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    • 66. 发明申请
    • IMAGE DISPLAY DEVICE
    • 图像显示设备
    • US20100026950A1
    • 2010-02-04
    • US12509602
    • 2009-07-27
    • Futoshi FURUTAHiroshi KageyamaKen Takei
    • Futoshi FURUTAHiroshi KageyamaKen Takei
    • G02F1/1343H01J1/62
    • G02F1/1368G02F2001/134318G09G3/3225G09G3/3648G09G2300/0426
    • An image display device includes a display panel having plural pixels and a second board having a transmitting electrode, the display panel having a first substrate that is disposed so as to overlap the second board, each pixel having a pixel electrode and a counter electrode, and the counter electrode being formed in a planar shape and being commonly provided to the pixel electrodes of each pixel; the counter electrode being divided into a portion A corresponding to the transmitting electrode of the second board and a portion B other than it, and the portions A and B of the counter electrode being connected to a common voltage through resistors. The portion A of the counter electrode constitutes the receiving electrode, and the portion A of the counter electrode acting as the receiving electrode is connected to a receiving circuit in the display panel through a decoupling capacitor.
    • 图像显示装置包括具有多个像素的显示面板和具有发送电极的第二基板,所述显示面板具有与所述第二基板重叠地配置的第一基板,每个像素具有像素电极和对置电极, 该对电极形成为平面形状,并且共同地设置在每个像素的像素电极上; 对置电极被分成对应于第二板的发送电极的部分A和除了它之外的部分B,并且对电极的部分A和B通过电阻器连接到公共电压。 对置电极的部分A构成接收电极,并且用作接收电极的对置电极的部分A通过去耦电容器连接到显示面板中的接收电路。
    • 67. 发明申请
    • Display device having touch panel
    • 具有触摸面板的显示装置
    • US20090201267A1
    • 2009-08-13
    • US12379031
    • 2009-02-11
    • Hajime AkimotoYasuharu YatsuHiroshi KageyamaNoriharu MatsudateNaruhiko Kasai
    • Hajime AkimotoYasuharu YatsuHiroshi KageyamaNoriharu MatsudateNaruhiko Kasai
    • G06F3/041
    • G06F3/041G06F3/0412
    • The present invention realizes the reduction of cost of a display device having a touch panel. The display device having a touch panel includes a display panel, and a touch panel which is arranged on the display panel in an overlapping manner in plane. The touch panel includes a first substrate and a second substrate which are arranged to face each other with spacers sandwiched therebetween, and a first semiconductor chip which is mounted on the first substrate. The first substrate includes, on a surface side thereof which faces the second substrate, a plurality of first lines which is arranged parallel to each other in the first direction, a first chip mounting region on which the first semiconductor chip is mounted, and a plurality of first connection portions each of which is constituted of a portion of each line in the plurality of first lines, the first semiconductor chip includes a plurality of first bump electrodes which is arranged in one direction, the plurality of first connection portions are arranged in the arrangement direction of the plurality of first bump electrodes within the first-chip mounting region, and an arrangement pitch of the plurality of first bump electrodes is set larger than an arrangement pitch of the plurality of first connection portions.
    • 本发明实现了具有触摸面板的显示装置的成本的降低。 具有触摸面板的显示装置包括显示面板和以平面重叠的方式布置在显示面板上的触摸面板。 触摸面板包括第一基板和第二基板,该第一基板和第二基板被布置为彼此面对并且夹在其间的间隔件,以及安装在第一基板上的第一半导体芯片。 所述第一基板在与所述第二基板相对的表面侧具有在所述第一方向上彼此平行配置的多个第一线,安装有所述第一半导体芯片的第一芯片安装区域, 第一连接部分由多个第一线中的每条线的一部分构成,第一半导体芯片包括沿一个方向布置的多个第一突起电极,多个第一连接部分布置在 在第一芯片安装区域内的多个第一凸块电极的布置方向以及多个第一凸块电极的布置间距被设定为大于多个第一连接部的布置间距。
    • 68. 发明申请
    • Capacitive coupling-type transmitting and receiving circuits for information signal
    • 用于信息信号的电容耦合型发射和接收电路
    • US20090153445A1
    • 2009-06-18
    • US12314579
    • 2008-12-12
    • Futoshi FurutaHiroshi KageyamaKen Takei
    • Futoshi FurutaHiroshi KageyamaKen Takei
    • G09G3/30
    • G09G5/006G09G5/008H04B5/0012
    • A capacitive coupling-type transmitting and receiving circuit for information signal is provided in which attenuation of a signal on a non-contact transmission path via a capacitor and a change of voltage on the receiving side due to a slight change in capacitance are suppressed, modulation and demodulation processes of signals are unnecessary, and non-contact transmission which does not depend on the transmission rate is enabled. The capacitor is formed with a transmitting electrode on a transmission board and a receiving electrode on a display panel board, and an insulating member is interposed between the electrodes. The transmitting board comprises a transmission signal processing circuit which converts display data from an external signal source into a voltage signal. The display panel board comprises an impedance converter circuit and a reception signal processing circuit.
