IP Library › Granted Patent US 9,766,705
Granted Patent B2
US 9,766,705 · App. 14/739,073 · Granted Sep 19, 2017

Stationary interface control and method for using the same

Inventors: Eng Wiang Chan (Penang, MY); Mohd Wardi Iswali Aihsan (Kedah, MY); Chee Kit Chan (Perak, MY); Shirish Kaner (Penang, MY); Steven John Kerr (Penang, MY)
Assignee: MOTOROLA SOLUTIONS, INC.
G06F3/016B60K37/06G06F3/0362G06F3/03547G06F3/044G06F3/04847G06F2203/0339G06F2203/04102
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Quick Facts
Patent No.
US 9,766,705
App. No.
14/739,073
Granted
Sep 19, 2017
Kind
B2
Abstract

A stationary interface control knob includes a body having a fixed substantially-cylindrical surface with a first axis, and a flexible touch panel sensor having a sensor surface at least partially in cylindrical form with a spaced relationship from the fixed substantially-cylindrical surface. The sensor surface has a second axis coinciding with the first axis. The flexible touch panel sensor senses a user interaction with the fixed substantially-cylindrical surface and generates an interface signal in response thereto. Also discloses are method of controlling the stationary interface control knob.

Claims (34)

1. A stationary interface control comprising:

a knob-like structure including a body having a fixed, substantially-cylindrical surface, a first axis, and a first planar surface perpendicular to the first axis;

a first capacitive touch panel sensor with a second planar surface being parallel with the first planar surface, the first capacitive touch panel sensor generating a first interface signal in response to a touch;

a second capacitive touch panel sensor having a sensor surface substantially forming a cylinder paralleling the fixed, substantially-cylindrical surface and having a second axis coinciding with the first axis, the second capacitive touch panel sensor generating a second interface signal in response to a virtual rotation;

a haptic vibrator; and

a controller connected to the first capacitive touch panel sensor, the second capacitive touch panel sensor, and the haptic vibrator, and configured to

receive the first interface signal and output a first control signal based on the first interface signal; and

receive the second interface signal and output a second control signal based on the second interface signal;

wherein the haptic vibrator produces a first vibration indicative of a mode of operation in response to the first control signal;

and the haptic vibrator produces a second vibration different from the first vibration and indicative of a change in a mode value in response to the second control signal.

2. The stationary interface control of claim 1 , wherein the sensor surface provides 360 degree cylindrical touch control.

3. The stationary interface control of claim 1 , and further comprising a plurality of capacitive touch panel sensors having a plurality of sensor surfaces, respectively, substantially forming a cylinder paralleling the fixed, substantially-cylindrical surface.

4. The stationary interface control of claim 1 , wherein the body includes a multiple piece body.

5. The stationary interface control of claim 1 , and further comprising a visual indicator connected to the controller and wherein the first control signal controls an output of the visual indicator.

6. The stationary interface control of claim 1 , and further comprising a first visual indicator connected to the controller and a second visual indicator connected to the controller, wherein the first control signal controls a first visual output and the second control signal controls a second visual output.

7. The system of claim 1 , wherein the touch is one selected from a group consisting of a touch and a swipe.

8. The system of claim 1 , wherein the mode of operation is one selected from a group consisting of a volume control mode, a channel control mode, and an inactive mode.

9. The system of claim 1 , wherein the mode of operation is one selected from a group consisting of a volume control mode, a channel control mode, and an inactive mode.

10. A method of controlling a stationary interface control, the method comprising:

providing a knob-like structure including a body having a fixed, substantially-cylindrical surface;

providing a first capacitive touch panel sensor having a second planar surface parallel with the first planar surface,

providing a second capacitive touch panel sensor having a sensor surface substantially forming a cylinder paralleling the fixed, substantially-cylindrical surface;

generating a first interface signal in response to a touch of the first planar surface;

generating a second interface signal in response to a virtual rotation of the fixed surface;

controlling a haptic vibrator to produce a first vibration indicative of a mode of operation based on the first interface signal; and

controlling the haptic vibrator to produce a second vibration different from the first vibration and indicative of a change in a mode value based on the second interface signal.

11. The method of claim 10 , wherein generating a second interface signal in response to a virtual rotation of the fixed surface includes sensing a first stimulus indicating a virtual rotation of the fixed surface in a first virtual rotational direction and sensing a second stimulus indicating a virtual rotation of the fixed surface in a second virtual rotational direction different from the first virtual rotational direction.

12. The method of claim 11 , further comprising:

controlling a visual indicator with a first output in response to sensing a first stimulus; and

controlling the visual indicator with a second output in response to sensing a second stimulus.

13. The method of claim 12 , wherein the visual indicator includes a plurality of light emitting diodes and controlling the visual indicator includes increasing a number of lit light emitting diodes with the first output and decreasing the number of lit light emitting diodes with the second output.

14. The method of claim 12 , wherein the visual indicator includes a numerical display and controlling the visual indicator includes increasing a number of the numerical display with the first output and decreasing the number of the numerical display with the second output.

15. The method of claim 10 , wherein generating a first interface signal in response to a touch of the first planar surface includes sensing a first stimulus indicating a tapping of the first planar surface.

16. The method of claim 10 , wherein generating a first interface signal in response to a touch of the first planar surface includes sensing a first stimulus indicating a swiping of the first planar surface.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 23, 2015
From: CHAN, ENG WIANG; AIHSAN, MOHD WARDI ISWALI; CHAN, CHEE KIT; KANER, SHIRISH; KERR, STEVEN JOHN
To: MOTOROLA SOLUTIONS, INC.
Reel/Frame 035960/0269 →
Continuity (1)
Related Publication 20160364059A1 · Dec 15, 2016