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    • 33. 发明申请
    • Optical module and process for manufacturing the same
    • 光模块及其制造方法
    • US20100220955A1
    • 2010-09-02
    • US12654924
    • 2010-01-08
    • Kazuhiro MitamuraHideyuki Yamada
    • Kazuhiro MitamuraHideyuki Yamada
    • G02B6/32B29C65/52
    • G02B6/4204G02B6/4239G02B6/4244G02B6/4292
    • An optical module includes a lens-containing optically-transmissive member and a receptacle. The receptacle includes: an optical connector-inserting section; a fixing section for fixing the member; and an device-installing section for installing a semiconductor device serving as a light emitting device or a light receiving device. The fixing section communicates with the device-installing section. The member includes a main body and a lens. The main body includes a first section and a second section, the first section having a first outer diameter, which is substantially equal to a internal diameter of said fixing section, and said second section having a second outer diameter, which is smaller than the first outer diameter, and at least containing an end of said main body in a side of the device-installing section.
    • 光学模块包括透镜的透光构件和容器。 插座包括:光连接器插入部; 用于固定所述构件的固定部; 以及用于安装用作发光器件或光接收器件的半导体器件的器件安装部分。 固定部与装置安装部连通。 该构件包括主体和透镜。 主体包括第一部分和第二部分,第一部分具有基本上等于所述固定部分的内径的第一外径,并且所述第二部分具有第二外径,该第二外径小于第一外径 外径,并且至少包含所述主体的位于所述装置安装部的一侧的端部。
    • 35. 发明申请
    • Signal line correction method and apparatus
    • 信号线校正方法及装置
    • US20100014772A1
    • 2010-01-21
    • US12458624
    • 2009-07-17
    • Takao KuwabaraHideyuki Yamada
    • Takao KuwabaraHideyuki Yamada
    • G06K9/40
    • H04N5/3658H04N5/32
    • A method for use with a radiation image detector, including the steps of detecting a faulty signal line having a signal amount less than a predetermined threshold value based on radiation image signals read out from the detector, setting a signal line adjacent to the faulty signal line as an abnormal signal line and a signal line adjacent to the abnormal signal line and having a normal amount of signal as a reference signal line, calculating the difference between a signal read out by the abnormal signal line and a signal read out by the reference signal line as a correction amount, calculating a low frequency component correction amount by removing a high frequency component from the calculated correction amount, and performing a correction on the signal read out by the abnormal signal line by adding the calculated low frequency component correction amount to the signal.
    • 一种与放射线图像检测器一起使用的方法,包括以下步骤:基于从检测器读出的放射线图像信号检测信号量小于预定阈值的故障信号线,设置与故障信号线相邻的信号线 作为异常信号线和与异常信号线相邻并且具有正常信号量作为参考信号线的信号线,计算由异常信号线读出的信号与由参考信号读出的信号之间的差异 线作为校正量,通过从计算出的校正量中去除高频分量来计算低频分量校正量,并且对由异常信号线读出的信号进行校正,将计算出的低频分量校正量加到 信号。
    • 38. 发明申请
    • Remote troubleshooting system
    • 远程故障排除系统
    • US20070299575A1
    • 2007-12-27
    • US11808624
    • 2007-06-12
    • Hideyuki YamadaHiroyuki TakahashiShinya Yamasaki
    • Hideyuki YamadaHiroyuki TakahashiShinya Yamasaki
    • G01M17/00
    • G06Q10/20G07C5/008
    • A remote troubleshooting system comprises a vehicle that transmits vehicle data regarding a stress factor of a specific onboard component at a specified timing, and a troubleshooting server that is connected to the vehicle via a network, receives the vehicle data from the vehicle, and performs the troubleshooting of the onboard component. The server determines a precaution level based on the vehicle data from the vehicle, selects a troubleshooting program that is suitable to the precaution level determined, and transmits this to the vehicle. The vehicle replaces the troubleshooting program currently stored by a memory with the troubleshooting program received. Thereby, the reliability of the troubleshooting can be improved.
    • 远程故障排除系统包括:车辆,其在指定时刻传送关于特定车载部件的应力因素的车辆数据,以及经由网络连接到车辆的故障排除服务器,从车辆接收车辆数据, 车载组件故障排除。 服务器根据来自车辆的车辆数据确定预防级别,选择适合于所确定的预防级别的故障排除程序,并将其发送给车辆。 车辆将故障排除程序接收到的内存替换当前存储的故障排除程序。 从而可以提高故障排除的可靠性。