

one or more structures for reducing a contacting surface area between a substrate and the susceptor when the substrate is supported by the susceptor, wherein

at least one of the one or more structures is coupled to the inner dish proximate the inner edge of the outer rim and the outer rim is elevated relative to the one or more structures, and

the one or more structures comprises three or more wedges, wherein each wedge extends radially inward from the inner edge of the outer rim and each wedge is separated from two other wedges by a gap; and

a solid insulating separator disposed between each of the wedges, each solid insulating separator contacting the inner edge of the outer rim.

2. The susceptor of claim 1 , wherein at least one of the one or more structures is located within 0.5 mm of the inner edge of the outer rim.

3. The susceptor of claim 1 , wherein the three or more wedges comprise six wedges.

4. The susceptor of claim 1 , wherein the three or more wedges comprise eight wedges.

5. The susceptor of claim 1 , wherein the solid insulating separator is quartz.

6. The susceptor of claim 1 , further comprising three bumps extending from an upper surface of the inner dish, each bump located closer than each wedge to a center of the inner dish, wherein no bisection of the inner dish comprises all three bumps.

7. The susceptor of claim 1 , wherein a top surface of each of the wedges is at a same height as a top surface of each of the solid insulating separators.

8. A susceptor for a thermal processing chamber comprising:

an inner dish extending across a center of the susceptor;

an outer rim surrounding the center of the susceptor and coupled to the inner dish, the outer rim having an inner edge and an outer edge; and

one or more elevated structures relative to an upper surface of the inner dish, the one or more elevated structures to reduce a contacting surface area between the susceptor and a substrate to be supported by the susceptor, wherein

at least one of the one or more elevated structures is coupled to the inner dish at a location proximate the inner edge of the outer rim and the outer rim is elevated relative to the one or more elevated structures, and

the one or more elevated structures comprises three or more wedges, wherein each wedge extends radially inward from the inner edge of the outer rim and each wedge is separated from two other wedges by a gap, and

a sold insulating separator disposed between each of the wedges, each solid insulating separator contacting the inner edge of the outer rim.

9. The susceptor of claim 8 , wherein the three or more wedges comprises six or more wedges symmetrically arranged around a center of the inner dish, each wedge contacting the inner edge of the outer rim and having an upper surface higher than the upper surface of the inner dish.

10. The susceptor of claim 8 , wherein a top surface of each of the wedges is at a same height as a top surface of each of the solid insulating separators.

11. A susceptor for a thermal processing chamber comprising:

an inner dish extending across a center of the susceptor;

an outer rim surrounding the center of the susceptor and coupled to an inner dish, the outer rim having an inner edge and an outer edge;

six wedges extending radially inward from the inner edge of the outer rim above the inner dish, wherein each wedge is separated from two other wedges by a gap and the outer rim is elevated relative to the six wedges;

a quartz insulating separator disposed between each of the wedges, each quartz insulating separator contacting two wedges and the inner edge of the outer rim; and

three bumps extending from an upper surface of the inner dish, each bump located closer than each wedge to a center of the inner dish, wherein no bisection of the inner dish comprises all three bumps.

12. The susceptor of claim 11 , wherein a top surface of each of the wedges is at a same height as a top surface of each of the quartz insulating separators.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 5, 2015
From: NGO, ANHTHU; ZHU, ZUOMING; RAMACHANDRAN, BALASUBRAMANIAN; BRILLHART, PAUL; TONG, EDRIC; CHANG, ANZHONG; LO, KIN PONG; SHAH, KARTIK; CHU, SCHUBERT S.; CONG, ZHEPENG; MACK, JAMES FRANCIS; MYO, NYI O.; BAUTISTA, KEVIN JOSEPH; LI, XUEBIN; HUANG, YI-CHIAU; YE, ZHIYUAN
To: APPLIED MATERIALS, INC.
Reel/Frame 035834/0001 →
Continuity (2)
Provisional Application 62001562 · May 21, 2014
Related Publication 20150340266A1 · Nov 26, 2015
Cited By (3)
US 12,400,902 US 12,531,210 US 12,707,938