IP Library Granted Patent US 12,013,553
Granted Patent B2
US 12,013,553 · App. 18/309,129 · Granted Jun 18, 2024

Aerial image display system and input system

Inventor: Naoyoshi Yamada (Minamiashigara, JP)
Assignee: FUJIFILM Corporation
G02B30/56G02B27/283G02B5/09G02B5/122G06F3/0421G06F3/044G06F2203/04108
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Quick Facts
Patent No.
US 12,013,553
App. No.
18/309,129
Granted
Jun 18, 2024
Kind
B2
Abstract

Provided are a thin aerial image display system that can display an aerial image and an input device capable of a touch operation on a video displayed in the air without touch on a screen. The aerial image display system includes a reflective polarizer and a half mirror, in which the half mirror is any one of a concave mirror, a Fresnel mirror, or a retroreflective member of a semi-transmissive and semi-reflective type.

Claims (69)

1. An aerial image display system comprising:

a reflective polarizer;

a half mirror;

an image display apparatus; and

a polarization separating element that has a function of separating incident light into polarized light components orthogonal to each other,

wherein the half mirror is any one of a concave mirror, a Fresnel mirror, or a retroreflective member of a semi-transmissive and semi-reflective type,

the reflective polarizer and the half mirror are disposed on a visible side of the image display apparatus, and

the polarization separating element includes any one of an active retardation layer that is capable of switching a direction of a slow axis or a size of retardation, a patterned retardation layer that includes a plurality of two kinds of regions different in at least one of a direction of a slow axis or a size of retardation, an active polarizer that is capable of switching a direction of a transmission axis or an absorption axis, or a patterned polarizer that includes a plurality of two kinds of regions having different directions of transmission axes or absorption axes.

2. The aerial image display system according to claim 1 ,

wherein the reflective polarizer is a reflective linear polarizer,

the aerial image display system further comprises a retardation plate, and

the image display apparatus, the polarization separating element, the half mirror, the retardation plate, and the reflective polarizer are disposed in this order.

3. The aerial image display system according to claim 1 ,

wherein the reflective polarizer is a reflective circular polarizer, and

the image display apparatus, the polarization separating element, the half mirror, and the reflective polarizer are disposed in this order.

4. The aerial image display system according to claim 1 ,

wherein the reflective polarizer is a reflective linear polarizer,

the aerial image display system further comprises an absorptive linear polarizer and a retardation plate, and

the image display apparatus, the absorptive linear polarizer, the retardation plate, the half mirror, the polarization separating element, and the reflective polarizer are disposed in this order.

5. The aerial image display system according to claim 1 ,

wherein the reflective polarizer is a reflective linear polarizer,

the aerial image display system further comprises an absorptive linear polarizer and a retardation plate, and

the image display apparatus, the absorptive linear polarizer, the reflective polarizer, the retardation plate, the half mirror, and the polarization separating element are disposed in this order.

6. The aerial image display system according to claim 1 ,

wherein the reflective polarizer is a reflective circular polarizer,

the aerial image display system further comprises an absorptive linear polarizer and a retardation plate, and

the image display apparatus, the absorptive linear polarizer, the retardation plate, the reflective polarizer, the half mirror, and the polarization separating element are disposed in this order.

7. The aerial image display system according to claim 1 ,

wherein the reflective polarizer is a reflective linear polarizer,

the aerial image display system further comprises an absorptive linear polarizer, and

the image display apparatus, the absorptive linear polarizer, the reflective polarizer, the polarization separating element, and the half mirror are disposed in this order.

8. The aerial image display system according to claim 1 ,

wherein the reflective polarizer is a reflective linear polarizer,

the aerial image display system further comprises an absorptive linear polarizer and two retardation plates, and

the image display apparatus, the absorptive linear polarizer, the retardation plate, the half mirror, the retardation plate, and the reflective polarizer are disposed in this order.

9. The aerial image display system according to claim 2 , further comprising an absorptive linear polarizer that is provided on a visible side further than the reflective polarizer.

10. The aerial image display system according to claim 3 , further comprising an absorptive circular polarizer that is provided on a visible side.

11. The aerial image display system according to claim 1 ,

wherein the half mirror includes a support and a reflecting surface disposed on a surface of the support,

a coating layer having the same refractive index as the support is disposed on the reflecting surface, and

a surface of the support opposite to the reflecting surface and a surface of the coating layer opposite to the reflecting surface are flat surfaces parallel to each other.

12. An input system comprising:

the aerial image display system according to claim 1 ; and

a noncontact touch sensor.

13. An aerial image display system comprising:

a reflective polarizer;

a half mirror; and

an image display apparatus,

wherein the half mirror is any one of a concave mirror, a Fresnel mirror, or a retroreflective member of a semi-transmissive and semi-reflective type,

the reflective polarizer is a reflective circular polarizer,

the reflective circular polarizer including a cholesteric liquid crystal layer,

the aerial image display system further comprises an absorptive linear polarizer and a retardation plate, and

the image display apparatus, the absorptive linear polarizer, the retardation plate, the half mirror, and the reflective polarizer are disposed in this order.

14. An aerial image display system comprising:

a reflective polarizer;

a half mirror; and

an image display apparatus,

wherein the half mirror is any one of a concave mirror, a Fresnel mirror, or a retroreflective member of a semi-transmissive and semi-reflective type,

the reflective polarizer is a reflective linear polarizer,

the aerial image display system further comprises an absorptive linear polarizer and a retardation plate, and

the image display apparatus, the absorptive linear polarizer, the reflective polarizer, the retardation plate, and the half mirror are disposed in this order.

15. An aerial image display system comprising:

a reflective polarizer;

a half mirror; and

an image display apparatus,

wherein the half mirror is any one of a concave mirror, a Fresnel mirror, or a retroreflective member of a semi-transmissive and semi-reflective type,

the reflective polarizer is a reflective circular polarizer,

the aerial image display system further comprises an absorptive linear polarizer and a retardation plate, and

the image display apparatus, the absorptive linear polarizer, the retardation plate, the reflective polarizer, and the half mirror are disposed in this order.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 1, 2023
From: YAMADA, NAOYOSHI
To: FUJIFILM CORPORATION
Reel/Frame 063491/0187 →
Priority Claims (1)
JP 2020-181461 · Oct 29, 2020 · national
Continuity (2)
Continuation PCTJP2021037825 · Oct 13, 2021
Related Publication 20230273452A1 · Aug 31, 2023
Cited By (2)
US 12,360,376 US 12,675,013