    • 提供一种用于信息信号的电容耦合型发送和接收电路,其中抑制了由于电容器的轻微变化而在非接触式传输路径上经由电容器的信号衰减和接收侧的电压变化,调制 并且信号的解调处理是不必要的,并且不依赖于传输速率的非接触传输被实现。 电容器在传输板上的发射电极和显示面板基板上的接收电极形成,并且在电极之间插入绝缘部件。 发送板包括将显示数据从外部信号源转换为电压信号的发送信号处理电路。 显示面板板包括阻抗转换器电路和接收信号处理电路。
    • 69. 发明申请
    • Image display apparatus with ambient light sensing system
    • 具有环境光感测系统的图像显示装置
    • US20080164481A1
    • 2008-07-10
    • US11987852
    • 2007-12-05
    • Mitsuharu TaiHiroshi Kageyama
    • Mitsuharu TaiHiroshi Kageyama
    • H01L33/00
    • H01L31/143G02F1/13318G09G3/3406G09G2320/0666G09G2360/145H01L27/1446H01L31/02162H01L31/03682H01L31/03762H01L31/182H01L31/202Y02E10/546Y02P70/521
    • An image display apparatus with an illuminance sensor, where the packaging cost, mechanical reliability due to packaging, and product yield are maintained. In the same semiconductor film as a thin-film-transistor (TFT) consisting of a pixel formed over an insulating substrate constituting a pixel, plural photo-sensors composed of a TFT for detecting light which has different detecting wavelength bands, and a signal processing circuit for generating a signal which controls the brightness of the pixel on the basis of the output of the photo-sensor are formed. The photo-sensor detects light energy of different wavelength bands by using a filter having a different film thickness of the semiconductor film or a different light transmission band. Ambient illuminance is detected by processing the output of each sensor in the signal processing circuit. The detected signal is fed back to the brightness control of the pixel.
    • 具有照度传感器的图像显示装置,其中保持包装成本,由包装引起的机械可靠性和产品产量。 在与由构成像素的绝缘基板上形成的像素构成的薄膜晶体管(TFT)相同的半导体膜中,由用于检测具有不同检测波长带的光的TFT构成的多个光电传感器以及信号处理 形成用于基于光传感器的输出来生成控制像素的亮度的信号的电路。 光传感器通过使用具有不同的半导体膜的膜厚的滤光器或不同的透光带来检测不同波长带的光能。 通过处理信号处理电路中的每个传感器的输出来检测环境照度。 检测到的信号被反馈到像素的亮度控制。
    • 70. 发明申请
    • IMAGE DISPLAY UNIT WITH SCREEN INPUT FUNCTION
    • 具有屏幕输入功能的图像显示单元
    • US20080122804A1
    • 2008-05-29
    • US11934766
    • 2007-11-03
    • Masayoshi KINOSHITAHiroshi Kageyama
    • Masayoshi KINOSHITAHiroshi Kageyama
    • G06F3/042
    • G06F3/042G02F1/1368G06F1/3203G06F1/3262G06F3/0412
    • An image display unit with screen input function is provided, by which it is possible to input image data directly to a screen without decreasing numerical aperture of pixel. The image display unit comprises a light detecting TFT 61 receiving a light entering from a screen of a liquid crystal display panel, said light detecting TFT 61 is connected in series to a switching TFT 60, which does not receive a light entering from the screen of the liquid crystal display panel. To a source electrode of the light detecting TFT 61, a storage capacitor Cst and a pixel electrode of a liquid crystal element are connected. The liquid crystal element is represented by a capacitor CLC. A sensor control line 140 is connected to the gate electrode of the light detecting TFT 61, and a gate line 120 is connected to the gate electrode of the switching TFT 60. A data line 110 is connected to the drain electrode of the switching TFT 60, and a storage line 150 is connected to one end of a storage capacitor Cst. An image signal is sent to a pixel electrode (ITO) of the liquid crystal element (CLC). The light detecting TFT 61 transmits photoelectric current Isig generated by sensing the light to a sensor signal processing circuit (see FIG. 1) via the data line 110.
    • 提供了具有屏幕输入功能的图像显示单元,通过该图像显示单元可以直接将图像数据输入到屏幕而不减少像素的数值孔径。 图像显示单元包括接收从液晶显示面板的屏幕进入的光的光检测TFT61,所述光检测用TFT61与开关TFT60串联连接,开关TFT60不接收从屏幕 液晶显示面板。 对于光检测用TFT61的源电极,连接存储电容器Cst和液晶元件的像素电极。 液晶元件由电容器C LC表示。 传感器控制线140连接到光检测TFT 61的栅电极,栅极线120连接到开关TFT 60的栅电极。数据线110连接到开关TFT 60的漏电极 存储线150连接到存储电容器Cst的一端。 图像信号被发送到液晶元件(CLCC)的像素电极(ITO)。 光检测用TFT61经由数据线将感测到的光产生的光电流I SUB传送到传感器信号处理电路(参照图1的) 110。