IP Library Granted Patent US 7,123,329
Granted Patent B2
US 7,123,329 · App. 10/713,426 · Granted Oct 17, 2006

Liquid crystal display with a wide viewing angle using a compensation film

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Quick Facts
Patent No.
US 7,123,329
App. No.
10/713,426
Granted
Oct 17, 2006
Kind
B2
Abstract

Disclosed is a liquid crystal display comprising a liquid crystal cell including a pair of transparent substrates, with orientation layers deposited on inner surfaces thereof, and a liquid crystal layer of liquid crystal material injected between the substrates; biaxial compensation films provided on outer surfaces of the liquid crystal cell, the biaxial compensation films including an optical dielectric material layer; and polarization plates provided on outer surfaces of the biaxial compensation films, wherein if “d” is set as a cell gap of the liquid crystal cell, “R LC ” is set as a phase retardation value of the liquid crystal layer, an axis perpendicular to planes made by the substrates is set as a z-axis, x-axis and y-axis are formed on a planar surface of the substrates, and refractive indices of molecules comprising the biaxial compensation films in the x, y and z directions are denoted by nx, ny and nz, retardation values (ny−nx)*d and (nz−nx)*d of the biaxial compensation films being respectively within ranges of −30±5 nm and −R LC /4±15 nm.

Claims (47)

1. A liquid crystal display, comprising:

a first insulating substrate;

a first horizontal orientation layer formed on the first insulating substrate;

a first hybrid C plate compensation film formed on the first insulating substrate;

a first biaxial compensation film formed on the first insulating substrate, wherein the first compensation film has a retardation value of about −R LC /2±30 nm, wherein R LC is a phase retardation value of the liquid crystal layer;

a first polarizer formed on the first insulating substrate;

a second insulating substrate facing the first insulating substrate;

a second horizontal orientation layer formed on the second insulating substrate;

a second compensation film formed on the second insulating substrate;

a second biaxial compensation film formed on the second insulating substrate;

a second polarizer formed on the second insulating substrate; and

a liquid crystal layer arranged between the first horizontal orientation layer and second horizontal orientation layer, wherein a cell gap of a predetermined distance is formed between the first insulating substrate and second insulating substrate.

2. The liquid crystal display of claim 1 , wherein the second compensation film is a hybrid C plate compensation film.

3. The liquid crystal display of claim 1 , wherein the predetermined distance is about 6 μm.

4. The liquid crystal display of claim 1 , wherein the liquid crystal layer comprises liquid crystal molecules having a discotic molecular structure.

5. The liquid crystal display of claim 1 , wherein the second biaxial compensation film has a retardation value of about −60+10 nm.

6. The liquid crystal display of claim 1 , wherein the liquid crystal layer comprises liquid crystals having a discotic molecular structure and a negative anisotropic dielectric value.

7. A liquid crystal display (LCD), comprising:

a first substrate having an inner surface and an outer surface;

a first orientation layer provided on the inner surface of the first substrate;

a first polarizing plate formed on the first biaxial compensation film;

a second substrate having an inner surface and an outer surface;

a second orientation layer provided on the inner surface of the second substrate;

a second polarization plate formed on the second biaxial compensation film;

at least one biaxial compensation film provided on at least one of the outer surfaces of the first and second substrates;

a liquid crystal cell formed between the inner surfaces of the first and second substrates; and

a liquid crystal layer provided in the liquid crystal cell,

wherein the biaxial compensation film has a retardation value (ny−nx)*d of about −60±10 nm or a retardation value (nz−nx)*d of about −R LC /2±30 nm,

where “d” is a cell gap of the liquid crystal cell, “R LC ” is a phase retardation value of the liquid crystal layer, and “nx”, “ny” and “nz” are refractive indices of molecules of the biaxial compensation film in x, y and z directions, the x and y directions being parallel to the inner surfaces of the first and second substrates and the z direction being perpendicular to the inner surfaces of first and second substrate.

8. The LCD of claim 7 , wherein the liquid crystal layer has a symmetrically bent alignment with respect to an imaginary axis parallel to and equidistant from the first and second substrates.

9. The LCD of claim 7 , wherein the biaxial compensation film comprises an optical dielectric layer having a negative anisotropy.

10. The LCD of claim 7 , further comprising at least one hybrid C plate compensation film provided between the liquid crystal cell and the at least one biaxial compensation film.

11. A liquid crystal display (LCD), comprising:

a first substrate having an inner surface and an outer surface;

a first orientation layer provided on the inner surface of the first substrate;

a first polarizing plate formed on the first biaxial compensation film;

a second substrate having an inner surface and an outer surface;

a second orientation layer provided on the inner surface of the second substrate;

a second polarization plate formed on the second biaxial compensation film;

at least one biaxial compensation film provided on at least one of the outer surfaces of the first and second substrates;

a liquid crystal cell formed between the inner surfaces of the first and second substrates; and

a liquid crystal layer provided in the liquid crystal cell,

wherein the biaxial compensation film has a retardation value (ny−nx)*d of about −60±10 nm and a retardation value (nz−nx)*d of about −R LC /2±30 nm,

where “d” is a cell gap of the liquid crystal cell, “R LC ” is a phase retardation value of the liquid crystal layer, and “nx”, “ny” and “nz” are refractive indices of molecules of the biaxial compensation film in x, y and z directions, the x and y directions being parallel to the inner surfaces of the first and second substrates and the z direction being perpendicular to the inner surfaces of first and second substrate.

12. The LCD of claim 11 , wherein the liquid crystal layer has a symmetrically bent alignment with respect to an imaginary axis parallel to and equidistant from the first and second substrates.

13. The LCD of claim 11 , wherein the biaxial compensation film comprises an optical dielectric layer having a negative anisotropy.

14. The LCD of claim 11 , further comprising at least one hybrid C plate compensation film provided between the liquid crystal cell and the at least one biaxial compensation film.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 14, 2012
From: SAMSUNG ELECTRONICS CO., LTD.
To: SAMSUNG DISPLAY CO., LTD.
Reel/Frame 028984/0774 →