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    • 1. 发明专利
    • Device for reducing thunder electromagnetic field for building
    • 用于建筑物的减少电磁场的装置
    • JP2013123323A
    • 2013-06-20
    • JP2011270934
    • 2011-12-12
    • Taisei Corp大成建設株式会社Sankosha Corp株式会社サンコーシヤDoshisha学校法人同志社
    • UCHIDA HAJIMEENDO TETSUOKOBAYASHI SHINGOYONEZAWA KANAMETAKAHASHI YUICHIIDOKAWA TERUOAMETANI AKIHIRO
    • H02G13/00E04H9/14
    • PROBLEM TO BE SOLVED: To provide a device for reducing a thunder electromagnetic field for a building which facilitates preventing a lightning surge, or taking a countermeasure for reducing it.SOLUTION: The device comprises: a lightning rod 4 provided on a top portion of a reinforced concrete building 1 having reinforced concrete poles 2; and a distributing conductor cable 8 connecting the lightning rod 4 to the main reinforcement of each reinforced concrete pole 2, provided that the impedances between the lightning rod 4 and the main reinforcements of the reinforced concrete poles 2 are arranged to be identical to one another. The device further comprises: top-floor-beam-connecting conductors 9a connecting between the main reinforcements of the reinforced concrete poles 2 and top floor beams 3a; and lowest-floor-beam-connecting conductors 9b connecting between the main reinforcements of the reinforced concrete poles 2 and lowest floor beams 3b.
    • 要解决的问题:提供一种用于减少用于建筑物的雷电电磁场的装置,其有助于防止雷电浪涌,或者采取减少它的对策。 解决方案:该装置包括:设置在具有钢筋混凝土柱2的钢筋混凝土建筑物1的顶部上的避雷针4; 以及将避雷针4连接到每个钢筋混凝土杆2的主加强件的分配导体电缆8,只要避雷针4与钢筋混凝土柱2的主加强筋之间的阻抗彼此相同即可。 该装置还包括:连接在钢筋混凝土柱2的主加强件和顶板梁3a之间的顶板梁连接导体9a; 以及连接在钢筋混凝土柱2的主加强件和最低底板梁3b之间的最低地板梁连接导体9b。 版权所有(C)2013,JPO&INPIT
    • 2. 发明专利
    • Lightning current distribution estimating system
    • 雷电电流分配估计系统
    • JP2011149729A
    • 2011-08-04
    • JP2010009172
    • 2010-01-19
    • Sankosha CorpTohoku Electric Power Co Inc東北電力株式会社株式会社サンコーシヤ
    • KAWAHARA FUMIKATAKAHASHI YUICHITAKIDO YUSUKE
    • G01W1/16G01R31/00
    • PROBLEM TO BE SOLVED: To estimate lightning current distribution to a grounding system of a building on a lightning strike by simply and accurately detecting a shunt waveform for an injected current. SOLUTION: The lightning current distribution estimation system includes a current injector 30 for injecting without contact a current composed of a high frequency microcurrent having a predetermined frequency and a predetermined current value from the one point of the grounding system having a plurality of branching routes in the building, a current detector 50 disposed at the other point of the grounding system for detecting without contact the shunt current of the injected current passing through the branching routes in the grounding system, a peak value detecting means 61-70 for detecting a peak value by extracting the current component of a predetermined frequency from the detected shunt current, and a calculation unit 69 for calculating the shunt ratio to the predetermined current value from the peak value and for estimating the lightning current shunt ratio or the lightning current shunt value. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:通过简单且准确地检测注入电流的并联波形,来估计雷击电流对建筑物接地系统的雷击电流分布。 雷电流分布估计系统包括电流注入器30,用于从具有多个分支的接地系统的一个点不经接触地注入由具有预定频率和预定电流值的高频微电流组成的电流 设置在接地系统的另一点的电流检测器50,用于检测接地系统中通过分支路径的注入电流的分流电流;接收系统检测的峰值检测装置61-70, 从检测到的分流电流中提取预定频率的电流分量的峰值,以及计算单元69,用于从峰值计算到预定电流值的分流比,并且用于估计雷电流分流比或雷电流分流值 。 版权所有(C)2011,JPO&INPIT
    • 3. 发明专利
    • Surge detection method, surge protection device, and surge protection device management system
    • 浪涌检测方法,防护装置和防护装置管理系统
    • JP2014054023A
    • 2014-03-20
    • JP2012195432
    • 2012-09-05
    • Sankosha Corp株式会社サンコーシヤ
    • AZUMA SHUJITAKAHASHI YUICHI
    • H02H7/00H02H5/00H02H9/04
    • PROBLEM TO BE SOLVED: To provide a simply structured, small-sized, and highly accurate surge protection device (SPD) comprising an exchange recommendation display function or the like, and a management system therefor.SOLUTION: An SPD 10 comprises a lightning protection element (e.g., an arrester) 12 connected by lead wires 11-1, 11-2 and a sensor section 20 between a line 1 connected to a protection object apparatus 2 and a ground line 3. When a lightning surge voltage is applied to the line 1, the arrester 12 is discharged and by discharging a lightning surge current through the lead wires 11-1, 11-2 to a side of the ground line 3, the protection object apparatus 2 is protected. The sensor section 20 includes: a condenser lens 21 which extracts an optical signal Ps by converging light Lt generated from the arrester per se when the arrester 12 is operated; and an optical connector 23 which is connected to the condenser lens 21 via an optical fiber 22. The output optical signal Ps of the optical connector 23 is sent through an optical fiber 24 to a management device 60.
