IP Library › Granted Patent US 11,151,399
Granted Patent B2
US 11,151,399 · App. 16/720,902 · Granted Oct 19, 2021

Alignment system

Inventors: Kurtis L. Geerlings (Zeeland, MI); Winston D. Carr (Grand Rapids, MI); Adam R. Heintzelman (Grand Rapids, MI); Xiaoxu Niu (Grand Rapids, MI)
Assignee: GENTEX CORPORATION
G06K9/00919B60R25/255G02B26/106G02B27/4227G03H1/00G03H1/0005G06K9/00255G06K9/00604B60R2011/0022G03H2001/2292
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Quick Facts
Patent No.
US 11,151,399
App. No.
16/720,902
Granted
Oct 19, 2021
Kind
B2
Abstract

An alignment system comprises a first diffractive optical element comprising an image and a laser source. The image is visible when the laser source is viewed from a desired field of view through the diffractive optical element. The laser source may be configured to produce a beam of light that will extend through at least a portion of the first diffractive optical element, thereby illuminating the image. The first diffractive optical element and the laser source may be disposed in a vehicle.

Claims (41)

1. An alignment system, comprising:

a first diffractive optical element comprising an image; and

a laser source positioned to, upon activation, produce a beam of light that will extend through at least a portion of the first diffractive optical element;

wherein the first diffractive optical element and the laser source are disposed in a pillar of a vehicle;

wherein an aperture is disposed in an exterior wall of the pillar; and

wherein the aperture in the pillar is aligned with the laser source and the first diffractive optical element so that the laser source is configured to send light through the first diffractive optical element and through the aperture; and

wherein the image is visible when the laser source is viewed from a desired field of view exterior to the pillar and through the first diffractive optical element;

wherein, upon activation of the alignment system:

a scanning apparatus is configured begin scanning, wherein the object to be scanned is an eye of a user;

the user positions their eye so the image is visible to the user's eye;

the scanning apparatus continues scanning once the user's eye has been positioned;

a processor compares data from the scan of the user's eye to stored data; and

upon a determination that the scanned data matches the stored data, the processor authenticates the user.

2. The alignment system of claim 1 , further comprising a selectively transparent cover;

wherein the selectively transparent cover is disposed over and configured to cover the aperture.

3. The alignment system of claim 2 , wherein the selectively transparent cover is an electro-optic element.

4. The alignment system of claim 1 , wherein the laser source is configured to produce a beam of light that extends from the laser source through the first diffractive optical element in a generally perpendicular orientation as it passes through the first diffractive optical element.

5. The alignment system of claim 1 , further comprising a second diffractive optical element;

wherein second diffractive optical element is generally parallel to the first diffractive optical element;

wherein the second diffractive optical element is disposed between the aperture and the first diffractive optical element; and

wherein the laser source is configured to project a laser beam through the first and second diffractive optical elements at a generally perpendicular angle.

6. The alignment system of claim 1 , wherein the laser source is an eye-safe laser source.

7. The alignment system of claim 1 , further comprising at least one mirror or focusing lens configured to direct light from the laser source toward the first diffractive optical element.

8. A scanning system comprising:

a first diffractive optical element disposed within a pillar of a vehicle and having an image that appears when light from a laser source is viewed through the first diffractive optical element from a desired field of view exterior to the vehicle;

a laser source configured to generate a beam of light and shine the beam of light through the first diffractive optical element; and

at least one scanning apparatus disposed to capture images from the desired field of view;

wherein the first diffractive optical element and the laser source are disposed in a pillar of a vehicle;

wherein the scanning system is disposed behind an aperture in the pillar of the vehicle; and

wherein the aperture in the pillar is aligned with the laser source and the first diffractive optical element so that the laser source is configured to send light through the first diffractive optical element and through the aperture;

wherein, upon activation of the scanning system:

a scanning apparatus is configured begin scanning, wherein the object to be scanned is an eye of a user;

the user positions their eye so the image is visible;

the scanning apparatus continues scanning once the user's eye has been positioned;

a processor compares data from the scan of the user's eye to stored data; and

upon a determination that the scanned data matches the stored data, the processor authenticates the user.

9. The scanning system of claim 8 , wherein the scanning apparatus is an iris scanner.

10. The scanning system of claim 8 , further comprising a second diffractive optical element disposed generally parallel to the first diffractive optical element.

11. The scanning system of claim 8 , wherein the laser source is an eye-safe laser source.

12. The scanning system of claim 8 , further comprising a selectively transparent element; wherein the selectively transparent element is disposed within the pillar and is disposed to cover the aperture.

13. The scanning system of claim 12 , wherein the selectively transparent element is an electro-optic device.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 20, 2019
From: GEERLINGS, KURTIS L.; CARR, WINSTON D.; HEINTZELMAN, ADAM R.; NIU, XIAOXU
To: GENTEX CORPORATION
Reel/Frame 051340/0139 →
Continuity (2)
Provisional Application 62793396 · Jan 17, 2019
Related Publication 20200234069A1 · Jul 23, 2020