IP Library Granted Patent US 9,366,867
Granted Patent B2
US 9,366,867 · App. 14/325,991 · Granted Jun 14, 2016

Optical systems for see-through displays

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Quick Facts
Patent No.
US 9,366,867
App. No.
14/325,991
Filed
Jul 8, 2014
Granted
Jun 14, 2016
Kind
B2
Art Unit
2872
USPC
359/630
Abstract

Aspects of the present invention relate to methods and systems for providing a high quality display images in see-through head-worn optics.

Claims (33)

1. An optical system for a head-worn computer, comprising:

a polarized light source positioned within the head-worn computer and adapted to project polarized light towards a partially reflective partially transmissive surface such that the polarized light reflects through a field lens and towards a reflective display forming image light, wherein the polarized light is converted to a different polarization state after reflecting off a surface of the reflective display,

wherein the image light is then transmitted through the field lens and then through the partially reflective partially transmissive surface to an eye image display optical system adapted to present the image light to an eye of a user wearing the head-worn computer, and

wherein the reflective display is a monochrome reflective display and the polarized light source provides sequential illumination of red, green and blue light to provide a perceived full color image to the eye of the user.

2. The optical system of claim 1 , wherein a path of the polarized light is folded once in the head worn computer.

3. The optical system of claim 1 , wherein the polarized light and the image light both pass through the field lens but in opposite directions.

4. The optical system of claim 1 , wherein the eye image display optical system includes a forward facing reflective surface and a reflective optic with optical power, wherein the reflective optic with optical power reflects the image light towards the user's eye.

5. The optical system of claim 4 , wherein the forward facing reflective surface includes a beam splitter plate and the reflective optic with optical power includes a curved partial mirror.

6. The optical system of claim 5 , wherein the image light is provided from behind the rotationally curved partial mirror.

7. The optical system of claim 5 , wherein the image light is provided from the side of the rotationally curved partial mirror.

8. The optical system of claim 5 , wherein the image light is folded twice in the reflective optic.

9. An optical system for a head-worn computer, comprising:

a polarized light source positioned within the head-worn computer and adapted to project polarized light towards a partially reflective partially transmissive surface such that the polarized light reflects through a field lens and towards a reflective display forming image light, wherein the polarized light is converted to a different polarization state after reflecting off a surface of the reflective display,

wherein the image light is then transmitted through the field lens and then through the partially reflective partially transmissive surface to an eye image display optical system adapted to present the image light to an eye of a user wearing the head-worn computer, and

wherein the partially reflective partially transmissive surface is a reflective polarizer film that includes a flat surface.

10. The optical system of claim 9 , wherein a path of the polarized light is folded once in the head worn computer.

11. The optical system of claim 9 , wherein the polarized light and the image light both pass through the field lens but in opposite directions.

12. The optical system of claim 9 , wherein the eye image display optical system includes a forward facing reflective surface and a reflective optic with optical power, wherein the reflective optic with optical power reflects the image light towards the user's eye.

13. The optical system of claim 12 , wherein the forward facing reflective surface includes a beam splitter plate and the reflective optic with optical power includes a curved partial mirror.

14. The optical system of claim 13 , wherein the image light is provided from behind the rotationally curved partial mirror.

15. The optical system of claim 13 , wherein the image light is provided from the side of the rotationally curved partial mirror.

16. The optical system of claim 13 , wherein the image light is folded twice in the folded reflective optic.

17. An optical system for a head-worn computer, comprising:

a polarized light source positioned within the head-worn computer and adapted to project polarized light towards a partially reflective partially transmissive surface such that the polarized light reflects through a field lens and towards a reflective display, wherein the polarized light is converted to a different polarization state after reflecting off a surface of the reflective display, forming image light,

wherein the image light is then transmitted through the field lens and then through the partially reflective partially transmissive surface to an eye image display optical system adapted to present the image light to an eye of a user wearing the head-worn computer,

wherein the partially reflective partially transmissive surface is a thin reflective polarizer film of approximately 80 microns.

18. The optical system of claim 17 , wherein a path of the polarized light is folded once in the head worn computer.

19. The optical system of claim 17 , wherein the polarized light and the image light both pass through the field lens but in opposite directions.

20. The optical system of claim 17 , wherein the eye image display optical system includes a forward facing reflective surface and a reflective optic with optical power, wherein the reflective optic with optical power reflects the image light towards the user's eye.

21. The optical system of claim 20 , wherein the forward facing reflective surface includes a beam splitter plate and the reflective optic with optical power includes a curved partial mirror.

22. The optical system of claim 21 , wherein the image light is provided from behind the rotationally curved partial mirror.

23. The optical system of claim 21 , wherein the image light is provided from the side of the rotationally curved partial mirror.

24. The optical system of claim 21 , wherein the image light is folded twice in the folded reflective optic.

Assignments (9)
SECURITY INTEREST Recorded Oct 28, 2025
From: MAGIC LEAP, INC.; MENTOR ACQUISITION ONE, LLC; MOLECULAR IMPRINTS, INC.
To: CITIBANK, N.A., AS COLLATERAL AGENT
Reel/Frame 073388/0027 →
ASSIGNMENT OF SECURITY INTEREST IN PATENTS Recorded Nov 7, 2019
From: JPMORGAN CHASE BANK, N.A.
To: CITIBANK, N.A.
Reel/Frame 050967/0138 →
PATENT SECURITY AGREEMENT Recorded Aug 22, 2019
From: MAGIC LEAP, INC.; MOLECULAR IMPRINTS, INC.; MENTOR ACQUISITION ONE, LLC
To: JP MORGAN CHASE BANK, N.A.
Reel/Frame 050138/0287 →
ASSIGNMENT OF PATENTS AND PATENT APPLICATIONS Recorded Apr 18, 2019
From: JGB COLLATERAL, LLC
To: MENTOR ACQUISITION ONE, LLC
Reel/Frame 048945/0939 →
SECURED PARTY BILL OF SALE Recorded Apr 18, 2019
From: OSTERHOUT GROUP, INC.
To: JGB COLLATERAL, LLC
Reel/Frame 051018/0883 →
SECURITY INTEREST Recorded Mar 15, 2018
From: OSTERHOUT GROUP, INC.
To: JGB COLLATERAL, LLC
Reel/Frame 045606/0295 →
SECURITY INTEREST Recorded Oct 3, 2017
From: OSTERHOUT GROUP, INC.
To: O-FILM GLOBAL (HK) TRADING LIMITED
Reel/Frame 044127/0501 →
SECURITY INTEREST Recorded Sep 28, 2017
From: OSTERHOUT GROUP, INC.
To: 21ST CENTURY FOX AMERICA, INC.
Reel/Frame 044052/0367 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 29, 2015
From: BORDER, JOHN N.; BIETRY, JOSEPH; HADDICK, JOHN D.
To: OSTERHOUT GROUP, INC.
Reel/Frame 034846/0286 →