    • 要解决的问题:提供包括交换推荐显示功能等的简单结构化,小型化和高精度的浪涌保护装置(SPD)及其管理系统。解决方案:SPD 10包括防雷元件 (例如,避雷器)12,以及在与保护对象装置2连接的线路1与接地线路3之间的导线11-1,11-2和传感器部分20之间。当将雷电浪涌电压施加到线路 如图1所示,放电器12被放电,并且通过将引线11-1,11-2的雷电浪涌电流放电到接地线3的一侧,对保护对象装置2进行保护。 传感器部分20包括:聚光透镜21,当避雷器12被操作时,会聚从避雷器本身产生的光Lt提取光信号Ps; 以及通过光纤22连接到聚光透镜21的光连接器23.光连接器23的输出光信号Ps通过光纤24发送到管理装置60。
    • 4. 发明专利
    • Protector, protector board using the same, monitoring unit for protector and monitoring system for protector
    • 使用该保护器的保护器,保护器板,用于保护器的保护器和监视系统的监视单元
    • JP2012161137A
    • 2012-08-23
    • JP2011017971
    • 2011-01-31
    • Sankosha Corp株式会社サンコーシヤ
    • AZUMA SHUJITAKAHASHI KAZUYAEBUCHI KENICHIKIMURA MASARUTAKAHASHI YUICHI
    • H02H9/04H01C7/10
    • PROBLEM TO BE SOLVED: To provide a protector which protects facility equipment and accurately detects a surge current such as thunder, and to allow a plurality of protectors to be easily monitored at one time.SOLUTION: A protector 1 comprises a protection circuit 40 for suppressing the surge current penetrating into a conducting wire 35 connected to an earth terminal 25; and an operation display device 100 which detects the surge current flowing in the conducting wire 35 and displays an operation state of the protection circuit 40. The operation display device 100 comprises: a detection part 110 which has a detection coil for detecting the surge current flowing in the conducting wire 35; a waveform processing part 120 which extends a waveform of a detection voltage detected by the detection coil thereof with respect to a time axis and outputs a deformed waveform; a control part 130 which calculates a current value of the surge current from a voltage value of the deformed waveform and obtains a result of the calculation of the surge current; and a display part 140. The display part 140 displays the result of the calculation of the surge current in a state visible from the outside.
    • 要解决的问题:提供一种保护设备设备并准确地检测诸如雷声的浪涌电流的保护器,并且允许一次容易地监视多个保护器。 解决方案:保护器1包括保护电路40,用于抑制穿入连接到接地端子25的导线35中的浪涌电流; 以及操作显示装置100,其检测在导线35中流动的浪涌电流并显示保护电路40的操作状态。操作显示装置100包括:检测部110,其具有用于检测浪涌电流流动的检测线圈 在导线35中; 波形处理部分120,其延伸由其检测线圈相对于时间轴检测的检测电压的波形,并输出变形波形; 控制部130,根据变形波形的电压值计算出浪涌电流的电流值,得到浪涌电流的计算结果; 和显示部分140.显示部分140以从外部可见的状态显示浪涌电流的计算结果。 版权所有(C)2012,JPO&INPIT
    • 5. 发明专利
    • Faulty insulator detecting method and its device
    • FAULTY绝缘子检测方法及其装置
    • JP2009070638A
    • 2009-04-02
    • JP2007236120
    • 2007-09-12
    • Sankosha CorpTokyo Densetsu Service Kk東京電設サービス株式会社株式会社サンコーシヤ
    • YOSHIDA TETSUJISANO KAZUNOBUTAKAHASHI YUICHIEBUCHI KENICHI
    • H01B17/00
    • PROBLEM TO BE SOLVED: To detect a faulty insulator by measuring a shared voltage of an insulator simply and accurately.
