IP Library Granted Patent US 10,088,955
Granted Patent B2
US 10,088,955 · App. 15/442,928 · Granted Oct 2, 2018

Method of dynamically shielding a capacitive touch system against interference caused by near field communication radio frequency emission

Inventor: Joshua Konopka (Salt Lake City, UT)
Assignee: CIRQUE CORPORATION
G06F3/0418G06F3/041G06F2203/04107H03K2217/960765
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Quick Facts
Patent No.
US 10,088,955
App. No.
15/442,928
Granted
Oct 2, 2018
Kind
B2
Abstract

A system and method for reducing interference caused by a near field communication antenna that is in close proximity of a touch sensor that the near field communication antenna will cause electromagnetic interference with operation of the touch sensor when the near field communication antenna is transmitting, wherein specific electrodes of the touch sensor are grounded when the near field communication antenna is actively transmitting a signal, thereby enabling the touch sensor to continue operating at the same time as the near field communication antenna.

Claims (24)

1. A method for reducing interference of a near field communication antenna in close proximity to a touch sensor, said method comprising:

providing a touch sensor formed from a plurality of electrodes;

selecting electrodes that are disposed around a perimeter of the touch sensor as perimeter electrodes that are individually addressable in order to send a signal only to the perimeter electrodes, and wherein all remaining electrodes as interior electrodes;

providing a first mode of operation of the touch sensor wherein the perimeter electrodes and the interior electrodes both operate to receive touch data;

providing a second mode of operation of the touch sensor wherein the perimeter electrodes receive a signal that shields the interior electrodes so that the interior electrodes receive touch data; and

operating the touch sensor in the first mode of operation when there is no electromagnetic interference caused by the near field communication antenna, and operating the touch sensor in the second mode of operation when there is electromagnetic interference from the near field communication antenna.

2. The method as defined in claim 1 wherein the method further comprises the step of operating the touch sensor in the second mode of operation when the near field communication antenna is transmitting.

3. The method as defined in claim 1 wherein the method further comprises repurposing the perimeter electrodes when switching the mode of operation of the touch sensor between the first mode and the second mode.

4. The method as defined in claim 1 wherein the method further comprises grounding the perimeter electrodes when the near field communication antenna is transmitting to thereby shield the interior electrodes of the touch sensor.

5. The method as defined in claim 4 wherein the method further comprises grounding the perimeter electrodes when the near field communication antenna is transmitting to thereby reduce the strength of the electromagnetic signals from the near field communication antenna that reach the interior electrodes of the touch sensor.

6. The method as defined in claim 1 wherein the touch sensor changes from the first mode of operation to the second mode of operation when the touch sensor determines that the near field communication antenna is transmitting, and changes back to the first mode of operation when the touch sensor determines that the near field communication antenna has stopped transmitting.

7. The method as defined in claim 1 wherein the touch sensor changes from the first mode of operation to the second mode of operation when the touch sensor receives a signal from the near field communication antenna that it is going to begin transmitting, and changes back to the first mode of operation when the touch sensor receives a signal from the near field communication antenna that it has stopped transmitting.

8. A method for enabling a touch sensor to operate within a range of interference caused by a near field communication antenna, said method comprising:

providing a touch sensor formed from a plurality of electrodes;

selecting electrodes that are disposed around a perimeter of the touch sensor as perimeter electrodes that are individually addressable, and wherein all remaining electrodes as interior electrodes;

providing a first mode of operation of the touch sensor wherein the perimeter electrodes and the interior electrodes both operate to receive touch data;

providing a second mode of operation of the touch sensor that repurposes the perimeter electrodes to shield the interior electrodes so that the interior electrodes receive touch data; and

operating the touch sensor in the first mode of operation when there is no electromagnetic interference caused by the near field communication antenna, and operating the touch sensor in the second mode of operation when there is electromagnetic interference from the near field communication antenna.

9. The method as defined in claim 8 wherein the method further comprises operating the touch sensor in the second mode of operation when the near field communication antenna is transmitting.

10. The method as defined in claim 8 wherein the method further comprises repurposing the perimeter electrodes when switching the mode of operation of the touch sensor between the first mode and the second mode.

11. The method as defined in claim 8 wherein the method further comprises grounding the perimeter electrodes when the near field communication antenna is transmitting to thereby shield the interior electrodes of the touch sensor.

12. The method as defined in claim 11 wherein the method further comprises repurposing the perimeter electrodes when the near field communication antenna is transmitting to thereby shield the interior electrodes of the touch sensor from electromagnetic interference.

13. The method as defined in claim 8 wherein the touch sensor changes from the first mode of operation to the second mode of operation when the touch sensor determines that the near field communication antenna is transmitting, and changes back to the first mode of operation when the touch sensor determines that the near field communication antenna has stopped transmitting.

14. The method as defined in claim 8 wherein the touch sensor changes from the first mode of operation to the second mode of operation when the touch sensor receives a signal from the near field communication antenna that it is going to begin transmitting, and changes back to the first mode of operation when the touch sensor receives a signal from the near field communication antenna that it has stopped transmitting.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 28, 2017
From: KONOPKA, JOSHUA
To: CIRQUE CORPORATION
Reel/Frame 042186/0714 →
Continuity (2)
Provisional Application 62299697 · Feb 25, 2016
Related Publication 20170249032A1 · Aug 31, 2017
Cited By (1)
US 12,601,852