IP Library › Granted Patent US 7,778,508
Granted Patent B2
US 7,778,508 · App. 11/792,218 · Granted Aug 17, 2010

Image display optical system, image display unit, illuminating optical system, and liquid crystal display unit

Assignee: Nikon Corporation
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Quick Facts
Patent No.
US 7,778,508
App. No.
11/792,218
Granted
Aug 17, 2010
Kind
B2
Abstract

Image display optical systems are disclosed that extend the angle of view longitudinally and transversely while saving space. The image display optical system includes a prism-shaped substrate transparent to an image-carrying light flux to be projected to a viewing eye, an introduction unit that guides the image-carrying light flux to a propagation path through which the image-carrying light flux propagates in a direction in which the image-carrying light flux from the outside enables internal reflection at least at three surfaces including at least one side of the substrate, and an output unit that guides the image-carrying light flux propagating through the substrate from the substrate to the viewing eye. By internally reflecting the image-carrying light flux at all the sides, i.e., three or more sides of the prism-shaped substrate, the propagation path is folded to be smaller and extends the opening angle of the light ray included in the image-carrying light flux longitudinally and transversely without increasing the substrate's size.

Claims (31)

1. An image display optical system, comprising:

a prism-shaped substrate having at least three lateral faces and being transparent to an image-carrying light flux to be projected to a viewing eye;

an introduction unit that turns said image-carrying light flux into a light flux that propagates in the substrate while being internally reflected at the at least three lateral faces by deflecting said image-carrying light flux entering the substrate from outside said substrate; and

an output unit that guides said image-carrying light flux, being internally reflected inside the substrate at the at least three lateral faces, from said substrate to said viewing eye.

2. The image display optical system according to claim 1 , wherein said introduction unit includes a reflecting surface that is not parallel to any of the lateral faces.

3. The image display optical system according to claim 1 , wherein said output unit includes a plurality of partially reflecting surfaces parallel to one another provided inside said substrate.

4. The image display optical system according to claim 1 , wherein said output unit includes:

an optical film provided on at least a portion of the lateral faces, the optical film emitting part of said image-carrying light flux to the outside; and

a plurality of reflecting surfaces parallel to one another provided on the opposite side of the substrate of said optical film.

5. The image display optical system according to claim 3 , wherein any one of said plurality of reflecting surfaces includes a holographic optical film.

6. The image display optical system according to claim 4 , wherein any one of said plurality of reflecting surfaces includes a holographic optical film.

7. The image display optical system according to claim 1 , wherein said output unit includes a holographic optical film provided on any one of the lateral faces of said substrate.

8. An image display unit, comprising:

an image display device that emits an image-carrying light flux to be projected to a viewing eye; and

the image display optical system according to any one of claim 1 to claim 7 , which guides said image-carrying light flux to said viewing eye.

9. The image display unit of claim 8 , further comprising a mounting unit that mounts said image display unit on the head of a viewer.

10. An illuminating optical system, comprising:

a prism-shaped substrate having at least three lateral faces and being transparent to an illumination light flux to illuminate a region to be illuminated;

an introduction unit that turns said illumination light flux that propagates while being internally reflected at the at least three lateral faces by deflecting said illumination light flux entering the substrate from outside said substrate; and

an output unit that guides said illumination light flux being internally reflected at the at least three lateral faces from said substrate to said region to be illuminated.

11. The illuminating optical system according to claim 10 , wherein said introduction unit includes a reflecting surface that is not parallel to any of the lateral faces.

12. The illuminating optical system according to claim 10 , wherein said output unit includes a plurality of partially reflecting surfaces parallel to one another provided inside said substrate.

13. The illuminating optical system according to claim 10 , wherein said output unit includes:

an optical film provided on at least a portion of the lateral faces, the optical film emitting part of said illumination light flux to the outside; and

a plurality of reflecting surfaces parallel to one another provided on the opposite side of the substrate of said optical film.

14. The illuminating optical system according to claim 12 , wherein any one of said plurality of reflecting surfaces includes a holographic optical film.

15. The illuminating optical system according to claim 13 , wherein any one of said plurality of reflecting surfaces includes a holographic optical film.

16. The illuminating optical system according to claim 10 , wherein said output unit includes a holographic optical film provided on any one of the lateral faces.

17. A liquid crystal display unit, comprising:

a light source that emits an illumination light flux to illuminate a liquid crystal panel; and

the illuminating optical system according to any one of claim 10 to claim 16 , which guides said illumination light flux to said liquid crystal panel.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 1, 2007
From: HIRAYAMA, YOSHIKAZU
To: NIKON CORPORATION
Reel/Frame 019433/0779 →
Priority Claims (1)
JP 2004-353006 · Dec 6, 2004 · national
Continuity (1)
Related Publication 20080094586A1 · Apr 24, 2008