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    • 15. 发明授权
    • Reflective type liquid crystal display apparatus having ESD protecting
MIM beneath each reflective electrode
    • 在每个反射电极下方具有ESD保护MIM的反射型液晶显示装置
    • US5719647A
    • 1998-02-17
    • US556845
    • 1995-11-02
    • Yohsuke FujikawaToshiaki FukuyamaToshiyuki Yoshimizu
    • Yohsuke FujikawaToshiaki FukuyamaToshiyuki Yoshimizu
    • G02F1/137G02F1/1333G02F1/136G02F1/1362G02F1/1365H01L49/02
    • G02F1/1365G02F1/136204G02F2203/02
    • A reflective type liquid crystal display apparatus includes: a first transmissive substrate; a second substrate disposed to face the first substrate; a liquid crystal layer interposed between the first substrate and the second substrate, the liquid crystal layer including a plurality of pixels; a plurality of reflective pixel electrodes, provided on the second substrate, for applying driving voltages to the pixels; a plurality of driving devices, provided on the second substrate, for driving the reflective pixel electrodes, respectively; and a plurality of protective devices disposed in the vicinity of the driving devices on the second substrate. The driving devices and the protective devices are disposed below the reflective pixel electrodes. Each of the driving devices and the protective devices includes an insulator, electric breakdown in each of the protective devices occurs prior to electric breakdown in a corresponding one of the driving devices, thereby reducing the potential difference of static electricity applied to the corresponding one of the driving devices.
    • 一种反射型液晶显示装置,包括:第一透射基板; 设置成面对第一基板的第二基板; 介于所述第一基板和所述第二基板之间的液晶层,所述液晶层包括多个像素; 多个反射像素电极,设置在第二基板上,用于向像素施加驱动电压; 多个驱动装置,分别设置在第二基板上,用于驱动反射像素电极; 以及设置在第二基板上的驱动装置附近的多个保护装置。 驱动装置和保护装置设置在反射像素电极下方。 每个驱动装置和保护装置都包括绝缘体,每个保护装置中的电击穿在相应的一个驱动装置中的电击穿之前发生,从而减少施加到相应的一个驱动装置中的静电的电势差 驱动装置。
    • 17. 发明申请
    • OPTICAL RECEIVING DEVICE AND OPTICAL TOUCH PANEL DEVICE PROVIDED WITH SAME
    • 光接收装置和具有该光接收装置的光触控面板装置
    • US20130082982A1
    • 2013-04-04
    • US13702194
    • 2011-06-06
    • Seishi KosegawaTakehiro MuraoToshiyuki Yoshimizu
    • Seishi KosegawaTakehiro MuraoToshiyuki Yoshimizu
    • G06F3/042
    • G06F3/0421G06F3/0428
    • A light-receiving device 10 includes a plurality of light-receiving units 10A, 10B, and 10C, in which, in the element substrate 11A constituting the light-receiving unit 10A, the rear surface of a second terminal forming area 16Ac, upon which a connection pad PAc is formed, is bonded to the front surface of a cover glass 14B covering a plurality of light-receiving elements 12 constituting the light-receiving unit 10B, and in the element substrate 11C constituting the light-receiving unit 10C, the rear surface of a first terminal forming area 16Cb, upon which a connection pad PCb is formed, is bonded with the front surface of the cover glass 14B of the light-receiving unit 10B. As a result, an increase in manufacturing cost and a decrease in yield are mitigated so that it is possible to provide a light-receiving device upon which light-receiving elements are disposed continuously over a long distance at a high density, as well as an optical touch panel device provided with the same.
    • 光接收装置10包括多个受光单元10A,10B和10C,其中在构成光接收单元10A的元件基板11A中,第二端子形成区域16Ac的后表面 连接焊盘PAc形成在覆盖构成光接收单元10B的多个受光元件12的覆盖玻璃14B的前表面上,并且在构成光接收单元10C的元件基板11C中, 形成有连接焊盘PCb的第一端子形成区域16Cb的后表面与光接收单元10B的盖玻璃14B的前表面接合。 结果,减小了制造成本的增加和产量的降低,从而可以提供一种光接收装置,光接收元件以高密度长时间连续地设置在该光接收装置上,以及 光学触摸面板装置具备相同的功能。
    • 18. 发明申请
    • LOCATION IDENTIFICATION SENSOR, ELECTRONIC DEVICE, AND DISPLAY DEVICE
    • 位置识别传感器,电子设备和显示设备
    • US20120154825A1
    • 2012-06-21
    • US13391729
    • 2010-04-16
    • Masayuki HataToshiaki NakagawaToshiyuki YoshimizuYukio Mizuno
    • Masayuki HataToshiaki NakagawaToshiyuki YoshimizuYukio Mizuno
    • G01B11/14
    • G02F1/13318G02F1/13338G06F3/0416G06F3/0418G06F3/042
    • The present invention provides a location identification sensor (60) capable of identifying a location and moving pattern of an object with correction made in consideration of the moving pattern even if the object is moving. The sensor (60) identifies a location of an object by triangulation principle, and includes at least one pair of light emitting diodes (10a, 10b), line sensors (13), and location identification means for identifying location of an object (50) between the line sensors (13) and the diodes (10) based on the triangulation principle by using first positional information and second positional information, where the first positional information indicates where the object (50) was at a predetermined timing (T2) when the diode (10a) is on, and the second positional information indicates where the object (50) was at two timings (T1 and T3) when the diode (10b) is on, T1 and T3 being before and after T2, respectively.
