IP Library › Granted Patent US 10,346,672
Granted Patent B2
US 10,346,672 · App. 15/359,933 · Granted Jul 9, 2019

Fingerprint reader

Inventors: Eric Dean Jensen (Irvine, CA); William R Crumly (Anaheim, CA)
G06K9/00087G06K9/00046G06K9/00053G06K9/2027
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Quick Facts
Patent No.
US 10,346,672
App. No.
15/359,933
Granted
Jul 9, 2019
Kind
B2
Abstract

A fingerprint reader includes a display screen composed of an array of energy emitting pixels covered by a transparent cover, at least one sensor coupled along an edge of the display screen, a display driver directing the array of energy emitting pixels of the display screen to illuminate in a predetermined sequence, and a microprocessor in communication with the display driver and the at least one sensor. The microprocessor knows the location of the energy emitting pixel being illuminated and the specific time at which the illumination occurs. In use, and when at least one finger is placed on the transparent cover and the display driver is activated, energy from each energy emitting pixel sequentially illuminated is reflected off the fingerprint to the at least one sensor. The energy received at the at least one sensor is at different intensity levels depending upon the ridges and valleys of the at least one fingerprint. The at least one sensor sends a signal to the microprocessor regarding the energy intensity level, from which the microprocessor creates a fingerprint image as the energy emit emitting pixels are sequentially illuminated.

Claims (6)

1. A fingerprint reader, comprising:

a display screen composed of an array of energy emitting pixels covered by a transparent cover;

at least one sensor coupled along an edge of the display screen;

a display driver directing the array of energy emitting pixels of the display screen to illuminate in a sequence;

a microprocessor in communication with the display driver and the at least one sensor, wherein the microprocessor knows the location of the energy emitting pixel being illuminated and the specific time at which the illumination occurs;

wherein when at least one finger is placed on the transparent cover and the display driver is activated, energy from each energy emitting pixel sequentially illuminated is reflected off the finger to the at least one sensor, the energy received at the at least one sensor is at different intensity levels depending upon the ridges and valleys of the at least one finger, the at least one sensor sends a signal to the microprocessor regarding the energy intensity level, from which the microprocessor creates a fingerprint image as the energy emitting pixels are sequentially illuminated and further, wherein the energy received at the at least one sensor is filtered based on the timing of light received at the at least one sensor from the illuminated energy emitting pixel to prevent unwanted energy from entering the at least one sensor.

Continuity (2)
Provisional Application 62258863 · Nov 23, 2015
Related Publication 20170147865A1 · May 25, 2017