IP Library Granted Patent US 12,658,382
Granted Patent B2
US 12,658,382 · App. 18/358,220 · Granted Jun 16, 2026

High-voltage arc quenching systems and electrical switching devices comprising the same

Inventors: Tiago Teixeira (Evora, PT); Hugo Fontes (Berlin, DE); Ralf Gollee (Berlin, DE)
Assignees: TE Connectivity Germany GmbH; Tyco Electronics Componentes Electromecanicos Lda
H01H9/443H01H50/54
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 12,658,382
App. No.
18/358,220
Granted
Jun 16, 2026
Kind
B2
Abstract

An arc quenching system includes an arc-extinguishing unit and an arc-blowing magnetic unit. The arc-extinguishing unit extinguishing an arc discharge produced upon a switching operation of a contact pair from a closed state to an open state. The contact pair having a static contact and a movable contact which is movable relative to the static contact between the closed state and the open state in which the movable contact is spaced apart from the static contact by a gap. The arc-blowing magnetic unit creates a magnetic field having a plurality of magnetic field lines that cross a gap region of the contact pair along a predetermined magnetic field direction. The arc-blowing magnetic unit creates the magnetic field lines with an orientation based on an electrical polarity of the static contact and a positioning of the arc-extinguishing unit to magnetically blow the arc discharge toward the arc-extinguishing unit.

Claims (28)

1 . An arc quenching system, comprising:

an arc-extinguishing unit extinguishing an arc discharge produced upon a switching operation of a contact pair from a closed state to an open state, the contact pair having a static contact and a movable contact which is movable relative to the static contact between the closed state in which the movable contact touches the static contact and the open state in which the movable contact is spaced apart from the static contact by a gap in a direction of relative movement between the movable contact and the static contact; and

an arc-blowing magnetic unit creating a magnetic field having a plurality of magnetic field lines that cross a gap region of the contact pair along a predetermined magnetic field direction, the arc-blowing magnetic unit creates the magnetic field lines with an orientation that is predetermined based on an electrical polarity of the static contact and a positioning of the arc-extinguishing unit to magnetically blow the arc discharge produced at the gap region toward the arc-extinguishing unit, the arc-blowing magnetic unit has a first permanent magnet and a second permanent magnet disposed with front sides facing each other such that a plurality of magnetic flux lines within the gap region of the contact pair flows from the front side of the first permanent magnet towards the front side of the second permanent magnet along the predetermined magnetic field direction.

2 . The arc quenching system according to claim 1 , wherein the contact pair includes a first contact pair and a second contact pair disposed adjacent to each other along a longitudinal direction that is transverse to the direction of relative movement, the arc-blowing magnetic unit creates the magnetic field having the magnetic field lines along the predetermined magnetic field direction and that cross the gap region of each of the first contact pair and the second contact pair.

3 . The arc quenching system according to claim 2 , wherein the arc-blowing magnetic unit is arranged with respect to the first contact pair and the second contact pair such that the predetermined magnetic field direction is parallel to the longitudinal direction.

4 . The arc quenching system according to claim 2 , wherein the arc-extinguishing unit includes a first arc-extinguishing unit facing the first contact pair and a second arc-extinguishing unit facing the second contact pair, the first arc-extinguishing is positioned on a side of a symmetry plane which crosses the first contact pair and the second contact pair along the direction of relative movement and parallel to the longitudinal direction.

5 . The arc quenching system according to claim 4 , wherein the static contacts of the first contact pair and the second contact pair have opposite polarities, and the second arc-extinguishing unit associated with the second contact pair is positioned on the side of the symmetry plane that is opposed to the side where the first arc-extinguishing unit associated with the first contact pair is positioned.

6 . The arc quenching system according to claim 2 , wherein the arc-blowing magnetic unit includes a first arc-blowing magnetic unit creating a first magnetic field having a plurality of first magnetic field lines along a first predetermined magnetic field direction within the gap region of the first contact pair, and a second arc-blowing magnetic unit creating a second magnetic field having a plurality of second magnetic field lines along a second predetermined magnetic field direction within the gap region of the second contact pair.

7 . The arc quenching system according to claim 6 , wherein the second arc-blowing magnetic unit is separate from the first arc-blowing magnetic unit.

