IP Library Granted Patent US 9,398,701
Granted Patent B2
US 9,398,701 · App. 14/061,250 · Granted Jul 19, 2016

Component holding structures, system, and method

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Quick Facts
Patent No.
US 9,398,701
App. No.
14/061,250
Granted
Jul 19, 2016
Kind
B2
Abstract

A component holding structure for holding a plurality of through-hole components having an axial lead includes a pair of opposing end walls that define a cavity between them. The cavity is configured to receive the through-hole components. The through-hole components are positioned between the pair of opposing end walls in a vertically-stacked configuration. Each one of the end walls includes at least one slot that is configured to receive the axial lead of each through-hole component when the plurality of through-hole components are inserted into the component holding structure. Each one of the end walls also includes a plurality of lead guides that are configured to guide the axial lead of each through-hole component when the plurality of through-hole components are inserted into the component holding structure.

Claims (35)

1. A component holding structure comprising:

a pair of opposing end walls defining at least one cavity therebetween, the at least one cavity configured to receive a plurality of through-hole components therein such that the plurality of through-hole components are positioned between said pair of opposing end walls in a vertically-stacked configuration, each through-hole component having an axial lead, each end wall comprising:

at least one slot defined therethrough, said at least one slot configured to receive the axial lead of each through-hole component when the plurality of through-hole components are inserted into said component holding structure; and

a plurality of lead guides configured to guide the axial lead of each through-hole component when the plurality of through-hole components are inserted into said component holding structure, wherein said plurality of lead guides comprise a plurality of lower lead guides and a plurality of upper lead guides spaced vertically from said plurality of lower lead guides.

2. The component holding structure in accordance with claim 1 , wherein, said plurality of upper lead guides configured to maintain a predetermined spaced distance between the axial lead of one through-hole component apart from the axial lead of another through-hole component.

3. The component holding structure in accordance with claim 1 , wherein each lower lead guide of said plurality of lower lead guides comprises a groove configured to receive the axial lead of a respective one of the plurality of through-hole components.

4. The component holding structure in accordance with claim 1 , wherein said at least one slot comprises an opening at a top edge of said each end wall.

5. The component holding structure in accordance with claim 4 , wherein said opening of said at least one slot is tapered outward, away from said at least one slot, forming a funnel-shaped opening for receiving the axial lead of each through-hole component.

6. The component holding structure in accordance with claim 5 , wherein said top edge of said each end wall comprises a tapered portion extending downward from at least one edge of said funnel-shaped opening, said tapered portion configured to facilitate inserting the plurality of through-hole components into said component holding structure.

7. The component holding structure in accordance with claim 1 , wherein said each end wall further comprises at least one barrier fin configured to space the axial lead of one through-hole component apart from the axial lead of another through-hole component when the plurality of through-hole components are inserted into said component holding structure.

8. The component holding structure in accordance with claim 7 , wherein the at least one barrier fin extends upward from a respective one of said plurality of lead guides.

9. The component holding structure in accordance with claim 1 , further comprising a bottom wall, said bottom wall extending between said pair of opposing end walls, wherein said bottom wall at least partially defines the at least one cavity.

10. The component holding structure in accordance with claim 9 , further comprising a front wall and a rear wall extending upwardly from said bottom wall, said front wall and said rear wall at least partially defining the at least one cavity.

11. The component holding structure in accordance with claim 10 , wherein said front wall and said rear wall have at least one slot defined through said front wall and said rear wall respectively.

12. A power electronics system comprising:

a printed circuit board;

a plurality of through-hole components, each through-hole component comprising an axial lead; and

a component holding structure coupled to said printed circuit board and comprising:

a pair of opposing end walls defining at least one cavity therebetween, wherein said plurality of through-hole components are positioned between said pair of opposing end walls in a vertically-stacked configuration, each end wall comprising:

at least one slot defined therethrough, said at least one slot configured to receive said axial lead of each through-hole component; and

a plurality of lead guides configured to receive and guide said axial lead of each through-hole component towards said printed circuit board, wherein said plurality of lead guides comprise a plurality of lower lead guides and a plurality of upper lead guides spaced vertically from said plurality of lower lead guides.

13. The power electronics system in accordance with claim 12 , Wherein said at least one slot comprises an opening at a top edge of said each end wall, said opening tapered outward away from said at least one slot and forming a funnel-shaped opening configured to receive said axial lead of said each through-hole component.

14. The power electronics system in accordance with claim 12 , further comprising at least one electrical choke mechanism.

15. The power electronics system in accordance with claim 14 , wherein said at least one electrical choke mechanism comprises one or more of the following: a common-mode choke, a differential-mode choke, a differential-mode choke having a distributed gap core, and a differential-mode choke having independent non-coupled cores.

16. The power electronics system in accordance with claim 14 , wherein said at least one electrical choke mechanism comprises one or more of the following: a resistor, a capacitor, an inductor, and a filter element.

17. The power electronics system in accordance with claim 12 , wherein said plurality of upper lead guides configured to maintain a predetermined spaced distance between the axial lead of one through-hole component apart from the axial lead of another through-hole component.

18. The power electronics system in accordance with claim 12 , wherein said each end wall further comprises at least one barrier fin configured to space the axial lead of one through-hole component apart from the axial lead of another through-hole component when the plurality of through-hole components are inserted into said component holding structure.

19. A method of assembling a power electronics system, said method comprising:

providing a component holding structure including a pair of opposing end walls defining at least one cavity therebetween, each end wall including at least one slot defined therethrough and a plurality of lead guides;

inserting a plurality of through-hole components having an axial lead into the component holding structure such that the plurality of through-hole components are positioned in a vertically-stacked configuration;

inserting the axial leads into the at least one slot;

guiding the axial leads using the plurality of lead guides, wherein guiding the axial leads including guiding the axial leads using at least one of a plurality of lower lead guides and a plurality of upper lead guides spaced vertically from said plurality of lower lead guides;

trimming the axial leads to a desired length; and

coupling the component holding structure to a printed circuit board by soldering the axial leads to the printed circuit board.

20. The method in accordance with claim 19 , further comprising electrically coupling at least one electrical choke mechanism to the axial lead of the axial lead component.

Assignments (6)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 6, 2023
From: ABB SCHWEIZ AG
To: ACLEAP POWER INC.
Reel/Frame 064819/0383 →
CORRECTIVE ASSIGNMENT TO CORRECT THE THE ADDRESS OF THE ASSIGNEE PREVIOUSLY RECORDED AT REEL: 063410 FRAME: 0501. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Jul 11, 2023
From: ABB POWER ELECTRONICS INC.
To: ABB SCHWEIZ AG
Reel/Frame 064671/0156 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 20, 2023
From: ABB POWER ELECTRONICS INC.
To: ABB SCHWEIZ AG
Reel/Frame 063410/0501 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 16, 2020
From: ABB SCHWEIZ AG
To: ABB POWER ELECTRONICS INC.
Reel/Frame 052430/0136 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 29, 2019
From: GENERAL ELECTRIC COMPANY
To: ABB SCHWEIZ AG
Reel/Frame 050207/0405 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 23, 2013
From: HAISLER, MARK ALAN; BARNETT, RICK LEE; WOODS, WILLIAM L., JR.; HARVEY, JAMES EDWARD
To: GENERAL ELECTRIC COMPANY
Reel/Frame 031462/0694 →