IP Library Granted Patent US 10,151,931
Granted Patent B2
US 10,151,931 · App. 15/863,450 · Granted Dec 11, 2018

Advanced retroreflecting aerial displays

Inventors: Shawn Frayne (Tampa, FL); Shiu Pong Lee (Quarry Bay, HK); Tung Yiu Fok (Sha Tin, HK); Alexis Hornstein (Raleigh, NC); Albert Hwang (New York, NY); Kyle Appelgate (Chester, NJ)
Assignee: Looking Glass Factory, Inc.
G02B27/2292G02B3/0056G02B3/0062G02B5/124G02B5/136G02B27/106G02B27/26G02B27/283G03B35/26H04N13/225H04N13/229H04N13/305H04N13/346H04N13/383H04N13/388G03B21/28
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Quick Facts
Patent No.
US 10,151,931
App. No.
15/863,450
Filed
Jan 5, 2018
Granted
Dec 11, 2018
Kind
B2
Art Unit
2882
USPC
353/8
Abstract

A persistent image retroreflecting display that enables the formation of a real image in free space includes a first light source that generates a polarized light output; a retroreflector module adjacent a first side of the first light source; a quarter waveplate coupled to the retroreflector module and adjacent the first light source; and a reflective polarizer positioned between the first light source and a viewer of the display.

Claims (42)

1. A persistent image retroreflecting display comprising:

a first light source that generates a first light output; wherein the first light output has a first linear polarization;

a retroreflector module adjacent a first side of the first light source;

a quarter waveplate coupled to the retroreflector module and adjacent the first light source; and

a reflective polarizer positioned between the first light source and a viewer of the display;

wherein the first light source transmits the first light output to the reflective polarizer; wherein the reflective polarizer initially reflects the first light output to the quarter waveplate; wherein the quarter waveplate converts the first light output to a first circular polarization and transmits the first light output to the retroreflector module; wherein the retroreflector module reflects the first light output back to the quarter waveplate, converting the first light output to a second circular polarization orthogonal to the first circular polarization; wherein the quarter waveplate converts the first light output to a second linear polarization orthogonal to the first linear polarization; wherein the reflective polarizer transmits the first light output and thereafter the first light output converges to a first visible real image in free space; wherein the first light source, retroreflector module, and quarter waveplate move in rotary oscillation in a direction perpendicular to an optical axis of the light source; wherein the first light output is modulated as the first light source, retroreflector module, and quarter waveplate move in rotary oscillation.

2. The display of claim 1 , further comprising a transparent assistant display positioned between the first visible real image and the first beam splitter module.

3. The display of claim 1 , wherein the retroreflector module comprises one of a cat's eye retroreflector array and a dihedral corner reflecting array.

4. The display of claim 3 , wherein the retroreflector module further comprises a microlens array that increases focusing performance of the retroreflector module; wherein the microlens array comprises structures perpendicular to the retroreflector module that block errant reflections.

5. The display of claim 4 , wherein the light source is an array of light emitting diodes.

6. A persistent image retroreflecting display comprising:

a first light source that generates a first light output; wherein the first light output has a first linear polarization;

a retroreflector module adjacent a first side of the first light source;

a quarter waveplate coupled to the retroreflector module and adjacent the first light source; and

a reflective polarizer positioned between the first light source and a viewer of the display;

wherein the first light source transmits the first light output to the reflective polarizer; wherein the reflective polarizer initially reflects the first light output to the quarter waveplate; wherein the quarter waveplate converts the first light output to a first circular polarization and transmits the first light output to the retroreflector module; wherein the retroreflector module reflects the first light output back to the quarter waveplate, converting the first light output to a second circular polarization orthogonal to the first circular polarization; wherein the quarter waveplate converts the first light output to a second linear polarization orthogonal to the first linear polarization; wherein the reflective polarizer transmits the first light output and thereafter the first light output converges to a first visible real image in free space; wherein the first light source, retroreflector module, and quarter waveplate move in translational oscillation in a direction perpendicular to an optical axis of the light source; wherein the first light output is modulated as the first light source, retroreflector module, and quarter waveplate move in translational oscillation.

7. The display of claim 6 , further comprising a transparent assistant display positioned between the first visible real image and the first beam splitter module.

8. The display of claim 6 , wherein the retroreflector module comprises one of a cat's eye retroreflector array and a dihedral corner reflecting array.

9. The display of claim 8 , wherein the retroreflector module further comprises a microlens array that increases focusing performance of the retroreflector module; wherein the microlens array comprises structures perpendicular to the retroreflector module that block errant reflections.

