High power feedthrough for use with a high frequency power converter

US9974201B1 · US · B1

Patent metadata
FieldValue
Publication numberUS-9974201-B1
Application numberUS-201615337841-A
CountryUS
Kind codeB1
Filing dateOct 28, 2016
Priority dateOct 28, 2016
Publication dateMay 15, 2018
Grant dateMay 15, 2018

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  1. Title

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  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

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A feedthrough includes a flange comprising an inner cylindrical surface and a planar mounting surface. The inner cylindrical surface defines a cylindrical passage within the flange. The feedthrough further includes a printed circuit board (“PCB”) mounted on the planar mounting surface of the flange, and an electrically conductive element that extends through the cylindrical passage of the flange.

First claim

Opening claim text (preview).

What is claimed is: 1. A feedthrough comprising: an electrically insulating flange comprising an inner cylindrical surface, said inner cylindrical surface defining a cylindrical passage, said flange further comprising a planar mounting surface; a printed circuit board mounted on said planar mounting surface; and an electrically conductive element, said electrically conductive element extending through the cylindrical passage; wherein said printed circuit board comprises a first electrically conductive ring having a first radius, a second electrically conductive ring having a second radius that is greater than the first radius, and a third electrically conductive ring having a third radius that is greater than the second radius. 2. The feedthrough of claim 1 , wherein said printed circuit board further comprises a first plurality of capacitors electrically coupled between said first electrically conductive ring and said second electrically conductive ring. 3. The feedthrough of claim 2 , wherein said printed circuit board further comprises a second plurality of capacitors electrically coupled between said second electrically conductive ring and said third electrically conductive ring. 4. The feedthrough of claim 3 , wherein said first electrically conductive ring is configured to conduct an electrical current through said first plurality of capacitors to said second electrically conductive ring and through said second plurality of capacitors to said third electrically conductive ring. 5. The feedthrough of claim 4 , wherein said third electrically conductive ring is configured to conduct the current to ground. 6. The feedthrough of claim 4 , wherein said third electrically conductive ring conducts the current through a plurality of bolts to ground. 7. The feedthrough of claim 3 , wherein each capacitor of said first plurality of capacitors is electrically coupled in series to a corresponding capacitor of said second plurality of capacitors. 8. The feedthrough of claim 3 , wherein said first plurality of capacitors are electrically coupled to one another in parallel, and wherein said second plurality of capacitors are electrically coupled to one another in parallel. 9. The feedthrough of claim 1 , wherein said printed circuit board conducts an alternating current flowing over said electrically conductive element to ground. 10. The feedthrough of claim 1 , wherein said printed circuit board further defines a plurality of bolt holes. 11. The feedthrough of claim 1 , wherein said printed circuit board further comprises a plurality of voltage balancing resistors. 12. The feedthrough of claim 1 , wherein said elongated electrically conductive element is electrically connected to said first electrically conductive ring. 13. The feedthrough of claim 1 , wherein said printed circuit board comprises a plurality of concentric electrically conductive rings, each ring of the plurality of concentric electrically conductive rings electrically connected to a concentrically adjacent ring by at least one capacitor. 14. The feedthrough of claim 1 , wherein said flange comprises an electrically insulating material. 15. The feedthrough of claim 1 , further comprising a plurality of nuts, said plurality of nuts threaded over said electrically conductive element and securing said electrically conductive element within said cylindrical passage of said flange. 16. The feedthrough of claim 1 , further comprising a plurality of nuts, said plurality of nuts threaded over said electrically conductive element and securing said printed circuit board to said planar mounting surface of said flange. 17. The feedthrough of claim 1 , wherein said electrically conductive element has a diameter in the range of 1 to 50 millimeters. 18. The feedthrough of claim 1 , wherein said printed circuit board further defines a plurality of bolt holes and a cylindrical passage, and wherein said printed circuit board is coated with an environmental spray, and wherein said plurality of bolt holes and said inner conductive ring are not coated with the environmental spray. 19. An electrical power generation system comprising: a power source; a power line coupled to said power source; a housing; a power inverter mounted within said housing; and a feedthrough passing through said housing and electrically coupling said power line to said power inverter, said feedthrough comprising: a flange comprising an inner cylindrical surface, said inner cylindrical surface defining a cylindrical passage, said flange further comprising a planar mounting surface; a printed circuit board mounted on said planar mounting surface; and an electrically conductive element extending through the cylindrical passage; wherein said printed circuit board comprises a first electrically conductive ring having a first radius, a second electrically conductive ring having a second radius that is greater than the first radius, and a third electrically conductive ring having a third radius that is greater than the second radius. 20. A printed circuit board for use as part of a feedthrough, said printed circuit board comprising: a first electrically conductive ring having a first radius; a second electrically conductive ring having a second radius that is greater than the first radius; a third electrically conductive ring having a third radius that is greater than the second radius; a first plurality of capacitors electrically coupled between said first electrically conductive ring and said second electrically conductive ring; and a second plurality of capacitors electrically coupled between said second electrically conductive ring and said third electrically conductive ring.

Assignees

Inventors

Classifications

  • with provisions to reduce aperture leakages in walls, e.g. terminals, connectors, cables · CPC title

  • Housings · CPC title

  • Conductive pattern lay-out details not covered by sub groups H05K1/02 - H05K1/0295 (H05K1/11 takes precedence; lay-out adapted to mounted component configuration H05K1/18) · CPC title

  • Multiple capacitors, i.e. structural combinations of fixed capacitors · CPC title

  • Structural combinations of fixed capacitors with other electric elements, the structure mainly consisting of a capacitor, e.g. RC combinations · CPC title

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Frequently asked questions

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What does patent US9974201B1 cover?
A feedthrough includes a flange comprising an inner cylindrical surface and a planar mounting surface. The inner cylindrical surface defines a cylindrical passage within the flange. The feedthrough further includes a printed circuit board (“PCB”) mounted on the planar mounting surface of the flange, and an electrically conductive element that extends through the cylindrical passage of the flange.
Who is the assignee on this patent?
Gen Electric
What technology area does this patent fall under?
Primary CPC classification H05K5/0247. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue May 15 2018 00:00:00 GMT+0000 (Coordinated Universal Time) (B1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 2 related publications on this page (citations in our corpus or others sharing the same primary CPC).