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    • 111. 发明授权
    • Driver driving method, driver circuit, transmission method using driver, and control circuit
    • 驱动器驱动方法,驱动电路,使用驱动器的传输方式和控制电路
    • US07149271B2
    • 2006-12-12
    • US10944733
    • 2004-09-21
    • Jun YamadaYutaka Mori
    • Jun YamadaYutaka Mori
    • H03K19/003
    • H03K19/01742H03K19/017581H04L25/028
    • A driver circuit 10 comprising a driver unit 30 and a driver control unit 20 for controlling a driver by comparing present data of an input signal with previous data, wherein the driver unit 30 includes a plurality of parallel drivers, and the driver control unit 20 compares the present data of the input signal with data one cycle back and, if they are not identical, causes the plurality of parallel drivers to operate, thereby increasing the driving power of the driver. The driver control unit 20 further compares the present data with data two cycles back and, if they are identical, can reduce the factor by which to increase the driving power by not causing a selected one or ones of the plurality of parallel drivers to operate.
    • 驱动器电路10包括驱动器单元30和驱动器控制单元20,用于通过将输入信号的当前数据与先前数据进行比较来控制驱动器,其中驱动器单元30包括多个并行驱动器,并且驱动器控制单元20比较 具有一个周期的数据的输入信号的当前数据,如果它们不相同,则使多个并行驱动器工作,从而增加驱动器的驱动力。 驱动器控制单元20进一步将当前数据与两个循环后的数据进行比较,并且如果它们相同,则可以通过不使所选择的多个并行驱动器中的一个或多个并行驱动器操作来降低增加驱动功率的因素。
    • 115. 发明申请
    • Liquid crystal display
    • 液晶显示器
    • US20050140864A1
    • 2005-06-30
    • US11018981
    • 2004-12-21
    • Mitsuyoshi MiyaiJun YamadaMasakazu OkadaKeiichi FurukawaTomoo Izumi
    • Mitsuyoshi MiyaiJun YamadaMasakazu OkadaKeiichi FurukawaTomoo Izumi
    • C09K19/02G02F1/1335G02F1/137
    • G02F1/133504G02F1/13718G02F2001/133541G02F2203/02
    • A liquid crystal display apparatus having a circular polarizer (composed of a linear polarizer and a retardation film), a scattering layer and a liquid crystal display which are stacked one upon another. The liquid crystal display has a chiral nematic liquid crystal layer between substrates, and electrodes and aligning layers are provided on mutually opposite surfaces of the substrates. The chiral nematic liquid crystal changes between a planar state and a focal-conic state in accordance with a voltage applied thereto through the electrodes. When the liquid crystal is in a planar state, light reflected by the electrode formed on the substrate located farther from an observing side is absorbed in the circular polarizer, and a black display is made. When the liquid crystal is in a focal-conic state, light reflected by the electrode formed on the substrate located farther from the observing side passes through the circular polarizer, and a white display is made. In this moment, the light reflected by the electrode is scattered by a scattering layer, and the directivity of the reflected light is weakened.
    • 具有彼此层叠的圆偏振器(由线偏振器和延迟膜构成),散射层和液晶显示器的液晶显示装置。 液晶显示器在基板之间具有手性向列型液晶层,并且电极和对准层设置在基板的彼此相对的表面上。 根据通过电极施加到其上的电压,手征向列液晶在平面状态和焦点锥形状态之间变化。 当液晶处于平面状态时,形成在远离观察侧的基板上形成的电极的光被圆偏振器吸收,并进行黑色显示。 当液晶处于焦锥状态时,由形​​成在远离观察侧的基板上形成的电极反射的光通过圆偏振片,并进行白色显示。 此时,由电极反射的光被散射层散射,反射光的方向性变弱。
    • 118. 发明授权
    • Method for manufacturing a lithographic printing plate
    • 平版印刷版的制造方法
    • US06692886B2
    • 2004-02-17
    • US10092719
    • 2002-03-08
    • Jun Yamada
    • Jun Yamada
    • G03C828
    • G03C1/74Y10S430/136
    • An object of the present invention is to provide a method for manufacturing an aluminum printing plate which is superior in fine line reproduction and has no occurrence of spot-like defect in the silver image part. According to the present invention, a method for manufacturing a lithographic printing plate is provided, wherein an aluminum plate subjected to at least graining treatment and anodizing treatment is rinsed with water, then coated with a liquid containing physical development nuclei, and subsequently coated with a silver halide emulsion layer.
    • 本发明的一个目的是提供一种在细线再现性优异且银图像部分中不发生斑点缺陷的铝印版的制造方法。 根据本发明,提供了一种用于制造平版印刷版的方法,其中至少经过粗化处理和阳极氧化处理的铝板用水冲洗,然后涂覆含有物理显影核的液体,随后涂覆有 卤化银乳剂层。