IP Library Granted Patent US 7,242,275
Granted Patent B2
US 7,242,275 · App. 10/772,140 · Granted Jul 10, 2007

Variable inductor

Assignee: Paper Quality Management Associates
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Quick Facts
Patent No.
US 7,242,275
App. No.
10/772,140
Granted
Jul 10, 2007
Kind
B2
Abstract

A variable inductor which avoids electrical breakdown of the insulation in the control windings when used in high power applications includes a core formed of a permeable magnetic material, the core having three legs, including a center leg and two outer legs. A main winding element comprising a main conductor is wound around the center leg of the core. A control winding element comprising a control conductor is wound in a figure-eight configuration having a first winding and a second winding around respective outer legs, the winding configuration canceling induced voltages in the first and second windings, wherein a current through the control winding element causes a change in inductance of the main winding element.

Claims (24)

1. A variable inductor, comprising:

a core element formed of a permeable magnetic material, the core element having three legs, including a center leg and two outer legs;

a main winding element comprising a main conductor wound around the center leg; and

a control winding element comprising a control conductor wound in a turn-by-turn figure-eight configuration having a first winding and a second winding around respective outer legs, the winding configuration canceling turn-by-turn induced voltages in the first and second windings, wherein a current through the control winding element causes a change in inductance of the main winding element.

2. The variable inductor of claim 1 , wherein the core element comprises multiple cores, each core formed of a permeable magnetic material, each core magnetically coupled in series, each core having three legs, including a center leg and two outer legs.

3. The variable inductor of claim 1 , further comprising an i-core formed of a permeable magnetic material, the i-core magnetically coupled across the center leg and two outer legs of the core element.

4. The variable inductor of claim 1 , wherein the center leg of the core element has an air gap.

5. The variable inductor of claim 4 , wherein a non-magnetic spacer is disposed in the air gap.

6. The variable inductor of claim 1 , wherein the main conductor is Litz wire.

7. The variable inductor of claim 1 , wherein the control conductor is Litz wire.

8. The variable inductor of claim 1 , wherein the figure-eight configuration is an n-turn coil having a 180 degree twist.

9. A variable inductor, comprising:

a main core element formed of a permeable magnetic material, the main core element having three legs, including a center leg and two outer legs;

a control core element formed of a permeable magnetic material, the control core element having three legs, including a center leg and two outer legs; the legs of the main core opposing the legs of the control core to provide a magnetic coupling between the legs; a main winding element comprising a main conductor wound around the center leg of the main core; and

a control winding element comprising a control conductor wound in a turn-by-turn figure-eight configuration having a first winding and a second winding around respective outer legs of the control core, the winding configuration canceling turn-by-turn induced voltages in the first and second windings, wherein a current through the control winding element causes a change in inductance of the main winding element.

10. The variable inductor of claim 9 , wherein the main core element comprises multiple main cores, each main core formed of a permeable magnetic material, each main core magnetically coupled in series, each main core having three legs, including a center leg and two outer legs; and wherein the control core element comprises multiple control cores, each control core formed of a permeable magnetic material, each control core magnetically coupled in series, each core control having three legs, including a center leg and two outer legs, the legs of respective main cores opposing the legs of respective control cores to provide a magnetic coupling between the legs.

11. The variable inductor of claim 9 , further comprising an i-core, the i-core formed of a permeable magnetic material, the i-core magnetically coupled between and across the legs of the main core element and the control core element.

12. The variable inductor of claim 11 , further comprising a non-magnetic spacer coupled between the i-core and the main core element to provide an air gap.

13. The variable inductor of claim 9 , wherein the center leg of the main core element is shorter in length than the outer legs of the main core element.

14. The variable inductor of claim 9 , wherein the main conductor is Litz wire.

15. The variable inductor of claim 9 , wherein the control conductor is Litz wire.

16. The variable inductor of claim 9 , wherein the figure-eight configuration is an n-turn coil having a 180 degree twist.

17. The variable inductor of claim 1 , wherein the turn-by-turn cancellation of the induced voltages in the first and second windings allows the variable inductor to operate in a high magnetic flux region.

18. The variable inductor of claim 9 , wherein the turn-by-turn cancellation of the induced voltages in the first and second windings allows the variable inductor to operate in a high magnetic flux region.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 21, 2004
From: PONIATOWSKI, JOHN E.; WALKINSHAW, JOHN W.
To: PAPER QUALITY MANAGEMENT ASSOCIATES
Reel/Frame 014879/0638 →
Continuity (2)
Provisional Application 6044521400 · Feb 5, 2003
Related Publication 20040239463A1 · Dec 2, 2004