IP Library Granted Patent US 10,258,874
Granted Patent B2
US 10,258,874 · App. 15/944,275 · Granted Apr 16, 2019

Programmable actuation force input for an accessory and methods thereof

Inventor: Tino Soelberg (Valby, DK)
Assignee: STEELSERIES ApS
A63F13/22A63F13/24A63F13/285A63F13/42G06F1/1652G06F3/016G06F3/023G06F3/038G06F3/0395G06F3/03543G06F9/44505G06F13/102H01F7/0273A63F13/60A63F13/63A63F2300/1018A63F2300/208G06F2203/013
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Quick Facts
Patent No.
US 10,258,874
App. No.
15/944,275
Granted
Apr 16, 2019
Kind
B2
Abstract

A system that incorporates the subject disclosure may include, for example, a button including a fixed force magnet coupled to a first housing assembly component serving as a top portion of the button, a variable force magnet coupled to a second housing assembly serving as a bottom portion of the button, and a spring coupled to the fixed force magnetic and the variable force magnet for repelling the fixed force magnet from the variable force magnet according to a spring constant of the spring. The variable force magnet emitting a magnetic field to counter the spring constant and thereby adjust a force required to depress the button. Additional embodiments are disclosed.

Claims (31)

1. A method, comprising:

communicating, by a system comprising a processor, a signal to a variable force magnet at a first portion of a button to initiate a magnetic field, the magnetic field interacting with a ferromagnetic material at a second portion of the button to create a magnetic resistance to pressing of the button, wherein the variable force magnet at the first portion of the button and the ferromagnetic material at the second portion of the button are along a first radial axis; and

detecting, by the system, a first conductive material coupled to the first portion of the button contacting a second conductive material coupled to the second portion of the button, wherein the first conductive material and the second conductive material are along a second radial axis different than the first radial axis.

2. The method of claim 1 , comprising generating, by the system, a change in electrical communication between the first portion of the button and the second portion of the button in response to the first portion of the button contacting the second conductive material coupled to the second portion of the button.

3. The method of claim 1 , comprising detecting, by the system, a change in electrical communication between the first portion of the button and the second portion of the button indicating a button press in counteraction of the magnetic resistance.

4. The method of claim 1 , comprising asserting, by the system, a first actuation state responsive to the detecting of a change in electrical communication.

5. The method of claim 1 , wherein the system comprises a computing device that receives a target magnitude of the magnetic field from an accessory, wherein the signal that is communicated to the variable force magnet initiates the magnetic field to the target magnitude.

6. The method of claim 1 , wherein the system comprises a computing device that receives a target polarization of the magnetic field from an accessory, wherein the signal that is communicated to the variable force magnet initiates the magnetic field to the target polarization.

7. The method of claim 1 , wherein the signal is a digital signal or an analog signal.

8. The method of claim 1 , further comprising transmitting to a software application first substitute stimuli responsive to a first actuation state.

9. The method of claim 1 , wherein the ferromagnetic material comprises a magnetized ferromagnetic material that initiates a second magnetic field, the second magnetic field altering the magnetic resistance to the pressing of the button.

10. An accessory, comprising:

a button comprising a variable force magnet and a ferromagnetic material;

a memory to store instructions; and

a processor coupled to the memory and the button, wherein responsive to executing the instructions, the processor performs operations comprising:

initiating a magnetic field at the variable force magnet, wherein the variable force magnet is at a first portion of a keypad, wherein the magnetic field interacts with the ferromagnetic material, and wherein the ferromagnetic material is at a second portion of the keypad to create a magnetic resistance to pressing of the keypad, wherein the variable force magnet at the first portion of the keypad and the ferromagnetic material the second portion of the keypad are along a first radial axis;

detecting a first conductive material coupled to the first portion of the keypad contacting a second conductive material coupled to the second portion of the keypad, wherein the first conductive material and the second conductive material are along a second radial axis different than the first radial axis; and

generating a keypad press in response to the first portion of the keypad contacting the second conductive material coupled to the second portion of the keypad.

11. The accessory of claim 10 , wherein the operations comprise detecting the keypad press in counteraction of the magnetic resistance.

12. The accessory of claim 10 , wherein the operations comprise transmitting an actuation signal to a computing device responsive to the detecting of the keypad press.

13. The accessory of claim 12 , wherein the actuation signal is a digital signal or an analog signal.

14. The accessory of claim 10 , wherein the operations further comprise receiving a signal associated with a target magnitude of the magnetic field, a target polarity of the magnetic field, or any combination thereof.

15. The accessory of claim 10 , wherein the initiating of the variable force magnet comprises communicating a signal to the variable force magnet.

16. The accessory of claim 10 , further comprising a spring between the first portion of the keypad and the second portion of the keypad.

17. A button, comprising:

a spring coupled to a fixed force magnetic and a variable force magnet for repelling the fixed force magnet from the variable force magnet according to a spring constant of the spring, the variable force magnet emitting a magnetic field to counter the spring constant and thereby adjust a force required to depress the button, wherein the fixed force magnet, the variable for magnet, and the spring are along a first radial axis;

a first conductive material coupled to a first housing assembly component; and

a second conductive material coupled to a second housing assembly component, wherein the first conductive material and the second conductive material are along a second radial axis different than the first radial axis, and wherein contact between the first conductive material and the second conductive material indicates a press of the button.

18. The button of claim 17 , wherein the fixed force magnet is coupled to the first housing assembly component serving as a top portion of the button.

19. The button of claim 17 , wherein the variable force magnet is coupled to the second housing assembly component serving as a bottom portion of the button.

20. The button of claim 17 , wherein the magnetic field of the variable force magnet is controlled by a signal that is supplied by a processor of a keyboard utilizing the button.

Assignments (2)
NUNC PRO TUNC ASSIGNMENT Recorded Jan 23, 2025
From: STEELSERIES APS
To: GN STORE NORD A/S
Reel/Frame 069988/0950 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 17, 2018
From: SOELBERG, TINO
To: STEELSERIES APS
Reel/Frame 045564/0849 →
Continuity (3)
Continuation 14691546 · Apr 20, 2015
Provisional Application 61982081 · Apr 21, 2014
Related Publication 20180221760A1 · Aug 9, 2018