IP Library Granted Patent US 10,088,939
Granted Patent B2
US 10,088,939 · App. 14/243,116 · Granted Oct 2, 2018

Biometric sensing

Inventors: Fred G. Benkley, III (Andover, MA); David Joseph Geoffroy (Amherst, MA)
Assignee: IDEX ASA
G06F3/0416G06F3/03547G06F3/044G06F3/0412G06K9/0002G06K9/00013H01L27/323G06F2203/0338
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 10,088,939
App. No.
14/243,116
Granted
Oct 2, 2018
Kind
B2
Abstract

An novel sensor is provided having a plurality of substantially parallel drive lines configured to transmit a signal into a surface of a proximally located object, and also a plurality of substantially parallel pickup lines oriented proximate the drive lines and electrically separated from the pickup lines to form intrinsic electrode pairs that are impedance sensitive at each of the drive and pickup proximal locations.

Claims (40)

1. An impedance sensor, comprising:

a folded substrate having a plurality of drive lines and a plurality of pickup lines that are located on opposite sides of the folded substrate, the folded substrate being folded over an edge of a user interface device such that (i) the folded substrate folds over a top edge of the user interface device, loops back along a side surface of the user interface device, and then folds over the top edge of the user interface device and (ii) the plurality of drive lines and the plurality of pickup lines are both disposed on a top surface of the user interface device such that the plurality of drive lines and plurality of pickup lines form electrode pairs;

a dielectric layer between the plurality of drive lines and the plurality of pickup lines; and

a circuit included on a portion of the folded substrate that loops back along the side surface of the user interface device, the circuit operatively coupled to the substrate and configured to:

activate at least one of the drive lines, and

detect a signal on at least one of the pickup lines.

2. The impedance sensor of claim 1 , wherein the folded substrate is detachable from the user interface device.

3. The impedance sensor of claim 1 , wherein the circuit is configured to determine proximity of or touch by a user based on the detected signal on the at least one pickup line.

4. The impedance sensor of claim 1 , wherein the user interface comprises a display substrate, and wherein at least a portion of the folded substrate is located over at least a portion of the display substrate.

5. The impedance sensor of claim 4 , wherein the user interface device further comprises a top layer, and wherein the folded substrate is located between the top layer and the display substrate.

6. The impedance sensor of claim 4 , wherein the folded substrate is arranged to position the circuit on a surface of the user interface device that is adjacent to and perpendicular to the display substrate.

7. The impedance sensor of claim 1 , further comprising a connector that extends from the circuit and is configured to communicate data between the sensor and a host device.

8. The impedance sensor of claim 1 , wherein the circuit is configured to determine a fingerprint pattern based on the detected signal on the at least one pickup line.

9. The impedance sensor of claim 1 , wherein:

the plurality of pickup lines are arranged generally parallel to one another on a first portion of the substrate;

the plurality of drive lines are arranged generally parallel to one another on a second portion of the substrate, and

wherein the first portion of the substrate is folded over the second portion of the substrate so that the pickup lines are disposed over the drive lines with at least a portion of the substrate disposed between the pickup lines and the drive lines and so that the pickup lines are arranged generally perpendicularly to the drive lines.

10. The impedance sensor of claim 1 , comprising a fold in the substrate that is generally parallel to the edge around which the sensor is mounted.

11. The impedance sensor of claim 1 , wherein the substrate forms the dielectric layer.

12. A user interface device, comprising:

a display screen; and

a sensor comprising:

a folded substrate having a plurality of drive lines and a plurality of pickup lines that are located on opposite sides of the folded substrate, the folded substrate being folded over an edge of a user interface device such that (i) the folded substrate folds over a top edge of the user interface device, loops back along a side surface of the user interface device, and then folds over the top edge of the user interface device and (ii) the plurality of drive lines and the plurality of pickup lines are both disposed on a top surface of the user interface device such that the plurality of drive lines and plurality of pickup lines form electrode pairs;

a dielectric layer between the plurality of drive lines and the plurality of pickup lines; and

a circuit included on a portion of the folded substrate that loops back along the side surface of the user interface device, the circuit configured to:

activate at least one of the drive lines, and

detect a signal on at least one of the pickup lines.

13. The user interface device of claim 12 , wherein the circuit is configured to determine proximity of or touch by a user based on the detected signal on the at least one pickup line.

14. The user interface device of claim 12 , wherein at least a portion of the folded substrate is located over at least a portion of the display screen.

15. The user interface device of claim 12 , wherein the display screen further comprises a display substrate and a top layer above the display substrate, and wherein the folded substrate is located between the top layer and the display substrate.

16. The user interface device of claim 12 wherein the folded substrate is attached the user interface device with a bezel located over the folded substrate.

17. The user interface device of claim 12 , wherein the sensor further comprising a connector that extends from the circuit and is configured to communicate between the sensor and a host device.

18. The user interface device of claim 12 , wherein the circuit is configured to determine a fingerprint pattern based on the detected signal on the at least one pickup line.

19. The user interface device of claim 12 , wherein the display screen comprises a touch screen.

20. The user interface device of claim 12 , wherein:

the plurality of pickup lines are arranged generally parallel to one another on a first portion of the substrate;

the plurality of drive lines are arranged generally parallel to one another on a second portion of the substrate, and

wherein the first portion of the substrate is folded over the second portion of the substrate so that the pickup lines are disposed over the drive lines with at least a portion of the substrate disposed between the pickup lines and the drive lines and so that the pickup lines are arranged generally perpendicularly to the drive lines.

21. The user interface device of claim 12 , wherein the display screen comprises an LCD or OLED.

22. The user interface device of claim 12 , wherein the substrate forms the dielectric layer.

Assignments (3)
CHANGE OF NAME Recorded Apr 29, 2020
From: IDEX ASA
To: IDEX BIOMETRICS ASA
Reel/Frame 052531/0874 →
NUNC PRO TUNC ASSIGNMENT Recorded Sep 30, 2014
From: CASEY, THAR; BENKLEY, FRED; GEOFFROY, DAVID; PICOFIELD TECHNOLOGIES, INC.
To: IDEX ASA
Reel/Frame 033850/0937 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 20, 2014
From: BENKLEY, FRED G., III; GEOFFROY, DAVID JOSEPH
To: IDEX ASA
Reel/Frame 033574/0752 →
Continuity (3)
Continuation 13860494 · Apr 10, 2013
Provisional Application 61622474 · Apr 10, 2012
Related Publication 20140212009A1 · Jul 31, 2014
Cited By (1)
US 12,633,157