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    • 65. 发明授权
    • Liquid crystal display device
    • 液晶显示装置
    • US07995173B2
    • 2011-08-09
    • US12660871
    • 2010-03-05
    • Kouichi AnnoHiroko HayataTohru Sasaki
    • Kouichi AnnoHiroko HayataTohru Sasaki
    • G02F1/1335
    • G02F1/133555G02F1/133514
    • To provide a liquid crystal display device to suitably perform color balance adjustment. For this, the liquid crystal display device includes pixel regions each including a light reflection portion and a light transmission portion on a liquid-crystal-side surface of one substrate out of respective substrates arranged to face each other in an opposed manner while sandwiching liquid crystal therebetween, wherein color filters are formed in pixel regions on a liquid-crystal-side surface of the other substrate out of the respective substrates, and each color filter is provided with an opening or notch at a part of a portion facing the light reflection portion in an opposed manner, material layers having a layer thickness substantially equal to a height of step generated by the color filters in regions facing the opening or notch of each color filter in an opposed manner on the liquid-crystal-side surface of one substrate.
    • 提供一种液晶显示装置,以适当地执行色彩平衡调节。 为此,液晶显示装置包括像素区域,每个像素区域包括在一个基板的液晶侧表面上的光反射部分和光透射部分,各个基板以相对的方式彼此相对地布置,同时夹着液晶 其中,在各个基板之间的另一个基板的液晶侧表面上的像素区域中形成滤色器,并且每个滤色器在面向光反射部分的部分的一部分处设置有开口或凹口 以相对的方式,在一个基板的液晶侧表面上以相反的方式具有基本上等于由滤色器在与每个滤色器的开口或凹口相对的区域中产生的阶梯高度的层厚度的材料层。
    • 67. 发明申请
    • Liquid crystal display device
    • 液晶显示装置
    • US20050190311A1
    • 2005-09-01
    • US11114188
    • 2005-04-26
    • Kouichi AnnoHiroko HayataTohru Sasaki
    • Kouichi AnnoHiroko HayataTohru Sasaki
    • G02B5/08G02B5/20G02F1/1335G02F1/1343G02F1/1362G02F1/1368H01L21/336H01L29/786
    • G02F1/133555G02F1/134336G02F1/136227
    • The present invention provides a liquid crystal display device which can largely suppress the reduction of contrast which occurs in a light reflection mode of a liquid crystal display device. On a liquid-crystal-side surface of one of substrates which are arranged to face each other in an opposed manner while sandwiching liquid crystal therebetween, the liquid crystal display device includes pixel regions each of which is classified into a light reflection portion and a light transmission portion. On each pixel region, a first light-transmitting pixel electrode which is formed on the light reflection portion and the light transmission portion, a material layer which is formed on a major portion of the light reflection portion, an insulation layer having an opening formed at a portion corresponding to the light transmission portion, and a second pixel electrode which is formed on the light reflection portion and functions as a reflection film are sequentially laminated.
    • 本发明提供一种液晶显示装置,其可以大大抑制在液晶显示装置的光反射模式中发生的对比度的降低。 在相互夹着液晶的同时相对配置的一个基板的液晶侧表面上,液晶显示装置包括像素区域,每个被分为光反射部分和光 传输部分。 在每个像素区域上,形成在光反射部分和光透射部分上的第一透光像素电极,形成在光反射部分的主要部分上的材料层,具有形成在 对应于光透射部分的部分和形成在光反射部分上并用作反射膜的第二像素电极依次层叠。
    • 68. 发明授权
    • Method and apparatus for ion attachment mass spectrometry
    • 用于离子附着质谱的方法和装置
    • US06800848B2
    • 2004-10-05
    • US09870736
    • 2001-06-01
    • Yoshiro ShiokawaMegumi NakamuraTohru SasakiToshihiro Fujii
    • Yoshiro ShiokawaMegumi NakamuraTohru SasakiToshihiro Fujii
    • B01D5944
    • H01J49/145
    • An apparatus for ion attachment mass spectrometry provided with a reaction chamber for causing positively charged metal ions to attach to a gas to be detected; a mass spectrometer for mass separation and detection of the detection gas; an analysis chamber in which the mass spectrometer is placed; differential evacuation chambers for connecting the reaction chamber and analysis chamber; a data processor for receiving and processing the mass signal from the mass spectrometer; and vacuum gauges for measuring the total pressure of the reduced pressure atmosphere of the reduced pressure atmosphere reaction chamber, a differential evacuation chamber, and an analysis chamber. The total pressure signal from the vacuum gauge measured during the measurement is input to one of the data processor, introduction mechanism, and evacuation mechanism. The data processor has a processing means for performing quantitative analysis of each component utilizing the fact that sensitivity of each component has dependency on the total pressure of the reduced pressure atmosphere and that the dependency on total pressure differs for each component.
    • 一种用于离子附着质谱的装置,其具有用于使带正电荷的金属离子附着到待检测气体的反应室; 用于质量分离和检测气体的质谱仪; 分析室,放置质谱仪; 用于连接反应室和分析室的差分抽空室; 用于从质谱仪接收和处理质量信号的数据处理器; 以及用于测量减压气氛反应室的减压气氛的总压力,差示抽空室和分析室的真空计。 在测量期间测量的来自真空计的总压力信号被输入到数据处理器,引入机构和抽空机构之一。 数据处理器具有处理装置,用于利用每个部件的灵敏度依赖于减压气氛的总压力并且对于每个部件对总压力的依赖性的事实来对每个部件进行定量分析。
    • 69. 发明授权
    • TFT-LCD device having laminated body of light-shield and semiconductor between pixel electrodes
    • TFT-LCD装置具有遮光体层叠体和像素电极之间的半导体
    • US06657682B2
    • 2003-12-02
    • US10073965
    • 2002-02-14
    • Kouichi AnnoTohru Sasaki
    • Kouichi AnnoTohru Sasaki
    • G02F1136
    • G02F1/136209
    • To achieve elimination of reflection of light due to signal lines, a liquid crystal display device includes a plurality of gate signal lines formed on an insulation substrate, a plurality of drain signal lines formed on the insulation substrate such that the drain signal lines intersect the gate signal lines, thin film transistors connected to the gate signal lines and the drain signal lines, reflection electrodes connected to the thin film transistors, the thin film transistors and the reflection electrodes being formed on pixel regions which are surrounded by the respective signal lines, and sequential laminated bodies, each of which is made of a light shielding film and a semiconductor layer. Each sequential laminated body is formed between the reflection electrode and the reflection electrode of another neighboring pixel region in such a way that the sequential laminated body is superposed on the sides of the reflection electrodes.
    • 为了消除由于信号线导致的光的反射,液晶显示装置包括形成在绝缘基板上的多个栅极信号线,形成在绝缘基板上的多个漏极信号线,使得漏极信号线与栅极相交 连接到栅极信号线和漏极信号线的薄膜晶体管,连接到薄膜晶体管的反射电极,薄膜晶体管和反射电极形成在由各个信号线包围的像素区域上,以及 每个层叠体由遮光膜和半导体层制成。 在反射电极和另一个相邻像素区域的反射电极之间形成顺序层叠体,以使顺序层叠体叠置在反射电极的侧面上。