IP Library Granted Patent US 10,228,808
Granted Patent B2
US 10,228,808 · App. 15/915,726 · Granted Mar 12, 2019

Sense electrode design

Inventor: Esat Yilmaz (Santa Cruz, CA)
G06F3/044Y10T29/49002
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Quick Facts
Patent No.
US 10,228,808
App. No.
15/915,726
Granted
Mar 12, 2019
Kind
B2
Abstract

A touch sensitive device includes a plurality of sense electrodes arranged in a pattern to receive charge from drive electrodes. The pattern of sense electrodes has extreme portions having worst case charge transfer times, wherein the worst case charge transfer time at multiple extreme portions is substantially equal.

Claims (25)

1. A touch sensor, comprising:

a layer of longitudinal adjacent drive electrodes separated from each other by a gap; and

a layer of sense electrodes, the sense electrodes formed in the shape of spines running transverse to the drive electrodes and having different width crossbars running in the same direction as the drive electrodes such that portions of the crossbars that run in the same direction as the drive electrodes have different widths than portions of other crossbars that run in the same direction as the drive electrodes, each spine comprising an end to couple to sense circuitry and a width that increases incrementally from the end of the spine to couple to sense circuitry, wherein each crossbar is coupled to a point on a spine where there is an incremental increase in width.

2. The touch sensor of claim 1 , wherein the crossbars are arranged with increasing width from the end of the spine to couple to sense circuitry.

3. The touch sensor of claim 1 , wherein:

each crossbar has at least one tip that is furthest from the spine; and

a worst case charge transfer time from the tip to the end of the spine to couple to sense circuitry does not exceed a predetermined threshold.

4. An apparatus, comprising:

a layer of longitudinal adjacent drive electrodes separated from each other by a gap; and

a layer of sense electrodes, the sense electrodes formed in the shape of spines running transverse to the drive electrodes and having different width crossbars running in the same direction as the drive electrodes such that portions of the crossbars that run in the same direction as the drive electrodes have different widths than portions of other crossbars that run in the same direction as the drive electrodes, each spine comprising an end to couple to sense circuitry and a width that increases incrementally from the end of the spine to couple to sense circuitry, wherein each crossbar is coupled to a point on a spine where there is an incremental increase in width.

5. The apparatus of claim 4 , wherein the crossbars are arranged with increasing width from the end of the spine to couple to sense circuitry.

6. The apparatus of claim 4 , further comprising a display, wherein the layer of longitudinal adjacent drive electrodes provides a shield from electric fields from the display.

7. The apparatus of claim 4 , wherein:

each crossbar on a spine has at least one tip that is furthest from the spine; and

a worst case charge transfer time from the tip to the end of the spine to couple to sense circuitry does not exceed a predetermined threshold.

8. The apparatus of claim 7 , further comprising a display, wherein the layer of longitudinal adjacent drive electrodes provides a shield from electric fields from the display.

9. The apparatus of claim 4 , wherein the sense electrodes are formed of a transparent conductive material.

10. A method, comprising:

forming a layer of longitudinal adjacent drive electrodes separated from each other by a gap; and

forming a layer of sense electrodes, the sense electrodes formed in the shape of spines running transverse to the drive electrodes and having different width crossbars running in the same direction as the drive electrodes such that portions of the crossbars that run in the same direction as the drive electrodes have different widths than portions of other crossbars that run in the same direction as the drive electrodes, each spine comprising an end to couple to sense circuitry and a width that increases incrementally from the end of the spine to couple to sense circuitry, wherein each crossbar is coupled to a point on a spine where there is an incremental increase in width.

11. The method of claim 10 , wherein the crossbars are arranged with increasing width from the end of the spine to couple to sense circuitry.

12. The method of claim 10 , wherein:

each crossbar on a spine has at least one tip that is furthest from the spine; and

a worst case charge transfer time from the tip to the end of the spine to couple to sense circuitry does not exceed a predetermined threshold.

13. The method of claim 10 , wherein the sense electrodes are formed of a transparent conductive material.

Assignments (5)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 5, 2019
From: MICROCHIP TECHNOLOGY INC.; ATMEL CORPORATION; MICROCHIP TECHNOLOGY GERMANY GMBH
To: NEODRÓN LIMITED
Reel/Frame 048259/0840 →
RELEASE OF SECURITY INTEREST IN CERTAIN PATENT RIGHTS Recorded Dec 21, 2018
From: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
To: MICROCHIP TECHNOLOGY INCORPORATED; ATMEL CORPORATION
Reel/Frame 047976/0884 →
RELEASE OF SECURITY INTEREST IN CERTAIN PATENT RIGHTS Recorded Dec 21, 2018
From: WELLS FARGO BANK, NATIONAL ASSOCIATION, AS NOTES COLLATERAL AGENT
To: MICROCHIP TECHNOLOGY INCORPORATED; ATMEL CORPORATION
Reel/Frame 047976/0937 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 8, 2018
From: YILMAZ, ESAT
To: QRG LIMITED
Reel/Frame 045532/0022 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 8, 2018
From: QRG LIMITED
To: ATMEL CORPORATION
Reel/Frame 045534/0278 →
Continuity (2)
Continuation 12605779 · Oct 26, 2009
Related Publication 20180196552A1 · Jul 12, 2018
Cited By (1)
US 12,504,855