IP Library › Granted Patent US 12,136,653
Granted Patent B2
US 12,136,653 · App. 17/692,528 · Granted Nov 5, 2024

Silicon carbide wafer and semiconductor device applied the same

Inventors: Jung Woo Choi (Cheonam-si, KR); Jong Hwi Park (Cheonam-si, KR); Jung-Gyu Kim (Cheonam-si, KR); Jung Doo Seo (Cheonam-si, KR); Kap-Ryeol Ku (Cheonam-si, KR)
Assignee: SENIC Inc.
H01L29/1608H01L21/02002
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Quick Facts
Patent No.
US 12,136,653
App. No.
17/692,528
Granted
Nov 5, 2024
Kind
B2
Abstract

In a silicon carbide wafer in an embodiment, in the photoluminescence signal intensity spectrum obtained after irradiating a laser on one surface of the silicon carbide wafer, the number of peak signals having an intensity more than 1.2 times the average signal intensity of the spectrum is 1/cm 2 or less.

Claims (15)

1. A silicon carbide wafer comprising one surface and another surface facing each other, wherein the one surface is a surface on which a silicon atom layer of a silicon carbide crystal is exposed and the other surface is a surface on which a carbon atom layer of a silicon carbide crystal is exposed, and wherein a number of peak signals per unit area having an intensity more than 1.2 times an average signal intensity of a spectrum in a photoluminescence signal intensity spectrum obtained by irradiating lasers on the one surface is 1/cm 2 or less,

wherein the lasers irradiated on the silicon carbide wafer comprise a first laser having a predetermined incidence angle and a second laser being perpendicularly irradiated on the silicon carbide wafer, wherein the first laser and the second laser are directed at the same point, and wherein a wavelength of the first laser is 405 nm and a wavelength of the second laser is 355 nm, and

wherein a signal intensity of the spectrum is a signal intensity that is converted to grayscale.

2. The silicon carbide wafer according to claim 1 , wherein the number of the peak signal per unit area is 0.54/cm 2 or less.

3. The silicon carbide wafer according to claim 1 , wherein the number of the peak signal per unit area in an edge region occupying 20% of a radius from an outer in a direction toward a center is 0.05/cm 2 or less.

4. The silicon carbide wafer according to claim 1 , wherein a standard deviation of the signal intensity is 0.005 to 0.05 times the average signal intensity.

5. The silicon carbide wafer according to claim 1 , wherein the silicon carbide wafer is 4 inches or more and comprises 4H silicon carbide.

6. The silicon carbide wafer according to claim 1 , wherein the silicon carbide wafer is a bare wafer prior to forming an epitaxial layer on a surface.

7. A semiconductor device comprising:

the silicon carbide wafer according to claim 1 ;

an epitaxial layer disposed on the one surface of the silicon carbide wafer;

a barrier region facing the silicon carbide wafer with the epitaxial layer interposed therebetween;

a source electrode in contact with the epitaxial layer;

a gate electrode disposed on the barrier region; and

a drain electrode disposed on the other surface of the silicon carbide wafer.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 20, 2025
From: SENIC INC.
To: EIN CRYSTAL CO., LTD.
Reel/Frame 072990/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 11, 2022
From: CHOI, JUNG WOO; PARK, JONG HWI; KIM, JUNG-GYU; SEO, JUNG DOO; KU, KAP-RYEOL
To: SENIC INC.
Reel/Frame 059239/0215 →
Priority Claims (1)
KR 10-2021-0041021 · Mar 30, 2021 · national
Continuity (1)
Related Publication 20220320296A1 · Oct 6, 2022