IP Library Granted Patent US 10,720,274
Granted Patent B2
US 10,720,274 · App. 15/631,459 · Granted Jul 21, 2020

Magnetic sensing system for a rotary control device

Inventors: Robert C. Newman, Jr. (Emmaus, PA); Alexander Wade Gage (Havertown, PA); Stephen M. Ludwig, Jr. (Coopersburg, PA); William Taylor Shivell (Breinigsville, PA)
Assignee: Lutron Technology Company LLC
H01F7/0205G01R33/07H01F7/0273H02K11/215H03K17/97G01D5/2451G01R33/0005H03K2017/9527H03K2017/9713H03K2217/94068
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 10,720,274
App. No.
15/631,459
Granted
Jul 21, 2020
Kind
B2
Abstract

A control device includes a moving portion, a magnetic element coupled to the moving portion, at least one magnetic sensing circuit responsive to magnetic fields, and at least one magnetic flux pipe structure. The magnetic element may comprise alternating positive and negative sections configured to generate a magnetic field. The magnetic element may be any shape, such as circular, linear, etc. The magnetic sensing circuit may be radially offset from the magnetic element, and the magnetic flux pipe structure may be configured to conduct the magnetic field generated by the magnetic element towards the magnetic sensing circuit. The magnetic element may generate the magnetic field in a first plane, and the magnetic sensing may be responsive to magnetic fields in a second direction that is angularly offset from the first plane. The magnetic flux pipe structure may redirect the magnetic field towards the magnetic sensing circuit in the second direction.

Claims (52)

1. A control device comprising:

a moving portion;

a magnetic element coupled to the moving portion, the magnetic element comprising alternating positive and negative sections configured to generate a magnetic field in a first direction;

at least one magnetic sensing circuit responsive to magnetic fields in a second direction that is angularly offset from the first direction; and

a first magnetic flux pipe structure adjacent to a first side of the at least one magnetic sensing circuit and a second magnetic flux pipe structure adjacent to a second side of the at least one magnetic sensing circuit, the first magnetic flux pipe structure and the second magnetic flux pipe structure configured to conduct the magnetic field generated by the magnetic element and redirect the magnetic field towards the at least one magnetic sensing circuit in the second direction.

2. The control device of claim 1 , wherein the angular offset is a 90 degree offset.

3. The control device of claim 1 , wherein the at least one magnetic sensing circuit comprises a Hall-effect sensing circuit.

4. The control device of claim 1 , wherein the magnetic element comprises a circular magnetic element, and wherein the moving portion comprises a rotating portion.

5. The control device of claim 1 , wherein the magnetic element comprises a linear magnetic element, and wherein the moving portion comprises a linear slider.

6. The control device of claim 1 , wherein

the first magnetic flux pipe structure extends from a first location adjacent the magnetic element to a second location adjacent the first side of the magnetic sensing circuit, and

the second magnetic flux pipe structure extends from a third location adjacent the magnetic element to a fourth location adjacent the second side of the magnetic sensing circuit, and

wherein the first and second magnetic flux pipe structures are configured to conduct the magnetic field from the magnetic sensing circuit towards the magnetic element and redirect the magnetic field from the second direction towards the magnetic element in the first direction.

7. The control device of claim 1 , wherein the at least one magnetic sensing circuit comprises a first magnetic sensing circuit and a second magnetic sensing circuit, and wherein the first magnetic sensing circuit comprises the first magnetic flux pipe structure and the second magnetic flux pipe structure, and wherein the second magnetic sensing circuit comprises a third magnetic flux pipe structure and a fourth magnetic flux pipe structure.

8. The control device of claim 1 , wherein the at least one magnetic sensing circuit comprises a first magnetic sensing circuit and a second magnetic sensing circuit, and wherein the first magnetic sensing circuit comprises the first magnetic flux pipe structure, the second magnetic flux pipe structure, and a third magnetic flux pipe structure, and wherein the second magnetic sensing circuit comprises a fourth magnetic flux pipe structure, a fifth magnetic flux pipe structure and the third magnetic flux pipe structure.

9. The control device of claim 8 , wherein the first and second magnetic flux pipe structures are angularly offset such that the first and second magnetic flux pipe structures are both directed toward the third magnetic flux pipe structure; and

wherein, when the magnetic element is moved, the magnetic field extends between the first and third magnetic flux pipe structures toward a first magnetic sensing circuit, and extends between the second and third magnetic flux pipe structures toward a second magnetic sensing circuit.

10. The control device of claim 1 , wherein each of the first magnetic flux pipe structure and the second magnetic flux pipe structure comprise a magnetic element coupling portion, a sensor coupling portion, and a mounting portion, wherein the magnetic element coupling portion and the sensor coupling portion are located at opposite ends of the respective magnetic flux pipe structure.

11. The control device of claim 10 , wherein the sensor coupling portion is arranged in a plane that is perpendicular to a plane of the respective magnetic element coupling portion.

12. The control device of claim 10 , wherein the mounting portion is configured to be attached to a printed circuit board (PCB) of the load control device, and wherein the magnetic element coupling portion is positioned adjacent to the magnetic element and located in a notch in the PCB when the mounting portion is attached to the PCB.

