IP Library › Granted Patent US 10,962,784
Granted Patent B2
US 10,962,784 · App. 16/429,069 · Granted Mar 30, 2021

Substrate-guide optical device

Inventor: Yaakov Amitai (Ness Ziona, IL)
Assignee: LUMUS LTD.
G02B27/0172B29D11/0073B29D11/00663G02B6/003G02B6/0031G02B6/0055G02B6/0056G02B6/105G02B27/0081G02B27/0176G02B27/0179G02B27/1066G02B27/1073G02B27/283G02C11/10G06F3/017G06F3/02G06F3/0304G06F3/04817G06F3/04883G06F3/16G09G5/003G09G5/391G02B5/30G02B6/00G02B2027/014G02B2027/015G02B2027/0118G02B2027/0125G02B2027/0132G02B2027/0134G02B2027/0136G02B2027/0138G02B2027/0147G02B2027/0178G02B2027/0187G09G2320/0606G09G2354/00
View Patent ↗
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 10,962,784
App. No.
16/429,069
Filed
Jun 3, 2019
Granted
Mar 30, 2021
Kind
B2
Art Unit
2692
USPC
345/173
Abstract

An optical device, including a light waves-transmitting substrate has two major surfaces and edges, optical means for coupling light into the substrate by total internal reflection, and a plurality of partially reflecting surfaces ( 22 a , 22 b ) carried by the substrate. The partially reflecting surfaces ( 22 a , 22 b ) are parallel to each other and are not parallel to any of the edges of the substrate, one or more of the partially reflecting surfaces ( 22 a , 22 b ) being an anisotropic surface. The optical device has dual operational modes in see-through configuration. In a first mode, light waves are projected from a display source through the substrate to an eye of a viewer. In a second mode, the display source is shut off and only an external scene is viewable through the substrate.

Claims (28)

1. A device, comprising:

a light waves-transmitting substrate having a plurality of surfaces including at least two major surfaces;

at least a first and second display;

at least one optical element for coupling light waves from the first display into the substrate by total internal reflection;

at least one optical surface carried by the substrate for coupling light waves out of the substrate, the optical surface defining an active area and an inactive area of the substrate, wherein a majority portion of the second display is located behind the active area and a minority portion of the second display is located behind the inactive area; and

a switching unit configured to selectively control activation and deactivation of the first and second displays to effect switching between:

a first operational mode in which, the switching unit activates the first display and deactivates the majority portion of the second display, such that the light waves from the first display are coupled into the substrate and are projected by the optical surface into an eye of a viewer and light waves from the minority portion of the second display are viewable directly through the substrate, and

a second operational mode in which the switching unit deactivates the first display and activates the majority portion of the second display, such that substantially the entirety of the second display is viewable directly through the substrate.

2. The device according to claim 1 , wherein the minority portion of the second display remains active in both first and second operational modes.

3. The device according to claim 1 , wherein the switching unit includes a control icon located behind the inactive area.

4. The device according to claim 1 , further comprising a mechanical body, wherein the first and second displays are integrated into the mechanical body.

5. A device, comprising:

a light waves-transmitting substrate having a plurality of surfaces including at least two major surfaces;

at least a first and second display;

at least one optical element for coupling light waves from the first display into the substrate by total internal reflection;

at least one optical surface carried by the substrate for coupling light waves out of the substrate, the optical surface defining a viewing area having a first region and a second region, the second region for displaying a minority portion of the second display for viewing by the eye of the viewer directly through the substrate, and the first region for selectively:

displaying a majority portion of the second display for viewing by an eye of a viewer directly through the substrate, and

projecting light waves from the first display that are coupled into the substrate into the eye of the viewer; and

a switching unit configured to control the selectivity of the first region.

6. The device according to claim 5 , wherein the first and second regions are non-overlapping regions.

7. A device, comprising:

a light waves-transmitting substrate having a plurality of surfaces including at least two major surfaces;

at least a first and second display;

at least one optical element for coupling light waves from the first display into the substrate by total internal reflection;

at least one optical surface for coupling light waves out of the substrate;

and a switching unit configured to selectively control activation and deactivation of the first and second displays to effect switching between:

a first operational mode in which, the switching unit activates the first display and at least partially deactivates the second display, such that the light waves from the first display are coupled into the substrate and are projected by the optical surface into an eye of a viewer and a portion of the second display is viewable directly through the substrate, and

a second operational mode in which the switching unit deactivates the first display and activates the second display, such that substantially the entirety of the second display is viewable directly through the substrate.

Priority Claims (1)
IL 166799 · Feb 10, 2005 · national
Continuity (7)
Continuation 16116950 · Aug 30, 2018
Continuation 15225583 · Aug 1, 2016
Continuation In Part 15984461 · May 21, 2018
Continuation 15051323 · Feb 23, 2016
Continuation 13852151 · Mar 28, 2013
Division 11815541
Related Publication 20190285900A1 · Sep 19, 2019