IP Library › Patent Application 19201005
Patent Application
App. No. 19/201,005

TANGENTIALLY ACTUATED MAGNETIC MOMENTUM TRANSFER GENERATOR

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Quick Facts
Patent No.
US None
App. No.
19/201,005
Abstract

An electrical generator is provided that includes a coil winding having a first surface and a second surface parallel to the first surface, a first magnet provided in the coil winding, wherein the first magnet is arranged to rotate about an axis of rotation extending in a first direction parallel to the first and second surfaces, a slider arranged to move tangentially parallel to the first surface and the first magnet in a second direction perpendicular to the first direction, wherein movement of the slider causes the first magnet to rotate about the axis of rotation, thereby inducing a voltage across a first terminal end and a second terminal end of the coil winding.

Claims (27)

1 . An electrical generator, comprising:

a coil winding having a first surface and a second surface parallel to the first surface;

a first magnet provided in the coil winding, wherein the first magnet is configured to rotate about an axis of rotation extending in a first direction parallel to the first and second surfaces;

a slider configured to move tangentially parallel to the first surface and the first magnet in a second direction perpendicular to the first direction, wherein movement of the slider causes the first magnet to rotate about the axis of rotation, thereby inducing a voltage across a first terminal end and a second terminal end of the coil winding.

2 . The electrical generator of claim 1 , wherein the first magnet is cylindrical and is diametrically poled.

3 . The electrical generator of claim 1 , further comprising a second magnet positioned about the coil winding in the second direction.

4 . The electrical generator of claim 3 , wherein the slider comprises a third magnet.

5 . The electrical generator of claim 4 , wherein the third magnet includes a north pole, and an opposing south pole arranged in a first orientation wherein one of the north pole or the south pole of the third magnet is configured to face the first magnet when the slider is moved tangentially parallel to the first magnet in the second direction.

6 . The electrical generator of claim 5 , wherein the second magnet includes a north pole, and an opposing south pole arranged in a second orientation opposite the first orientation.

7 . The electrical generator of claim 6 , wherein the second magnet is configured to maintain the slider in a first position aligned with the second magnet.

8 . The electrical generator of claim 7 , further comprising a fourth magnet positioned about the coil winding opposite from the second magnet about the axis of rotation of the first magnet, wherein the fourth magnet includes a north pole and an opposing south pole arranged in the second orientation.

9 . The electrical generator of claim 8 , wherein the slider is movable in the second direction from the first position aligned with the second magnet to a second position aligned with the third magnet.

10 . The electrical generator of claim 9 , wherein the third magnet is configured to maintain the slider in the second position.

11 . The electrical generator of claim 9 , wherein movement of the slider from the first position to the second position causes the first magnet to rotate in repeated oscillations about the axis of rotation, thereby inducing a voltage across the first terminal end and the second terminal end.

12 . The electrical generator of claim 8 , wherein the first magnet, the second magnet and the third magnet are substantially aligned in a common plane.

13 . An electrical generator comprising:

a base substrate comprising a flat base surface;

a coil winding coupled to the base substrate, wherein the coil winding comprises a first surface and a second surface parallel to the first surface;

a first magnet provided within the coil winding, wherein the first magnet comprises an axis of rotation extending in a first direction parallel to the first and second surfaces;

a slider slidingly coupled to the base substrate and configured to move tangentially parallel to the first surface of the coil winding and the first magnet in a second direction perpendicular to the first direction, wherein movement of the slider causes the first magnet to rotate about the axis of rotation, thereby inducing a voltage across a first terminal end and a second terminal end of the coil winding.

14 . The electrical generator of claim 13 , wherein the first magnet is cylindrical and is diametrically poled.

15 . The electrical generator of claim 13 , further comprising a second magnet coupled to the base substrate and positioned about the coil winding along the second direction.

16 . The electrical generator of claim 15 , wherein the slider comprises a third magnet.

17 . The electrical generator of claim 16 , further comprising a fourth magnet coupled to the base substrate and positioned about the coil winding opposite from the second magnet along the second direction.

18 . The electrical generator of claim 17 , wherein the slider is movable in the second direction from a first position aligned with the second magnet to a second position aligned with the third magnet.

19 . The electrical generator of claim 18 , wherein movement of the slider from the first position to the second position causes the first magnet to rotate in repeated oscillations about the axis of rotation, thereby inducing a voltage across the first terminal end and the second terminal end.

20 . The electrical generator of claim 13 , wherein the electrical generator forms a battery-less and wireless remote switch.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 24, 2026
From: RICHENSTEIN, LAWRENCE; RIDDELL, MICHAEL JOSEPH
To: WEPOWER TECHNOLOGIES LLC
Reel/Frame 073871/0856 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 24, 2026
From: DEAK, DAVID
To: PEAK VENTURES, INC.
Reel/Frame 073871/0866 →
CHANGE OF NAME Recorded Feb 24, 2026
From: PEAK VENTURES, INC.
To: WEPOWER TECHNOLOGIES LLC
Reel/Frame 073871/0898 →