LIQUID CRYSTAL DISPLAY DEVICE

A liquid crystal display device (1) according to an embodiment includes an array substrate (6), a color filter substrate (5), a liquid crystal layer (7), a backlight (4), and a controller (12). The array substrate (6) includes a plurality of pixel electrodes corresponding to a plurality of pixels ar...

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Hauptverfasser: FUKUYOSHI, Kenzo, NAKADA, Hisashi, SHIMA, Yasuhiro
Format: Patent
Sprache:eng ; fre ; ger
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creator FUKUYOSHI, Kenzo
NAKADA, Hisashi
SHIMA, Yasuhiro
description A liquid crystal display device (1) according to an embodiment includes an array substrate (6), a color filter substrate (5), a liquid crystal layer (7), a backlight (4), and a controller (12). The array substrate (6) includes a plurality of pixel electrodes corresponding to a plurality of pixels arranged in a matrix. The color filter substrate (5) is opposed to the array substrate (6) and includes color filters (16) corresponding to the plurality of pixels. The liquid crystal layer (7) is provided between the array substrate (6) and the color filter substrate (7). The backlight (4) is provided on a back surface of the array substrate (6). The controller (12) controls an application timing of a voltage to the pixel electrodes, and a light emission timing of the backlight (4). The plurality of pixels are configured to each have a parallelogrammatic shape elongated in a lateral direction, such that identical colors are arranged in the lateral direction, and different colors are arranged in a vertical direction. Pixels neighboring in the lateral direction are in line-symmetry with respect to a center line of the neighboring pixels. Liquid crystal molecules of the neighboring pixels have a negative dielectric constant anisotropy, and, when the voltage is applied to the pixel electrodes corresponding to the neighboring pixels, the liquid crystal molecules rotate horizontally relative to a substrate plane in a direction of the line-symmetry with respect to the center line.
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The array substrate (6) includes a plurality of pixel electrodes corresponding to a plurality of pixels arranged in a matrix. The color filter substrate (5) is opposed to the array substrate (6) and includes color filters (16) corresponding to the plurality of pixels. The liquid crystal layer (7) is provided between the array substrate (6) and the color filter substrate (7). The backlight (4) is provided on a back surface of the array substrate (6). The controller (12) controls an application timing of a voltage to the pixel electrodes, and a light emission timing of the backlight (4). The plurality of pixels are configured to each have a parallelogrammatic shape elongated in a lateral direction, such that identical colors are arranged in the lateral direction, and different colors are arranged in a vertical direction. Pixels neighboring in the lateral direction are in line-symmetry with respect to a center line of the neighboring pixels. 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The array substrate (6) includes a plurality of pixel electrodes corresponding to a plurality of pixels arranged in a matrix. The color filter substrate (5) is opposed to the array substrate (6) and includes color filters (16) corresponding to the plurality of pixels. The liquid crystal layer (7) is provided between the array substrate (6) and the color filter substrate (7). The backlight (4) is provided on a back surface of the array substrate (6). The controller (12) controls an application timing of a voltage to the pixel electrodes, and a light emission timing of the backlight (4). The plurality of pixels are configured to each have a parallelogrammatic shape elongated in a lateral direction, such that identical colors are arranged in the lateral direction, and different colors are arranged in a vertical direction. Pixels neighboring in the lateral direction are in line-symmetry with respect to a center line of the neighboring pixels. 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The array substrate (6) includes a plurality of pixel electrodes corresponding to a plurality of pixels arranged in a matrix. The color filter substrate (5) is opposed to the array substrate (6) and includes color filters (16) corresponding to the plurality of pixels. The liquid crystal layer (7) is provided between the array substrate (6) and the color filter substrate (7). The backlight (4) is provided on a back surface of the array substrate (6). The controller (12) controls an application timing of a voltage to the pixel electrodes, and a light emission timing of the backlight (4). The plurality of pixels are configured to each have a parallelogrammatic shape elongated in a lateral direction, such that identical colors are arranged in the lateral direction, and different colors are arranged in a vertical direction. Pixels neighboring in the lateral direction are in line-symmetry with respect to a center line of the neighboring pixels. Liquid crystal molecules of the neighboring pixels have a negative dielectric constant anisotropy, and, when the voltage is applied to the pixel electrodes corresponding to the neighboring pixels, the liquid crystal molecules rotate horizontally relative to a substrate plane in a direction of the line-symmetry with respect to the center line.</abstract><oa>free_for_read</oa></addata></record>
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language eng ; fre ; ger
recordid cdi_epo_espacenet_EP2840433B1
source esp@cenet
subjects ADVERTISING
ARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICESUSING STATIC MEANS TO PRESENT VARIABLE INFORMATION
CRYPTOGRAPHY
DEVICES OR ARRANGEMENTS, THE OPTICAL OPERATION OF WHICH ISMODIFIED BY CHANGING THE OPTICAL PROPERTIES OF THE MEDIUM OF THEDEVICES OR ARRANGEMENTS FOR THE CONTROL OF THE INTENSITY,COLOUR, PHASE, POLARISATION OR DIRECTION OF LIGHT, e.g.SWITCHING, GATING, MODULATING OR DEMODULATING
DISPLAY
EDUCATION
ELECTRIC COMMUNICATION TECHNIQUE
ELECTRICITY
FREQUENCY-CHANGING
NON-LINEAR OPTICS
OPTICAL ANALOGUE/DIGITAL CONVERTERS
OPTICAL ELEMENTS, SYSTEMS, OR APPARATUS
OPTICAL LOGIC ELEMENTS
OPTICS
PHYSICS
PICTORIAL COMMUNICATION, e.g. TELEVISION
SEALS
TECHNIQUES OR PROCEDURES FOR THE OPERATION THEREOF
title LIQUID CRYSTAL DISPLAY DEVICE
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