IP Library Granted Patent US 10,643,784
Granted Patent B2
US 10,643,784 · App. 15/491,055 · Granted May 5, 2020

Filter inductor for heavy-current application

Inventors: Jianbin Yao (Zhejiang, CN); Hai Huang (Zhejiang, CN)
Assignee: Bel Fuse (Macao Commercial Offshore) Limited
H01F27/2852H01F17/04H01F17/043H01F27/24H01F27/292H01F27/306H01F41/0206H01F41/10H05K1/0263H05K1/184H01F2027/297H05K2201/086H05K2201/1003
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 10,643,784
App. No.
15/491,055
Granted
May 5, 2020
Kind
B2
Abstract

A filter inductor for high-current applications. The filter inductor includes a magnetic core and a winding. The winding includes a shaped section having opposing ends, a pair of arm sections laterally extending from the opposing ends of the shaped section, respectively, and a pair of inductor pins, each extending perpendicular from an end of a respective arm section. The magnetic core includes a first core portion and a second core portion. The first core portion includes a recessed channel configured to receive the shaped section of the winding. The second core portion includes a pair of recessed regions configured to receive the pair of arm sections of the winding, respectively. The first core portion and the second core portion are coupled in contact to one another to secure the shaped section of the winding within the magnetic core. The filter inductor can be edge-mounted to a printed circuit board.

Claims (33)

1. A passive magnetic component, comprising:

a magnetic core; and

a winding,

wherein the winding includes (1) a C-shaped section having a first end and a second end, (2) first and second arm sections, the first arm section extending laterally from the first end of the C-shaped section and the second arm section extending laterally from the second end of the C-shaped section, and (3) first and second inductor pins, the first inductor pin extending substantially perpendicular from an end of the first arm section and the second inductor pin extending substantially perpendicular from an end of the second arm section.

2. The passive magnetic component of claim 1 wherein the winding further includes at least one connector pin extending substantially perpendicular from the end of one of the arm sections in a direction opposite the respective inductor pin.

3. The passive magnetic component of claim 1 wherein the magnetic core includes a first core portion having a recessed channel configured to receive at least the C-shaped section of the winding.

4. The passive magnetic component of claim 3 wherein the magnetic core further includes a second core portion having a pair of recessed regions configured to receive the first and second arm sections, respectively.

5. The passive magnetic component of claim 4 wherein the first core portion and the second core portion are coupled in contact to one another to secure at least the C-shaped section of the winding within the magnetic core.

6. The passive magnetic component of claim 1 wherein the first and second arm sections have substantially the same length.

7. The passive magnetic component of claim 1 wherein the winding including the C-shaped section, the first and second arm sections, and the first and second inductor pins are formed from a sheet of metal.

8. The passive magnetic component of claim 7 wherein the sheet of metal is a sheet of copper material.

9. The passive magnetic component of claim 1 wherein at least one of the connector pins has at least one stop for limiting an insertion of the at least one connector pin through a hole in a printed circuit board.

10. A method of fabricating a passive magnetic component, comprising:

forming a winding as an integrated structure, the winding including (1) a C-shaped section having a first end and a second end, (2) first and second arm sections, the first arm section extending laterally from the first end of the C-shaped section and the second arm section extending laterally from the second end of the C-shaped section, and (3) first and second inductor pins, the first inductor pin extending substantially perpendicular from an end of the first arm section and the second inductor pin extending substantially perpendicular from an end of the second arm section;

providing a magnetic core assembly including a first core portion and a second core portion;

forming a recessed channel in the first core portion to conform to a C-shape of the C-shaped section of the winding;

receiving the C-shaped section of the winding in the recessed channel of the first core portion; and

coupling the first core portion and the second core portion in contact to one another to secure at least the C-shaped section of the winding within the magnetic core assembly.

11. The method of claim 10 further comprising:

forming a pair of recessed regions in the second core portion to conform to cross-sections of the first and second arm sections of the winding, respectively.

12. The method of claim 11 further comprising:

receiving the first and second arm sections in the pair of recessed regions of the second core portion, respectively.

13. The method of claim 10 wherein the forming of the winding as the integrated structure includes forming the winding from a sheet of metal.

14. A printed circuit board assembly, comprising:

a printed circuit board having an edge; and

a passive magnetic component configured to be mounted along the edge of the printed circuit board, wherein the passive magnetic component incudes:

a magnetic core; and

a winding,

wherein the winding includes (1) a C-shaped section having a first end and a second end, (2) first and second arm sections, the first arm section extending laterally from the first end of the C-shaped section and the second arm section extending laterally from the second end of the C-shaped section, and (3) first and second inductor pins, the first inductor pin extending substantially perpendicular from an end of the first arm section and the second inductor pin extending substantially perpendicular from an end of the second arm section.

15. The printed circuit board assembly of claim 14 wherein the winding further includes at least one connector pin extending substantially perpendicular from the end of one of the arm sections in a direction opposite the respective inductor pin.

16. The printed circuit board assembly of claim 14 wherein the printed circuit board includes a plurality of holes formed therethrough, and wherein the first and second inductor pins of the winding are inserted through the plurality of holes in the printed circuit board, respectively.

17. The printed circuit board assembly of claim 16 wherein the magnetic core includes a first core portion having a recessed channel configured to receive at least the C-shaped section of the winding, and a second core portion having a pair of recessed regions configured to receive the first and second arm sections of the winding, respectively.

18. The printed circuit board assembly of claim 17 wherein the first core portion and the second core portion are coupled in contact to one another to secure at least the C-shaped section of the winding within the magnetic core, and wherein a surface of the second core portion is positioned against the edge of the printed circuit board so as to align the first and second inductor pins of the winding with the plurality of holes in the printed circuit board, respectively.

Assignments (2)
SECURITY INTEREST Recorded Jan 31, 2022
From: BEL FUSE INC.
To: KEYBANK NATIONAL ASSOCIATION, AS ADMINISTRATIVE AGENT
Reel/Frame 058917/0452 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 29, 2017
From: YAO, JIANBIN; HUANG, HAI
To: BEL FUSE (MACAO COMMERCIAL OFFSHORE) LIMITED
Reel/Frame 042859/0700 →
Continuity (2)
Provisional Application 62325258 · Apr 20, 2016
Related Publication 20170309390A1 · Oct 26, 2017