IP Library Granted Patent US 11,754,843
Granted Patent B2
US 11,754,843 · App. 17/722,354 · Granted Sep 12, 2023

Augmented reality eyewear with “ghost buster” technology

Inventor: Robert A. Connor (St. Paul, MN)
Assignee: Holovisions LLC
G02B27/0172G02B3/0056G02B3/08G06T19/006G02B2027/0178
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Quick Facts
Patent No.
US 11,754,843
App. No.
17/722,354
Granted
Sep 12, 2023
Kind
B2
Abstract

This invention is augmented reality eyewear with a radial, honeycomb, or nested-ring array of selectively-movable reflective elements. These reflective elements can each be moved from a first configuration which is parallel to a line of sight from an eye to a second configuration which is perpendicular to this line of sight. The second configuration reflects light displaying a virtual image to the eye and blocks environmental light in the area of the virtual image. Since light from the environment does not shine through the virtual object, the virtual object appears solid instead of “ghost like.”

Claims (26)

1. Augmented reality eyewear with an array of selectively-pivoting or rotating reflectors comprising:

an eyewear frame;

a light-emitting array on the eyewear frame;

a lens attached to the eyewear frame in front an eye, wherein the lens has a distal surface which faces away from the eye and a proximal surface which faces toward the eye;

an array of pivoting or rotating reflectors in or on the lens;

a first reflector in the array of pivoting or rotating reflectors, wherein the first reflector has a first configuration which blocks a first amount of light from the environment from passing through the proximal surface of the lens, wherein the first reflector has a second configuration in which it is pivoted or rotated by theta degrees, wherein theta is between 90 and 180 degrees, around its longitudinal axis relative to the first configuration so as to block a second amount of light from the environment from passing through the proximal surface of the lens, wherein the second amount is greater than the first amount, wherein the first reflector in its second configuration reflects light from the light-emitting array toward the eye, and wherein the first reflector can be selectively and/or individually moved from the first configuration to the second configuration, and vice versa; and

a second reflector in the array of pivoting or rotating reflectors, wherein the second reflector has a third configuration which blocks a third amount of light from the environment from passing through the proximal surface of the lens, wherein the second reflector has a fourth configuration in which it is pivoted or rotated by theta degrees, wherein theta is between 90 and 180 degrees, around its longitudinal axis relative to the third configuration so as to block a fourth amount of light from the environment from passing through the proximal surface of the lens, wherein the fourth amount is greater than the third amount, wherein the second reflector in its fourth configuration reflects light from the light-emitting array toward the eye, and wherein the second reflector can be selectively and/or individually moved from the third configuration to the fourth configuration, and vice versa.

2. The augmented reality eyewear in claim 1 wherein the light-emitting array is a virtual object projector.

3. The augmented reality eyewear in claim 1 wherein the array of reflectors is a columnar array of reflectors.

4. The augmented reality eyewear in claim 3 wherein a reflector is a vertical slat or strip.

5. The augmented reality eyewear in claim 3 wherein a reflector is a horizontal slat or strip.

6. The augmented reality eyewear in claim 1 wherein the array of reflectors is a column-by-row matrix of reflectors.

7. The augmented reality eyewear in claim 6 wherein there are multiple reflectors in a column and multiple reflectors in a row.

8. The augmented reality eyewear in claim 1 wherein a proximal side of a reflector reflects more light than a distal side of the reflector.

9. The augmented reality eyewear in claim 1 wherein a reflector pivots or rotates around an end of the reflector.

10. The augmented reality eyewear in claim 1 wherein a reflector pivots or rotates around the center of the reflector.

11. The augmented reality eyewear in claim 1 wherein angles formed by intersections of virtual extensions of reflectors and the surface of the lens vary as a function of distance from the light-emitting array.

12. The augmented reality eyewear in claim 1 wherein the lens has a hollow interior within which reflectors are pivoted or rotated.

13. Augmented reality eyewear comprising:

an eyewear frame;

a beam splitter, wherein light rays from the environment pass through the beam splitter to reach the person's eye, wherein the beam splitter further comprises an electroconductive distal layer, an electroconductive proximal layer, and a lateral array of rotatable reflectors between the distal layer and the proximal layer, wherein a rotatable reflector has a first configuration which is substantially perpendicular to the distal layer and/or the proximal layer, wherein a rotatable reflector has a second configuration at an acute angle relative to the distal layer and/or the proximal layer, and wherein one or more rotatable reflectors can be selectively rotated from their first configurations to their second configurations, or vice versa, by localized transmission of electromagnetic energy from the distal layer to the proximal layer, or vice versa;

a light emitter, wherein light from the light emitter is reflected by one or more rotatable reflectors in their second configuration toward the person's eye, and wherein light rays from the light emitter form a virtual image in a first area of the person's field of view.

14. Augmented reality eyewear comprising:

an eyewear frame;

a beam splitter, wherein light rays from the environment pass through the beam splitter to reach the person's eye; wherein the beam splitter further comprises an electroconductive first proximal layer, an electroconductive second proximal layer, and a lateral array of rotatable reflectors which are distal relative to the first proximal layer and the second proximal layer, wherein a rotatable reflector has a first configuration which is substantially perpendicular to first proximal layer, wherein a rotatable reflector has a second configuration at an acute angle relative to the first proximal layer, and wherein one or more rotatable reflectors can be selectively rotated from their first configurations to their second configurations, or vice versa, by localized transmission of electromagnetic energy from the first proximal layer to the second proximal layer, or vice versa;

a light emitter, wherein light from the light emitter is reflected by one or more rotatable reflectors in their second configuration toward the person's eye, and wherein light rays from the light emitter form a virtual image in a first area of the person's field of view.

Continuity (24)
Continuation 17501495 · Oct 14, 2021
Continuation In Part 16686170 · Nov 17, 2019
Continuation In Part 16175924 · Oct 31, 2018
Continuation In Part 15942498 · Mar 31, 2018
Provisional Application 63212054 · Jun 17, 2021
Provisional Application 63192664 · May 25, 2021
Provisional Application 62791359 · Jan 11, 2019
Provisional Application 62751076 · Oct 26, 2018
Provisional Application 62749775 · Oct 24, 2018
Provisional Application 62746487 · Oct 16, 2018
Provisional Application 62720171 · Aug 21, 2018
Provisional Application 62716507 · Aug 9, 2018
Provisional Application 62714684 · Aug 4, 2018
Provisional Application 62703025 · Jul 25, 2018
Provisional Application 62699800 · Jul 18, 2018
Provisional Application 62695124 · Jul 8, 2018
Provisional Application 62646856 · Mar 22, 2018
Provisional Application 62638087 · Mar 3, 2018
Provisional Application 62624699 · Jan 31, 2018
Provisional Application 62572328 · Oct 13, 2017
Provisional Application 62563798 · Sep 27, 2017
Provisional Application 62561834 · Sep 22, 2017
Provisional Application 62528331 · Jul 3, 2017
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