IP Library › Granted Patent US 9,934,897
Granted Patent B1
US 9,934,897 · App. 15/398,520 · Granted Apr 3, 2018

Polarity-switching magnet diode

Inventor: Chad Ashley VandenBerg (Vancouver, WA)
H01F7/20H02K1/146H02K1/24
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Quick Facts
Patent No.
US 9,934,897
App. No.
15/398,520
Granted
Apr 3, 2018
Kind
B1
Abstract

A polarity-switching magnetic diode provides a method of gating or “rectifying” N and S polarized flux contained within the closed-loop flux circuit of a magnetic flux element. Gaps separate the opposing magnetic polarities, and strategically placed control coils are disposed to break the magnetic circuit in at least two places upon electrical activation of the device—forming high density flux zones of opposite polarity. Switching the control coil's magnetic flux flow allows for the high density flux zones to alternate N and S polarity.

Claims (36)

1. A polarity-switching magnetic diode comprising:

a first magnetic north flux donor magnetically coupled to a magnetic flux element;

a first magnetic south flux donor magnetically coupled to the magnetic flux element;

wherein the magnetic flux element comprises a first effective pole, a second effective pole, a first gap, a first magnetic flux path from the magnetic north flux donor along the first gap to the first effective pole, a second magnetic flux path from the magnetic north flux donor along the first gap to the second effective pole, a third magnetic flux path from the magnetic south flux donor along the first gap to the first effective pole, and a fourth magnetic flux path from the magnetic south flux donor along the first gap to the second effective pole; and

a control coil wrapped around a portion of the magnetic flux element such that the first gap extends at least partially into the control coil, wherein the control coil has a first active magnetic state and a second active magnetic state,

wherein the first active magnetic state directs north magnetic flux from the first magnetic north flux donor along the first magnetic flux path towards the first effective pole and directs south magnetic flux from the first magnetic south flux donor along the fourth magnetic flux path towards the second effective pole; and

wherein the second active magnetic state directs north magnetic flux from the first magnetic north flux donor along the second magnetic flux path towards the second effective pole and directs south magnetic flux from the first magnetic south flux donor along the third magnetic flux path towards the first effective pole.

2. The polarity-switching magnetic diode of claim 1 , wherein a permanent magnet comprises the first magnetic north flux donor and the first magnetic south flux donor.

3. The polarity-switching magnetic diode of claim 1 , wherein:

a first permanent magnet comprises the first magnetic north flux donor; and

a second permanent magnet comprises the first magnetic south flux donor.

4. The polarity-switching magnetic diode of claim 3 , wherein a magnetic axis of the first permanent magnet is substantially parallel to a magnetic axis of the second permanent magnet, and wherein magnetic north flux of the first permanent magnet and magnetic south flux of the second permanent magnet seek to complete a magnetic circuit within a bore of the control coil.

5. The polarity-switching magnetic diode of claim 1 , further comprising:

a second magnetic north flux donor magnetically coupled to the magnetic flux element; and

a second magnetic south flux donor magnetically coupled to the magnetic flux element, and

wherein the first active magnetic state also directs north magnetic flux from the second magnetic north flux donor to the first effective pole, and directs south magnetic flux from the second magnetic south flux donor to the second effective pole.

6. The polarity-switching magnetic diode of claim 5 , wherein the magnetic flux element comprises a plurality of parallel layers separated by gaps.

7. The polarity-switching magnetic diode of claim 5 , wherein:

a first permanent magnet comprises the first magnetic north flux donor and the first magnetic south flux donor,

a second permanent magnet comprises the second magnetic north flux donor and the second magnetic south flux donor,

a magnetic axis of the first permanent magnet is substantially parallel to a magnetic axis of the second permanent magnet, and

the magnetic axes of the first and second permanent magnets seek to complete a magnetic circuit within a bore of the control coil.

8. The polarity-switching magnetic diode of claim 7 , wherein the magnetic flux element comprises a second gap that extends at least partially into the control coil, and wherein the first and second permanent magnets are disposed in the first and second gaps, respectively.

9. The polarity-switching magnetic diode of claim 1 , wherein the magnetic flux element is substantially straight.

10. The polarity-switching magnetic diode of claim 1 , wherein the magnetic flux element is substantially curved.

11. The polarity-switching magnetic diode of claim 1 , wherein the control coil is positioned proximate to at least one of the first effective pole and the second effective pole.

12. The polarity-switching magnetic diode of claim 1 , wherein the control coil is wrapped around the magnetic flux element along a magnetic flux path between the first magnetic north flux donor and at least one of the first and second effective poles.

13. The polarity-switching magnetic diode of claim 1 , further comprising a switch that reverses a current passing through the control coil, wherein the switch flips the control coil from the first active magnetic state to the second active magnetic state.

14. A polarity-switching magnetic diode comprising:

a magnetic north flux donor magnetically coupled to a magnetic flux element;

a magnetic south flux donor magnetically coupled to the magnetic flux element,

wherein the magnetic flux element comprises a first effective pole, a second effective pole, a third effective pole, and a fourth effective pole; and

a control coil wrapped around a portion of the magnetic flux element

wherein the control coil has a first active magnetic state and a second active magnetic state,

wherein the first active magnetic state directs north magnetic flux from the magnetic north flux donor along the magnetic flux element towards the second effective pole and directs south magnetic flux from the magnetic south flux donor along the magnetic flux element towards the third effective pole, and

wherein the second active magnetic state directs north magnetic flux from the magnetic north flux donor along the magnetic flux element towards the first effective pole and directs south magnetic flux from the magnetic flux element along the magnetic flux element towards the second effective pole.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 25, 2025
From: ASH, ARROWIN, MR.
To: KENOBI GROUP, LLC
Reel/Frame 070620/0795 →
Continuity (1)
Continuation 15391106 · Dec 27, 2016