Claims
- 1. A normally white supertwist nematic liquid crystal display comprising:
a reflector, a layer of chiral nematic liquid crystal having a front aligning surface facing a light source and a rear aligning surface facing the reflector, said nematic liquid crystal having an optical retardation (Δnd) of the layer and a distribution of directors, wherein said chiral nematic liquid crystal has a twist angle (Φ) between an alignment direction of a director at the front aligning surface and an alignment direction of a director at the rear aligning surface; and a front polarizer disposed between the layer of the chiral nematic liquid crystal and the light source, said front polarizer has a transmission axis forming an angle (α) with the alignment direction of the director at the front aligning surface of the chiral nematic liquid crystal layer; wherein the optical retardation (Δnd) and the angle (α) are defined by the following formulas: α(Φ)=sign(Φ)·(47.0−0.4936 |Φ|+2.6786×10−3·Φ2)±5, deg, and Δnd(Φ)=−11.674+0.1915·|Φ|−9.8393×10−4·Φ2+1.6667×10−6·|Φ|3±0.05, μm.
- 2. The liquid crystal display according to claim 1, wherein the twist angle (Φ) is in the range of approximately 180 to 260 degree.
- 3. The liquid crystal display according to claim 1, wherein the chiral nematic liquid crystal is further characterized by a helix natural pitch (P) having a value of approximately 360° d/Φ, wherein (d) is a thickness of the liquid crystal layer.
- 4. The liquid crystal display according to claim 1, wherein the chiral nematic liquid crystal director at the front surface coincides with a pretilt angle.
- 5. The liquid crystal display according to claim 1, wherein the front polarizer has a thickness that is sufficient to provide an interference extremum and a maximum contrast ratio in a spectral range corresponding to the maximum sensitivity of a human eye.
- 6. The liquid crystal display according to claim 1, wherein the front polarizer is made out of an optically anisotropic dichroic thin crystal film material which comprises aromatic rings and has an intermolecular spacing of 3.4±0.3 Å in the direction of one of optical axes.
- 7. The liquid crystal display according to claim 6, wherein the optically anisotropic dichroic thin crystal film comprises metal ions of two- and/or three-valence.
- 8. The liquid crystal display according to claim 6, wherein the thin crystal film material comprises heterocycles.
- 9. The liquid crystal display according to claim 6, wherein the optically anisotropic dichroic thin crystal film is made of lyotropic liquid crystal based on at least one dichroic dye.
- 10. The liquid crystal display according to claim 6, wherein the optically anisotropic dichroic thin crystal film material is characterized by imaginary (K1, K2, K3) and real (n1,n2,n3) components of complex refraction index, said components satisfy the following relationships:
- 11. The liquid crystal display according to claim 1, further comprising following sequence of layers:
a front glass plate; a front optically transparent electrode; a front optically transparent protective layer; a front polarizer; a front alignment layer; the chiral nematic liquid crystal layer; a rear alignment layer; a rear optically transparent protective layer; a rear optically transparent electrode; and a rear glass plate; and a reflector with reflection coefficient no less than 95%.
- 12. The liquid crystal display according to claim 1, further comprising following sequence of layers:
a front glass plate; a front optically transparent electrode; a front optically transparent protective layer; the front polarizer; a front alignment layer; the chiral nematic liquid crystal layer; a rear alignment layer; a rear optically transparent protective layer; an optically non-transparent rear electrode that serves as a reflector with reflection coefficient no less than 95%; and a rear glass plate.
- 13. The liquid crystal display according to claim 11, further comprising an additional polarizer and/or an anti-reflecting coating and/or a diffuse scattering layer positioned on the external side of the front glass plate.
- 14. The liquid crystal display according to claim 12, further comprising an additional polarizer and/or an anti-reflecting coating and/or a diffuse scattering layer positioned on the external side of the front glass plate.
- 15. The liquid crystal display according to claim 11, further comprising layers of internal anti-reflecting filters.
- 16. The liquid crystal display according to claim 12, further comprising layers of internal anti-reflecting filters.
CROSS-REFERENCES TO RELATED APPLICATIONS
[0001] This application is a continuation-in-part of U.S. patent application Ser. No. 10/272,833, filed Oct. 16, 2002, the entire disclosure of which is hereby incorporated by reference.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
10272833 |
Oct 2002 |
US |
Child |
10638205 |
Aug 2003 |
US |