IP Library Granted Patent US 9,984,270
Granted Patent B2
US 9,984,270 · App. 14/451,076 · Granted May 29, 2018

Fingerprint sensor in an electronic device

Inventors: Marduke Yousefpor (Cupertino, CA); Jean-Marie Bussat (Cupertino, CA); Benjamin B. Lyon (Cupertino, CA); Giovanni Gozzini (Cupertino, CA); Steven P. Hotelling (Cupertino, CA); Dale Setlak (Cupertino, CA)
Assignee: Apple Inc.
G06K9/0002G06K9/228H04M1/0266H04M1/67
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Quick Facts
Patent No.
US 9,984,270
App. No.
14/451,076
Granted
May 29, 2018
Kind
B2
Abstract

A fingerprint sensor is incorporated in a display stack in an electronic device. A single fingerprint can be captured at one time at a single pre-defined fixed location on a display. Alternatively, a single fingerprint can be acquired at one time at any location on a display. Alternatively, multiple touches on the display can be acquired substantially simultaneously where only one fingerprint is captured at a time or where all of the fingerprints are acquired at the same time. The fingerprint sensor can be implemented as an integrated circuit connected to a bottom surface of a cover sheet, near the bottom surface of the cover sheet, or connected to a top surface of a display. Alternatively, the fingerprint sensor can be implemented as a full panel fingerprint sensor.

Claims (32)

1. An electronic device, comprising:

a display stack comprising:

a cover sheet disposed over a display layer;

a full panel capacitive fingerprint sensor configured to capture a fingerprint image of a finger positioned on a top surface of the cover sheet, the full panel capacitive fingerprint sensor also functioning as a touch sensing device; and

one or more vias formed through at least a portion of the cover sheet above the full panel capacitive fingerprint sensor to shape an electric field passing through the cover sheet; and

a first remote electronics disposed at an edge of the full panel capacitive fingerprint sensor and operably connected to the full panel capacitive fingerprint sensor; wherein the cover sheet comprises:

a first cover sheet disposed over the full panel capacitive fingerprint sensor; and

a second cover sheet disposed below the full panel capacitive fingerprint sensor.

2. The electronic device as in claim 1 , further comprising a processing device operably connected to the fingerprint sensor.

3. The electronic device as in claim 1 , further comprising a processing device operably connected to the display layer.

4. The electronic device as in claim 1 , wherein an intermediate layer is disposed between the cover sheet and the display layer.

5. The electronic device as in claim 1 , further comprising an intermediate layer disposed between the second cover sheet and the display layer, wherein a second remote electronics is operably connected to the first remote electronics and the second remote electronics is attached to one of the display layer and the bottom surface of the second cover sheet.

6. The electronic device as in claim 1 , wherein the one or more vias comprises one or more blind vias formed in the first cover sheet above the full panel capacitive fingerprint sensor, wherein a length of each blind via is less than a thickness of the first cover sheet.

7. The electronic device as in claim 6 , further comprising one or more conductive plates each positioned between a respective blind via and a bottom surface of the first cover sheet.

8. The electronic device as in claim 6 , further comprising one or more conductive plates positioned between a top surface of the fingerprint sensor and a bottom surface of the first cover sheet.

9. The electronic device as in claim 1 , wherein the one or more vias comprises one or more through vias formed in the first cover sheet above the full panel capacitive fingerprint sensor, wherein a length of the through vias is substantially equal to a thickness of the first cover sheet.

10. The electronic device as in claim 9 , further comprising a conductive plate positioned near a top and a bottom of at least one through via.

11. An electronic device, comprising:

a display stack comprising:

a cover sheet disposed over a display layer;

a full panel ultrasonic fingerprint sensor positioned below the cover sheet and configured to capture a fingerprint image of a finger positioned on a top surface of the cover sheet; and

one or more vias formed through at least a portion of the cover sheet above the fingerprint sensor to shape an electric field passing through the cover sheet; the full panel ultrasonic fingerprint sensor comprising:

an ultrasonic piezoelectric receiver layer attached to an intermediate layer in the display stack, wherein the intermediate layer is positioned between the cover sheet and the display layer; and

an ultrasonic piezoelectric transmitter layer below the ultrasonic piezoelectric receiver layer, wherein the display layer is positioned between the ultrasonic piezoelectric receiver layer and the ultrasonic piezoelectric transmitter layer.

12. The electronic device as in claim 11 , further comprising remote sensing electronics operably connected to the ultrasonic piezoelectric receiver layer.

13. A display for an electronic device, the display comprising:

a cover sheet disposed over a touch sensing layer;

a display layer disposed below the touch sensing layer;

an ultrasonic receiver layer disposed below the display layer;

an ultrasonic transmitter layer disposed below the ultrasonic receiver layer; and

a fingerprint sensor positioned between the ultrasonic receiver layer and the ultrasonic transmitter layer.

14. The display as in claim 13 , wherein the ultrasonic receiver layer comprises a piezoelectric copolymer receiver layer and the ultrasonic transmitter layer comprises a polyvinylidene fluoride transmitter layer.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 20, 2015
From: YOUSEFPOR, MARDUKE; BUSSAT, JEAN-MARIE; LYON, BENJAMIN B.; GOZZINI, GIOVANNI; HOTELLING, STEVEN P.; SETLAK, DALE
To: APPLE INC.
Reel/Frame 036606/0251 →
Continuity (2)
Provisional Application 61862335 · Aug 5, 2013
Related Publication 20150036065A1 · Feb 5, 2015