IP Library Granted Patent US 8,508,326
Granted Patent B2
US 8,508,326 · App. 13/379,780 · Granted Aug 13, 2013

Surge protection device using metal oxide varistors (MOVs) as the active energy control multiple gap discharging chain

Inventors: Guo Yao Kang (ShenZen, CN); Hui Ping Guo (ShenZen, CN); Bing Yu Shi (ShenZen, CN); Wen Hu Shi (ShenZen, CN); Rong Huang (ShenZen, CN); Ya Ping Guo (ShenZen, CN)
Assignee: Shenzhen Dowin Lighting Technologies Co., Ltd.
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Quick Facts
Patent No.
US 8,508,326
App. No.
13/379,780
Granted
Aug 13, 2013
Kind
B2
Abstract

The present invention may provide a surge protection device, which may include a reference node, first, second, and third nodes, a first arcing section (GAP) coupled between the first and second nodes, and configured to receive a surge voltage from the first node, a first metal oxide varistor (MOV) coupled between the second and reference nodes, and configured to reduce the surge voltage to a first sub-surge voltage at the second node, a second arcing section (GAP) coupled between the second and third nodes, and configured to receive the first sub-surge voltage from the second node, and a second metal oxide varistor (MOV) coupled between the third and reference nodes, and configured to reduce the first sub-surge voltage to a second sub-surge voltage at the third node.

Claims (30)

1. A surge protection device, comprising:

a reference node;

first, second, and third nodes;

a first arcing section coupled between the first node and the second node, and configured to receive a surge voltage from the first node;

a first metal oxide varistor coupled between the second node and the reference node, and configured to reduce the surge voltage to a first sub-surge voltage at the second node;

a second arcing section coupled between the second node and the third node, and configured to receive the first sub-surge voltage from the second node; and

a second metal oxide varistor coupled between the third node and the reference node, and configured to reduce the first sub-surge voltage to a second sub-surge voltage at the third node.

2. The surge protection device of claim 1 wherein the first arcing section has a gap of between about 0.15 millimeters (mm) to about 1 mm.

3. The surge protection device of claim 2 wherein the second arcing section has a gap of between about 0.15 mm to about 1 mm.

4. The surge protection device of claim 1 wherein the first metal oxide varistor has a turn-on voltage of between about 300V to about 1,500V.

5. The surge protection device of claim 4 wherein the second metal oxide varistor has a turn-on voltage of between about 300V to about 1,500V.

6. The surge protection device of claim 1 wherein the first arcing section and the second arcing section are arranged in a series circuit configuration.

7. The surge protection device of claim 1 wherein the first metal oxide varistor and the second metal oxide varistor are arranged in a parallel circuit configuration.

8. The surge protection device of claim 1 wherein the first metal oxide varistor has a non-linear voltage-current characteristic.

9. The surge protection device of claim 1 wherein the second metal oxide varistor has a non-linear voltage-current characteristic.

10. The surge protection device of claim 1 wherein the first and second arcing sections form a discharge path for discharging the surge voltage and the first and second metal oxide varistors are used to reduce the frequency or magnitude of the surge voltage while the surge voltage is being discharged via the first and second arcing sections.

11. A surge protection device that reduces oscillation and allows for better peak current surge control, the surge protection device comprising:

an output node;

first, second, and third nodes;

a first arcing section coupled between the first node and the second node, and configured to receive a surge voltage from the first node;

a first metal oxide varistor coupled between the second node and the output node, and configured to reduce the surge voltage to a first sub-surge voltage at the second node;

a second arcing section coupled between the second node and the third node, and configured to receive the first sub-surge voltage from the second node; and

a second metal oxide varistor coupled between the third node and the output node, and configured to reduce the first sub-surge voltage to a second sub-surge voltage at the third node,

wherein the first and second arcing sections form a discharge path for discharging the surge voltage and the first and second metal oxide varistors are used to reduce the frequency or magnitude of the surge voltage while the surge voltage is being discharged via the first and second arcing sections.

12. The surge protection device of claim 11 wherein the first arcing section has a gap of between about 0.15 millimeters (mm) to about 1 mm.

13. The surge protection device of claim 12 wherein the second arcing section has a gap of between about 0.15 mm to about 1 mm.

14. The surge protection device of claim 11 wherein the first metal oxide varistor has a turn-on voltage of between about 300V to about 1,500V.

15. The surge protection device of claim 14 wherein the second metal oxide varistor has a turn-on voltage of between about 300V to about 1,500V.

16. The surge protection device of claim 11 wherein the first arcing section and the second arcing section are arranged in a series circuit configuration.

17. The surge protection device of claim 11 wherein the first metal oxide varistor and the second metal oxide varistor are arranged in a parallel circuit configuration.

Assignments (2)
CORRECTIVE ASSIGNMENT TO CORRECT THE NAME OF THE RECEIVING PARTY DATA TO READ, SHENZHEN DOWIN LIGHTNING PROTECTION TECHNOLOGIES CO., LTD. PREVIOUSLY RECORDED ON REEL 027488 FRAME 0394. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Aug 30, 2012
From: KANG, GUO YAO; GUO, HUI PING; SHI, BING YU; SHI, WEN HU; HUANG, RONG; GUO, YA PING
To: SHENZHEN DOWIN LIGHTNING PROTECTION TECHNOLOGIES CO., LTD.
Reel/Frame 028885/0154 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 5, 2012
From: KANG, GUO YAO; GUO, HUI PING; SHI, BING YU; SHI, WEN HU; HUANG, RONG; GUO, YA PING
To: SHENZHEN DOWIN LIGHTNING TECHNOLOGY, CO., LTD.
Reel/Frame 027488/0394 →
Continuity (2)
Provisional Application 61411041 · Nov 8, 2010
Related Publication 20120112872A1 · May 10, 2012