IP Library Granted Patent US 9,224,558
Granted Patent B2
US 9,224,558 · App. 14/105,218 · Granted Dec 29, 2015

Polarity independent switching device for carrying and disconnecting direct current

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Quick Facts
Patent No.
US 9,224,558
App. No.
14/105,218
Granted
Dec 29, 2015
Kind
B2
Abstract

A polarity-independent switching device for carrying and disconnecting high DC currents has a gastight, encapsulated, electrically insulating housing which can be filled with an insulating gas, and at least one pair of contacts disposed in the housing and made up of a fixed contact and a mobile contact. The two contacts are in contact with each other in a switched-on state of the switching device and are not in contact in a switch-off state of the switching device. An arc driver arrangement is included which generates a magnetic field at least in the region of the pair of contacts, as well as a first arc routing arrangement with which an arc produced between the contacts is guided in a first current direction to a quenching area arranged at a distance from the contacts.

Claims (42)

1. A switching device suitable for direct current operation, the device comprising:

a gas-tight encapsulated, electrically insulating housing configured to be filled with an insulating gas;

a pair of contacts disposed in the housing, the contacts including a fixed contact and a mobile contact, the pair of contacts being in contact with each other in a switched-on state of the switching device, and the pair of contacts being not in contact in a switched off state of the switching device;

an arc driver arrangement configured to produce a magnetic field at least in the region of the contact pair;

a first arc routing arrangement with which an arc, produced between the contacts, is guidable in a first current direction to a quenching area of the housing, the quenching area being arranged at a distance from the pair of contacts; and

a second arc routing arrangement, provided such that an arc produced between the contacts is routed in a second current direction opposite to the first current direction in the direction of the quenching area,

wherein each arc routing arrangement comprises an external guide plate that stretches from the fixed contact and an internal guide plate that stretches from the mobile contact, and the distance between the external guide plate and the internal guide plate increases in the direction of the quenching area,

wherein the fixed contact is connected to a housing bottom,

wherein the housing bottom is arranged opposite to the quenching area,

and

wherein a bridge contact piece, on which the mobile contact is disposed, includes an actuator, the actuator being driven through the housing bottom through a flexible gas seal.

2. The device of claim 1 , wherein the device is a multi-pole switching device, comprising:

two bridge contact pieces each including an actuator configured to be moved, via a flexible gas seal, through the housing bottom; and

a rigid connecting axis, provided between the actuators outside the housing for synchronization.

3. The device of claim 1 , wherein the first arc routing arrangement includes a first section configured to deflect the arc by about 90° and a second section configured to route the arc in an essentially straight path.

4. The device of claim 1 , comprising a stepless transition from each contact to its respective arc routing arrangements.

5. The device of claim 1 , comprising, for each arc routing arrangement, a quenching device including a multitude of electrically insulating-quenching plates that are arranged parallel to each other, provided in the region of the quenching area.

6. The device of claim 5 , wherein the quenching devices are shaped in such a manner that the arc expands in a meandering form.

7. The device of claim 1 , wherein the switching device is a double interruption switching device, comprising two mobile contacts arranged on the bridge contact piece.

8. The device of claim 1 , wherein the first arc routing arrangement includes a first section configured to deflect the arc by 90° and a second section configured to route the are in a straight path.

9. A switching device suitable for direct current operation, the device comprising:

a gas-tight encapsulated, electrically insulating housing configured to be filled with an insulating gas;

a pair of contacts disposed in the housing, the contacts including a fixed contact and a mobile contact, the pair of contacts being in contact with each other in a switched-on state of the switching device, and the pair of contacts being not in contact in a switched off-state of the switching device;

an arc driver arrangement configured to produce a magnetic field at least in the region of the contact pair;

a first arc routing arrangement with which an arc, produced between the contacts, is guidable in a first current direction to a quenching area of the housing, the quenching area being arranged at a distance from the pair of contacts; and

a second arc routing arrangement, provided such that an arc produced between the contacts is routed in the first current direction opposite to a second current direction in the direction of the quenching area,

wherein the fixed contact is connected to a housing bottom,

wherein the housing bottom is arranged opposite to the quenching area,

wherein the bridge contact piece includes an actuator, the actuator being driven through the housing bottom through a flexible gas seal,

wherein external guide plates of the first and second arc routing arrangements form a U-shape together with a contact support,

wherein the contact support forms a U-shaped base, and

wherein the fixed contact is arranged in the interior region of the area of the base.

10. A switching device suitable for direct current operation, the device comprising:

a gas-tight encapsulated, electrically insulating housing configured to be filled with an insulating gas;

a pair of contacts disposed in the housing, the contacts including a fixed contact and a mobile contact, the pair of contacts being in contact with each other in a switched-on state of the switching device, and the pair of contacts being not in contact in a switched off-state of the switching device;

an arc driver arrangement configured to produce a magnetic field at least in the region of the contact pair;

a first arc routing arrangement with which an arc, produced between the contacts, is guidable in a first current direction to a quenching area of the housing, the quenching area being arranged at a distance from the pair of contacts; and

a second arc routing arrangement, provided such that an arc produced between the contacts is routed in the first current direction opposite to a second current direction in the direction of the quenching area,

wherein the fixed contact is connected to a housing bottom,

wherein the housing bottom is arranged opposite to the quenching area,

wherein the bridge contact piece includes an actuator, the actuator being driven through the housing bottom through a flexible gas seal, and

wherein internal guide plates of the first and second arc routing arrangements together form an onion contour shape.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 26, 2018
From: EATON ELECTRICAL IP GMBH & CO. KG
To: EATON INTELLIGENT POWER LIMITED
Reel/Frame 047635/0158 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 10, 2014
From: GERVING, KARSTEN; LANG, VOLKER; MEISSNER, JOHANNES; THAR, RALF
To: EATON ELECTRICAL IP GMBH & CO. KG
Reel/Frame 032180/0050 →