    • 本发明提供了一种位置识别传感器(60),即使对象正在移动,能够通过考虑移动图案进行校正来识别对象的位置和移动模式。 传感器(60)通过三角测量原理识别物体的位置,并且包括至少一对发光二极管(10a,10b),线传感器(13)和用于识别物体(50)的位置的位置识别装置 基于三角测量原理,通过使用第一位置信息和第二位置信息,在线传感器(13)和二极管(10)之间,其中第一位置信息指示物体(50)处于预定定时(T2)的位置,当 二极管(10a)导通,第二位置信息分别表示当二极管(10b)接通时,T1和T3分别在T2之前和之后的目标(50)处于两个定时(T1和T3)的位置。
    • 19. 发明申请
    • LIQUID CRYSTAL DISPLAY DEVICE
    • 液晶显示装置
    • US20110069253A1
    • 2011-03-24
    • US12993303
    • 2009-03-30
    • Takehiro MuraoNaru UsukuraSeishi KosegawaTadashi NemotoToshiyuki Yoshimizu
    • Takehiro MuraoNaru UsukuraSeishi KosegawaTadashi NemotoToshiyuki Yoshimizu
    • G02F1/1335
    • G02F1/133526G02F2001/133567
    • One of the objects is to improve the light utilization efficiency of a liquid crystal display panel with microlenses.A liquid crystal display device of the present invention, including a plurality of pixels arranged in a matrix along a first direction and a second direction which are perpendicular to each other, includes a TFT substrate, a counter substrate, a liquid crystal layer, a plurality of microlenses, and a backlight provided on a side of the plurality of microlenses which is opposite to the TFT substrate. The plurality of microlenses includes a plurality of lenticular lenses extending in the first direction, the plurality of lenticular lenses being arranged side by side along the second direction. The backlight includes a prism sheet placed over a first surface of the light guide plate which is closer to the microlens. The first surface of the light guide plate is provided with a prism array that includes a plurality of prisms extending in the second direction, the plurality of prisms being arranged side by side along the first direction.
    • 其目的之一是提高具有微透镜的液晶显示面板的光利用效率。 本发明的液晶显示装置具有TFT基板,对置基板,液晶层,多个基板,具有沿着第一方向和第二方向相互排列成矩阵状的多个像素, 的微透镜,以及设置在与TFT基板相对的多个微透镜的一侧的背光。 多个微透镜包括沿第一方向延伸的多个双凸透镜,多个双凸透镜沿着第二方向并排布置。 背光源包括放置在更靠近微透镜的导光板的第一表面上的棱镜片。 导光板的第一表面设置有棱镜阵列,其包括在第二方向上延伸的多个棱镜,多个棱镜沿着第一方向并排设置。
    • 20. 发明申请
    • LIQUID CRYSTAL DISPLAY DEVICE
    • 液晶显示装置
    • US20110025956A1
    • 2011-02-03
    • US12988216
    • 2009-01-23
    • Naru UsukuraToshiyuki YoshimizuSeishi KosegawaTadashi NemotoTakehiro Murao
    • Naru UsukuraToshiyuki YoshimizuSeishi KosegawaTadashi NemotoTakehiro Murao
    • G02F1/1335
    • G02F1/133526G02B3/0056G02B5/0215G02B6/0053G02F1/133504G02F2001/133607
    • A liquid crystal display device of high image quality is provided at a low cost, in which the viewing angle is restricted only in a specific direction.A liquid crystal display device of the present invention, which has a plurality of pixels in a matrix arrangement, includes: a first substrate; a second substrate; a liquid crystal layer interposed between the first substrate and the second substrate; and a plurality of microlenses provided on a surface of the first substrate which is opposite to the liquid crystal layer, the microlenses being arranged so as to correspond to the plurality of pixels, and each of the microlenses having a curved surface configured to collect incoming light, wherein d satisfies the following relationship: d>p·((2n)2−1)1/2 where d is a thickness of the first substrate, p is an arrangement pitch of the plurality of pixels, and n is a refractive index of the major material of the first substrate.
    • 以低成本提供高图像质量的液晶显示装置,其中视角仅在特定方向上被限制。 本发明的具有矩阵排列的多个像素的液晶显示装置包括:第一基板; 第二基板; 介于所述第一基板和所述第二基板之间的液晶层; 以及多个微透镜,其设置在与所述液晶层相反的所述第一基板的表面上,所述微透镜被配置为与所述多个像素对应,并且所述微透镜具有被配置为收集入射光的曲面 ,其中d满足以下关系:d> p·((2n)2-1)1/2其中d是第一衬底的厚度,p是多个像素的排列间距,n是折射率 的第一基材的主要材料。