IP Library Granted Patent US 12,362,542
Granted Patent B2
US 12,362,542 · App. 18/650,676 · Granted Jul 15, 2025

Spark gap assembly for overvoltage protection and surge arrester

Inventors: Stephen Franklin Poterala (Aiken, SC); Bastiaan Hubertus van Besouw (Strongsville, OH); Sidharth Suresh Iyer (Wadsworth, OH)
Assignee: Hubbell Incorporated
H01T1/16H02H9/06
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Quick Facts
Patent No.
US 12,362,542
App. No.
18/650,676
Granted
Jul 15, 2025
Kind
B2
Abstract

A spark gap assembly that includes a first spark gap segment and a second spark gap segment electrically connected in series with the first spark gap segment. The first spark gap includes a first spark gap and a first grading circuit electrically connected in parallel with the first spark gap. The second spark gap segment includes a second spark gap and a second grading circuit electrically connected in parallel with the second spark gap.

Claims (25)

1. A spark gap assembly comprising:

a plurality of spark gap segments, each of the plurality of spark gap segments including a spark gap and a grading circuit connected in parallel with the spark gap, wherein the spark gap assembly includes an initial sparkover voltage greater than one or more subsequent sparkover voltages during a surge event,

wherein each of the initial sparkover voltage and the one or more subsequent sparkover voltages are greater during a surge event at a normal operating frequency than corresponding ones of the initial sparkover voltage and the one or more subsequent sparkover voltages during a surge event at a high frequency.

2. The spark gap assembly of claim 1 , wherein the plurality of spark gap segments is electrically connected in series with a metal oxide varistor (MOV).

3. The spark gap assembly of claim 1 , wherein the grading circuit includes one selected from a group consisting of a resistor, a capacitor, and an inductor.

4. The spark gap assembly of claim 1 , wherein the normal operating frequency is 60 Hz.

5. The spark gap assembly of claim 1 , wherein a ratio of a voltage across a spark gap segment to a sparkover voltage of the spark gap segment is substantially identical for the plurality of spark gap segments.

6. An arrester comprising:

a spark gap assembly including

a plurality of spark gap segments, each of the plurality of spark gap segments including a spark gap and a grading circuit connected in parallel with the spark gap, wherein the spark gap assembly includes an initial sparkover voltage greater than one or more subsequent sparkover voltages during a surge event,

wherein each of the initial sparkover voltage and the one or more subsequent sparkover voltages are greater during a surge event at a normal operating frequency than corresponding ones of the initial sparkover voltage and the one or more subsequent sparkover voltages during a surge event at a high frequency.

7. The arrester of claim 6 , further comprising a metal oxide varistor (MOV) electrically connected in series with the spark gap assembly.

8. The arrester of claim 6 , further comprising a surge arrester electrically connected in series with the spark gap assembly.

9. The arrester of claim 6 , wherein the grading circuit includes one selected from a group consisting of a resistor, a capacitor, and an inductor.

10. The arrester of claim 6 , wherein the normal operating frequency is 60 Hz.

11. The arrester of claim 6 , wherein a ratio of a voltage across a spark gap segment to a sparkover voltage of the spark gap segment is substantially identical for the plurality of spark gap segments.

12. An accessory device electrically connected in series with an arrester, the accessory device comprising:

a spark gap assembly including

a plurality of spark gap segments, each of the plurality of spark gap segments including a spark gap and a grading circuit connected in parallel with the spark gap, wherein the spark gap assembly includes an initial sparkover voltage greater than one or more subsequent sparkover voltages during a surge event,

wherein each of the initial sparkover voltage and the one or more subsequent sparkover voltages are greater during a surge event at a normal operating frequency than corresponding ones of the initial sparkover voltage and the one or more subsequent sparkover voltages during a surge event at a high frequency.

13. The accessory device of claim 12 , further comprising a metal oxide varistor (MOV) electrically connected in series with the spark gap assembly.

14. The accessory device of claim 12 , wherein the grading circuit includes one selected from a group consisting of a resistor, a capacitor, and an inductor.

15. The accessory device of claim 12 , wherein the normal operating frequency is 60 Hz.

16. The accessory device of claim 12 , wherein the high frequency is greater than 1 kHz.

17. The accessory device of claim 12 , wherein a ratio of a voltage across a spark gap segment to a sparkover voltage of the spark gap segment is substantially identical for the plurality of spark gap segments.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 31, 2025
From: POTERALA, STEPHEN FRANKLIN; VAN BESOUW, BASTIAAN HUBERTUS; IYER, SIDHARTH SURESH
To: HUBBELL INCORPORATED
Reel/Frame 070677/0070 →
Continuity (3)
Continuation 17554513 · Dec 17, 2021
Provisional Application 63127468 · Dec 18, 2020
Related Publication 20240305067A1 · Sep 12, 2024
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