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    • 72. 发明授权
    • Self-healing network, method for transmission line switching thereof, and transmission equipment thereof
    • 自愈网络,其传输线路切换方法及其传输设备
    • US06625115B1
    • 2003-09-23
    • US09667890
    • 2000-09-22
    • Hiroki IkedaToshiki SugawaraYukio Nakano
    • Hiroki IkedaToshiki SugawaraYukio Nakano
    • G01R3108
    • H04L1/22H04J3/085H04J2203/006
    • The present invention provides a network in which the installation of working lines may be enabled based on the required traffic and the high speed switching of the transmission lines may be realized, as well as a transmission equipment used for that network and a method of control thereof. The transmission equipment comprises an APS byte transmitter/receiver for exchanging information on failures with adjacent transmission equipment through a protection line, a monitor for monitoring anomalies on a plurality of the working lines, a Network Table for storing data indicating network structure, a processing unit for determining working lines to be switched based on the data stored in the Network Table and for processing APS bytes. APS bytes are allocated with the working line number, its priority, and the source node number of switching signal. In addition a Network Table is provided to each node for storing connecting state of the network and information on failures, thereby the destination node may be identified. When a failure occurs, the best optimal line switching will be performed by exchanging information on failures by means of the APS bytes.
    • 本发明提供一种网络,其中可以基于所需业务来启用工作线路的安装,并且可以实现传输线路的高速切换以及用于该网络的传输设备及其控制方法 传输设备包括一个APS字节发送器/接收器,用于通过保护线路与邻近的传输设备交换故障信息,监视多个工作线路上的异常,用于存储指示网络结构的数据的网络表,处理 基于存储在网络表中的数据确定要切换的工作线路和用于处理APS字节的单元.APS字节被分配有工作线路号码,其优先级和源节点数量的切换信号。 另外,向每个节点提供网络表以存储网络的连接状态和关于故障的信息,从而可以识别目的地节点。当故障发生时,将通过以下方式来进行最佳的最佳线切换:通过手段交换故障信息 的APS字节。
    • 73. 发明授权
    • Self-healing network, method for transmission line switching thereof,
and transmission equipment thereof
    • 自愈网络,其传输线路切换方法及其传输设备
    • US6144633A
    • 2000-11-07
    • US837734
    • 1997-04-22
    • Hiroki IkedaToshiki SugawaraYukio Nakano
    • Hiroki IkedaToshiki SugawaraYukio Nakano
    • H04J3/08H04L1/22H04J1/16
    • H04L1/22H04J3/085H04J2203/006
    • The present invention provides a network in which the installation of working lines may be enabled based on the required traffic and the high speed switching of the transmission lines may be realized, as well as a transmission equipment used for that network and a method of control thereof.The transmission equipment comprises an APS byte transmitter/receiver for exchanging information on failures with adjacent transmission equipment through a protection line, a monitor for monitoring anomalies on a plurality of the working lines, a Network Table for storing data indicating network structure, a processing unit for determining working lines to be switched based on the data stored in the Network Table and for processing APS bytes.APS bytes are allocated with the working line number, its priority, and the source node number of switching signal. In addition a Network Table is provided to each node for storing connecting state of the network and information on failures, thereby the destination node may be identified.When a failure occurs, the best optimal line switching will be performed by exchanging information on failures by means of the APS bytes.
    • 本发明提供一种网络,其中可以基于所需业务来启用工作线路的安装,并且可以实现传输线路的高速切换以及用于该网络的传输设备及其控制方法 。 传输设备包括用于通过保护线路与邻近传输设备交换故障信息的APS字节发送器/接收器,用于监视多个工作线路上的异常的监视器,用于存储指示网络结构的数据的网络表,处理单元 用于基于存储在网络表中的数据和用于处理APS字节确定要切换的工作线。 APS字节分配有工作线路号,其优先级和源节点数量的切换信号。 此外,网络表被提供给每个节点用于存储网络的连接状态和关于故障的信息,从而可以识别目的地节点。 当发生故障时,将通过APS字节交换故障信息来执行最佳的最佳线路切换。
    • 74. 发明授权
    • Fitting construction of electrical connection box
    • 电气接线盒接头结构
    • US5531345A
    • 1996-07-02
    • US297788
    • 1994-08-30
    • Masayoshi NakamuraHiroki Ikeda
    • Masayoshi NakamuraHiroki Ikeda
    • H02G3/08H02G3/14
    • H02G3/14H02G3/088
    • A fitting construction of an electrical connection box, comprising: a casing member which is made of resin and is formed, at an upper end of its peripheral wall, with a projection; and a cover member which is made of resin and is formed, on a lower face of its peripheral wall, with a downwardly opening fitting groove so as to be mounted on an upper portion of the casing member through fitting of the projection into the fitting groove; wherein the fitting groove is shaped so as to become wider towards a lower end of the fitting groove, while the projection is shaped so as to become wider towards a lower end of the projection; wherein the projection is brought into pressing contact with opposed side faces of the fitting groove at the time of fitting of the projection into the fitting groove so as to spread out the fitting groove.
