IP Library › Granted Patent US 10,472,715
Granted Patent B2
US 10,472,715 · App. 15/548,069 · Granted Nov 12, 2019

Nitride semiconductor template, manufacturing method thereof, and epitaxial wafer

Inventors: Shusei Nemoto (Hitachi, JP); Taichiro Konno (Hitachi, JP); Hajime Fujikura (Hitachi, JP)
Assignee: SUMITOMO CHEMICAL COMPANY, LIMITED
C23C16/34C30B25/183C30B29/38C30B29/403H01L21/0242H01L21/0254H01L21/0262H01L21/02458H01L21/02658H01L21/20H01L21/205H01L33/007H01L33/32
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Quick Facts
Patent No.
US 10,472,715
App. No.
15/548,069
Granted
Nov 12, 2019
Kind
B2
Abstract

A nitride semiconductor template includes a heterogeneous substrate, a first nitride semiconductor layer that is formed on one surface of the heterogeneous substrate, includes a nitride semiconductor and has an in-plane thickness variation of not more than 4.0%, and a second nitride semiconductor layer that is formed on an annular region including an outer periphery of an other surface of the heterogeneous substrate, includes the nitride semiconductor and has a thickness of not less than 1 μm.

Claims (45)

1. A nitride semiconductor template, comprising:

a heterogeneous substrate;

a first nitride semiconductor layer that is formed on one surface of the heterogeneous substrate, comprises a nitride semiconductor, and has an in-plane thickness variation of not more than 4.0% the in-plane thickness variation being a value of a standard deviation of a film thickness obtained at, measurement points ,divided by an average film thickness of the measurement points in the first nitride semiconductor layer; and

a second nitride semiconductor layer that is formed on an annular region including an outer periphery of an other surface of the heterogeneous substrate, comprises the nitride semiconductor, and has a thickness of not less than 1 μm.

2. The nitride semiconductor template according to claim 1 , wherein the heterogeneous substrate comprises a circular substrate, and

wherein the annular region comprises a region in the other surface outside a circle that is centered at a center of the heterogeneous substrate and has a 2-mm smaller radius than a radius of the heterogeneous substrate.

3. The nitride semiconductor template according to claim 2 , wherein a shape of a region of the other surface surrounded by the annular region is a circle centered at the center of the heterogeneous substrate.

4. The nitride semiconductor template according to claim 2 , wherein an amount of warpage (Warp) is not more than 100 μm.

5. The nitride semiconductor template according to claim 2 , wherein the nitride semiconductor comprises GaN.

6. An epitaxial wafer, comprising:

the nitride semiconductor template according to claim 2 ; and

a light-emitting layer formed on the semiconductor template.

7. The nitride semiconductor template according to claim 1 , wherein a shape of a region in the other surface surrounded by the annular region is a circle centered at a center of the heterogeneous substrate.

8. The nitride semiconductor template according to claim 7 , wherein an amount of warpage (Warp) is not more than 100 μm.

9. The nitride semiconductor template according to claim 7 , wherein the nitride semiconductor comprises GaN.

10. An epitaxial wafer, comprising:

the nitride semiconductor template according to claim 7 ; and

a light-emitting layer formed on the semiconductor template.

11. The nitride semiconductor template according to claim 1 , wherein an amount of warpage (Warp) is not more than 100 μm.

12. The nitride semiconductor template according to claim 11 , wherein a difference in thickness between the first nitride semiconductor layer and the second nitride semiconductor layer is not more than 5 μm.

13. The nitride semiconductor template according to claim 12 , wherein the nitride semiconductor comprises GaN.

14. An epitaxial wafer, comprising:

the nitride semiconductor template according to claim 12 ; and

a light-emitting layer formed on the semiconductor template.

15. The nitride semiconductor template according to claim 11 , wherein the nitride semiconductor comprises GaN.

16. An epitaxial wafer, comprising:

the nitride semiconductor template according to claim 11 ; and

a light-emitting layer formed on the semiconductor template.

17. The nitride semiconductor template according to claim 1 , wherein the nitride semiconductor comprises GaN.

18. An epitaxial wafer, comprising:

the nitride semiconductor template according to claim 17 ; and

a light-emitting layer formed on the semiconductor template.

19. An epitaxial wafer, comprising:

the nitride semiconductor template according to claim 1 ; and

a light-emitting layer formed on the semiconductor template.

20. A method for manufacturing a nitride semiconductor template. the method comprising:

growing a first nitride semiconductor layer comprising a nitride semiconductor and having an in-plane thickness variation of not more than 4.0% on one surface of a heterogeneous substrate, the in-plane thickness variation being a value of a standard deviation of a film thickness obtained at measurement points divided ban average film thickness of the measurement points in the first nitride semiconductor layer; and

growing a second nitride semiconductor layer comprising the nitride semiconductor and having a thickness of not less than 1 μm on an annular region including an outer periphery of an other surface of the heterogeneous substrate.

21. The method for manufacturing a nitride semiconductor template according to claim 20 , wherein the first nitride semiconductor layer and the second nitride semiconductor layer are grown by holding the heterogeneous substrate onto a substrate holder to be inclined at an angle of not less than 0.5° and not more than 30° with respect to an upper surface of a base of the substrate holder, and sending source gases in one or both of parallel and perpendicular directions to the upper surface of the base of the substrate holder while in-plane rotating the substrate holder.

22. The method for manufacturing a nitride semiconductor template according to claim 21 , wherein the heterogeneous substrate comprises a circular substrate or comprises a circular substrate with at least one of an orientation flat and an index flat, and the annular region comprises a region in the other surface outside a circle that is centered at a center of the heterogeneous substrate and has a 2-mm smaller radius than the radius of the heterogeneous substrate.

23. The method for manufacturing a nitride semiconductor template according to claim 21 , wherein a shape of a region of the other surface surrounded by the annular region is a circle centered at a center of the heterogeneous substrate.

24. The method for manufacturing a nitride semiconductor template according to claim 20 , wherein the heterogeneous substrate comprises a circular substrate or a circular substrate with at least one of an orientation flat and an index fiat, and

wherein the annular region comprises a region in the other surface outside a circle that is centered at a center of the heterogeneous substrate and has a 2-mm smaller radius than a radius of the heterogeneous substrate.

25. The method for manufacturing a nitride semiconductor template according to claim 24 , wherein a shape of a region of the other surface surrounded by the annular region is a circle centered at the center of the heterogeneous substrate.

26. The method for manufacturing a nitride semiconductor template according to claim 20 , wherein a shape of a region in the other surface surrounded by the annular region is a circle centered at a center of the heterogeneous substrate.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 2, 2017
From: NEMOTO, SHUSEI; KONNO, TAICHIRO; FUJIKURA, HAJIME
To: SUMITOMO CHEMICAL COMPANY, LIMITED
Reel/Frame 043176/0037 →
Priority Claims (1)
JP 2015-039553 · Feb 27, 2015 · national
Continuity (1)
Related Publication 20180010246A1 · Jan 11, 2018
Cited By (1)
US 12,473,661