IP Library Granted Patent US 11,183,328
Granted Patent B2
US 11,183,328 · App. 15/680,592 · Granted Nov 23, 2021

Coupled inductors for low electromagnetic interference

Inventors: Alexandr Ikriannikov (Castro Valley, CA); Di Yao (San Jose, CA)
Assignee: MAXIM INTEGRATED PRODUCTS, INC.
H01F27/346H01F1/147H01F1/34H01F3/10H01F27/255H01F27/2823H01F38/08H01F2003/106
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Quick Facts
Patent No.
US 11,183,328
App. No.
15/680,592
Granted
Nov 23, 2021
Kind
B2
Abstract

A coupled inductor for low electromagnetic interference includes a plurality of windings and a composite magnetic core including a coupling magnetic structure formed of a first magnetic material and a leakage magnetic structure formed of a second magnetic material having a distributed gap. The coupling magnetic structure magnetically couples together the plurality of windings, and the leakage magnetic structure provides leakage magnetic flux paths for the plurality of windings.

Claims (14)

1. A coupled inductor for low electromagnetic interference, comprising:

a plurality of windings; and

a composite magnetic core including a coupling magnetic structure formed of a first magnetic material embedded in a leakage magnetic structure formed of a second magnetic material having a distributed gap, the coupling magnetic structure magnetically coupling together the plurality of windings and having first and second rails separated from each other in a first direction, the first rail comprising a plurality of first rail subsections disposed in a row in a second direction orthogonal to the first direction, the second rail comprising a plurality of second rail subsections disposed in a row in the second direction, and a plurality of rungs, each of the plurality of the rungs joining the first and second rails in the first direction, each of the plurality of windings being at least partially wound around a respective one of the plurality of rungs; the leakage magnetic structure providing leakage magnetic flux paths for the plurality of windings and shielding the windings from external components to minimize coupling with the windings.

2. The coupled inductor of claim 1 , the first magnetic material having a greater magnetic permeability than the second magnetic material.

3. The coupled inductor of claim 2 , the first magnetic material comprising a ferrite material and the second magnetic material comprising a powder iron material within a binder.

4. The coupled inductor of claim 1 , the leakage magnetic structure at least partially covering the plurality of windings.

5. The coupled inductor of claim 1 , wherein the composite magnetic core is configured such that the leakage magnetic structure provides a path for leakage magnetic flux in the first direction between the first and second rails.

6. The coupled inductor of claim 1 , the leakage magnetic structure being bounded by the first and second rails, in the first direction.

7. The coupled inductor of claim 1 , wherein: adjacent first rail subsections are separated from each other in the second direction; and adjacent second rail subsections are separated from each other in the second direction.

8. The coupled inductor of claim 1 , the leakage magnetic structure being bounded by the first and second rails, in the first direction.

9. The coupled inductor of claim 1 , the leakage magnetic structure comprising a plurality of leakage subsections joined in the second direction.

10. The coupled inductor of claim 1 , the leakage magnetic structure comprising a plurality of leakage subsections separated from each other in the second direction.

11. The coupled inductor of claim 1 , the coupling magnetic structure being at least partially embedded in the leakage magnetic structure.

12. The coupled inductor of claim 1 , further comprising one or more magnetic flux impeding structures embedded in the leakage magnetic structure.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 18, 2017
From: IKRIANNIKOV, ALEXANDR; YAO, DI
To: MAXIM INTEGRATED PRODUCTS, INC.
Reel/Frame 043334/0468 →
Continuity (2)
Provisional Application 62377455 · Aug 19, 2016
Related Publication 20180053596A1 · Feb 22, 2018