IP Library Granted Patent US 11,296,497
Granted Patent B2
US 11,296,497 · App. 16/474,280 · Granted Apr 5, 2022

Surge protection circuit and electronic device using the circuit

Inventors: Jinbo Cai (Dongguan, CN); Guoyuan Chen (Dongguan, CN); Shenghui Luo (Dongguan, CN); Ming Li (Dongguan, CN)
Assignee: SHENZHEN BENCENT ELECTRONICS CO., LTD.
H02H9/04H02H9/041
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Quick Facts
Patent No.
US 11,296,497
App. No.
16/474,280
Granted
Apr 5, 2022
Kind
B2
Abstract

Provided is a surge protection circuit, which includes a bidirectional voltage suppressor; and a thyristor surge suppression unit connected in parallel with the bidirectional voltage suppressor. The first end of the bidirectional voltage suppressor is connected to the first end of the thyristor surge suppression unit, and the second end of the bidirectional voltage suppressor is connected to the second end of the thyristor surge suppression unit. The breakover voltage or the breakdown voltage in the direction from the first end to the second end of the thyristor surge suppression unit is greater than the clamping voltage in the direction from the first end to the second end of the bidirectional voltage suppressor. The breakover voltage in the direction from the second end to the first end of the thyristor surge suppression unit is less than the clamping voltage in the direction from the second end to the first end of the bidirectional voltage suppressor.

Claims (28)

1. A surge protection circuit comprising:

a bidirectional voltage suppressor; and

only one forward conductive and reversely non-conductive thyristor surge suppressor connected in parallel with the bidirectional voltage suppressor, wherein a first end of the bidirectional voltage suppressor is connected to a first end of the one forward conductive and reversely non-conductive thyristor surge suppressor, and a second end of the bidirectional voltage suppressor is connected to a second end of the one forward conductive and reversely non-conductive thyristor surge suppressor,

wherein a breakover voltage or a breakdown voltage in a direction from the first end of the one forward conductive and reversely non-conductive thyristor surge suppressor to the second end of the one forward conductive and reversely non-conductive thyristor surge suppressor is greater than a clamping voltage in a direction from the first end of the bidirectional voltage suppressor to the second end of the bidirectional voltage suppressor; and

wherein a breakover voltage in a direction from the second end of the one forward conductive and reversely non-conductive thyristor surge suppressor to the first end of the one forward conductive and reversely non-conductive thyristor surge suppressor is less than a clamping voltage in a direction from the second end of the bidirectional voltage suppressor to the first end of the bidirectional voltage suppressor.

2. The surge protection circuit of claim 1 , wherein the bidirectional voltage suppressor is a bidirectional transient voltage suppressor (TVS), a bidirectional asymmetric TVS, a voltage-dependent resistor, or a bidirectional Zener diode.

3. The surge protection circuit of claim 2 , wherein a clamping voltage in a direction from a first end of the bidirectional asymmetric TVS to a second end of the bidirectional asymmetric TVS is less than a clamping voltage in a direction from the second end of the bidirectional asymmetric TVS to the first end of the bidirectional asymmetric TVS.

4. The surge protection circuit of claim 1 , further comprising a tripping device,

wherein the one forward conductive and reversely non-conductive thyristor surge suppressor is connected in parallel to a branch composed of both the tripping device and the bidirectional voltage suppressor which are connected in series, or the bidirectional voltage suppressor is connected in parallel to a branch composed of both the tripping device and the one forward conductive and reversely non-conductive thyristor surge suppressor which are connected in series.

5. The surge protection circuit of claim 1 , further comprising two tripping devices, which comprise a first tripping device and a second tripping device,

wherein the first tripping device and the bidirectional voltage suppressor are connected in series to form a first branch, the second tripping device and the one forward conductive and reversely non-conductive thyristor surge suppressor are connected in series to form a second branch, and the first branch is connected in parallel with the second branch.

6. The surge protection circuit of claim 1 , further comprising a unidirectional diode, wherein the one forward conductive and reversely non-conductive thyristor surge suppressor is connected in parallel to a branch composed of both the unidirectional diode and the bidirectional voltage suppressor which are connected in series,

wherein an anode of the unidirectional diode is connected to the first end of the one forward conductive and reversely non-conductive thyristor surge suppressor, or a cathode of the unidirectional diode is connected to the second end of the one forward conductive and reversely non-conductive thyristor surge suppressor.