8 . The arc quenching system according to claim 6 , wherein the arc-extinguishing unit includes a first arc-extinguishing unit facing the first contact pair and a second arc-extinguishing unit facing the second contact pair, the first arc-extinguishing is positioned on a side of a symmetry plane between the first contact pair and the second contact pair along the direction of relative movement and transverse to the longitudinal direction.

9 . The arc quenching system according to claim 1 , wherein the arc-extinguishing unit has a plurality of splitting blades arranged in parallel to each other and splitting a voltage of the arc discharge across the arc-extinguishing unit.

10 . The arc quenching system according to claim 9 , wherein the splitting blades are a plurality of plates with a L-shape and arranged so as to be oriented with a shorter leg of the L-shape projecting towards the gap region of the contact pair, the splitting blades are transverse to the direction of relative movement.

11 . The arc quenching system according to claim 9 , wherein:

the arc-extinguishing unit has an electrical contact element making a direct electrical connection between one of the splitting blades and a terminal of a switching device onto which the static contact is mounted; and/or

the arc-extinguishing unit is positioned facing the gap region of the contact pair.

12 . The arc quenching system according to claim 1 , wherein the arc-blowing magnetic unit has a magnetic flux frame onto which the first permanent magnet and the second permanent magnet are mounted, the magnetic flux frame providing a magnetic flux path for the magnetic field lines which flow from a back side of the second permanent magnet into a back side of the first permanent magnet.

13 . The arc quenching system according to claim 12 , wherein the magnetic flux frame is a plate with a U-shape defined by a central plate and a pair of extended arms that extend from a left side and a right side of the central plate, the central plate mounts the magnetic flux frame to a chassis of a switching device.

14 . The arc quenching system according to claim 13 , wherein the first permanent magnet and the second permanent magnet are respectively arranged on the extended arms of the magnetic flux frame and at a distance from the central plate that positions the first permanent magnet and the second permanent magnet in alignment with the gap region of the contact pair when the magnetic flux frame is mounted to the chassis of the switching device.

15 . The arc quenching system according to claim 1 , wherein a magnetic polarization of the first permanent magnet and the second permanent magnet are selected such that the magnetic field lines are oriented from the first permanent magnet towards the second permanent magnet within the gap region of the contact pair and according to an orientation set for the electrical polarity of the static contact.

16 . An electrical switching device, comprising:

a first contact pair and a second contact pair disposed adjacent to each other along a longitudinal direction of the electrical switching device, each of the first contact pair and the second contact pair has a static contact and a movable contact that is movable relative to the static contact between a closed state in which the movable contact touches the static contact and an open state in which the movable contact is spaced apart from the static contact by a gap in a direction of relative movement between the movable contact and the static contact; and

an arc quenching system including an arc-extinguishing unit and an arc-blowing magnetic unit, the arc-extinguishing unit extinguishing an arc discharge produced upon a switching operation of the first contact pair or the second contact pair from the closed state to the open state, the arc-blowing magnetic unit creating a magnetic field having a plurality of magnetic field lines that cross a gap region of the first contact pair or a gap region of the second contact pair along a predetermined magnetic field direction, the arc-blowing magnetic unit creates the magnetic field lines with an orientation that is predetermined based on an electrical polarity of the static contact of the first contact pair or the second contact pair and a positioning of the arc-extinguishing unit to magnetically blow the arc discharge produced at the gap region toward the arc-extinguishing unit, the arc-blowing magnetic unit has a first permanent magnet and a second permanent magnet disposed with front sides facing each other such that a plurality of magnetic flux lines within the gap region of the first contact pair or the second contact pair flows from the front side of the first permanent magnet towards the front side of the second permanent magnet along the predetermined magnetic field direction, the arc quenching system is arranged in alignment with the first contact pair and the second contact pair such that the arc-blowing magnetic unit creates the magnetic field having the magnetic field lines that cross the gap region of each contact pair along the predetermined magnetic field direction, the arc-extinguishing unit is positioned facing one of the contact pairs.

17 . The electrical switching device according to claim 16 , further comprising a first terminal and a second terminal respectively connected to the static contacts of the first contact pair and the second contact pair, the first terminal and the second terminal electrically connect the electrical switching device to a plurality of external electrical potentials or a load circuit according to a polarity of operation of the electrical switching device.

18 . The electrical switching device of claim 16 , wherein the electrical switching device is a contactor or a high-voltage relay.

