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    • 61. 发明申请
    • Electro-optical device, driving circuit and electronic apparatus
    • 电光装置,驱动电路和电子设备
    • US20080231569A1
    • 2008-09-25
    • US12000754
    • 2007-12-17
    • Katsunori YamazakiYasushi Yamazaki
    • Katsunori YamazakiYasushi Yamazaki
    • G09G3/34
    • G09G3/3677G09G3/2011G09G3/3614G09G3/3655G09G2300/0876G09G2310/0283G09G2330/021
    • It is possible to suppress the voltage amplitudes of data lines and to prevent deterioration in display quality by a simple configuration.Each of pixels 110 includes a pixel capacitor and a storage capacitor of which one end is connected to a pixel electrode and the other end is connected to each capacitive line 132. If first, second, third, . . . , 320th, and 321st scanning lines 112 are sequentially selected, the capacitive line 132 of each row is provided with TFTs 152, 154, 156 and 158. A source electrode of the TFT 156 of a first row is connected to a first feed line 165 and a gate electrode thereof is connected to a first scanning line 112. A source electrode of the TFT 158 is connected to a second feed line 167 and a gate electrode thereof is connected to a common drain electrode of the TFTs 152 and 154. The drain electrodes of the TFT 156 and 158 are connected to the first capacitive line 132. A gate electrode of the TFT 152 is connected to a second scanning line 112.
    • 可以通过简单的配置来抑制数据线的电压振幅和防止显示质量的劣化。 每个像素110包括像素电容器和存储电容器,其一端连接到像素电极,另一端连接到每个电容线132.如果是第一,第二,第三, 。 。 ,顺序地选择320 和321 扫描线112,每行的电容线132设置有TFT 152,154,156和158。源电极 第一行的TFT156连接到第一馈电线165,并且其栅电极连接到第一扫描线112. TFT 158的源电极连接到第二馈电线167及其栅电极 连接到TFT 152和154的公共漏电极。TFT 156和158的漏电极连接到第一电容线132.TFT 152的栅电极连接到第二扫描线112。
    • 63. 发明申请
    • DISPLAY DEVICE AND ELECTRONIC EQUIPMENT THEREWITH
    • 显示设备和电子设备
    • US20080204436A1
    • 2008-08-28
    • US12022829
    • 2008-01-30
    • Hiroyuki HORIBATA
    • Hiroyuki HORIBATA
    • G09G5/00
    • G09G3/3614G09G3/3648G09G3/3696G09G2300/0809G09G2330/021G09G2330/023
    • Reduction in efficiency of a power supply circuit in a display device is prevented. A positive power supply generation circuit and a negative power supply generation circuit are placed close to a terminal portion to which a drive clock and a power supply electric potential are applied externally. The terminal portion 140 is formed in an edge portion of the TFT glass substrate 100. That is, the positive power supply generation circuit 131 and the negative power supply generation circuit 132 are placed closer to the terminal portion 140 than primary circuits of the liquid crystal display device, which are the pixel portion 105, the horizontal drive circuit 110 and the vertical drive circuit 120. With this, there is obtained a layout that minimizes wiring loads (resistive and capacitive loads associated with wirings to provide the power supply and the drive clock) to prevent reduction in circuit efficiency.
    • 防止显示装置中的电源电路的效率降低。 正电源发生电路和负电源发生电路配置在外部施加有驱动时钟和电源电位的端子部分附近。 端子部分140形成在TFT玻璃基板100的边缘部分中。 也就是说,正电源发生电路131和负电源产生电路132比液晶显示装置的像素部分105,水平驱动电路110和水平驱动电路110的初级电路更靠近端子部分140。 垂直驱动电路120。 通过这种方式,可以获得最小化布线负载(与布线相关联的电阻和电容负载以提供电源和驱动时钟)的布局,以防止电路效率的降低。
    • 64. 发明申请
    • Display device
    • 显示设备
    • US20080185501A1
    • 2008-08-07
    • US12011909
    • 2008-01-30
    • Takashi KunimoriYasushi YamazakiMasanori Yasumori
    • Takashi KunimoriYasushi YamazakiMasanori Yasumori
    • H05B37/02
    • G02F1/13318H01L27/12H01L31/153
    • With the related art, the choice of locations for disposition of ambient light photosensors is narrow, and consequently it is difficult to respond flexibly to user specifications for differing structures of the case. With a display device of the invention however, ambient light photosensors can be disposed laterally and longitudinally, enabling the intensity of light in longitudinal or lateral directions to be sensed at the same levels. Also, bridge-connecting together the longitudinally-disposed ambient light photosensors enables ambient light photosensors to be disposed close to the outer periphery of the display area in both the longitudinal and lateral directions. Thereby, the problems with the related art can be resolved.
