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    • 1. 发明申请
    • DISPLAY DEVICE AND MANUFACTURING METHOD THEREFOR
    • 显示器件及其制造方法
    • US20110261308A1
    • 2011-10-27
    • US13090299
    • 2011-04-20
    • Yoshiyuki KUROKAWATakayuki IKEDATetsuji ISHITANI
    • Yoshiyuki KUROKAWATakayuki IKEDATetsuji ISHITANI
    • G02F1/1333
    • G02F1/1339G02F1/13338
    • An object is to provide a display device which has high visibility and has a touch recognition function with a high degree of accuracy, by combining a liquid crystal layer where liquid crystals are dispersed in a polymer and a light emitting element. In a display device using a liquid crystal layer where liquid crystals are dispersed in a polymer, a light-transmitting spacer is provided so as to overlap with a light receiving element which has a touch recognition function. The light-transmitting spacer can prevent light incident on the light receiving element from being dispersed by the liquid crystals, while maintaining a cell gap in the liquid crystal layer, and thus achieve a touch recognition function with a high degree of accuracy with high visibility.
    • 本发明的目的是通过组合液晶分散在聚合物中的液晶层和发光元件来提供具有高可视性并具有高精度的触摸识别功能的显示装置。 在使用液晶分散在聚合物中的液晶层的显示装置中,设置透光间隔物,以便与具有触摸识别功能的光接收元件重叠。 透光间隔物可以防止入射在受光元件上的光在保持液晶层中的单元间隙的同时被液晶分散,从而以高可视度实现高精度的触摸识别功能。
    • 2. 发明申请
    • Semiconductor Device and Driving Method Thereof
    • 半导体器件及其驱动方法
    • US20120154337A1
    • 2012-06-21
    • US13325497
    • 2011-12-14
    • Yoshiyuki KUROKAWATakayuki IKEDATakeshi AOKI
    • Yoshiyuki KUROKAWATakayuki IKEDATakeshi AOKI
    • G06F3/042H01L27/146H01L31/12
    • G06F3/042G06F3/0412H01L27/14609H01L27/14643H01L27/323H01L27/3234H01L29/7869
    • A semiconductor device with high definition, which includes a plurality of sets each including a photosensor and a display element including a light-emitting element arranged in a matrix is provided, wherein a power supply line electrically connected to the display element also serves as a power supply line electrically connected to the photosensor. Thus, the semiconductor device with high definition can be provided without decreasing the width of each power supply line. Thus, the definition of the semiconductor device can be improved while securing the stability of the potential of the power supply line. The stability of the potential of the power supply line leads to the stability of the driving voltage of the display element and the stability of the driving voltage of the photosensor. Accordingly, the semiconductor device with high definition, high display quality, and high accuracy of imaging or detection of an object can be provided.
    • 提供了一种具有高清晰度的半导体器件,其包括多个组,每组包括光电传感器和包括以矩阵形式布置的发光元件的显示元件,其中电连接到显示元件的电源线也用作功率 电源线与光电传感器电连接。 因此,可以提供具有高清晰度的半导体器件而不减小每个电源线的宽度。 因此,可以在确保电源线的电位的稳定性的同时改善半导体器件的定义。 电源线的电位的稳定性导致显示元件的驱动电压的稳定性和光电传感器的驱动电压的稳定性。 因此,可以提供具有高清晰度,高显示质量以及对象的成像或检测的高精度的半导体器件。
    • 5. 发明申请
    • TOUCH PANEL AND METHOD FOR DRIVING THE SAME
    • 触控面板及其驱动方法
    • US20100085331A1
    • 2010-04-08
    • US12569400
    • 2009-09-29
    • Yoshiyuki KUROKAWATakayuki IKEDA
    • Yoshiyuki KUROKAWATakayuki IKEDA
    • G06F3/042G09G3/36
    • G06F3/0412G06F1/1616G06F1/1626G06F1/1643G06F3/03547G06F3/042
    • A touch panel having high reading accuracy of an object to be detected is provided. In a method for driving a touch panel which is provided with a photo sensor in a pixel, an image is displayed in a display portion of a touch panel, a detection region is determined by detecting approach or contact of an object to be detected in a state in which the image is displayed, and the object to be detected is read while substantially equalizing the intensity of light of pixels in the detection region per unit time and unit area. The intensity of light of the pixels per unit time and unit area, which is to be substantially equal, is preferably the maximum intensity of light in the detection region before adjustment, more preferably, the intensity of light for white display.
    • 提供了具有待检测对象的高读取精度的触摸面板。 在用于驱动在像素中设置有光传感器的触摸面板的方法中,在触摸面板的显示部分中显示图像,通过检测检测对象的接近或接触来确定检测区域 显示图像的状态,并且在每单位时间和单位面积基本均衡检测区域中的像素的光强度的同时读取要检测的对象。 每单位时间和单位面积的像素的光强度基本上相等,优选是调整前的检测区域中的最大光强度,更优选白色显示的光强度。
    • 6. 发明申请
    • PHOTODETECTOR CIRCUIT, INPUT DEVICE, AND INPUT/OUTPUT DEVICE
    • 光电传感器电路,输入设备和输入/输出设备
    • US20120146027A1
    • 2012-06-14
    • US13313539
    • 2011-12-07
    • Hikaru TAMURAYoshiyuki KUROKAWATakayuki IKEDA
    • Hikaru TAMURAYoshiyuki KUROKAWATakayuki IKEDA
    • H01L31/112H01L31/0376
    • H01L27/14692
    • An adverse effect of parasitic capacitance on optical data output from a photodetector circuit is suppressed. A photodetector circuit includes a photoelectric conversion element; a first field-effect transistor; a second field-effect transistor; a first conductive layer functioning as a gate of the first field-effect transistor; an insulating layer provided over the first conductive layer; a semiconductor layer overlapping with the first conductive layer with the insulating layer interposed therebetween; a second conductive layer electrically connected to the semiconductor layer; and a third conductive layer electrically connected to the semiconductor layer, whose pair of side surfaces facing each other overlaps with at least one conductive layer including the first conductive layer with the insulating layer interposed therebetween, and which functions as the other of the source and the drain of the first field-effect transistor.
    • 抑制寄生电容对光检测器电路的光数据输出的不良影响。 光检测器电路包括光电转换元件; 第一场效应晶体管; 第二场效应晶体管; 用作第一场效应晶体管的栅极的第一导电层; 设置在所述第一导电层上的绝缘层; 半导体层与第一导电层重叠,绝缘层插入其间; 电连接到半导体层的第二导电层; 电连接到所述半导体层的第三导电层,所述第三导电层与所述半导体层相对,所述第一导电层的一对侧表面与包括所述第一导电层的至少一个导电层重叠,所述第一导电层的绝缘层位于所述半导体层之间,并且其作为源和 第一场效应晶体管的漏极。