IP Library Granted Patent US 10,833,064
Granted Patent B2
US 10,833,064 · App. 15/934,079 · Granted Nov 10, 2020

ESD protection circuit and integrated circuit for broadband circuit

Inventors: Chun-Yu Lin (Hsinchu, TW); Yu-Hsuan Lai (Taipei, TW)
Assignee: National Taiwan Normal University
H01L27/0262H01L27/0255H01L27/0288H01L29/7412
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 10,833,064
App. No.
15/934,079
Granted
Nov 10, 2020
Kind
B2
Abstract

An ESD protection circuit and integrated circuit for a broadband circuit are disclosed. The ESD protection circuit includes a silicon-controlled rectifier, an inductor and a trigger unit. The silicon-controlled rectifier is formed by four semiconductor materials and includes a first end, a second end and a third end. The first end is coupled with a first P-type semiconductor material and a signal input end. The second end is coupled with a second N-type semiconductor material. The third end is coupled with a second P-type semiconductor material. One end of the inductor is coupled with the signal input end and the first end, and the other end thereof is coupled with a signal output end and a high-frequency circuit. One end of the trigger unit is coupled with the signal output end and the high-frequency circuit, and the other end thereof is coupled with the third end.

Claims (61)

1. An integrated circuit for a broadband circuit, comprising:

a high-frequency circuit; and

an ESD protection circuit comprises a signal input end and a signal output end, wherein the high-frequency circuit is electrically coupled with the signal output end, the ESD protection circuit further comprises a silicon-controlled rectifier, an inductor and a trigger unit, the silicon-controlled rectifier is formed by a first P-type semiconductor material, a first N-type semiconductor material, a second P-type semiconductor material, and a second N-type semiconductor material, which are connected sequentially, the silicon-controlled rectifier comprises a first end, a second end and a third end, the first end is electrically coupled with the first P-type semiconductor material and the signal input end, the second end is electrically coupled with the second N-type semiconductor material, the third end is electrically coupled with the second P-type semiconductor material, one end of the inductor is electrically coupled with the signal input end and the first end, the other end of the inductor is electrically coupled with the signal output end and the high-frequency circuit, one end of the trigger unit is electrically coupled with the signal output end and the high-frequency circuit and the other end of the inductor, and the other end of the trigger unit is electrically coupled with the third end of the silicon-controlled rectifier,

wherein the ESD protection circuit has a resonance frequency, the high-frequency circuit has an operation frequency, the operation frequency includes an operation frequency range, and the resonance frequency is located within the operation frequency range,

wherein an inductance value L of the inductor satisfies an equation as follow:

L

=

2

Z

0

C

1

+

2

π

·

f

0

Z

0

C

2

wherein, f 0 is the resonance frequency, Z 0 is a matching impedance of the high-frequency circuit, C 1 is a parasitic capacitance value between the first P-type semiconductor material and the second P-type semiconductor material, C 3 is a parasitic capacitance value of the trigger unit, and C=C 1 =C 3 .

2. The integrated circuit according to claim 1 , wherein an equivalent circuit of the silicon-controlled rectifier comprises two transistors, and one electrode of one of the transistors is electrically coupled with a voltage source.

3. The integrated circuit according to claim 1 , wherein the trigger unit comprises a plurality of diodes connected in series, a plurality of Zener diodes connected in series, or a transistor.

4. An ESD protection circuit for a broadband circuit, wherein the ESD protection circuit is cooperated with a high-frequency circuit and comprises a signal input end and a signal output end, and the high-frequency circuit is electrically coupled with the signal output end, the ESD protection circuit comprising:

a silicon-controlled rectifier formed by a first P-type semiconductor material, a first N-type semiconductor material, a second P-type semiconductor material, and a second N-type semiconductor material, which are connected sequentially, wherein the silicon-controlled rectifier comprises a first end, a second end and a third end, the first end is electrically coupled with the first P-type semiconductor material and the signal input end, the second end is electrically coupled with the second N-type semiconductor material, and the third end is electrically coupled with the second P-type semiconductor material;

an inductor, wherein one end of the inductor is electrically coupled with the signal input end and the first end, and the other end of the inductor is electrically coupled with the signal output end and the high-frequency circuit; and

a trigger unit, wherein one end of the trigger unit is electrically coupled with the signal output end and the high-frequency circuit, and the other end of the trigger unit is electrically coupled with the third end of the silicon-controlled rectifier,

wherein an inductance value L of the inductor satisfies an equation as follow:

L

=

2

Z

0

C

1

+

2

π

·

f

0

Z

0

C

2

wherein, f 0 is the resonance frequency, Z 0 is a matching impedance of the high-frequency circuit, C 1 is a parasitic capacitance value between the first P-type semiconductor material and the second P-type semiconductor material, C 3 is a parasitic capacitance value of the trigger unit, and C=C 1 =C 3 .

5. The ESD protection circuit according to claim 4 , wherein the ESD protection circuit has a resonance frequency, the high-frequency circuit has an operation frequency, the operation frequency includes an operation frequency range, and the resonance frequency is located within the operation frequency range.

6. The ESD protection circuit according to claim 4 , wherein an equivalent circuit of the silicon-controlled rectifier comprises two transistors, and one electrode of one of the transistors is electrically coupled with a voltage source.

7. The ESD protection circuit according to claim 4 , wherein the trigger unit comprises a plurality of diodes connected in series, a plurality of Zener diodes connected in series, or a transistor.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 4, 2018
From: LIN, CHUN-YU; LAI, YU-HSUAN
To: NATIONAL TAIWAN NORMAL UNIVERSITY
Reel/Frame 045437/0440 →
Priority Claims (1)
TW 107100554 A · Jan 5, 2018 · national
Continuity (1)
Related Publication 20190214380A1 · Jul 11, 2019