IP Library Granted Patent US 9,423,894
Granted Patent B2
US 9,423,894 · App. 13/310,670 · Granted Aug 23, 2016

Magnetically sensed user interface devices

Inventors: Mark S. Olsson (La Jolla, CA); Austin Rutledge (San Diego, CA); Loni M. Canepa (San Diego, CA); Alexander L. Warren (San Diego, CA); Michael E. Turgeon (San Diego, CA); Ray Merewether (La Jolla, CA); Michael J. Martin (San Diego, CA)
Assignee: SEESAW, INC.
G06F3/0362G05G9/047G06F1/169G06F3/00G06F3/016G06F3/0338H01H9/54H01H25/04
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 9,423,894
App. No.
13/310,670
Granted
Aug 23, 2016
Kind
B2
Abstract

A user interface device including a floating actuator sub-assembly and a base assembly flexibly coupled to the floating actuator assembly is disclosed. The floating actuator assembly may include a magnet array assembly with a plurality of magnets fixed relative to each other. The user interface device may further include a deformable actuator sub-assembly, which may include a magnet array assembly with a plurality of magnets in a movable configuration relative to each other. A base assembly may include multi-axis magnetic sensors corresponding to the magnets in the magnet arrays to sense position of motion of the magnets during user displacements and/or deformation of actuator elements of the user interface device.

Claims (28)

1. A magnetic sensing user interface device (UID), comprising:

a floating actuator assembly including a plurality of magnets, wherein the plurality of magnets are positioned in a substantially fixed, non-deformable array structure relative to each other;

a fixed base assembly including a plurality of multi-axis magnetic sensors configured to sense magnetic fields generated by the plurality of magnets;

a flexible coupling assembly configured to floatably couple the floating actuator assembly to the base assembly;

a deformable actuator assembly including a second plurality of magnets, wherein the second plurality of magnets are disposed in movable positions relative to each other in a deformable magnet array; and

a second base assembly including a second plurality of multi-axis magnetic sensors configured to sense magnetic fields generated by the second plurality of magnets.

2. The UID of claim 1 , wherein the second plurality of magnets are coupled to or disposed on or in a deformable actuator element.

3. The UID of claim 1 , wherein the first base assembly and the second base assembly comprise an integral base assembly.

4. The UID of claim 3 , wherein the floating actuator assembly and the deformable actuator assembly are coupled to form an integral actuator assembly.

5. The UID of claim 1 , wherein the flexible coupling assembly comprises a spring assembly, wherein the spring assembly floatably couples the integral actuator assembly to the integral base assembly.

6. The UID of claim 5 , wherein the spring assembly comprises a plurality of coil springs disposed in a plane substantially perpendicular to a longitudinal axis of the floating actuator assembly.

7. The UID of claim 4 , wherein the spring assembly comprises a plurality of coil springs having ends coupled to the integral actuator assembly and the integral base assembly.

8. The UID of claim 7 , wherein the plurality of coil springs are metallic springs and a first end of ones of the plurality of coil springs is thermally formed into the integral base assembly and a second end of ones of the plurality of coil springs is thermally formed into the integral actuator assembly.

9. The UID of claim 7 , wherein the ends of ones of the plurality of coil springs are thermally formed into a plastic element of the first or the second base assembly and the integral actuator assembly using an inductive heating process.

10. The UID of claim 7 , wherein the ends of ones of the plurality of coil springs are thermally bonded onto a plastic element of the floating actuator assembly.

11. The UID of claim 1 , further including a dampening element configured to dampen a motion of the floating actuator assembly relative to the first or the second base assembly.

12. The UID of claim 11 , wherein the dampening element comprises a boot disposed about the floating actuator assembly and the first base assembly.

13. The UID of claim 12 , wherein the boot includes a longitudinal flexing section.

14. The UID of claim 13 , wherein the boot further includes a rotational flexing section.

15. The UID of claim 1 , further including a haptic feedback element.

16. The UID of claim 15 , wherein the haptic feedback element is coupled to or integral with the floating actuator assembly.

17. The UID of claim 16 , wherein the haptic feedback element is a vibrator motor.

18. The UID of claim 1 , further including a mounting base element.

19. The UID of claim 18 , wherein the mounting base element position positions the floating actuator assembly in a substantially vertical orientation relative to a mounting surface.

20. The UID of claim 1 , further including a processing element:

wherein the processing element is electrically coupled to the plurality of multi-axis magnetic sensors to receive magnetic sensor output signals from ones of the magnetic sensors and generate, based on the magnetic sensor output signals, a UID output signal corresponding to a position or motion of the floating actuator assembly relative to the base assembly; and

wherein the processing element is electrically coupled to the second plurality of multi-axis magnetic sensors to receive second magnetic sensor output signals from ones of the second plurality of magnetic sensors and generate, based on the second magnetic sensor output signals, a second UID output signal corresponding to a deformation of the deformable actuator assembly.

21. The UID of claim 20 , wherein the second UID output signal includes vector deformation information associated with a magnitude and a direction of the deformation of the deformable actuator assembly.

Assignments (2)
CHANGE OF NAME Recorded Aug 24, 2016
From: SEEKTECH, INC.
To: SEESCAN, INC.
Reel/Frame 039527/0930 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 18, 2012
From: OLSSON, MARK S.; WARREN, ALEXANDER L.; MARTIN, MICHAEL J.; TURGEON, MICHAEL E.; RUTLEDGE, AUSTIN; CANEPA, LONI M.; MEREWETHER, RAY
To: SEEKTECH, INC.
Reel/Frame 029154/0839 →
Continuity (5)
Provisional Application 61419150 · Dec 2, 2010
Provisional Application 61424496 · Dec 17, 2010
Provisional Application 61438738 · Feb 2, 2011
Provisional Application 61525766 · Aug 20, 2011
Related Publication 20120306603A1 · Dec 6, 2012