IP Library Granted Patent US 8,169,145
Granted Patent B2
US 8,169,145 · App. 11/997,425 · Granted May 1, 2012

Spark-discharge gap for power system protection device

Assignee: EPCOS AG
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Quick Facts
Patent No.
US 8,169,145
App. No.
11/997,425
Granted
May 1, 2012
Kind
B2
Abstract

A spark gap includes two terminal electrodes enveloping a cavity. The cavity includes an electrical discharge space between the two terminal electrodes. The spark gap also includes an electrical insulator between the two terminal electrodes.

Claims (39)

1. A spark gap, comprising:

a first terminal electrode and a second terminal electrode on opposing sides of a cavity, the cavity including an electrical discharge space between the first terminal electrode and the second terminal electrode;

an electrical insulator between the first terminal electrode and the second terminal electrode;

wherein:

the first terminal electrode and the second terminal electrode include recesses at a side of the cavity; and

the recesses include a plurality of beads that are configured to provide guidance of the first terminal electrode and the second terminal electrode on an inside wall of the insulator.

2. The spark gap of claim 1 , further comprising connecting bolts electrically connected to the first terminal electrode and the second terminal electrode.

3. A spark gap, comprising:

a first terminal electrode and a second terminal electrode on opposing sides of a cavity, the cavity including an electrical discharge space between the first terminal electrode and the second terminal electrode;

an electrical insulator between the first terminal electrode and the second terminal electrode, wherein the first terminal electrode and the second terminal electrode include recesses at a side of the cavity, and the recesses include a plurality of beads that are configured to provide guidance of the first terminal electrode and the second terminal electrode on an inside wall of the insulator;

a first reinforcement electrode separate from the first terminal electrode and the second terminal electrode, the first reinforcement electrode having a recess, and the first reinforcement electrode being firmly and electrically being connected to the first terminal electrode; and

a second reinforcement electrode separate from the first terminal electrode and the second terminal electrode, the second reinforcement electrode having a recess, and the second reinforcement electrode being firmly and electrically connected to the second terminal electrode.

4. The spark gap of claim 3 , wherein the electrical insulator is cylindrical and the terminal electrodes are on each side of the electrical insulator.

5. The spark gap of claim 3 , further comprising:

a tubular electrode inside the cavity; and

a rod electrode at least partially inside the tubular electrode;

wherein:

the rod electrode is connected to a first terminal electrode of the two terminal electrodes and

the tubular electrode is connected to a second terminal electrode of the two terminal electrodes.

6. The spark gap of claim 3 , further comprising an ignition aid on an inside surface of the electrical insulator.

7. The spark gap of claim 3 , wherein the cavity is hermetically sealed.

8. The spark gap of claim 7 , wherein the terminal electrodes are configured to seal the insulator so that the insulator is gasproof.

9. The spark gap of claim 3 , further comprising a gas included in the cavity.

10. The spark gap of claim 9 , wherein the gas comprises at least one of the following components: between 35% and 95% argon, between 5% and 15% hydrogen, and between 0% and 40% neon.

11. The spark gap of claim 5 , wherein the tubular electrode is separated from the electrical insulator.

12. The spark gap of claim 5 , wherein an end of the rod electrode and one or more ends of the tubular electrodes inside the cavity are beveled.

13. The spark gap of claim 5 , further comprising an activation composition on one or more of the rod electrode and the tubular electrode.

14. A spark gap, comprising:

a first terminal electrode and a second terminal electrode on opposing sides of a cavity, the cavity including an electrical discharge space between the two terminal electrodes;

an electrical insulator between the first and second terminal electrodes;

a first reinforcement electrode separate from the first terminal electrode and firmly connected to the first terminal electrode by welding or soldering on a surface of the first terminal electrode facing away from the cavity; and a second reinforcement electrode separate from the second terminal electrode and firmly connected to the second terminal electrode by welding or soldering on a surface of the second terminal electrode facing away from the cavity.

15. The spark gap of claim 1 , further comprising:

a tubular electrode inside the cavity; and

a rod electrode at least partially inside the tubular electrode.

16. The spark gap of claim 15 , wherein the tubular electrode is welded or soldered to a bulge.

17. The spark gap of claim 15 , wherein the rod is connected to one of the first terminal electrode and the second terminal electrode.

18. The spark gap of claim 1 , further comprising:

a tubular electrode inside the cavity; and

a rod electrode at least partially inside the tubular electrode and welded or soldered to a central area of one of the first terminal electrode and the second terminal electrode.

Assignments (2)
CHANGE OF NAME Recorded Oct 26, 2022
From: EPCOS AG
To: TDK ELECTRONICS AG
Reel/Frame 061774/0102 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 24, 2008
From: BOY, JUERGEN; VOLKNER, WINFRIED
To: EPCOS AG
Reel/Frame 020848/0788 →
Priority Claims (1)
DE 10 2005 036 265 · Aug 2, 2005 · national
Continuity (1)
Related Publication 20080218082A1 · Sep 11, 2008