IP Library Granted Patent US 12,326,564
Granted Patent B2
US 12,326,564 · App. 18/510,960 · Granted Jun 10, 2025

Convertible waveguide optical engine assembly for head-mounted device

Inventors: Stephen Pombo (Campbell, CA); Christopher Parkinson (Richland, WA)
Assignee: REALWEAR, INC.
G02B27/0172G02B27/0176G02B6/00G02B6/34G02B27/0101G02B2027/0118G02B2027/0123G02B2027/0125G02B2027/014G02B27/017G02B2027/0178G02B27/0972
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Quick Facts
Patent No.
US 12,326,564
App. No.
18/510,960
Granted
Jun 10, 2025
Kind
B2
Abstract

A head-mounted computing device having a convertible waveguide optical engine assembly is disclosed. The waveguide in accordance with aspects herein can be utilized in its transparent configuration, or may be provided with means for blocking light from passing through it either by using mechanical means, or by using different types of treatments that can switch the waveguide between opaque and transparent states based on an external stimulus, such as, for example, electricity, temperature, light, and the like. Further, the waveguide optical engine assembly comprises a compact footprint, which is advantageous for head-mounted computing devices. In addition to the compact footprint of the waveguide optical assembly, the configuration of the waveguide optical assembly, as disclosed, allows for maximization of advantages provided by the waveguide as related to eye box and eye relief.

Claims (27)

1. A waveguide assembly comprising:

a projection assembly adapted to project a source image;

a waveguide having an input portion to receive the source image;

a base to which the projection assembly is secured and from which the waveguide extends and is partially secured; and

an adjustable transparency layer positioned adjacent to a surface of the waveguide, the adjustable transparency layer being adapted to switch between a transparent mode and one or more levels of opacity based on a provided level of external stimulus.

2. The waveguide assembly of claim 1 , wherein the surface is a rear surface of the waveguide.

3. The waveguide assembly of claim 2 , wherein the waveguide is adapted to display the source image on a display surface of the waveguide.

4. The waveguide assembly of claim 1 , further comprising a brightness controller adapted to reduce a brightness level of the source image.

5. The waveguide assembly of claim 1 , wherein the external stimulus is electrical.

6. The waveguide assembly of claim 1 , wherein the projection assembly comprises a microprojector.

7. The waveguide assembly of claim 1 , wherein the projection assembly comprises a prism assembly.

8. The waveguide assembly of claim 1 , wherein the adjustable transparency layer is electrochromic.

9. The waveguide assembly of claim 1 , wherein the waveguide is positioned in front of at least one eye of a user in an as-worn configuration.

10. A head-mounted computing device comprising:

a waveguide assembly having—

a projection assembly adapted to project a source image;

a waveguide having an input portion to receive the source image;

a base to which the projection assembly is secured and from which the waveguide extends and is partially secured; and

an adjustable transparency layer positioned adjacent to a surface of the waveguide, the adjustable transparency layer being adapted to switch between a transparent mode and one or more levels of opacity based on a provided level of external stimulus.

11. The head-mounted computing device of claim 10 , wherein the surface is a rear surface of the waveguide.

12. The head-mounted computing device of claim 11 , wherein the waveguide is adapted to display the source image on a display surface of the waveguide.

13. The head-mounted computing device of claim 10 , further comprising a brightness controller adapted to reduce a brightness level of the source image.

14. The head-mounted computing device of claim 10 , wherein the external stimulus is electrical.

15. The head-mounted computing device of claim 14 , further comprising a power source from which the external stimulus is sourced.

