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    • 71. 发明申请
    • Electro-optical device, drive circuit, and electronic apparatus
    • 电光装置,驱动电路和电子装置
    • US20080094388A1
    • 2008-04-24
    • US11882830
    • 2007-08-06
    • Katsunori Yamazaki
    • Katsunori Yamazaki
    • G06F3/038G09G3/34
    • G09G3/3655G09G3/3614G09G2320/0233
    • A drive circuit of an electro-optical device includes: plural rows of scanning lines; plural columns of data lines; a plurality of common electrodes; pixel switching elements, pixel capacitors; and pixels. Here, the drive circuit includes a scanning line drive circuit; and first transistors corresponding to the plurality of common electrodes. Each of the first transistors includes: a common electrode drive circuit for connecting the common electrode to a power supply line, to which a predetermined voltage is applied, when the scanning line is selected, a common signal output circuit having a voltage for allowing a detection voltage of the common electrode corresponding to a scanning line to become a reference voltage when the scanning line is selected, and a data line drive circuit having a voltage according to the gray scale level of the pixel to the pixel corresponding to the selected scanning line via the data line.
    • 电光装置的驱动电路包括:多列扫描线; 多列数据线; 多个公共电极; 像素开关元件,像素电容器; 和像素。 这里,驱动电路包括扫描线驱动电路; 以及对应于多个公共电极的第一晶体管。 每个第一晶体管包括:用于在选择扫描线时将公共电极连接到施加了预定电压的电源线的公共电极驱动电路,具有用于允许检测的电压的公共信号输出电路 对应于扫描线的公共电极的电压成为选择扫描线时的参考电压;以及数据线驱动电路,其具有根据像素的灰度级与对应于所选择的扫描线的通孔的电压的电压 数据线。
    • 74. 发明申请
    • Photodetector, electro-optical device, and electronic apparatus
    • 光电检测器,电光器件和电子设备
    • US20080073490A1
    • 2008-03-27
    • US11882906
    • 2007-08-07
    • Shin Koide
    • Shin Koide
    • G01J1/44
    • G01J1/44G01J1/4204
    • A photodetector receiving object light and ambient light as incident light includes: a sensor circuit in which a sensor outputting a first current corresponding to the intensity of the incident light and a sub-sensor outputting a second current corresponding to the intensity of the ambient light are electrically connected in series with each other via a node; and a differential current detection circuit detecting a differential current between the first current and the second current, which is output from the node at the time of applying a voltage across the sensor circuit. Here, when the voltage applied across the sensor circuit is defined as a first voltage and the voltage output from the node is defined as a second voltage, the intensity of the object light is detected on the basis of the differential current created when the second voltage becomes equal to a reference voltage.
    • 接收物体光和环境光作为入射光的光检测器包括:传感器电路,其中输出与入射光强度相对应的第一电流的传感器和输出对应于环境光强度的第二电流的子传感器 经由节点彼此串联电连接; 以及差分电流检测电路,其检测在所述传感器电路两端施加电压时从所述节点输出的所述第一电流和所述第二电流之间的差分电流。 这里,当施加在传感器电路两端的电压被定义为第一电压并且将从节点输出的电压定义为第二电压时,基于当第二电压 变得等于参考电压。
    • 75. 发明申请
    • Liquid crystal display device
    • 液晶显示装置
    • US20080068543A1
    • 2008-03-20
    • US11902036
    • 2007-09-18
    • Masashi MitsuiNorio Koma
    • Masashi MitsuiNorio Koma
    • G02F1/1335
    • G02F1/134309G02F1/133753G02F2001/134381G02F2203/09
    • A liquid crystal display device includes, in sequence, a first substrate, a liquid crystal layer, and a second substrate. The first substrate, the liquid crystal layer, and the second substrate are disposed in a subpixel having a transmissive portion for performing transmissive display and a reflective portion for performing reflective display. The first substrate includes a first electrode and a second electrode. The second substrate includes a third electrode. The first electrode and the second electrode are disposed in the transmissive portion and at least the first electrode and the third electrode are disposed in the reflective portion. Alignment of the liquid crystal layer is controlled by an electric field occurring between the first electrode and the second electrode in the transmissive portion and by an electric field occurring between the first electrode and the third electrode in the reflective portion.
    • 液晶显示装置依次包括第一基板,液晶层和第二基板。 第一基板,液晶层和第二基板设置在具有用于进行透射显示的透射部分的子像素和用于进行反射显示的反射部分。 第一基板包括第一电极和第二电极。 第二基板包括第三电极。 第一电极和第二电极设置在透射部分中,并且至少第一电极和第三电极设置在反射部分中。 通过在透射部分中的第一电极和第二电极之间产生的电场以及在反射部分中在第一电极和第三电极之间产生的电场来控制液晶层的对准。
    • 76. 发明申请
    • Liquid crystal display panel
    • 液晶显示面板
    • US20080068539A1
    • 2008-03-20
    • US11898549
    • 2007-09-13
    • Hideki KanekoMasahiro Horiguchi
    • Hideki KanekoMasahiro Horiguchi
    • G02F1/1335
    • G02F1/134363G02F1/133514G02F1/136286G02F2001/134372
    • An FFS mode liquid crystal display panel 10A includes an array substrate having first electrodes 14 each provided in a space delimited by a plurality of scan lines 12 and signal lines 17, second electrodes 21 provided on the first electrodes 14 with an insulator therebetween, and a plurality of slits 20A provided to each of the second electrodes 21 in parallel with one another in a direction crossing the signal lines 17; and a color filter substrate having a color filter layer. Each of the slits 20A has an open end 20A′ on one side. The color filter layer has a centerline 30 extending along the signal lines 17 for individual pixels, and the centerline 30 coincides with a display centerline 32 that is shifted toward the open end side of the slits from a centerline 31 of each second electrode 21 as viewed from above. Accordingly, an FFS mode liquid crystal display panel is obtained that causes no color mixture with this arrangement in which the slits each having an open end on one side are formed in each second electrode.