7. An electronic device, comprising:

a main circuit comprising an input end; and

a surge protection circuit, wherein the surge protection circuit comprises a bidirectional voltage suppressor; and only one forward conductive and reversely non-conductive thyristor surge suppressor connected in parallel with the bidirectional voltage suppressor,

wherein a first end of the bidirectional voltage suppressor is connected to a first end of the one forward conductive and reversely non-conductive thyristor surge suppressor, and a second end of the bidirectional voltage suppressor is connected to a second end of the one forward conductive and reversely non-conductive thyristor surge suppressor,

wherein a breakover voltage or a breakdown voltage in a direction from the first end of the one forward conductive and reversely non-conductive thyristor surge suppressor to the second end of the one forward conductive and reversely non-conductive thyristor surge suppressor is greater than a clamping voltage in a direction from the first end of the bidirectional voltage suppressor to the second end of the bidirectional voltage suppressor,

wherein a breakover voltage in a direction from the second end of the one forward conductive and reversely non-conductive thyristor surge suppressor to the first end of the one forward conductive and reversely non-conductive thyristor surge suppressor is less than a clamping voltage in a direction from the second end of the bidirectional voltage suppressor to the first end of the bidirectional voltage suppressor, and

wherein the surge protection circuit is connected in parallel with the main circuit and connected to the input end of the main circuit.

8. The electronic device of claim 7 , wherein the bidirectional voltage suppressor is a bidirectional transient voltage suppressor (TVS), a bidirectional asymmetric TVS, a voltage-dependent resistor, or a bidirectional Zener diode.

9. The electronic device of claim 8 , wherein a clamping voltage in a direction from a first end of the bidirectional asymmetric TVS to a second end of the bidirectional asymmetric TVS is less than a clamping voltage in a direction from the second end of the bidirectional asymmetric TVS to the first end of the bidirectional asymmetric TVS.

10. The electronic device of claim 7 , wherein the surge protection circuit further comprises a tripping device,

wherein the one forward conductive and reversely non-conductive thyristor surge suppressor is connected in parallel to a branch composed of both the tripping device and the bidirectional voltage suppressor which are connected in series, or the bidirectional voltage suppressor is connected in parallel to a branch composed of both the tripping device and the one forward conductive and reversely non-conductive thyristor surge suppressor which are connected in series.

11. The electronic device of claim 7 , wherein the surge protection circuit further comprises two tripping devices, which comprise a first tripping device and a second tripping device,

wherein the first tripping device and the bidirectional voltage suppressor are connected in series to form a first branch, the second tripping device and the one forward conductive and reversely non-conductive thyristor surge suppressor are connected in series to form a second branch, and the first branch is connected in parallel with the second branch.

12. The electronic device of claim 7 , wherein the surge protection circuit further comprises a unidirectional diode, wherein the one forward conductive and reversely non-conductive thyristor surge suppressor is connected in parallel to a branch composed of both the unidirectional diode and the bidirectional voltage suppressor which are connected in series,

wherein an anode of the unidirectional diode is connected to the first end of the one forward conductive and reversely non-conductive thyristor surge suppressor, or a cathode of the unidirectional diode is connected to the second end of the one forward conductive and reversely non-conductive thyristor surge suppressor.

Assignments (2)
CORRECTIVE ASSIGNMENT TO CORRECT THE SECOND CONVEYING PARTY NAME ALSO RECEIVING PARTY ADDRESS PREVIOUSLY RECORDED AT REEL: 49615 FRAME: 806. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Jul 18, 2019
From: CAI, JINBO; CHEN, GUOYUAN; LUO, SHENGHUI; LI, MING
To: SHENZHEN BENCENT ELECTRONICS CO., LTD.
Reel/Frame 049790/0404 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 27, 2019
From: CAI, JINBO; CHEN, GYOYAN; LUO, SHENGHUI; LI, MING
To: SHENZHEN BENCENT ELECTRONICS CO., LTD.
Reel/Frame 049615/0806 →
Priority Claims (1)
CN 201611237528.6 · Dec 28, 2016 · national
Continuity (1)
Related Publication 20190341771A1 · Nov 7, 2019
Cited By (2)
US 12,199,423 US 12,356,540