13. The control device of claim 1 , wherein the at least one magnetic sensing circuit comprises two magnetic sensing circuits that each comprise two magnetic element coupling portions, wherein the magnetic element coupling portions of the two magnetic sensing circuits are offset from the centers of two adjacent positive and negative sections of the magnetic element.

14. The control device of claim 1 , wherein the at least one magnetic sensing circuit comprise a first magnetic sensing circuit and a second magnetic sensing circuit; and

wherein, when magnetic element coupling portions of the first magnetic sensing circuit are lined up with the centers of two adjacent positive and negative sections of the magnetic element, magnetic element coupling portions of the second magnetic sensing circuit are each lined up with a transition between a positive section and a negative section of the magnetic element.

15. The control device of claim 1 , further comprising:

a base portion configured to be fixedly attached to an actuator of a mechanical switch; and

a control unit comprising the moving portion, the magnetic element, the at least one magnetic sensing circuit, the first magnetic flux pipe structure, and the second magnetic flux pipe structure;

wherein the control unit is configured to be removeably attached to the base portion.

16. The control device of claim 15 , wherein the base portion is configured to maintain the actuator in the on position; and

wherein the control unit further comprises a wireless communication circuit configured to transmit one or more wireless communication signals to one or more control devices.

17. The control device of claim 1 , further comprising:

a yoke configured to mount the control device to a standard electrical wallbox, wherein the control device is configured to be coupled in series electrically connection between an alternating current (AC) power source and a controllable electrical load.

18. A magnetic sensing system comprising:

a magnetic sensing circuit responsive to a magnetic field generated by a magnetic element, the magnetic element comprising alternating positive and negative sections configured to generate the magnetic field in a first direction, and the magnetic sensing circuit responsive to the magnetic field in a second direction that is angularly offset from the first direction; and

a first magnetic flux pipe structure adjacent to a first side of the at least one magnetic sensing circuit and a second magnetic flux pipe structure adjacent to a second side of the at least one magnetic sensing circuit, the first magnetic flux pipe structure and the second magnetic flux pipe structure configured to conduct the magnetic field generated by the magnetic element and redirect the magnetic field generated by the magnetic element towards the at least one magnetic sensing circuit in the second direction.

19. The magnetic sensing system of claim 18 , wherein the angular offset is a 90 degree offset.

20. The magnetic sensing system of claim 18 , wherein the magnetic element comprises a circular magnetic sensing circuit.

21. The magnetic sensing system of claim 18 , wherein the magnetic element comprises a linear magnetic sensing circuit.

22. The magnetic sensing system of claim 18 , wherein

the first magnetic flux pipe structure extends from a first location adjacent the magnetic element to a second location adjacent the first side of the magnetic sensing circuit, and

the second magnetic flux pipe structure extends from a third location adjacent the magnetic element to a fourth location adjacent the second side of the magnetic sensing circuit, and

wherein the first and second magnetic flux pipe structures are configured to conduct the magnetic field from the magnetic sensing circuit towards the magnetic element and redirect the magnetic field from the second direction towards the magnetic element in the first direction.

23. The magnetic sensing system of claim 18 , wherein each of the first magnetic flux pipe structure and the second magnetic flux pipe structure comprise a magnetic element coupling portion, a sensor coupling portion, and a mounting portion, wherein the magnetic element coupling portion and the sensor coupling portion are located at opposite ends of the respective magnetic flux pipe structure; and

wherein the sensor coupling portion is arranged in a plane that is perpendicular to a plane of the respective magnetic element coupling portion.

24. The magnetic sensing system of claim 18 , wherein the magnetic sensing circuit is a first magnetic sensing circuit, the magnetic sensing system further comprising:

a second magnetic sensing circuit;

wherein, when magnetic element coupling portions of the first magnetic sensing circuit are lined up with the centers of two adjacent positive and negative sections of the magnetic element, magnetic element coupling portions of the second magnetic sensing circuit are each lined up with a transition between a positive section and a negative section of the magnetic element.

25. The magnetic sensing system of claim 18 , wherein the magnetic sensing circuit comprises a Hall-effect sensing circuit.

26. A control device comprising:

a moving portion;

a magnetic element coupled to the moving portion, comprising alternating positive and negative sections configured to generate a magnetic field;

at least one magnetic sensing circuit responsive to magnetic fields, the magnetic sensing circuit radially offset from the magnetic element; and

a first magnetic flux pipe structure adjacent to a first side of the at least one magnetic sensing circuit and a second magnetic flux pipe structure adjacent to a second side of the at least one magnetic sensing circuit, the first magnetic flux pipe structure and the second magnetic flux pipe structure configured to conduct the magnetic field generated by the magnetic element and redirect the magnetic field generated by the magnetic element towards the at least one magnetic sensing circuit.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 24, 2019
From: LUTRON ELECTRONICS CO., INC.
To: LUTRON TECHNOLOGY COMPANY LLC
Reel/Frame 049286/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 16, 2019
From: NEWMAN, ROBERT C., JR.; GAGE, ALEXANDER WADE; LUDWIG, STEPHEN M., JR.; SHIVELL, WILLIAM TAYLOR
To: LUTRON ELECTRONICS CO., INC.
Reel/Frame 048895/0033 →
Continuity (2)
Provisional Application 62356989 · Jun 30, 2016
Related Publication 20180005742A1 · Jan 4, 2018