IP Library › Granted Patent US 11,983,338
Granted Patent B1
US 11,983,338 · App. 18/166,969 · Granted May 14, 2024

Capacitive knob sensing system and method using transparent sensing

Inventors: Kelvin Fong (Milpitas, CA); Danny Joseph (Fribourg, CH)
Assignee: Synaptics Incorporated
G06F3/0383G01L1/142G01P13/04G06F3/0362G06F3/04162G06F3/0441G06F3/0446H01H19/14
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 11,983,338
App. No.
18/166,969
Granted
May 14, 2024
Kind
B1
Abstract

A system for using a transparent conductive material layer for a knob interface is provided. The system comprises: the knob interface comprising a fixed base and one or more knob interface electrodes; the transparent conductive material layer configured to electrically couple the subset of the plurality of grid electrodes to the one or more knob interface electrodes; and a processing system. The processing system is configured to: drive the plurality of grid electrodes with one or more signals; receive one or more resulting signals based on driving the plurality of grid electrodes with the one or more signals; and perform one or more actions based on the one or more resulting signals.

Claims (35)

1. A system for using a transparent conductive material layer for a knob interface, comprising:

the knob interface comprising a fixed base and one or more knob interface electrodes, wherein the fixed base comprises an outer diameter and an inner diameter;

a plurality of grid electrodes positioned below the knob interface, wherein a subset of the plurality of grid electrodes are positioned within the inner diameter of the fixed base;

the transparent conductive material layer configured to electrically couple the subset of the plurality of grid electrodes to the one or more knob interface electrodes; and

a processing system configured to:

drive the plurality of grid electrodes with one or more signals, wherein driving the plurality of grid electrodes comprises driving the subset of the plurality of grid electrodes that are electrically coupled to the one or more knob interface electrodes via the transparent conductive material layer;

receive one or more resulting signals based on driving the plurality of grid electrodes with the one or more signals; and

perform one or more actions based on the one or more resulting signals.

2. The system of claim 1 , wherein the transparent conductive material layer is an indium tin oxide (ITO) layer or a metal-mesh layer that electrically couples the subset of the plurality of grid electrodes to the one or more knob interface electrodes.

3. The system of claim 1 , wherein the transparent conductive material layer is positioned between the fixed base of the knob interface and the plurality of grid electrodes, and wherein a cover glass is positioned between the plurality of grid electrodes and the transparent conductive material layer.

4. The system of claim 3 , wherein a transparent film layer and an optically clear adhesive are positioned between the cover glass and the transparent conductive material layer.

5. The system of claim 3 , wherein an optically clear adhesive is positioned between the cover glass and the transparent conductive material layer, wherein a transparent film layer is positioned between the transparent conductive material layer and the fixed base, and wherein the transparent conductive material layer comprises one or more legs that electrically couple the subset of the plurality of grid electrodes to the one or more knob interface electrodes.

6. The system of claim 3 , wherein the knob interface comprises one or more conductive pads, and wherein the transparent conductive material layer is in direct electrical contact with the one or more conductive pads or the transparent conductive material layer is in close proximity and has sufficient overlapping area to one or more regions of the one or more conductive pads with an adhesive in between them, wherein the overlapping area and the close proximity creates a strong capacitive coupling between the transparent conductive material layer and the one or more conductive pads.

7. The system of claim 3 , wherein the knob interface comprises one or more conductive pads, and wherein an adhesive layer is positioned between the one or more conductive pads and the transparent conductive material layer and is configured to provide an adhesion bond between the one or more conductive pads and the transparent conductive material layer.

8. The system of claim 1 , wherein the subset of the plurality of grid electrodes comprises one or more reference electrodes, wherein the one or more signals comprises a reference signal, and wherein driving the plurality of grid electrodes comprises driving the one or more reference electrodes of the subset of the plurality of grid electrodes with the reference signal.

9. The system of claim 1 , wherein the subset of the plurality of grid electrodes comprises one or more sensing electrodes, wherein the one or more signals comprises a sensing signal, wherein driving the plurality of grid electrodes comprises driving the one or more sensing electrodes of the subset of the plurality of grid electrodes with the sensing signal, and wherein receiving the one or more resulting signals comprises receiving resulting signals from the one or more sensing electrodes of the subset of the plurality of grid electrodes.