16. The head-mounted computing device of claim 10 , wherein the projection assembly comprises a microprojector.

17. The head-mounted computing device of claim 10 , wherein the projection assembly comprises a prism assembly.

18. The head-mounted computing device of claim 10 , wherein the adjustable transparency layer is electrochromic.

Assignments (2)
SECURITY INTEREST Recorded Jun 6, 2024
From: REALWEAR, INC.
To: WESTERN ALLIANCE BANK
Reel/Frame 067646/0492 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 13, 2023
From: POMBO, STEPHEN; PARKINSON, CHRISTOPHER
To: REALWEAR, INC.
Reel/Frame 065859/0423 →
Continuity (4)
Continuation 17552338 · Dec 15, 2021
Continuation In Part 17538712 · Nov 30, 2021
Provisional Application 63220237 · Jul 9, 2021
Related Publication 20240085704A1 · Mar 14, 2024
References Cited (46)
US 10108011B2 · Nikkhoo · 2018 [cited by applicant]
US 10739512B2 · Eisenfeld et al. · 2020 [cited by applicant]
US 11852822B2 · Pombo · 2023 [cited by examiner]
US 20120162549A1 · Gao et al. · 2012 [cited by applicant]
US 20120200937A1 · Totani et al. · 2012 [cited by applicant]
US 20130188080A1 · Olsson et al. · 2013 [cited by applicant]
US 20140071539A1 · Gao · 2014 [cited by applicant]
US 20150253573A1 · Sako et al. · 2015 [cited by applicant]
US 20150268467A1 · Cakmakci · 2015 [cited by examiner]
US 20150268474A1 · Cheng · 2015 [cited by examiner]
US 20160217327A1 · Osterhout et al. · 2016 [cited by applicant]
US 20170038579A1 · Yeoh et al. · 2017 [cited by applicant]
US 20170299860A1 · Wall et al. · 2017 [cited by applicant]
US 20170323615A1 · Hazra et al. · 2017 [cited by applicant]
US 20180088325A1 · Brown et al. · 2018 [cited by applicant]
US 20180292654A1 · Wall et al. · 2018 [cited by applicant]
US 20180348522A1 · Young · 2018 [cited by examiner]
US 20180372940A1 · Ishii et al. · 2018 [cited by applicant]
US 20190196205A1 · Pierer · 2019 [cited by examiner]
US 20190196207A1 · Pierer et al. · 2019 [cited by applicant]
US 20190212563A1 · Schultz et al. · 2019 [cited by applicant]
US 20190227317A1 · Trail et al. · 2019 [cited by applicant]
US 20190333480A1 · Lang · 2019 [cited by applicant]
US 20200018968A1 · Edwin et al. · 2020 [cited by applicant]
US 20200111259A1 · Sears · 2020 [cited by examiner]
US 20200192088A1 · Yu et al. · 2020 [cited by applicant]
US 20200201047A1 · Nakamura et al. · 2020 [cited by applicant]
US 20200310136A1 · Yang et al. · 2020 [cited by applicant]
US 20200348518A1 · Georgiou et al. · 2020 [cited by applicant]
US 20200371357A1 · Choi · 2020 [cited by applicant]
US 20210018752A1 · Sheng · 2021 [cited by applicant]
US 20210033867A1 · Luo et al. · 2021 [cited by applicant]
US 20210072437A1 · Singh et al. · 2021 [cited by applicant]
US 20210103146A1 · Travers et al. · 2021 [cited by applicant]
US 20210103180A1 · Sears · 2021 [cited by examiner]
US 20210149203A1 · Chen et al. · 2021 [cited by applicant]
US 20210149206A1 · Tiffin et al. · 2021 [cited by applicant]
US 20210247608A1 · Eisenfeld et al. · 2021 [cited by applicant]
US 20210361020A1 · Keith · 2021 [cited by examiner]
US 20220019078A1 · Keith · 2022 [cited by examiner]
US 20220128817A1 · Singh et al. · 2022 [cited by applicant]
US 20220197026A1 · Grant · 2022 [cited by examiner]
US 20220299764A1 · Adema et al. · 2022 [cited by applicant]
US 20220357499A1 · Danziger et al. · 2022 [cited by applicant]
US 20230213767A1 · Grant · 2023 [cited by examiner]
CN 112180606A · 2021 [cited by applicant]