Integrated arc fault and ground fault current sensing package

US10622800B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10622800-B2
Application numberUS-201715672744-A
CountryUS
Kind codeB2
Filing dateAug 9, 2017
Priority dateAug 9, 2017
Publication dateApr 14, 2020
Grant dateApr 14, 2020

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  1. Title

    What the patent document calls the invention.

  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

    Technology tags used to group this patent with similar filings.

  7. Citations and related patents

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Abstract

Official abstract text for this publication.

The line power and neutral conductors for an arc fault sensing circuit interrupter such as in a miniature circuit breaker are arranged as a rigid conductor surrounding and holding an insulated flexible conductor when passing through the Ground Fault Interrupter current transformer. Voltage metering takes place across the rigid conductor to enable arc fault detection and ground fault detection in the miniature circuit breaker within the space of a single current transformer.

First claim

Opening claim text (preview).

The invention claimed is: 1. A dual function circuit interrupter device with arc fault and ground fault detection functions, comprising: a flexible conductor; an apertured current transformer for the detection of ground fault current anomalies; a rigid conductor configured to surround and hold the flexible conductor, wherein the rigid conductor and the flexible conductor pass through the aperture of the current transformer, the rigid conductor comprising: a central split tubular portion having a first open end and a second open end; a second split tubular portion having a first open end; a rigid connector that couples the first open end of the central split tubular portion and the first open end of the second split tubular portion at a substantially right angle; and a non-tubular neutral terminal coupled to the second open end of the central split tubular portion at a substantially right angle; and a voltage meter measuring a voltage drop across the rigid conductor and reporting the voltage drop measurements to an Arc Fault Detector electronics circuit. 2. The dual function circuit interrupter device of claim 1 , wherein the device has only one current transformer. 3. The dual function circuit interrupter device of claim 1 , wherein the rigid conductor is connected to and forms a part of the neutral return current path. 4. The dual function circuit interrupter device of claim 1 , wherein the rigid conductor has electrical resistance features placed within the central split tubular portion to create increased resistance to flow of current through the rigid conductor. 5. The dual function circuit interrupter device of claim 1 , wherein an electrical resistance feature in the rigid conductor is created by a narrowed wall thickness in a section of the rigid conductor. 6. The dual function circuit interrupter device of claim 1 , wherein the non-tubular neutral terminal includes one or more pins. 7. The dual function circuit interrupter device of claim 1 , wherein an opening of the central split tubular portion is oriented substantially 180 degrees from a front side of the rigid conductor. 8. The dual function circuit interrupter device of claim 1 , wherein an opening of the central split tubular portion is oriented substantially 90 degrees from a front side of the rigid conductor. 9. The dual function circuit interrupter device of claim 1 , wherein an opening of the central split tubular portion is oriented substantially 0 degrees from a front side of the rigid conductor. 10. The dual function circuit interrupter device of claim 1 , wherein the non-tubular neutral terminal comprises a flat, rigid terminal constructed from a conductive material. 11. A miniature circuit breaker of the arc fault sensing type comprising: a current transformer with an apertured magnetic core; a printed circuit board with electronics for detection of ground fault events; first and second primary conductors extending through the core; the first primary conductor being a substantially rigid conductor comprising: a central split tubular portion located inside the apertured magnetic core and having a first open end and a second open end, a second split tubular portion having a first open end, a rigid connector that couples the first open end of the central split tubular portion and the first open end of the second split tubular portion at a substantially right angle, and a non-tubular neutral terminal coupled to the second open end of the central split tubular portion at a substantially right angle secured to the printed circuit board; the second primary conductor being a flexible wire held inside the tubular portion of the first primary conductor in a substantially coaxial arrangement; the current sensor further having a secondary winding comprising a plurality of turns on the core; a trip circuit responsive to sensed signals on the secondary winding; and a voltage meter connected across the substantially rigid conductor for detection of arc fault currents. 12. The miniature circuit breaker of claim 11 , wherein one of the voltage meter leads is attached to the printed circuit board. 13. The miniature circuit breaker of claim 11 , further including wherein the tubular portion does not form a fully closed tube. 14. The miniature circuit breaker of claim 11 , wherein the rigid conductor has electrical resistance features placed within the central split tubular portion to create increased resistance to flow of current through the rigid conductor. 15. The miniature circuit breaker of claim 11 , an electrical resistance feature in the rigid conductor is created by a narrowed wall thickness in a section of the substantially tubular form. 16. The miniature circuit breaker of claim 11 , wherein the non-tubular neutral terminal includes one or more pins. 17. The miniature circuit breaker of claim 11 , wherein an opening of the central split tubular portion is oriented substantially 180 degrees from a front side of the rigid conductor. 18. The miniature circuit breaker of claim 11 , wherein an opening of the central split tubular portion is oriented substantially 90 degrees from a front side of the rigid conductor. 19. The miniature circuit breaker of claim 11 , wherein an opening of the central split tubular portion is oriented substantially 0 degrees from a front side of the rigid conductor. 20. A rigid conductor for use in interrupter devices, comprising: a central split tubular portion having a first open end and a second open end, a second split tubular portion having a first open end, a rigid connector that couples the first open end of the central split tubular portion and the first open end of the second split tubular portion at a substantially right angle, and a non-tubular neutral terminal coupled to the second open end of the central split tubular portion at a substantially right angle, wherein the non-tubular neutral terminal includes one or more pins and an opening of the central split tubular portion is oriented 180 degrees from a front side of the rigid conductor.

Assignees

Inventors

Classifications

  • responsive to excess current and fault current to earth · CPC title

  • Testing of printed circuits, backplanes, motherboards, hybrid circuits or carriers for multichip packages [MCP] (G01R31/318508 takes precedence; contactless testing G01R31/302; testing contacts or connections G01R31/66) · CPC title

  • with primary windings formed of rigid copper conductors · CPC title

  • with means to produce an artificial imbalance for other protection or monitoring reasons or remote control (H02H3/338 takes precedence) · CPC title

  • responsive to excess current (responsive to abnormal temperature caused by excess current H02H5/04) · CPC title

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Frequently asked questions

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What does patent US10622800B2 cover?
The line power and neutral conductors for an arc fault sensing circuit interrupter such as in a miniature circuit breaker are arranged as a rigid conductor surrounding and holding an insulated flexible conductor when passing through the Ground Fault Interrupter current transformer. Voltage metering takes place across the rigid conductor to enable arc fault detection and ground fault detection i…
Who is the assignee on this patent?
Schneider Electric Usa Inc
What technology area does this patent fall under?
Primary CPC classification H02H3/00. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue Apr 14 2020 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).