    • 利用相关技术,用于配置环境光光传感器的位置的选择是狭窄的,因此难以灵活地响应用户不同结构的用户规格。 然而,使用本发明的显示装置,可以横向和纵向地布置环境光光传感器,使得能够以相同的水平感测纵向或横向的光强度。 而且,将纵向设置的环境光光传感器桥连接在一起,使环境光光传感器能够在纵向和横向方向上靠近显示区域的外周设置。 因此,可以解决现有技术的问题。
    • 66. 发明授权
    • Connecting device of a flexible printed circuit board
    • 柔性印刷电路板的连接装置
    • US07374435B2
    • 2008-05-20
    • US11324310
    • 2006-01-04
    • Naohiro Idenishi
    • Naohiro Idenishi
    • H01R12/00
    • H01R12/721H01R12/774H01R12/775H01R12/79H01R13/025H05K1/118H05K3/0058H05K2201/09145H05K2201/2009H05K2203/167
    • A connecting device of a flexible printed circuit board has a reinforced backlight FPC board, is free from bad contact resulting from insufficient insertion of a terminal portion of a flexible printed circuit board into a connector, and ensures good connection without leaving contaminants, scratches, or the like on contacts of the terminal portion. The connecting device of a flexible printed circuit board has a terminal portion having a contact formed as a printed conductor in a tip end portion of a film-form flexible printed circuit board, and a connector having an insertion slot into which the terminal portion is inserted and a contact fitted inside the insertion slot and connected to the contact of the terminal portion. Moreover, a reinforcing plate is bonded on the face of the terminal portion opposite to the face thereof on which the contact is formed, and an ear-like piece that makes contact with the opening rim of the insertion slot in the connector is formed in a position a predetermined distance inward from the tip end of the terminal portion in the length direction of the flexible printed circuit board.
    • 柔性印刷电路板的连接装置具有加强的背光FPC板,不会由于柔性印刷电路板的端子部分插入连接器而导致不良接触,并且确保良好的连接而不会留下污染物,划痕或 类似物在端子部分的触点上。 柔性印刷电路板的连接装置具有在薄膜状柔性印刷电路板的前端部形成为印刷导体的接点的端子部分和具有插入端子部的插入口的连接器 以及接触件,其装配在插入槽内并连接到端子部分的触点。 此外,加强板结合在与形成有触点的表面相对的端子部的表面上,并且与连接器中的插槽的开口边缘接触的耳状件形成在 在柔性印刷电路板的长度方向上从端子部分的末端向内定位预定距离。
    • 67. 发明申请
    • ELECTRO-OPTICAL DEVICE, ILLUMINATION DEVICE, ELECTRONIC APPARATUS, AND PRODUCTION METHOD OF ELECTRO-OPTICAL DEVICE
    • 电光装置,照明装置,电子装置和电光装置的制造方法
    • US20080112189A1
    • 2008-05-15
    • US11856295
    • 2007-09-17
    • Tatsumi OKUDA
    • Tatsumi OKUDA
    • F21V8/00H01J9/00
    • G02B6/0083F21V2200/20G02B6/0068
    • The invention provides an electro-optical device that includes: an electro-optical panel; light sources that emit light that enters the electro-optical panel; an optical waveguide board that guides the light emitted from the light sources toward the electro-optical panel; and a flexible printed circuit board on which the light sources are mounted, wherein the flexible printed circuit board is adhered to the optical waveguide board by adhesive members in such a manner that a part of the flexible printed circuit board is opposed to a surface of the optical waveguide board and that the light sources are positioned to be opposed to an edge face of the optical waveguide board, and concave portions are formed in the optical waveguide board at least at positions where the adhesive members are provided.
    • 本发明提供一种电光装置,其包括:电光面板; 发出进入电光面板的光的光源; 将从所述光源射出的光朝向所述电光面板引导的光波导路板; 以及柔性印刷电路板,其上安装有光源,其中柔性印刷电路板通过粘合部件粘附到光波导板上,使得柔性印刷电路板的一部分与该光波导板的表面相对 并且光源被定位成与光波导板的边缘面相对,并且至少在设置有粘合剂构件的位置处在光波导板中形成凹部。