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    • 31. 发明授权
    • Coordinate sensor and display device
    • 坐标传感器和显示装置
    • US08890804B2
    • 2014-11-18
    • US13391995
    • 2010-04-15
    • Masayuki HataToshiaki NakagawaToshiyuki Yoshimizu
    • Masayuki HataToshiaki NakagawaToshiyuki Yoshimizu
    • G06F3/042G01V8/20
    • G01V8/20G06F3/0421
    • The amount of the light emitted from a light-emitting diode is changed from that of the initial condition to increase, among the light sensors that are not shielded from the light emitted from the light-emitting diode, the number of the light sensors at which the difference (C−D) between the light detection amount at the light sensor when the light-emitting diode is ON and the light detection amount at the light sensor when the light-emitting diode is OFF is equal to the difference (A−B) between the light detection amount at the light sensor in the initial condition when the light-emitting diode was ON and the light detection amount at the light sensors in the initial condition when the light-emitting diode was OFF with no detection object present. As a result, regardless of the presence or absence of the detection object, the coordinate sensor and the display device disclosed can establish a threshold for determining the presence or absence of the detection object, and can also determine the coordinates of the detection object in a stable manner regardless of changes in the ambient environmental light or in the ambient environmental temperature, or fluctuations in the amount of light emitted from the light-emitting element disposed in the coordinate sensor or the change in the sensitivity of the light-receiving elements.
    • 从发光二极管发出的光的量从初始状态发出的光量从不发光二极管发出的光遮蔽的光传感器中增加,光传感器的数量在 当发光二极管导通时光传感器的光检测量与发光二极管截止时的光传感器的光检测量之间的差(C-D)等于差(A-B 在发光二极管为ON时的初始状态下的光传感器的光检测量与当没有检测对象存在发光二极管为OFF时的初始状态下的光传感器的光检测量之间。 结果,无论是否存在检测对象,所公开的坐标传感器和显示装置可以建立用于确定检测对象的存在或不存在的阈值,并且还可以确定检测对象的坐标 不管周围环境光的变化或周围环境温度如何变化,或者从设置在坐标传感器中的发光元件发出的光量的波动或光接收元件的灵敏度的变化。
    • 32. 发明授权
    • Liquid crystal display device
    • 液晶显示装置
    • US08279377B2
    • 2012-10-02
    • US12988216
    • 2009-01-23
    • Naru UsukuraToshiyuki YoshimizuSeishi KosegawaTadashi NemotoTakehiro Murao
    • Naru UsukuraToshiyuki YoshimizuSeishi KosegawaTadashi NemotoTakehiro Murao
    • G02F1/1335G09F13/04G02B27/10
    • 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)½ 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; 插入在第一基板和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 第一基材的主要材料。
    • 34. 发明申请
    • COORDINATE SENSOR AND DISPLAY DEVICE
    • 协调传感器和显示设备
    • US20120162064A1
    • 2012-06-28
    • US13391995
    • 2010-04-15
    • Masayuki HataToshiaki NakagawaToshiyuki Yoshimizu
    • Masayuki HataToshiaki NakagawaToshiyuki Yoshimizu
    • G09G5/00G01J1/32G01C21/00
    • G01V8/20G06F3/0421
    • The amount of the light emitted from a light-emitting diode is changed from that of the initial condition to increase, among the light sensors that are not shielded from the light emitted from the light-emitting diode, the number of the light sensors at which the difference (C−D) between the light detection amount at the light sensor when the light-emitting diode is ON and the light detection amount at the light sensor when the light-emitting diode is OFF is equal to the difference (A−B) between the light detection amount at the light sensor in the initial condition when the light-emitting diode was ON and the light detection amount at the light sensors in the initial condition when the light-emitting diode was OFF with no detection object present. As a result, regardless of the presence or absence of the detection object, the coordinate sensor and the display device disclosed can establish a threshold for determining the presence or absence of the detection object, and can also determine the coordinates of the detection object in a stable manner regardless of changes in the ambient environmental light or in the ambient environmental temperature, or fluctuations in the amount of light emitted from the light-emitting element disposed in the coordinate sensor or the change in the sensitivity of the light-receiving elements.
