IP Library Granted Patent US 7,728,932
Granted Patent B2
US 7,728,932 · App. 12/292,446 · Granted Jun 1, 2010

Liquid crystal display device with particular phase plates having specific axis angles

Assignee: Hitachi Displays, Ltd.
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 7,728,932
App. No.
12/292,446
Granted
Jun 1, 2010
Kind
B2
Abstract

The present invention provides a liquid crystal display device. An optical film having negative uniaxial double refractive index ellipsoids is arranged below a semi-transmitting liquid crystal display cell and, thereafter, a λ/4 phase difference plate, a λ/2 phase difference plate and a polarizer are arranged. The orientation axis direction of the optical film having negative uniaxial double refractive index ellipsoids is substantially equal to the direction which is rotated by 90° in the clockwise direction from a resultant vector of the orientation axis direction of the upper orientation film and the orientation axis direction of the lower orientation film of the liquid crystal display cell. Further, phase lagging axis of the upper and lower λ/4 phase difference plate is set substantially equal to the orientation axis direction of the optical film having negative uniaxial double refractive index ellipsoids.

Claims (30)

1. A liquid crystal display device comprising:

a liquid crystal display cell having a lower substrate, an upper substrate which constitutes an observation side, a liquid crystal layer sandwiched between the lower substrate and the upper substrate, a lower orientation film which is formed over a surface of the lower substrate which is brought into contact with the liquid crystal layer, and an upper orientation film formed over a surface of the upper substrate which is brought into contact with the liquid crystal layer;

an upper polarizer arranged at a side of the upper substrate opposite to the liquid crystal layer;

an upper λ/2 phase difference plate arranged between the upper polarizer and the upper substrate;

an upper λ/4 phase difference plate arranged between the upper λ/2 phase difference plate and the upper substrate;

a lower polarizer arranged at a side of the lower substrate opposite to the liquid crystal layer;

a lower λ/2 phase difference plate arranged between the lower polarizer and the lower substrate;

a lower λ/4 phase difference plate arranged between the lower λ/2 phase difference plate and the lower substrate; and

an optical film having negative uniaxial double refractive index ellipsoids arranged between the lower λ/4 phase difference plate and the lower substrate, wherein a twist angle of the liquid crystal layer is larger than 0° and equal to or smaller than 90°,

the orientation axis direction of the optical film having negative uniaxial double refractive index ellipsoids is arranged within a range of −5° to +5° with respect to the direction which is rotated by 90° in the clockwise direction from a resultant vector of the orientation axis direction of the upper orientation film and the orientation axis direction of the lower orientation film of the liquid crystal display cell,

a phase lagging axis of the lower λ/4 phase difference plate is arranged within a range of −10° to +10° with respect to the orientation axis direction of the optical film having negative uniaxial double refractive index ellipsoids, and a phase lagging axis of the upper λ/4 phase difference plate is arranged within a range of −5° to +5° with respect to the direction which is rotated 90° in the clockwise direction from a resultant vector of the orientation axis direction of the upper orientation film and the orientation axis direction of the lower orientation film of the liquid crystal display cell; and

the optical film having negative uniaxial double refractive index ellipsoids includes discotic liquid crystal which is subjected to a hybrid orientation.

2. A liquid crystal display device according to claim 1 , wherein the lower λ/4 phase difference plate is formed of a three-dimensional refractive index control type phase difference plate having a N Z coefficient of −1≦N Z <1, wherein the N Z coefficient indicates a three-dimensional refractive index.

3. A liquid crystal display device according to claim 1 , wherein the upper λ/4 phase difference plate is formed of a three-dimensional refractive index control type phase difference plate having a N Z coefficient of −1≦N Z <1, wherein the N Z coefficient indicates a three-dimensional refractive index.

4. A liquid crystal display device according to claim 1 , wherein both of the lower phase difference plate and the upper λ/4 phase difference plate are formed of a three-dimensional refractive index control type phase difference plate having a N Z coefficient of −1≦N Z <1, wherein the N Z coefficient indicates a three-dimensional refractive index.

5. A liquid crystal display device according to claim 1 , wherein the liquid crystal display device includes a backlight.

