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    • 1. 发明授权
    • Stream distribution system
    • 流分配系统
    • US07020081B1
    • 2006-03-28
    • US09209900
    • 1998-12-11
    • Hideaki TaniKoji Taniguchi
    • Hideaki TaniKoji Taniguchi
    • G01R31/08
    • H04L65/4084H04L12/2801H04L29/06027H04L65/602H04L65/605H04N7/17309H04N21/234327H04N21/23608H04N21/2402H04N21/2662H04N21/4622H04N21/47202
    • A stream distribution system comprises a stream distribution server, a plurality of terminal devices each having a information reproduction function, and a local area network for connecting both of the stream distribution server and the terminal devices, in which the stream distribution server comprises reception means for receiving a stream data of a digital form transmitted through a broadcasting network or a communication network, selection means for selecting a predetermined unit of information from the stream data received by the reception means based on a distribution condition set by the terminal device which has an information reproduction function, file I/O means for controlling a file device under management of the stream distribution server and for outputting information selected by the selection means to the file device, and transmission means for transmitting information selected by the selection means to the terminal device after executing a predetermined processing according to a limitation of a preset data transmission band.
    • 流分配系统包括流分发服务器,每个具有信息再现功能的多个终端设备,以及用于连接流分发服务器和终端设备两者的局域网,其中流分发服务器包括接收装置, 接收通过广播网络或通信网络发送的数字形式的流数据;选择装置,用于根据由具有信息的终端设备设置的分配条件,从由接收装置接收的流数据中选择预定的信息单元 再现功能,用于控制流分发服务器管理下的文件装置的文件I / O装置,以及用于将由选择装置选择的信息输出到文件装置;以及发送装置,用于在选择装置选择的信息之后向终端装置发送信息给终端装置 执行预定的处理引用 受限于预设的数据传输频带。
    • 2. 发明授权
    • Stream communication system and stream transfer control method
    • 流通信系统和流传输控制方法
    • US06445679B1
    • 2002-09-03
    • US09220966
    • 1998-12-23
    • Koji TaniguchiHideaki Tani
    • Koji TaniguchiHideaki Tani
    • H04L1226
    • H04L65/80H04L29/06H04L29/06027H04L47/10H04L47/11H04L47/20H04L47/2433H04L47/263H04L47/29Y02D50/10
    • A stream communication system has a plurality of nodes and a network to which each node is connected, the node comprises a stream transfer device to which the encoding stream that data attribute information for every data blocks are added, and has a periodicity in the data structure is transferred, at least one node is allocated as a managing node, and the managing node manages at least one monitoring target node and a control target node, the stream transfer device of the control target node comprises stream conversion section for adjusting an amount of the transfer data as the effective transmission rate coincides to the specified transmission rate based on the data priority decided from data attribute information, the stream transfer device of the monitoring target node comprises internal information notification section for notifying the managing node the state of a load of the node, and the stream transfer device of the managing node comprises feedback control section for recalculating the transmission rate for real time transmission, and for notifying the control target node the result as a parameter setting message based on the load state notified from the monitoring target node and the set transmission rate.
    • 流通信系统具有多个节点和每个节点连接的网络,该节点包括流传输设备,每个数据块的数据属性信息被加到编码流,并且在数据结构中具有周期性 至少一个节点被分配为管理节点,并且管理节点管理至少一个监视目标节点和控制目标节点,控制目标节点的流传输设备包括流转换部分,用于调整 基于从数据属性信息决定的数据优先级,传输数据作为有效传输速率与指定传输速率一致,监视目标节点的流传输设备包括内部信息通知部分,用于通知管理节点的负载状态 节点,并且管理节点的流传输设备包括用于重新计算的反馈控制部分 处理用于实时传输的传输速率,并且基于从监视目标节点通知的负载状态和设定的传输速率,将控制目标节点通知作为参数设置消息的结果。
    • 6. 发明申请
    • Imaging Device and Mobile Radio Communication Terminal
    • 成像设备和移动无线电通信终端
    • US20080279546A1
    • 2008-11-13
    • US11597353
    • 2006-03-07
    • Koji Taniguchi
    • Koji Taniguchi
    • G03B9/02
    • G03B9/02
    • It is possible to realize a small-size imaging device having light quantity control means such as a shutter unit at a low cost. In the imaging device, an imaging element is mounted on a main part (1a) of a printed circuit board (1) and an imaging signal is introduced from a flexible portion toward outside. A coil (4) as a drive side member of an electromagnetic actuator is connected to the main part (1a) by reflow soldering and the coil (4) is fixed to the main part (1a). After the coil (4) is fixed, a lens unit (2) and a shutter unit (3) having a built-in permanent magnet (3b) as a member driven by the electromagnetic actuator are built on the imaging element.