    • FFS模式液晶显示面板10A包括阵列基板,其具有分别设置在由多条扫描线12和信号线17限定的空间中的第一电极14,在第一电极14上设置有绝缘体的第二电极21,以及 在与信号线17交叉的方向上彼此平行地设置的每个第二电极21的多个狭缝20A; 以及具有滤色器层的滤色器基板。 每个狭缝20A在一侧具有开口端20A'。 滤色器层具有沿单个像素的信号线17延伸的中心线30,并且中心线30与从每个第二电极21的中心线31向狭缝的开口端侧偏移的显示中心线32重合,如图所示 从上面。 因此,获得了在每个第二电极中形成有在一侧具有开口端的狭缝的这种布置的不会混合的FFS模式液晶显示面板。
    • 78. 发明申请
    • DISPLAY DEVICE AND METHOD OF MANUFACTURING THE SAME
    • 显示装置及其制造方法
    • US20080067519A1
    • 2008-03-20
    • US11855753
    • 2007-09-14
    • Toru SakuraiYusaku MorimotoYutaka Umetani
    • Toru SakuraiYusaku MorimotoYutaka Umetani
    • H01L29/04H01L21/84
    • G02F1/136213H01L27/1255H01L27/1281H01L29/04H01L29/78633
    • The invention provides a display device having a thin film transistor and a storage capacitor storing a display signal applied to a pixel electrode through this thin film transistor on a substrate, where dielectric strength between electrodes forming the storage capacitor is enhanced for increasing the yield. In the storage capacitor, a lower storage capacitor electrode, a thin lower storage capacitor film, a polysilicon layer, an upper storage capacitor film and an upper storage capacitor electrode are layered. The polysilicon layer is formed by crystallization by laser annealing. The polysilicon layer of the storage capacitor is microcrystalline and thus the flatness of its surface is enhanced. The pattern of the polysilicon layer (storage capacitor electrode) is formed larger than the bottom portion of an opening, and the edge of its peripheral portion is located on a buffer film on the slant portion of the opening or on the buffer film on the outside of the opening.
    • 本发明提供一种具有薄膜晶体管和存储电容器的存储电容器,该存储电容器存储施加到通过该薄膜晶体管的像素电极的显示信号,衬底上形成存储电容器的电极之间的介电强度提高了产量。 在存储电容器中,层叠有较低的存储电容电极,较薄的下部存储电容器膜,多晶硅层,上部存储电容器膜和上部存储电容器电极。 多晶硅层通过激光退火结晶形成。 存储电容器的多晶硅层是微晶的,因此其表面的平坦度增强。 多晶硅层(保持电容电极)的图案形成为大于开口的底部,其周边部分的边缘位于开口的倾斜部分上的缓冲膜上或外部的缓冲膜上 的开幕。
    • 79. 发明申请
    • ILLUMINATION SYSTEM, LIQUID CRYSTAL DEVICE, AND ELECTRONIC DEVICE
    • 照明系统,液晶装置和电子装置
    • US20080043170A1
    • 2008-02-21
    • US11831553
    • 2007-07-31
    • Takuya IKEDA
    • Takuya IKEDA
    • G02F1/13357F21V8/00
    • G02F1/133615G02B6/0016
    • An illumination system includes: a light source that emits light; and a light guide that introduces the light through a light-incident end face facing the light source and that lets out the light from a light-exiting surface adjacent to the light-incident end face. The light source is disposed adjacent to the light-incident end face and in the position shifted from the center of the width of the light guide intersecting the direction in which the light source emits light. The light-incident end face of the light guide has at least one projection or recess in the direction intersecting the light-exiting direction of the light source. The projection or recess has an asymmetrical shape inclined in the direction intersecting the light-exiting direction of the light source. The projection or recess is inclined in one of directions intersecting the light-exiting direction of the light source.
    • 照明系统包括:发光的光源; 以及导光体,其通过面向光源的光入射端面引入光,并且使来自与光入射端面相邻的光出射面的光放出。 光源与光入射端面相邻,并且在与光源发光的方向相交的光导的宽度的中心偏移的位置。 导光体的光入射端面在与光源的光出射方向相交的方向上具有至少一个突起或凹部。 突起或凹部具有在与光源的光出射方向相交的方向上倾斜的不对称形状。 突起或凹部在与光源的光出射方向相交的方向之一上倾斜。