10. The display of claim 9 , wherein the light source is an array of light emitting diodes.

11. A persistent image retroreflecting display comprising:

a first light source that generates a first light output; wherein the first light output has a first linear polarization;

a retroreflector module adjacent a first side of the first light source;

a quarter waveplate coupled to the retroreflector module and adjacent the first light source; and

a reflective polarizer positioned between the first light source and a viewer of the display;

wherein the first light source transmits the first light output to the reflective polarizer; wherein the reflective polarizer initially reflects the first light output to the quarter waveplate; wherein the quarter waveplate converts the first light output to a first circular polarization and transmits the first light output to the retroreflector module; wherein the retroreflector module reflects the first light output back to the quarter waveplate, converting the first light output to a second circular polarization orthogonal to the first circular polarization; wherein the quarter waveplate converts the first light output to a second linear polarization orthogonal to the first linear polarization; wherein the reflective polarizer transmits the first light output and thereafter the first light output converges to a first visible real image in free space; wherein the first light source, retroreflector module, and quarter waveplate move in continuous rotation around an axis perpendicular to an optical axis of the light source; wherein the first light output is modulated as the first light source, retroreflector module, and quarter waveplate move in continuous rotation.

12. The display of claim 11 , further comprising a transparent assistant display positioned between the first visible real image and the first beam splitter module.

13. The display of claim 11 , wherein the retroreflector module comprises one of a cat's eye retroreflector array and a dihedral corner reflecting array.

14. The display of claim 13 , wherein the retroreflector module further comprises a microlens array that increases focusing performance of the retroreflector module; wherein the microlens array comprises structures perpendicular to the retroreflector module that block errant reflections.

15. The display of claim 14 , wherein the light source is an array of light emitting diodes.

16. A persistent image retroreflecting display comprising:

a first light source that generates a first light output;

a first beam splitter module; and

a retroreflector module oriented at ninety degrees relative to the first light source; wherein the first light source transmits the first light output to the first beam splitter module; wherein the first beam splitter module splits the first light output into a first reflected component and a second transmitted component of the first light output; wherein the first beam splitter module reflects the first reflected component to the retroreflector module; wherein the retroreflector module retroreflects the first reflected component back to the first beam splitter module; wherein the first beam splitter module splits the first reflected component into a third reflected component and a fourth transmitted component; wherein the fourth transmitted component converges to a first visible real image in free space; wherein the first light source and retroreflector module move in rotary oscillation in a direction perpendicular to an optical axis of the fourth transmitted component; wherein the first light output is modulated as the first light source and retroreflector module move in rotary oscillation.

17. A persistent image retroreflecting display comprising:

a first light source that generates a first light output;

a first beam splitter module; and

a retroreflector module oriented at ninety degrees relative to the first light source; wherein the first light source transmits the first light output to the first beam splitter module; wherein the first beam splitter module splits the first light output into a first reflected component and a second transmitted component of the first light output; wherein the first beam splitter module reflects the first reflected component to the retroreflector module; wherein the retroreflector module retroreflects the first reflected component back to the first beam splitter module; wherein the first beam splitter module splits the first reflected component into a third reflected component and a fourth transmitted component; wherein the fourth transmitted component converges to a first visible real image in free space; wherein the first light source and retroreflector module move in translational oscillation in a direction perpendicular to an optical axis of the fourth transmitted component; wherein the first light output is modulated as the first light source and retroreflector module move in translational oscillation.

18. A persistent image retroreflecting display comprising:

a first light source that generates a first light output;

a first beam splitter module; and

a retroreflector module oriented at ninety degrees relative to the first light source; wherein the first light source transmits the first light output to the first beam splitter module; wherein the first beam splitter module splits the first light output into a first reflected component and a second transmitted component of the first light output; wherein the first beam splitter module reflects the first reflected component to the retroreflector module; wherein the retroreflector module retroreflects the first reflected component back to the first beam splitter module; wherein the first beam splitter module splits the first reflected component into a third reflected component and a fourth transmitted component; wherein the fourth transmitted component converges to a first visible real image in free space; wherein the first light source and retroreflector module move in continuous rotation around an axis perpendicular to an optical axis of the fourth transmitted component; wherein the first light output is modulated as the first light source and retroreflector module move in continuous rotation.

Assignments (2)
SECURITY INTEREST Recorded Apr 9, 2026
From: LOOKING GLASS FACTORY INC.
To: FIRST-CITIZENS BANK & TRUST COMPANY
Reel/Frame 075378/0486 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 18, 2018
From: FRAYNE, SHAWN; LEE, SHIU PONG; FOK, TUNG YIU; HORNSTEIN, ALEXIS; HWANG, ALBERT; APPLEGATE, KYLE
To: LOOKING GLASS FACTORY, INC.
Reel/Frame 045580/0337 →
Continuity (6)
Continuation 15863399 · Jan 5, 2018
Provisional Application 62442695 · Jan 5, 2017
Provisional Application 62470710 · Mar 13, 2017
Provisional Application 62507032 · May 16, 2017
Provisional Application 62529342 · Jul 6, 2017
Related Publication 20180188550A1 · Jul 5, 2018
Cited By (1)
US 12,374,026