    • 可以以低成本实现具有诸如快门单元的光量控制装置的小尺寸成像装置。 在成像装置中,成像元件安装在印刷电路板(1)的主要部分(1a)上,成像信号从柔性部分向外部引入。 作为电磁致动器的驱动侧构件的线圈(4)通过回流焊接与主体部(1a)连接,线圈(4)固定在主体部(1a)上。 在线圈(4)固定之后,将具有内置永磁体(3b)的透镜单元(2)和作为由电磁致动器驱动的部件的快门单元(3)构建在成像元件上。
    • 9. 发明授权
    • Semiconductor device with a capacitor electrode isolation film formed from the same layer as a capacitor electrode
    • 具有电容器电极隔离膜的半导体器件由与电容器电极相同的层形成
    • US06831321B2
    • 2004-12-14
    • US10226207
    • 2002-08-23
    • Koji Taniguchi
    • Koji Taniguchi
    • H01L27108
    • H01L27/10852H01L27/10808H01L27/10894H01L27/10897H01L28/90
    • A semiconductor device that can prevent short-circuit occurring between capacitor electrodes and a method of manufacturing the semiconductor device are obtained. A semiconductor includes two capacitor electrodes formed spaced from each other and including conductive impurities of the first conductivity type, and an electrode isolation film located between the two capacitor electrodes and formed at the same layer as that of the two capacitor electrodes, while including conductive impurities of the second conductivity type different from the first conductivity type. This allows the two capacitor electrodes to be electrically isolated from each other, without the etching step or the like, by introducing conductive impurities of the second conductivity type into a region that is located between the two capacitor electrodes and is formed at the same layer as that of the capacitor electrodes.
    • 可以获得可以防止电容器电极之间发生短路的半导体器件和制造半导体器件的方法。 半导体包括彼此间隔开并且包括第一导电类型的导电杂质的两个电容器电极和位于两个电容器电极之间并形成在与两个电容器电极相同层的电极隔离膜,同时包括导电杂质 的第二导电类型不同于第一导电类型。 这允许通过将第二导电类型的导电杂质引入位于两个电容器电极之间的区域中并且形成在与第二导电类型相同的层上,使两个电容器电极彼此电隔离,而不需要蚀刻步骤等 电容电极的电极。
    • 10. 发明授权
    • Active matrix substrate and liquid crystal display apparatus having electrical continuity across contact holes, and method for producing the same
    • 在接触孔上具有导通性的有源矩阵基板和液晶显示装置及其制造方法
    • US06424399B1
    • 2002-07-23
    • US09318996
    • 1999-05-26
    • Yasunori ShimadaHisakazu NakamuraKoji Taniguchi
    • Yasunori ShimadaHisakazu NakamuraKoji Taniguchi
    • G02F1136
    • G02F1/133553G02F1/136227
    • A reflection type liquid crystal display apparatus includes: a first substrate having a plurality of reflecting electrodes; a second substrate having a light transmitting electrode; and a liquid crystal layer disposed between the first substrate and the second substrate. The first substrate includes an insulating substrate, a switching device provided on the insulating substrate for supplying a display voltage signal to the reflecting electrode, a drawing-out electrode connected to the switching device and extending under the reflecting electrode, and an insulating resin layer having a contact hole on the drawing-out electrode. The reflecting electrode is provided on the insulating resin layer, corresponding to each pixel, so as to cover the contact hole, and is electrically connected to the drawing-out electrode at the bottom of the contact hole. The drawing-out electrode has at least two different metal layers in a region larger than a bottom of the contact hole, the region including the bottom of the contact hole, and a metal layer which is an uppermost layer of the drawing-out electrode is removed at the bottom of the contact hole in the direction of a thickness either partially or until an underlying metal layer is reached.
    • 一种反射型液晶显示装置,包括:具有多个反射电极的第一基板; 具有透光电极的第二基板; 以及设置在第一基板和第二基板之间的液晶层。 第一基板包括绝缘基板,设置在绝缘基板上的用于向反射电极提供显示电压信号的开关装置,连接到开关装置并在反射电极下方延伸的引出电极,以及具有 拉出电极上的接触孔。 反射电极设置在与每个像素对应的绝缘树脂层上,以覆盖接触孔,并且在接触孔的底部电连接到引出电极。 拉出电极在比接触孔的底部大的区域中具有至少两个不同的金属层,包括接触孔的底部的区域和作为拉出电极的最上层的金属层是 在接触孔的底部沿厚度的方向部分地或直到达到下面的金属层去除。