19 . The electrical switching device of claim 16 , wherein the electrical switching device and the arc quenching system have no guiding runners for directly guiding the arc discharge across the first contact pair and the second contacts pair toward the arc-extinguishing unit.

20 . An arc quenching system, comprising:

an arc-extinguishing unit extinguishing an arc discharge produced upon a switching operation of a contact pair from a closed state to an open state, the contact pair having a static contact and a movable contact which is movable relative to the static contact between the closed state in which the movable contact touches the static contact and the open state in which the movable contact is spaced apart from the static contact by a gap in a direction of relative movement between the movable contact and the static contact, the arc-extinguishing unit has a plurality of splitting blades and an electrical contact element making a direct electrical connection between one of the splitting blades and a terminal of a switching device onto which the static contact is mounted; and

an arc-blowing magnetic unit creating a magnetic field having a plurality of magnetic field lines that cross a gap region of the contact pair along a predetermined magnetic field direction, the arc-blowing magnetic unit creates the magnetic field lines with an orientation that is predetermined based on an electrical polarity of the static contact and a positioning of the arc-extinguishing unit to magnetically blow the arc discharge produced at the gap region toward the arc-extinguishing unit.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 13, 2026
From: TE CONNECTIVITY GERMANY GMBH
To: TE CONNECTIVITY SOLUTIONS GMBH
Reel/Frame 074649/0939 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 10, 2023
From: FONTES, HUGO
To: TE CONNECTIVITY GERMANY GMBH
Reel/Frame 064545/0188 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 26, 2023
From: GOLLEE, RALF
To: TE CONNECTIVITY GERMANY GMBH
Reel/Frame 064392/0090 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 26, 2023
From: TEIXEIRA, TIAGO
To: TYCO ELECTRONICS COMPONENTES ELECTROMECANICOS LDA
Reel/Frame 064396/0083 →
Priority Claims (1)
EP 22398016 · Jul 25, 2022 · regional
Continuity (1)
Related Publication 20240029968A1 · Jan 25, 2024
References Cited (30)
US 2575060A · Matthias · 1951 [cited by examiner]
US 5694098A · Mody · 1997 [cited by examiner]
US 7679020B2 · Schulz · 2010 [cited by examiner]
US 9214305B2 · Lang · 2015 [cited by examiner]
US 10068731B2 · Zhong · 2018 [cited by examiner]
US 10176945B2 · Domejean · 2019 [cited by examiner]
US 20130284702A1 · Hamada · 2013 [cited by examiner]
US 20130335177A1 · Enomoto · 2013 [cited by applicant]
US 20150054605A1 · Kubono et al. · 2015 [cited by applicant]
US 20190131047A1 · Priest · 2019 [cited by examiner]
US 20200111624A1 · Kralik · 2020 [cited by applicant]
US 20200126741A1 · Lee · 2020 [cited by examiner]
CN 203398028 · 2014 [cited by examiner]
CN 105118729B · 2015 [cited by applicant]
CN 106548912B · 2017 [cited by applicant]
CN 108962681A · 2018 [cited by applicant]
CN 112885640A · 2021 [cited by applicant]
CN 113539745A · 2021 [cited by applicant]
CN 113782391A · 2021 [cited by applicant]
JP S6417338A · 1989 [cited by applicant]
JP 2012104364A · 2012 [cited by applicant]
WO 2021112343A1 · 2021 [cited by applicant]
WO 2022057606A1 · 2022 [cited by applicant]
Translation of CN203398028 (Original document published Jan. 15, 2014) (Year: 2014). [cited by examiner]
Translation of CN113539745(Original document published Oct. 22, 2021) (Year: 2021). [cited by examiner]
Search Report from the European Patent Office dated Dec. 21, 2022, corresponding to Application No. 22398016.0-1201, 16 pages. [cited by applicant]
Extended European Search Report from the European Patent Office dated Mar. 21, 2022, corresponding to Application No. 22398016.0-1201, 13 pages. [cited by applicant]
Japanese Office Action dated Jul. 23, 2024 with English translation, corresponding to Application No. 2023-117921, 9 pages. [cited by applicant]
Korean Office Action dated Oct. 24, 2024 with English translation, corresponding to Application No. 10-2023-0095215, 15 pages. [cited by applicant]
Indian Examination Report dated Jan. 29, 2026, corresponding to Application No. 202344048778, 7 pages. [cited by applicant]