    • 一种电连接盒的装配结构,包括:壳体构件,其由树脂制成,并在其周壁的上端形成有突起; 以及由树脂制成并且在其周壁的下表面上形成有向下开口的装配槽的盖构件,以通过将突起装配到装配槽中而安装在壳体构件的上部 ; 其中,所述嵌合槽成形为朝向所述嵌合槽的下端变宽,同时所述突起成形为朝向所述突起的下端变宽; 其特征在于,在突出部嵌入嵌合槽内时突起与嵌合槽的相对的侧面压接,从而使配合槽扩展。
    • 75. 发明授权
    • Ink detecting device for rotary printer
    • 旋转打印机油墨检测装置
    • US4563947A
    • 1986-01-14
    • US696066
    • 1985-01-29
    • Ken MatsushitaHiroki IkedaYoshihide Sugiyama
    • Ken MatsushitaHiroki IkedaYoshihide Sugiyama
    • B41L13/18B41F31/00B41F31/02B41F33/00B41F15/40
    • B41F33/0063B41F31/00
    • For use in a rotary printing machine comprising at least one rotary drum, an image carrier medium having an image area to be printed on an image supporting material, and a printing ink supply unit, an ink detecting device which comprises a plurality of sensor rolls rotatably supported in series on a single fixed shaft in frictional contact with the printing drum through a layer of printing ink interposed between said sensor rolls and said printing drum a first means for separately detecting rotational speed of each sensor rolls, a second means for detecting rotational speed of the printing drum, and a control means for comparing the rotational speed of each sensor roll, under the influence of the slip between the sensor rolls and the printing drum, and corresponding reference values respectively indicative of rotational speed of each sensor roll measured under such a condition that optimum quantity of printing ink is applied on the outer periphery of the printing drum, and accordingly controlling said ink supplying means so as to replenish the printing ink onto corresponding portions of the outer periphery of the printing drum which correspond to some sensor rolls the rotational speed of which exceeds the corresponding reference values.
    • 用于包括至少一个旋转鼓的旋转印刷机,具有要印刷在图像支撑材料上的图像区域的图像载体介质和印刷油墨供应单元,油墨检测装置,其包括多个传感器辊, 通过插入在所述传感器辊和所述印刷鼓之间的印刷油墨层与印刷鼓摩擦接触的单个固定轴,用于分别检测每个传感器辊的转速的第一装置,用于检测转速的第二装置 以及用于在传感器辊和印刷鼓之间的滑动的影响下比较每个传感器辊的旋转速度的控制装置以及分别表示在其下测量的每个传感器辊的转速的相应参考值 因此,在印刷鼓的外周上施加最佳量的印刷油墨的条件 控制所述供墨装置,以便将印刷油墨补充到印刷滚筒的外周对应于其转速超过相应参考值的传感器辊的对应部分。
    • 78. 发明授权
    • Optical line terminal and optical line transmission and reception system
    • 光线路终端和光线路传输和接收系统
    • US08374501B2
    • 2013-02-12
    • US12620876
    • 2009-11-18
    • Hideya YoshiuchiHiroki IkedaYing Shi
    • Hideya YoshiuchiHiroki IkedaYing Shi
    • H04B10/08H04B10/06H04J14/00
    • H04J3/1694H04B10/6911
    • An optical line terminal includes an optical network interface having an optical receiver unit to convert an optical signal received from an optical network unit into an electrical signal and output a direct current bias monitoring signal and an error code detector to detect an error code in the electrical signal to output an error code indication signal, a storage to store therein a direct current bias table indicating a direct current bias corresponding to a direct current bias control parameter of the optical network units and a dynamic band allocation information table indicating communication time slot information allotted to each optical network unit and a control unit to receive the direct current bias monitoring signal and the error code indication signal and supply the direct current bias control signal to the optical receiver unit to thereby form one feedback circuit together with the optical network interface.
    • 光线路终端包括光网络接口,其具有光接收单元,用于将从光网络单元接收的光信号转换为电信号并输出​​直流偏置监视信号,并且错误代码检测器检测电气中的错误代码 信号以输出错误代码指示信号,存储器存储指示对应于光网络单元的直流偏置控制参数的直流偏置的直流偏置表和指示分配的通信时隙信息的动态频带分配信息表 到每个光网络单元和控制单元,以接收直流偏置监视信号和错误代码指示信号,并将直流偏置控制信号提供给光接收器单元,从而与光网络接口一起形成一个反馈电路。
    • 79. 发明授权
    • Burst mode receiver
    • 突发模式接收器
    • US08284872B2
    • 2012-10-09
    • US12687184
    • 2010-01-14
    • Jun SugawaHiroki IkedaMasayoshi Yagyu
    • Jun SugawaHiroki IkedaMasayoshi Yagyu
    • H04L27/00
    • H04L7/0083
    • A burst mode receiver including a CDR circuit that does not perform bit synchronization determination at a wrong position even when a burst signal waveform containing a distortion is input is provided. The burst mode receiver includes a CDR circuit for reproducing clock and data from a received signal, a bit synchronization determination circuit for determining whether the CDR circuit is in an optimum phase, a waveform distortion determination circuit for determining from the received signal whether there is waveform distortion, and a CDR output enable determination circuit for determining whether an output of the CDR circuit is valid or invalid. The CDR output enable determination circuit performs CDR output enable determination based on a bit synchronization determination result and a waveform distortion determination result.
    • 提供了包括即使当输入包含失真的脉冲串信号波形时也不在错误位置执行位同步确定的CDR电路的突发模式接收机。 突发模式接收机包括用于从接收信号再现时钟和数据的CDR电路,用于确定CDR电路是否处于最佳相位的位同步确定电路,用于根据接收信号确定是否存在波形的波形失真确定电路 失真和用于确定CDR电路的输出是有效还是无效的CDR输出使能确定电路。 CDR输出使能判定电路基于位同步判定结果和波形失真判定结果进行CDR输出使能判定。