6. A liquid crystal display device comprising:

a liquid crystal display cell having a lower substrate, an upper substrate which constitutes an observation side, a liquid crystal layer sandwiched between the lower substrate and the upper substrate, a lower orientation film which is formed over a surface of the lower substrate which is brought into contact with the liquid crystal layer, and an upper orientation film formed over a surface of the upper substrate which is brought into contact with the liquid crystal layer;

an upper polarizer arranged at a side of the upper substrate opposite to the liquid crystal layer;

an upper λ/2 phase difference plate arranged between the upper polarizer and the upper substrate;

an upper λ/4 phase difference plate arranged between the upper λ/2 phase difference plate and the upper substrate;

a lower polarizer arranged at a side of the lower substrate opposite to the liquid crystal layer;

a lower λ/2 phase difference plate arranged between the lower polarizer and the lower substrate;

a lower λ/4 phase difference plate arranged between the lower λ/2 phase difference plate and the lower substrate; and

an optical film having negative uniaxial double refractive index ellipsoids arranged between the lower λ/4 phase difference plate and the lower substrate, wherein a twist angle of the liquid crystal layer is 0°, the orientation axis direction of the optical film having negative uniaxial double refractive index ellipsoids is arranged within a range of −5° to +5° with respect to the orientation axis direction of the lower orientation film of the liquid crystal display cell,

a phase lagging axis of the lower λ/4 phase difference plate is arranged within a range of −10° to +10° with respect to the orientation axis direction of the optical film having negative uniaxial double refractive index ellipsoids, and a phase lagging axis of the upper λ/4 phase difference plate is arranged within a range of −5° to +5° with respect to the orientation axis direction of the upper orientation film of the liquid crystal display cell, and the optical film having negative uniaxial double refractive index ellipsoids includes discotic liquid crystal which is subjected to a hybrid orientation.

7. A liquid crystal display device according to claim 6 , wherein the lower λ/4 phase difference plate is formed of a three-dimensional refractive index control type phase difference plate having a N Z coefficient of −1≦N Z <1, wherein the N Z coefficient indicates a three-dimensional refractive index.

8. A liquid crystal display device according to claim 6 , wherein the upper λ/4 phase difference plate is formed of a three-dimensional refractive index control type phase difference plate having a N Z coefficient of −1≦N Z <1, wherein the N Z coefficient indicates a three-dimensional refractive index.

9. A liquid crystal display device according to claim 6 , wherein both of the lower λ/4 phase difference plate and the upper λ/4 phase difference plate are formed of a three-dimensional refractive index control type phase difference plate having a N Z coefficient of −1≦N Z <1, wherein the N Z coefficient indicates a three-dimensional refractive index.

10. A liquid crystal display device according to claim 6 , wherein the liquid crystal display device includes a backlight.

Assignments (7)
CHANGE OF NAME Recorded Nov 17, 2023
From: JAPAN DISPLAY EAST, INC.
To: JAPAN DISPLAY, INC.
Reel/Frame 065614/0644 →
NUNC PRO TUNC ASSIGNMENT Recorded Nov 17, 2023
From: PANASONIC LIQUID CRYSTAL DISPLAY CO., LTD.
To: PANASONIC INTELLECTUAL PROPERTY CORPORATION OF AMERICA
Reel/Frame 065615/0327 →
CHANGE OF ADDRESS Recorded Nov 17, 2023
From: JAPAN DISPLAY, INC.
To: JAPAN DISPLAY, INC.
Reel/Frame 065654/0250 →
CHANGE OF NAME Recorded Nov 17, 2023
From: HITACHI DISPLAYS, LTD.
To: JAPAN DISPLAY EAST, INC.
Reel/Frame 065614/0223 →
COMPANY SPLIT PLAN TRANSFERRING FIFTY (50) PERCENT SHARE OF PATENTS Recorded Oct 14, 2011
From: HITACHI DISPLAYS, LTD.
To: IPS ALPHA SUPPORT CO., LTD.
Reel/Frame 027063/0019 →
MERGER Recorded Oct 14, 2011
From: IPS ALPHA SUPPORT CO., LTD.
To: PANASONIC LIQUID CRYSTAL DISPLAY CO., LTD.
Reel/Frame 027063/0139 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 19, 2008
From: FUKUDA, KOICHI; NAKAMURA, YOSHIAKI
To: HITACHI DISPLAYS, LTD.
Reel/Frame 021917/0921 →
Priority Claims (1)
JP 2003-060986 · Mar 7, 2003 · national
Continuity (5)
Continuation 1172369000 · Mar 21, 2007
Continuation 1152131900 · Sep 15, 2006
Continuation 1121974600 · Sep 7, 2005
Continuation 1077716600 · Feb 13, 2004
Related Publication 20090103028A1 · Apr 23, 2009