Claims
- 1. A reflex liquid crystal display device comprising a first substrate with a light transmissive electrode, a second substrate with a light reflective electrode, and a layer of vertically-aligned liquid crystal material interposed between said first and second substrates positioned opposite to each other in a state where said light transmissive electrode and said light reflective electrode are opposed mutually, wherein the thickness of said vertically-aligned liquid crystal layer is 2.5 μm or less, and the refractive index anisotropy Δn of said liquid crystal material is more than 0.1.
- 2. The reflex liquid crystal display device according to claim 1, wherein a liquid crystal orientation film is formed on each of the mutually opposed faces of said light transmissive electrode being transparent and said light reflective electrode, and said light reflective electrode is connected to a single-crystal semiconductor driving circuit of silicon or the like formed on said second substrate, thereby constituting an active driving type reflex liquid crystal display device.
- 3. The reflex liquid crystal display device according to claim 2, wherein said single-crystal semiconductor driving circuit comprises a driving transistor provided for each pixel on a silicon substrate serving as said second substrate, and said light reflective electrode is connected to the output side of said driving transistor.
- 4. The reflex liquid crystal display device according to claim 1, wherein the pixel size is less than 10 μm.
- 5. The reflex liquid crystal display device according to claim 2, wherein a silicon oxide film is formed as said liquid crystal orientation film.
- 6. A display apparatus equipped with the reflex liquid crystal display device according to any of claims 1 to 5.
- 7. The display apparatus according to claim 6, comprising a light source, an optical unit for enabling incidence of the emitted light from the light source onto the reflex liquid crystal display device, said reflex liquid crystal display device, and an optical unit for introducing the reflected light from said reflex liquid crystal display device, wherein all of said components are disposed in an optical path of said apparatus.
- 8. The display apparatus according to claim 7, wherein the light emitted from said light source is incident upon said reflex liquid crystal display device via a polarizer/converter and a polarized beam splitter, and the reflected light from said reflex liquid crystal display device is introduced via said polarized beam splitter again.
- 9. The display apparatus according to claim 8, wherein said reflex liquid crystal display device and said polarized beam splitter are disposed for each of colors respectively, and the reflected light beams from the individual reflex liquid crystal display devices are synthesized.
- 10. The display apparatus according to claim 9, wherein white light emitted from a white light source is introduced to a dichroic color separation filter via said polarizer/converter, and the light beams separated therethrough are further separated into light beams of individual colors, which are then incident upon said reflex liquid crystal display devices respectively via said polarized beam splitter, and the reflected light beams are synthesized by means of a prism.
- 11. A projection optical system wherein the reflex liquid crystal display device according to any of claims 1 to 5 is disposed in an optical path thereof.
- 12. The projection optical system according to claim 11, comprising a light source, an optical unit for enabling incidence of the emitted light from the light source onto the reflex liquid crystal display device, said reflex liquid crystal display device, and an optical unit for introducing the reflected light from said reflex liquid crystal display device, wherein all of said components are disposed in an optical path of said system.
- 13. The projection optical system according to claim 12, wherein the light emitted from said light source is incident upon said reflex liquid crystal display device via a polarizer/converter and a polarized beam splitter, and the reflected light from said reflex liquid crystal display device is introduced to a projection lens via said polarized beam splitter again.
- 14. The projection optical system according to claim 13, wherein said reflex liquid crystal display device and said polarized beam splitter are disposed for each of colors respectively, and the reflected light beams from the individual reflex liquid crystal display devices are synthesized and introduced to said projection lens.
- 15. The projection optical system according to claim 14, wherein white light emitted from a white light source is introduced to a dichroic color separation filter via said polarizer/converter, and the light beams separated therethrough are further separated into light beams of individual colors, which are then incident upon said reflex liquid crystal display devices respectively via said polarized beam splitter, and the reflected light beams are synthesized by means of a prism.
- 16. A projection display system wherein the reflex liquid crystal display device according to any of claims 1 to 5 is disposed in an optical path thereof.
- 17. The projection display system according to claim 16, comprising a light source, an optical unit for enabling incidence of the emitted light from the light source onto the reflex liquid crystal display device, said reflex liquid crystal display device, and an optical unit for introducing the reflected light from said reflex liquid crystal display device, wherein all of said components are disposed in the optical path of said system.
