IP Library Granted Patent US 9,490,803
Granted Patent B2
US 9,490,803 · App. 12/952,457 · Granted Nov 8, 2016

User interface panel

Inventor: Jay J. Orellana (Wheaton, IL)
Assignee: TOUCHSENSOR TECHNOLOGIES, LLC
H03K17/962H03K2217/96077H03K2217/960785
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Quick Facts
Patent No.
US 9,490,803
App. No.
12/952,457
Granted
Nov 8, 2016
Kind
B2
Abstract

A user interface panel includes a touch sensor having one or more sensing electrodes and a user interface substrate disposed on a circuit carrier substrate. The user interface substrate includes a touch surface comprising a conductive material. A gap separates a portion of the conductive material overlying one of the sensing electrodes from surrounding portions of the conductive material.

Claims (25)

1. A user interface comprising:

a circuit carrier substrate;

a first electrode structure disposed on said circuit carrier substrate, said first electrode structure comprising a first sensing electrode and a second sensing electrode adjacent at least a portion of said first sensing electrode, said second sensing electrode substantially surrounding said first sensing electrode;

a second electrode structure disposed on said circuit carrier, said second electrode structure comprising a first sensing electrode and a second sensing electrode adjacent at least a portion of said first sensing electrode;

a field generation and detection circuit coupled to said first sensing electrode and said second sensing electrode of said first electrode structure and to said first sensing electrode and said second sensing electrode of said second electrode structure;

a user interface substrate associated with said circuit carrier substrate, said user interface substrate comprising a layer of conductive material defining a first gap and second gap, said first gap surrounding a first center portion of said layer of conductive material, said first center portion overlying at least a portion of said first sensing electrode and at least a portion of said second sensing electrode of said first electrode structure, said second gap surrounding a second center portion of said layer of conductive material, and said first gap and said second gap being surrounded by a surrounding portion of said layer of conductive material; and

an electrical insulator separating said first and second electrode structures from said layer of conductive material, said surrounding portion of said layer of conductive material being on the same side of said electrical insulator as said first center portion of said layer of conductive material and said second center portion of said layer of conductive material.

2. The user interface of claim 1 wherein said first sensing electrode of said first electrode structure comprises a thin conductive electrode pad having a substantially closed geometric form.

3. The user interface of claim 1 wherein said first sensing electrode of said first electrode structure comprises a thin conductive electrode pad having a substantially open geometric form.

4. The user interface of claim 1 wherein said first gap substantially overlies said second sensing electrode of said first electrode structure.

5. The user interface of claim 1 wherein said surrounding portion overlies at least a portion of said second sensing electrode of said first electrode structure.

6. The user interface of claims 1 wherein said field generation and detection circuit is embodied on an integrated circuit proximate said first and second sensing electrodes of said first electrode structure.

7. The user interface of claim 1 wherein said field generation and detection circuit generates electric fields about said first and second sensing electrodes of said first electrode structure.

8. The user interface of claim 7 wherein at least a portion of said electric field about said second sensing electrode of said first electrode structure penetrates said user interface substrate through said gap.

9. The user interface of claim 8 wherein said field generation and detection circuit detects disturbances to said electric fields and provides an output indicative of proximity of a stimulus to said center portion.

10. The user interface of claim 1 further comprising an indicator.

11. The user interface of claim 10 wherein said indicator comprises an aperture in said user interface substrate and a light source associated with said aperture.

12. The user interface of claim 1 further comprising means for illuminating said first gap.

13. The user interface of claim 1 wherein said user interface substrate comprises a conductive material.

14. The user interface of claim 13 wherein said user interface substrate comprises stainless steel, aluminum, or copper.

15. The user interface of claim 1 wherein said user interface substrate comprises a dielectric material having a conductive surface disposed thereon.

16. The user interface of claim 1 wherein substantially no air gap exists between said circuit carrier substrate and said user interface substrate proximate said first electrode structure.

17. The user interface of claim 1 wherein substantially no air gap exists between said circuit carrier substrate and said user interface substrate.

18. The user interface of claim 1 wherein said first electrode structure and said user interface substrate are located on different sides of said circuit carrier substrate.

19. The user interface of claim 1 wherein at least a portion of said first electrode structure and said user interface substrate are located on the same side of said circuit carrier substrate.

Assignments (2)
SECURITY INTEREST Recorded Jul 11, 2024
From: TOUCHSENSOR TECHNOLOGIES, L.L.C.
To: BANK OF AMERICA, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 067958/0721 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 19, 2011
From: ORELLANA, JAY J.
To: TOUCHSENSOR TECHNOLOGIES, LLC
Reel/Frame 025658/0110 →
Continuity (2)
Provisional Application 61263505 · Nov 23, 2009
Related Publication 20110122082A1 · May 26, 2011