10. The system of claim 9 , wherein the resulting signals from the one or more sensing electrodes indicate a rotational direction of the knob interface.

11. The system of claim 9 , wherein the resulting signals from the one or more sensing electrodes indicate a magnitude of rotation of the knob interface.

12. The system of claim 9 , wherein the resulting signals from the one or more sensing electrodes indicate a compression state of the knob interface, and wherein performing the one or more actions comprises:

determining the compression state indicates compression of the knob interface; and

performing an action based on the compression of the knob interface.

13. The system of claim 9 , wherein the resulting signals from the one or more sensing electrodes indicate an input object grabbing the knob interface, and wherein performing the one or more actions comprises performing an action based on the input object grabbing the knob interface.

14. A method for using a transparent conductive material layer for a knob interface, comprising:

driving a plurality of grid electrodes with one or more signals, wherein the knob interface comprises a fixed base and one or more knob interface electrodes, wherein the fixed base comprises an outer diameter and an inner diameter, wherein the plurality of grid electrodes are positioned below the knob interface, wherein a subset of the plurality of grid electrodes are positioned within the inner diameter of the fixed base, wherein the transparent conductive material layer is configured to electrically couple the subset of the plurality of grid electrodes to the one or more knob interface electrodes, and wherein driving the plurality of grid electrodes comprises driving the subset of the plurality of grid electrodes that are electrically coupled to the one or more knob interface electrodes via the transparent conductive material layer;

receiving one or more resulting signals based on driving the plurality of grid electrodes with the one or more signals; and

performing one or more actions based on the one or more resulting signals.

15. The method of claim 14 , wherein the subset of the plurality of grid electrodes comprises one or more reference electrodes, wherein the one or more signals comprises a reference signal, and wherein driving the plurality of grid electrodes comprises driving the one or more reference electrodes of the subset of the plurality of grid electrodes with the reference signal.

16. The method of claim 14 , wherein the subset of the plurality of grid electrodes comprises one or more sensing electrodes, wherein the one or more signals comprises a sensing signal, wherein driving the plurality of grid electrodes comprises driving the one or more sensing electrodes of the subset of the plurality of grid electrodes with the sensing signal, and wherein receiving the one or more resulting signals comprises receiving resulting signals from the one or more sensing electrodes of the subset of the plurality of grid electrodes.

17. The method of claim 16 , wherein the resulting signals from the one or more sensing electrodes indicate a rotational direction and a magnitude of rotation of the knob interface.

18. The method of claim 16 , wherein the resulting signals from the one or more sensing electrodes indicate an input object grabbing the knob interface, and wherein performing the one or more actions comprises performing an action based on the input object grabbing the knob interface.

19. The method of claim 14 , wherein the transparent conductive material layer is an indium tin oxide (ITO) layer or a metal-mesh layer that electrically couples the subset of the plurality of grid electrodes to the one or more knob interface electrodes.

20. A non-transitory computer-readable medium having processor-executable instructions stored thereon, the processor-executable instructions, when executed, facilitating performance of the following:

driving a plurality of grid electrodes with one or more signals, wherein a knob interface comprises a fixed base and one or more knob interface electrodes, wherein the fixed base comprises an outer diameter and an inner diameter, wherein the plurality of grid electrodes are positioned below the knob interface, wherein a subset of the plurality of grid electrodes are positioned within the inner diameter of the fixed base, wherein a transparent conductive material layer is configured to electrically couple the subset of the plurality of grid electrodes to the one or more knob interface electrodes, and wherein driving the plurality of grid electrodes comprises driving the subset of the plurality of grid electrodes that are electrically coupled to the one or more knob interface electrodes via the transparent conductive material layer;

receiving one or more resulting signals based on driving the plurality of grid electrodes with the one or more signals; and

performing one or more actions based on the one or more resulting signals.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 10, 2023
From: FONG, KELVIN; JOSEPH, DANNY
To: INCORPORATED, SYNAPTICS
Reel/Frame 062648/0677 →
Cited By (5)
US 12,260,032 US 12,326,750 US 12,326,988 US 12,638,940 US 12,730,526