- 18. The projection display system according to claim 17, wherein the light emitted from said light source is incident upon said reflex liquid crystal display device via a polarizer/converter and a polarized beam splitter, and the reflected light from said reflex liquid crystal display device is introduced to a projection lens via said polarized beam splitter again, and further to a screen.
- 19. The projection display system according to claim 18, wherein said reflex liquid crystal display device and said polarized beam splitter are disposed for each of colors respectively, and the reflected light beams from the individual reflex liquid crystal display devices are synthesized and introduced to said projection lens.
- 20. The projection display system according to claim 19, wherein white light emitted from a white light source is introduced to a dichroic color separation filter via said polarizer/converter, and the light beams separated therethrough are further separated into light beams of individual colors, which are then incident upon said reflex liquid crystal display devices respectively via said polarized beam splitter, and the reflected light beams are synthesized by means of a prism.
- 21. A projection optical system wherein the reflex liquid crystal display device according to any of claims 1 to 5, and an optical unit having an F number under 3, are disposed in an optical path thereof.
- 22. The projection optical system according to claim 21, comprising a light source, an optical unit for enabling incidence of the emitted light from the light source onto the reflex liquid crystal display device, said reflex liquid crystal display device, and an optical unit for introducing the reflected light from said reflex liquid crystal display device, wherein all of said components are disposed in the optical path of said system.
- 23. The projection optical system according to claim 22, wherein the light emitted from said light source is incident upon said reflex liquid crystal display device via a polarizer/converter and a polarized beam splitter, and the reflected light from said reflex liquid crystal display device is introduced to a projection lens via said polarized beam splitter again.
- 24. The projection optical system according to claim 23, wherein said reflex liquid crystal display device and said polarized beam splitter are disposed for each of colors respectively, and the reflected light beams from the individual reflex liquid crystal display devices are synthesized and introduced to said projection lens.
- 25. The projection optical system according to claim 24, wherein white light emitted from a white light source is introduced to a dichroic color separation filter via said polarizer/converter, and the light beams separated therethrough are further separated into light beams of individual colors, which are then incident upon said reflex liquid crystal display devices respectively via said polarized beam splitter, and the reflected light beams are synthesized by means of a prism.
- 26. A projection display system wherein the reflex liquid crystal display device according to any of claims 1 to 5, and an optical unit having an F number under 3, are disposed in an optical path thereof.
- 27. The projection display system according to claim 26, comprising a light source, an optical unit for enabling incidence of the emitted light from the light source onto the reflex liquid crystal display device, said reflex liquid crystal display device, and an optical unit for introducing the reflected light from said reflex liquid crystal display device, wherein all of said components are disposed in the optical path of said system.
- 28. The projection display system according to claim 27, wherein the light emitted from said light source is incident upon said reflex liquid crystal display device via a polarizer/converter and a polarized beam splitter, and the reflected light from said reflex liquid crystal display device is introduced to a projection lens via said polarized beam splitter again, and further to a screen.
- 29. The projection display system according to claim 28, wherein said reflex liquid crystal display device and said polarized beam splitter are disposed for each of colors respectively, and the reflected light beams from the individual reflex liquid crystal display devices are synthesized and introduced to said projection lens.
- 30. The projection display system according to claim 29, wherein white light emitted from a white light source is introduced to a dichroic color separation filter via said polarizer/converter, and the light beams separated therethrough are further separated into light beams of individual colors, which are then incident upon said reflex liquid crystal display devices respectively via said polarized beam splitter, and the reflected light beams are synthesized by means of a prism.
Priority Claims (1)
Number |
Date |
Country |
Kind |
P2001-192203 |
Jun 2001 |
JP |
|
PRIORITY
[0001] The present application is a continuation-in-part of U.S. application Ser. No. 10/362,646 to be published on Jan. 22, 2004, which claims priority to PCT/JP02/06433 filed on Jun. 26, 2002, which claims priority to JP/2001-192203 dated Jun. 26, 2001, all of which are incorporated here by reference to the extent permitted by law.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
10362646 |
Jul 2003 |
US |
Child |
10747596 |
Dec 2003 |
US |