IP Library Granted Patent US 9,105,757
Granted Patent B2
US 9,105,757 · App. 14/040,670 · Granted Aug 11, 2015

Junction barrier Schottky diode and manufacturing method thereof

Inventors: Chih-Fang Huang (Hsinchu, TW); Tsung-Yi Huang (Hsinchu, TW); Chien-Wei Chiu (Yunlin, TW); Tsung-Yu Yang (Kaohsiung, TW); Ting-Fu Chang (Taipei, TW); Tsung-Chieh Hsiao (Changhua, TW); Ya-Hsien Liu (Hsinchu, TW); Po-Chin Peng (Zhubei, TW)
Assignee: Richtek Technology Corporation, R.O.C.
H01L29/872H01L29/0619H01L29/66212H01L29/0657H01L29/2003H01L29/205
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 9,105,757
App. No.
14/040,670
Granted
Aug 11, 2015
Kind
B2
Abstract

The present invention discloses a junction barrier Schottky (JBS) diode and a manufacturing method thereof. The JBS diode includes: an N-type gallium nitride (GaN) substrate; an aluminum gallium nitride (AlGaN) barrier layer, which is formed on the N-type GaN substrate; a P-type gallium nitride (GaN) layer, which is formed on or above the N-type GaN substrate; an anode conductive layer, which is formed at least partially on the AlGaN barrier layer, wherein a Schottky contact is formed between part of the anode conductive layer and the AlGaN barrier layer; and a cathode conductive layer, which is formed on the N-type GaN substrate, wherein an ohmic contact is formed between the cathode conductive layer and the N-type GaN substrate, and the cathode conductive layer is not directly connected to the anode conductive layer.

Claims (30)

1. A junction barrier Schottky (JBS) diode comprising:

an N-type gallium nitride (GaN) substrate;

an aluminum gallium nitride (AlGaN) barrier layer, which is formed on the N-type GaN substrate;

a P-type gallium nitride (GaN) layer, which is formed on the AlGaN barrier layer or on the N-type GaN substrate;

an anode conductive layer, which is formed at least partially on the AlGaN barrier layer, wherein a Schottky contact is formed between part of the anode conductive layer and the AlGaN barrier layer; and

a cathode conductive layer, which is formed on the N-type GaN substrate, wherein an ohmic contact is formed between the cathode conductive layer and the N-type GaN substrate, and the cathode conductive layer is not directly connected to the anode conductive layer;

wherein the P-type GaN layer is formed on the AlGaN barrier layer, and the P-type GaN layer and the N-type GaN substrate are separated by the AlGaN barrier layer;

wherein a Schottky diode is formed by the anode conductive layer, the AlGaN barrier layer, the N-type GaN substrate, and the cathode conductive layer; wherein a PIN diode is formed by the P-type GaN layer, the AlGaN barrier layer, and the N-type GaN substrate; wherein the Schottky diode and the PIN diode are connected in parallel.

2. A junction barrier Schottky (JBS) diode comprising:

an N-type gallium nitride (GaN) substrate;

an aluminum gallium nitride (AlGaN) barrier layer, which is formed on the N-type GaN substrate;

a P-type gallium nitride (GaN) layer, which is formed on the AlGaN barrier layer or on the N-type GaN substrate;

an anode conductive layer, which is formed at least partially on the AlGaN barrier layer, wherein a Schottky contact is formed between part of the anode conductive layer and the AlGaN barrier layer; and

a cathode conductive layer, which is formed on the N-type GaN substrate, wherein an ohmic contact is formed between the cathode conductive layer and the N-type GaN substrate, and the cathode conductive layer is not directly connected to the anode conductive layer;

wherein a Schottky diode is formed by the anode conductive layer, the AlGaN barrier layer, the N-type GaN substrate, and the cathode conductive layer; wherein the P-type GaN layer is formed on the N-type GaN substrate, and a PIN diode is formed by the P-type GaN layer and the N-type GaN substrate; wherein the Schottky diode and the PIN diode are connected in parallel.

3. A manufacturing method of a junction barrier Schottky (JBS) diode comprising:

providing an N-type gallium nitride (GaN) substrate;

forming an aluminum gallium nitride (AlGaN) barrier layer on the N-type GaN substrate;

forming a P-type gallium nitride (GaN) layer on or above the N-type GaN substrate;

forming a cathode conductive layer on the N-type GaN substrate, wherein an ohmic contact is formed between the cathode conductive layer and the N-type GaN substrate;

forming an anode conductive layer at least partially on the AlGaN barrier layer, wherein a Schottky contact is formed between part of the anode conductive layer and the AlGaN barrier layer, and the cathode conductive layer is not directly connected to the anode conductive layer;

wherein the P-type GaN layer and the N-type GaN substrate are separated by the AlGaN barrier layer; wherein the P-type GaN layer and the N-type GaN substrate are separated by the AlGaN barrier layer;

wherein a Schottky diode is formed by the anode conductive layer, the AlGaN barrier layer, the N-type GaN substrate, and the cathode conductive layer; wherein a PIN diode is formed by the P-type GaN layer, the AlGaN barrier layer, and the N-type GaN substrate; wherein the Schottky diode and the PIN diode are connected in parallel.

4. A manufacturing method of a junction barrier Schottky (JBS) diode comprising:

providing an N-type gallium nitride (GaN) substrate;

forming an aluminum gallium nitride (AlGaN) barrier layer on the N-type GaN substrate;

forming a P-type gallium nitride (GaN) layer on or above the N-type GaN substrate;

forming a cathode conductive layer on the N-type GaN substrate, wherein an ohmic contact is formed between the cathode conductive layer and the N-type GaN substrate;

forming an anode conductive layer at least partially on the AlGaN barrier layer, wherein a Schottky contact is formed between part of the anode conductive layer and the AlGaN barrier layer, and the cathode conductive layer is not directly connected to the anode conductive layer;

wherein a Schottky diode is formed by the anode conductive layer, the AlGaN barrier layer, the N-type GaN substrate, and the cathode conductive layer; wherein the P-type GaN layer is formed on the N-type GaN substrate, and a PIN diode is formed by the P-type GaN layer and the N-type GaN substrate; wherein the Schottky diode and the PIN diode are connected in parallel.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 28, 2013
From: HUANG, CHIH-FANG; HUANG, TSUNG-YI; CHIU, CHIEN-WEI; YANG, TSUNG-YU; CHANG, TING-FU; HSIAO, TSUNG-CHIEH; LIU, YA-HSIEN; PENG, PO-CHIN
To: RICHTEK TECHNOLOGY CORPORATION, R.O.C.
Reel/Frame 031304/0092 →
Priority Claims (1)
TW 102125659 A · Jul 18, 2013 · national
Continuity (1)
Related Publication 20150021615A1 · Jan 22, 2015