      SOLUTION: A faulty insulator detection device comprises an insulated hollow pipe 10, horns 13-1, 13-2 which are installed at the top end of the insulated hollow pipe 10 and measure potential differences at both ends of the insulator, sub-horns 14-1, 14-2 which are respectively provided in the vicinity of the horns 13-1, 13-2 and cancel potential differences which are generated between the horns 13-1, 13-2 and not necessary for measuring procedures for the measured potential, a pulse oscillation part 20, and signal processing output parts 25, 30, 40, 50. The pulse oscillation part 20 converts into a pulse signal the potential differences canceled of unnecessary potential differences and sends to the insulated hollow pipe 10. The signal processing output parts 25, 30, 40, 50 receive the pulse signal transmitted from the insulated hollow pipe 10 and calculate the shared voltage corresponding to the potential differences, and judge appropriateness of the shared voltage to output the judgement result.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:通过简单,准确地测量绝缘体的共用电压来检测故障绝缘体。 解决方案:故障绝缘子检测装置包括绝缘中空管10,喇叭13-1,13-2,其安装在绝缘中空管10的顶端并测量绝缘体两端的电位差 角14-1,14-2分别设置在喇叭13-1,13-2的附近,并消除在喇叭13-1,13-2之间产生的并且不需要测量程序的电位差 测量电位,脉冲振荡部分20和信号处理输出部分25,30,40,50.脉冲振荡部分20将消除不必要电位差的电位差转换为脉冲信号,并发送到绝缘中空管10。 信号处理输出部25,30,40,50接收从绝缘中空管10发送的脉冲信号,并计算与电位差对应的共享电压,判断共用电压的适当性以输出判断 地质结果。 版权所有(C)2009,JPO&INPIT
    • 6. 发明专利
    • Lightning surge detector, surge protection device and management system for surge protection device
    • 闪电探测器,防浪涌保护装置及防护装置管理系统
    • JP2013077483A
    • 2013-04-25
    • JP2011217334
    • 2011-09-30
    • Sankosha Corp株式会社サンコーシヤ
    • AZUMA SHUJITAKAHASHI YUICHIEBUCHI KENICHIKAWAHATA TAKESHI
    • H01T15/00H01T1/16H01T4/02
    • G01R31/1236H01C7/12H02H9/04
    • PROBLEM TO BE SOLVED: To accurately detect a lightning surge current through a lightning surge detector externally mounted to a surge detection device.SOLUTION: A lightning surge detector 1 comprises a first terminal part 3 connected to a ground side terminal part of a surge protection device, a second terminal part 4 to which a ground line is connected, a connecting bar 5 connecting the first terminal part 3 and the second terminal part 4, a detection coil 7 which is disposed in the vicinity of the connecting bar 5 and detects a lightning surge current flowing in the connecting bar 5, a waveform processing section which draws a voltage waveform of the detected lightning surge current and outputs a deformation processing waveform, an arithmetic control section which obtains a calculation result of the lightning surge current from a voltage value of the deformation processing waveform, and a display section 40 which displays the calculation result of the lightning surge current. These components are accommodated in a case 2 and unitized.
    • 要解决的问题:通过外部安装到浪涌检测装置的雷电浪涌检测器来精确检测雷电浪涌电流。 解决方案:雷电浪涌检测器1包括连接到浪涌保护装置的接地侧端子部分的第一端子部分3,连接接地线的第二端子部分4,连接第一端子 部分3和第二端子部分4,设置在连接杆5附近并检测在连接杆5中流动的雷电浪涌电流的检测线圈7,绘制检测到的闪电的电压波形的波形处理部 浪涌电流并输出变形处理波形,从变形处理波形的电压值获得雷击浪涌电流的计算结果的算术控制部分以及显示雷电浪涌电流的计算结果的显示部分40。 这些组件容纳在壳体2中并且被组合。 版权所有(C)2013,JPO&INPIT
    • 7. 发明专利
    • Electronic lock system
    • 电子锁系统
    • JP2005213994A
    • 2005-08-11
    • JP2004050421
    • 2004-01-28
    • Sankosha Corp株式会社サンコーシヤ
    • SERIKAWA YOSHIHIROTAKAHASHI YUICHIEBUCHI KENICHI
    • E05B49/00E05B47/00
    • PROBLEM TO BE SOLVED: To provide an inexpensive electronic lock system with an authenticating function for improved security and simplified structural members for allowing an easy change of an existing cylinder lock with a thumb-turn into an electronic lock without requiring expertise and capable of remote operation of locking/unlocking as necessary.
      SOLUTION: The electronic lock system comprises a motor gear device A having an attachment part to be attached to the thumb-turn and a motor, an external control terminal D for transmitting a manager code and a password, a light receiver C for receiving an external signal from the external control terminal D, and an electronic control device B for driving the motor of the motor gear device A after authenticating and determining a predetermined authentication manager code and a password compared with the manager code and the password from the external control terminal D.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:为了提供具有认证功能的便宜的电子锁定系统,用于改进的安全性和简化的结构构件,以允许将拇指转动的现有气缸锁容易地改变成电子锁,而不需要专门知识和能力 根据需要远程操作锁定/解锁。 解决方案:电子锁系统包括具有附接到拇指转弯的附件部分的马达齿轮装置A和电动机,用于传送管理者代码和密码的外部控制终端D,用于 从外部控制终端D接收外部信号,以及电子控制装置B,用于在与来自外部控制终端D的管理者代码和密码相比较后,认证并确定预定的认证管理器代码和密码之后驱动马达齿轮装置A的马达 控制终端D.版权所有(C)2005,JPO&NCIPI