IP Library Granted Patent US 10,877,262
Granted Patent B1
US 10,877,262 · App. 16/625,780 · Granted Dec 29, 2020

Magnification glasses with multiple cameras

Inventor: Itzhak Luxembourg (Beit Elazari, IL)
G02B25/004A61B1/24A61B6/462A61B6/466G02B27/0172G02B2027/0138G02B2027/0178
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Quick Facts
Patent No.
US 10,877,262
App. No.
16/625,780
Granted
Dec 29, 2020
Kind
B1
Abstract

Magnification glasses and methods of use, the glasses including a first camera array for capturing a magnified image in the field of view of the glasses, the first camera array including a first camera and a second camera, where the first camera and the second camera provide different levels of magnification, where the first camera and the second camera have the same working distance of between 150 mm to 400 mm, and where the first camera and the second camera are fixed focus cameras.

Claims (35)

1. Magnification glasses comprising: a first camera array for capturing a magnified image in the field of view of said glasses comprising at least a first camera and a second camera wherein each of said first camera and said second camera provide different levels of magnification, wherein said first camera and said second camera have the same working distance, wherein said first camera and said second camera are fixed focus cameras.

2. The glasses of claim 1 wherein said working distance is between 150 mm to 400 mm.

3. The glasses of claim 2 wherein each of said first and second cameras provides a different magnification of between 2× and 10×.

4. The glasses of claim 3 further comprising a first viewer assembly and a processor, wherein said processor receives a first magnified image captured by said first camera and a second magnified image captured by said second camera and transmits either one of said first image or said second image for display on said first viewer assembly, wherein said processor is a computing device.

5. The glasses of claim 4 wherein said processor digitally zooms either one of said first magnified image or said second magnified image before transmission to said first viewer assembly.

6. The glasses of claim 5 wherein said first viewer assembly comprises at least one of:

a. a display screen positioned in front of said glasses frame;

b. a display screen mounted in said glasses frame; or

c. a projector for projecting on a lens in said frame.

7. The glasses of claim 6 wherein one or more of said cameras comprises an infrared camera.

8. The glasses of claim 7 wherein said processor provides for display on said viewer assembly at least one of:

a. said magnified view captured by said camera assembly;

b. a virtual reality view;

c. an augmented reality view;

d. a data view; or

e. an infrared view.

9. The glasses of claim 8 further comprising a second camera array and a second viewer assembly positioned on the same side of said glasses, wherein said first camera array and a first viewer assembly are positioned on the opposite side of said glasses wherein said first and second camera arrays are spaced horizontally apart so as to capture stereoscopic vision, wherein the said processor transmits the image from said first camera array to said first viewer assembly and wherein said processor transmits the image from said second camera array to said second viewer assembly.

10. The glasses of claim 9 further comprising an illumination source.

11. The glasses of claim 10 wherein said illumination source comprises an ultraviolet light.

12. The glasses of claim 5 wherein said processor switches between said first magnified image and said second magnified image at a point where said first magnified image and said second magnified image appear the same to a user of said glasses.

13. Electro-optical magnifying glasses comprising:

a. a wearable display; and

b. a first camera array for capturing a magnified image in the field of view of said glasses comprising at least a first camera and a second camera wherein each of said first camera and said second camera provide different levels of magnification, wherein said first camera and said second camera have the same working distance, wherein said first camera and said second camera are fixed focus cameras.

14. The glasses of claim 13 wherein said working distance is between 150 mm to 400 mm.

15. The glasses of claim 14 wherein each of said first and second cameras provides a different magnification of between 2× and 10×.

16. The glasses of claim 15 further comprising a processor, wherein said processor receives a first magnified image captured by said first camera and a second magnified image captured by said second camera and transmits either one of said first image or said second image for display on said display, wherein said processor is a computing device.

17. The glasses of claim 16 wherein said processor digitally zooms either one of said first magnified image or said second magnified image before transmission to said first viewer assembly.

18. The glasses of claim 17 wherein one or more of said cameras comprises an infrared camera.

19. The glasses of claim 18 wherein said processor provides for display on said display of at least one of:

a. said magnified view captured by said camera assembly;

b. a virtual reality view;

c. an augmented reality view;

d. a data view; or

e. an infrared view.

20. The glasses of claim 16 wherein said processor switches between said first magnified image and said second magnified image at a point where said first magnified image and said second magnified image appear the same to a user of said glasses.

Continuity (1)
Provisional Application 62522692 · Jun 21, 2017
Cited By (17)
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