    • 从发光二极管发出的光的量从初始状态发出的光量从不发光二极管发出的光遮蔽的光传感器中增加,光传感器的数量在 当发光二极管导通时光传感器的光检测量与发光二极管截止时的光传感器的光检测量之间的差(C-D)等于差(A-B 在发光二极管为ON时的初始状态下的光传感器的光检测量与当没有检测对象存在发光二极管为OFF时的初始状态下的光传感器的光检测量之间。 结果,无论是否存在检测对象,所公开的坐标传感器和显示装置可以建立用于确定检测对象的存在或不存在的阈值,并且还可以确定检测对象的坐标 不管周围环境光的变化或周围环境温度如何变化,或者从设置在坐标传感器中的发光元件发出的光量的波动或光接收元件的灵敏度的变化。
    • 36. 发明申请
    • TOUCH PANEL INPUT SYSTEM AND INPUT PEN
    • 触摸面板输入系统和输入笔
    • US20110298757A1
    • 2011-12-08
    • US13201688
    • 2009-10-28
    • Masayuki HataKohji YabutaToshiaki NakagawaToshiyuki Yoshimizu
    • Masayuki HataKohji YabutaToshiaki NakagawaToshiyuki Yoshimizu
    • G06F3/042
    • G06F3/042G06F3/03545G06F3/0412
    • A touch panel input system of the present invention includes a touch panel integrated liquid crystal display device (100) and an input pen (60) for carrying out an input with respect to the liquid crystal display device (100). The liquid crystal display device (100) includes a liquid crystal panel (20) that is provided with a plurality of light sensor elements (30) and a backlight (10) that is provided with an infrared LED (12) which emits infrared light. In the liquid crystal panel (20), an infrared light transmitting section (24a) for selectively transmitting light in an infrared region is provided above a corresponding one of the plurality of light sensor elements (30). An infrared light reflecting member (62) is provided at a tip of the input pen (60). This allows obtainment of a touch panel input system which enables detection with high accuracy.
    • 本发明的触摸面板输入系统包括触摸面板集成液晶显示装置(100)和用于对液晶显示装置(100)进行输入的输入笔(60)。 液晶显示装置(100)具备设置有多个光传感器元件(30)的液晶面板(20)和设置有发出红外光的红外线LED(12)的背光源(10)。 在液晶面板(20)中,在多个光传感器元件(30)的对应的一个上方设置用于选择性地透过红外区域的光的红外光透射部(24a)。 在输入笔(60)的末端设有红外光反射部件(62)。 这允许获得能够以高精度进行检测的触摸面板输入系统。
    • 38. 发明授权
    • Liquid crystal display device
    • 液晶显示装置
    • US5568289A
    • 1996-10-22
    • US404087
    • 1995-03-14
    • Masahiro KishidaToshiyuki YoshimizuTakeshi Seike
    • Masahiro KishidaToshiyuki YoshimizuTakeshi Seike
    • G02F1/136G02F1/1365G02F1/1368H01L45/00H01L49/02G09G3/36G02F1/133
    • H01L45/00G02F1/1365
    • An LCD device includes a first substrate including a plurality of pixel electrodes arranged in a matrix, a plurality of signal wires formed of metal for supplying the plurality of pixel electrodes with an electric charge, and a plurality of two-terminal nonlinear devices for switching connection between the pixel electrodes and the signal wires into one of a conductive state and a non-conductive state; a second substrate located opposite to the first substrate and including a plurality of scanning electrodes arranged parallel to each other and crossing the signal wires; and a liquid crystal layer sandwiched between the first and the second substrates. Each two-terminal nonlinear device includes a lower electrode which is a part of the corresponding signal wire; a first insulator layer located on the lower electrode provided as a result of anodic oxidation of a part of the lower electrode and having a thickness of no greater than 1,000 angstroms; a second insulator layer covering the first insulator layer and having at least one opening, the second insulator layer being formed of a different material from the first insulator layer; and an upper electrode located on the second insulator layer and connected to the first insulator layer through the opening. Each signal wire has a top surface and a pair of side surfaces interposing the top surface. The upper electrode has an end extending diagonally with respect to the direction in which the corresponding signal wire extends on at least one of the side surfaces of the corresponding signal wire.
    • LCD装置包括:第一基板,包括以矩阵形式排列的多个像素电极;多个用金属形成的信号线,用于向多个像素电极提供电荷,以及多个用于切换连接的两端非线性装置 在像素电极和信号线之间形成导通状态和非导通状态之一; 第二基板,与第一基板相对设置并且包括彼此平行布置并与信号线交叉的多个扫描电极; 以及夹在第一和第二基板之间的液晶层。 每个两端非线性器件包括作为相应信号线的一部分的下电极; 位于下部电极上的第一绝缘体层,其由下部电极的一部分的阳极氧化提供,其厚度不大于1000埃; 覆盖所述第一绝缘体层并且具有至少一个开口的第二绝缘体层,所述第二绝缘体层由与所述第一绝缘体层不同的材料形成; 以及位于所述第二绝缘体层上并通过所述开口连接到所述第一绝缘体层的上电极。 每个信号线具有插入顶表面的顶表面和一对侧表面。 上电极具有相对于对应的信号线在相应的信号线的至少一个侧表面上延伸的方向对角地延伸的端部。