IP Library › Granted Patent US 11,175,512
Granted Patent B2
US 11,175,512 · App. 16/854,702 · Granted Nov 16, 2021

Diffractive projection apparatus

Inventors: Jonathan David Waldern (Los Altos Hills, CA); Milan Momcilo Popovich (Leicester, GB)
Assignees: DigiLens Inc.; Rockwell Collins, Inc.
G02B27/0172G02B5/1828G02B5/1876G02B6/34G02B26/101G02B26/105G02B27/48G02F1/13342G02F1/292G02B6/0011G02B26/0808G02B2027/0107G02B2027/0174G02B2027/0194G02F2201/307G03B13/02G03B21/10G03H2001/2226
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Quick Facts
Patent No.
US 11,175,512
App. No.
16/854,702
Granted
Nov 16, 2021
Kind
B2
Abstract

A light projection apparatus is provided comprising: a source of light; a switchable grating on a first substrate; and a diffractive optical element. Light is diffracted at least once by the switchable grating and is diffracted at least once by the DOE.

Claims (30)

1. A waveguide display comprising:

a first light source configured to provide collimated light across a field of view (FOV); and

a waveguide comprising:

a coupler configured to couple light into total internal reflection (TIR) paths in said waveguide;

at least one switchable grating;

at least one reflection grating; and

at least one output grating configured to extract light from said waveguide through an exit pupil.

2. The waveguide display of claim 1 , wherein said at least one switchable grating has a first diffraction state under a first applied voltage and a second diffraction state under a second applied voltage.

3. The waveguide display of claim 1 , wherein said at least one switchable grating has a first index modulation under a first applied voltage and a second index modulation under a second applied voltage.

4. The waveguide display of claim 1 , wherein said at least one switchable grating comprises a plurality of separately switchable grating elements.

5. The waveguide display of claim 1 , further comprising at least one grating for performing at least one optical function selected from the group consisting of: spatially modulating said light, temporally modulating said light, modifying the wavefront shape of said light, modifying the spatial amplitude of said light, providing focus control, beam aspect ratio shaping, beam cross section shaping, diffusing said light, and correcting aberrations.

6. The waveguide display of claim 1 , further comprising at least one type of grating selected from the group consisting of: a grating recorded in a liquid crystal and polymer material system, a grating recording in a holographic polymer dispersed liquid crystal (HPDLC) material system, a Bragg grating, a switchable Bragg grating, a Raman-Nath grating, a sub wavelength grating, a diffractive optical element (DOE) configured as a Fresnel lens, a multi-order DOE, a reflection grating, a transmission grating, and a surface relief grating.

7. The waveguide display of claim 1 , wherein said reflection grating is selected from the group consisting of: a grating recorded in a liquid crystal and polymer material system, a grating recording in a HPDLC material system, a Bragg grating, a switchable Bragg grating, a Raman-Nath grating, a DOE configured as a Fresnel lens, a multi order DOE, a grating configured as a two-dimensional array, and a surface relief grating.

8. The waveguide display of claim 1 , wherein said waveguide supports at least one selected from the group consisting of: a substrate for modifying the polarization of said light, a reflective DOE, and a mirror.

9. The waveguide display of claim 1 , further comprising:

a second light source configured to provide collimated light having a wavelength band different than collimated light from said first light source; and

a grating configured to diffract light from said second light source.

10. The waveguide display of claim 1 , wherein said first light source is a laser scanning device.

11. The waveguide display of claim 1 , wherein said first light source is a laser or a light emitting diode.

12. The waveguide display of claim 1 , wherein said coupler is a grating or a prism.

13. The waveguide display of claim 1 , wherein said waveguide further comprises:

a pair of substrates sandwiching said gratings; and

electrodes for applying voltages across said at least one switchable grating.

14. The waveguide display of claim 1 , wherein said waveguide is curved.

15. The waveguide display of claim 1 , further comprising at least one selected from the group consisting of: a despeckler, a narrow band reflector, a microlens array, and a brightness enhancing film.

16. The waveguide display of claim 1 , configured to form an image at infinity.

17. The waveguide display of claim 1 , configured to provide an intermediate image plane for magnification by an eyepiece.

18. The waveguide display of claim 1 , configured to provide a wearable display or a heads-up display.

19. The waveguide display of claim 1 , configured to provide a pixelated image.

20. The waveguide display of claim 1 , configured to project symbols encoded within at least one of said gratings.

Assignments (2)
CORRECTIVE ASSIGNMENT TO CORRECT THE SECOND INVENTOR ADDED PREVIOUSLY RECORDED AT REEL: 053308 FRAME: 0850. ASSIGNOR(S) HEREBY CONFIRMS THE ASSINGMENT. Recorded Oct 14, 2021
From: POPOVICH, MILAN MOMCILO; WALDERN, JONATHAN DAVID
To: DIGILENS INC.; ROCKWELL COLLINS, INC.
Reel/Frame 058140/0703 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 24, 2020
From: POPOVICH, MILAN MOMCILO; WALDERN, JONATHAN DAVID
To: DIGILENS INC.
Reel/Frame 053308/0850 →
Continuity (6)
Continuation 14999008 · Mar 17, 2016
Continuation 13998799 · Dec 11, 2013
Continuation 13317468 · Oct 19, 2011
Continuation PCTGB2010000835 · Apr 26, 2010
Provisional Application 61202996 · Apr 27, 2009
Related Publication 20200249484A1 · Aug 6, 2020
Cited By (16)
US 12,210,153 US 12,248,150 US 12,271,035 US 12,298,513 US 12,306,585 US 12,366,823 US 12,379,547 US 12,397,477 US 12,399,326 US 12,405,471 US 12,405,507 US 12,541,011 US 12,560,808 US 12,596,218 US 12,613,439 US 12,663,572