IP Library › Granted Patent US 11,106,048
Granted Patent B2
US 11,106,048 · App. 16/888,360 · Granted Aug 31, 2021

Waveguide laser illuminator incorporating a despeckler

Inventors: Milan Momcilo Popovich (Leicester, GB); Jonathan David Waldern (Los Altos Hills, CA); Alastair John Grant (San Jose, CA)
Assignee: Digilens Inc.
G02B27/48G02B5/32G02B6/0016G02B6/0038G02B6/0055G02B6/0083G02B27/4261G02F1/292G02F1/3136
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Quick Facts
Patent No.
US 11,106,048
App. No.
16/888,360
Granted
Aug 31, 2021
Kind
B2
Abstract

There is provided an illumination device comprising: a laser; a waveguide comprising at least first and second transparent lamina; a first grating device for coupling light from the laser into a TIR path in the waveguide; a second grating device for coupling light from the TIR path out of the waveguide; and a third grating device for applying a variation of at least one of beam deflection, phase retardation or polarization rotation across the wavefronts of the TIR light. The first second and third grating devices are each sandwiched by transparent lamina.

Claims (32)

1. An image projection device comprising:

a light source;

a reflective microdisplay;

a waveguide comprising:

an input coupler for coupling light from said light source into a total internal reflection (TIR) path in said waveguide;

an output coupler for coupling light from said TIR path out of said waveguide and towards said reflective microdisplay, wherein said output coupler is configured to transmit light reflected from said reflective microdisplay; and

a lens for projecting image modulated light reflected from said microdisplay over a field of view; and

a grating device for applying a variation of at least one of beam deflection or phase retardation across wavefronts of said light coupled into the TIR path, wherein said waveguide is formed from transparent lamina sandwiching said input coupler, said output coupler, and said grating device.

2. The image projection device of claim 1 , wherein said light source is configured to emit light in at least first and second wavelength bands; and wherein said input and output couplers are configured to diffract light in said first and second wavelength bands.

3. The image projection device of claim 1 , wherein said output coupler has at least one characteristic for providing uniform illumination onto said microdisplay selected from the group of optical power, diffusion, spatially varying light cone tilt, spatially varying light cone angle and spatially varying refractive index modulation.

4. The image projection device of claim 1 , further comprising transparent electrodes applied to said transparent lamina.

5. The image projection device of claim 1 , wherein said grating device has an optical prescription that varies along said waveguide.

6. The image projection device of claim 1 , wherein said grating device comprises more than one grating lamina adjacently disposed along said waveguide.

7. The image projection device of claim 1 , wherein said grating device comprises a two-dimensional array of switchable grating elements, wherein electrodes are applied to overlapping portions of the transparent lamina sandwiching said switchable grating elements, at least one of said electrodes being pixelated into elements substantially overlapping said switchable grating elements.

8. The image projection device of claim 1 , wherein said grating device is disposed along the TIR path between said input and output couplers.

9. The illumination device of claim 1 , wherein said grating device diffuses light into the direction of said TIR path.

10. The image projection device of claim 1 , further comprising a second grating device for applying variation of at least one of beam deflection or phase retardation across the wavefronts of said light couple into the TIR path, wherein said grating devices overlap, have identical prescriptions, and are reciprocally configured.

11. The image projection device of claim 1 , wherein said grating device is configured as a Hadamard array.

12. The image projection device of claim 1 , wherein said grating device provides a laser despeckler.

13. The image projection device of claim 1 , wherein light source comprises at least one laser emitter providing at least one wavelength.

14. The image projection device of claim 1 , wherein at least one of said transparent lamina is fabricated from plastic.

15. The image projection device of claim 1 , wherein said input coupler is a prism.

16. The image projection device of claim 1 , wherein said waveguide supports at least one selected from the group of a randomly scattering surface structure, a mirror, a reflection grating, a transmission grating, a blazed surface relief grating, a polarization rotation layer and a reflector overlapping said grating device.

17. The image projection device of claim 1 , wherein said waveguide is terminated at an end thereof by at least one selected from the group of a reflector and a quarter wavelength retarder.

18. An image projection device comprising:

a light source;

a reflective microdisplay; and

a waveguide comprising:

an input coupler for coupling light from said light source into a total internal reflection (TIR) path in said waveguide;

an output coupler for coupling light from said TIR path out of said waveguide and towards said reflective microdisplay, wherein said output coupler is configured to transmit light reflected from said reflective microdisplay; and

a lens for projecting image modulated light reflected from said microdisplay over a field of view,

wherein said output coupler incorporates an optical prescription of at least one selected from the group of a microlens and a diffuser.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 16, 2021
From: POPOVICH, MILAN MOMCILO; WALDERN, JONATHAN DAVID; GRANT, ALASTAIR JOHN
To: DIGILENS INC.
Reel/Frame 056887/0756 →
Continuity (3)
Continuation 15502583
Provisional Application 61999866 · Aug 8, 2014
Related Publication 20200292840A1 · Sep 17, 2020
Cited By (14)
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