IP Library Patent Application 19182512
Patent Application
App. No. 19/182,512

TWO ACTIVE LAYER WAVEGUIDE ARCHITECTURES WITH TWO OR MORE SPLIT REFLECTIVE AND TRANSMISSIVE IC PUPILS FOR THE VISIBLE LIGHT SPECTRUM

Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US None
App. No.
19/182,512
Abstract

An augmented reality headset includes a projector and an eyepiece waveguide stack optically coupled to the projector. The eyepiece waveguide stack includes: a first eyepiece waveguide including a first incoupling diffractive optical element and a first combined pupil expander; and a second eyepiece waveguide including a second incoupling diffractive optical element and a second combined pupil expander. The second incoupling diffractive optical element is laterally offset from the first incoupling diffractive optical element in a lateral direction.

Claims (30)

1 . An eyepiece waveguide stack comprising:

a first eyepiece waveguide including a first incoupling diffractive optical element and a first combined pupil expander; and

a second eyepiece waveguide including a second incoupling diffractive optical element and a second combined pupil expander, wherein the second incoupling diffractive optical element is offset in a lateral direction from the first incoupling diffractive optical element.

2 . The eyepiece waveguide stack of claim 1 wherein:

the first eyepiece waveguide is operable to incouple light in a first wavelength range; and

the second eyepiece waveguide is operable to incouple light in a second wavelength range.

3 . The eyepiece waveguide stack of claim 2 wherein the first wavelength range includes 630 nm and the second wavelength range includes 530 nm and 455 nm.

4 . The eyepiece waveguide stack of claim 1 wherein light incident on the first incoupling diffractive optical element passes through the second eyepiece waveguide prior to impinging on the first incoupling diffractive optical element.

5 . The eyepiece waveguide stack of claim 1 wherein a thickness of the first eyepiece waveguide is different than a thickness of the second eyepiece waveguide.

6 . The eyepiece waveguide stack of claim 1 wherein the second incoupling diffractive optical element comprises includes two laterally offset diffractive structures.

7 . The eyepiece waveguide stack of claim 1 wherein the second incoupling diffractive optical element comprises includes a first diffractive structure operating in reflection mode and a second diffractive structure operating in transmission mode.

8 . The eyepiece waveguide stack of claim 1 wherein at least one of the first eyepiece waveguide or the second eyepiece waveguide has a thickness that varies in the lateral direction.

9 . The eyepiece waveguide stack of claim 1 wherein a normal vector is orthogonal to the eyepiece waveguide stack and the lateral direction is orthogonal to the normal vector.

10 . The eyepiece waveguide stack of claim 1 further comprising a cover layer including a reflective surface.

11 . The eyepiece waveguide stack of claim 1 further comprising a cover layer including an absorptive surface.

12 . The eyepiece waveguide stack of claim 11 wherein the cover layer further comprises a partially reflective surface and the absorptive surface opposes the partially reflective surface.

13 . An augmented reality headset including:

a projector;

an eyepiece waveguide stack optically coupled to the projector, wherein the eyepiece waveguide stack includes:

a first eyepiece waveguide including a first incoupling diffractive optical element and a first combined pupil expander; and

a second eyepiece waveguide including a second incoupling diffractive optical element and a second combined pupil expander, wherein the second incoupling diffractive optical element is laterally offset from the first incoupling diffractive optical element in a lateral direction.

14 . The eyepiece waveguide stack of claim 13 wherein:

the first eyepiece waveguide is operable to incouple light in a first wavelength range including 630 nm; and

the second eyepiece waveguide is operable to incouple light in a second wavelength range including 455 nm and 530 nm.

15 . The eyepiece waveguide stack of claim 13 wherein light incident on the first incoupling diffractive optical element passes through the second eyepiece waveguide prior to impinging on the first incoupling diffractive optical element.

16 . The eyepiece waveguide stack of claim 13 wherein a thickness of the first eyepiece waveguide is different than a thickness of the second eyepiece waveguide.

17 . The eyepiece waveguide stack of claim 13 wherein the second incoupling diffractive optical element comprises includes two laterally offset diffractive structures.

18 . The eyepiece waveguide stack of claim 13 wherein the second incoupling diffractive optical element comprises includes a first diffractive structure operating in reflection mode and a second diffractive structure operating in transmission mode.

19 . The eyepiece waveguide stack of claim 13 wherein at least one of the first eyepiece waveguide or the second eyepiece waveguide has a thickness that varies in the lateral 2 direction.

20 . The eyepiece waveguide stack of claim 13 wherein a normal vector is orthogonal to the eyepiece waveguide stack and the lateral direction is orthogonal to the normal vector.

Assignments (2)
SECURITY INTEREST Recorded Oct 31, 2025
From: MAGIC LEAP, INC.; MENTOR ACQUISITION ONE, LLC; MOLECULAR IMPRINTS, INC.
To: CITIBANK, N.A., AS COLLATERAL AGENT
Reel/Frame 073439/0168 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 30, 2025
From: SINGH, VIKRAMJIT; KHANDEKAR, CHINMAY; FARAJI-DANA, MOHAMMADSADEGH; TEKOLSTE, ROBERT D.
To: MAGIC LEAP, INC.
Reel/Frame 070991/0740 →