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    • 1. 发明专利
    • Non-contact voltage/current probe device, and voltage/current measuring method using it
    • 非接触式电压/电流探头器件,以及使用它的电压/电流测量方法
    • JP2010008333A
    • 2010-01-14
    • JP2008170468
    • 2008-06-30
    • Nippon Telegr & Teleph Corp 日本電信電話株式会社
    • KOBAYASHI RYUICHITAJIMA KIMIHIRO
    • G01R15/18G01R15/06
    • PROBLEM TO BE SOLVED: To provide a non-contact voltage/current probe device for accurately measuring voltage and current in a cable. SOLUTION: This non-contact voltage/current probe device includes a toroidal coil 1A having a cylindrical inner core 1 and an inner conductor line 2 wound on the inner core 1, a cylindrical outer conductor 3, a first spacer 4 disposed inside the inner core 1, an electrode 5 for fixing that is disposed inside the first spacer, fixes the cable 7, and has conductivity, a second spacer 6 that is disposed between the inner core 1 and the outer conductor 3 and makes the distance between the inner core 1 and the outer conductor 3 constant, a terminal resistor 8 inserted between both ends of the inner conductor line 2, a metal storage box 10 having a connection terminal 9, a voltage detection circuit 11a for detecting potential difference of one end of the terminal resistor 8 to the earth, a voltage detection circuit 11b for detecting potential difference of the other end of the terminal resistor 8 to the earth, an adder 13a for measuring the sum of potential differences, and a subtractor 13b for measuring the difference between the potential differences. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供用于精确测量电缆中的电压和电流的非接触式电压/电流探针装置。 解决方案:该非接触式电压/电流探针装置包括环形线圈1A,其具有圆筒形内芯1和缠绕在内芯1上的内导体线2,圆柱形外导体3,设置在内芯1内的第一间隔件4 内芯1,设置在第一间隔件内部的用于固定的电极5固定电缆7并具有导电性;第二间隔件6,设置在内芯1和外导体3之间, 内芯1和外导体3恒定,插入在内导体线2的两端之间的端子电阻器8,具有连接端子9的金属储存箱10,用于检测电极的一端的电位差的电压检测电路11a 端子电阻器8连接到地线,用于检测端子电阻器8的另一端到地的电位差的电压检测电路11b,用于测量电位差的和的加法器13a和减法器13 b用于测量电位差之​​差。 版权所有(C)2010,JPO&INPIT
    • 2. 发明专利
    • Reinforcement diagnosing apparatus and method using the same
    • 加固诊断装置和使用该装置的方法
    • JP2008292203A
    • 2008-12-04
    • JP2007135754
    • 2007-05-22
    • Nippon Telegr & Teleph Corp 日本電信電話株式会社
    • KOBAYASHI RYUICHITAJIMA KIMIHIRO
    • G01N27/02G01N27/00
    • PROBLEM TO BE SOLVED: To provide a reinforcement diagnosing apparatus capable of visibly observing the state of reinforcements in reinforced concrete through the use of electrostatic coupling and accurately and easily diagnosing the state of the reinforcements and provide a reinforcement diagnosing method using the same.
      SOLUTION: The reinforcement diagnosing apparatus is provided with a signal generator 1 for applying a voltage to reinforcements 7 by generating high-frequency signals and electrostatic coupling with the reinforcements 7, a voltage applier 2 in contact with a wall surface 8 for generating electrostatic coupling with the reinforcements 7 connected to the signal generator 1 via a coupling cable 6, a voltage detector 4 to be in contact with the wall surface 8 for detecting a voltage generated in the reinforcements 7 by electrostatic coupling with the wall surface 8, a voltage measuring device 3 for receiving and measuring detection values detected by the voltage detector 4 via the coupling cable 6, and a display 5 for visibly displaying measurement results by the voltage measuring device 3.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种能够通过使用静电耦合可视地观察钢筋混凝土中的增强体的状态的加强诊断装置,并且能够准确且容易地诊断加强件的状态,并提供使用其的加强诊断方法 。 解决方案:加固诊断装置设置有信号发生器1,用于通过与加强件7产生高频信号和静电耦合来施加电压到加强件7,电压施加器2与壁表面8接触,用于产生 与通过耦合电缆6连接到信号发生器1的增强件7的静电耦合;与壁表面8接触的电压检测器4,用于通过与壁表面8静电耦合来检测在加强件7中产生的电压; 电压测量装置3,用于接收和测量由电压检测器4经由耦合电缆6检测的检测值;以及显示器5,用于通过电压测量装置3可见地显示测量结果。(C)2009年,JPO和INPIT
    • 3. 发明专利
    • Information leakage prevention apparatus
    • 信息泄漏防护装置
    • JP2008017312A
    • 2008-01-24
    • JP2006188200
    • 2006-07-07
    • Nippon Telegr & Teleph Corp 日本電信電話株式会社
    • MASUGI MASAOTAJIMA KIMIHIROTOMINAGA AKIYOSHIKAMIOKA HIROYUKISAO MASAHARU
    • H04K3/00
    • PROBLEM TO BE SOLVED: To prevent information from being leaked by reproducing an electromagnetic wave radiated from an information device.
      SOLUTION: An information leakage prevention apparatus includes a clock signal extraction section 11, an IF unit 111 and a main body unit 112, a clock signal generation section 12, a prevention signal generation section 13, a prevention signal generation circuit 131, an output amplifier unit 132 and a video information management unit 133, and a prevention signal output section 14. The clock signal extraction section 11 receives an RGB signal, a horizontal synchronizing signal and a vertical synchronizing signal and extracts a dot clock signal. The clock signal generation section 12 outputs a pseudo clock signal synchronized with the dot clock signal or a pseudo clock signal with a phase difference previously designated for the pseudo clock signal 1. Outputted is any one of an n-order differentiated signal of the pseudo clock signal, an N-fold cycle signal of the pseudo clock signal, a signal similar to a differentiated signal of the pseudo clock signal, and a signal changing an offset position in an amplitude direction of the N-fold cycle signal or a duty ratio decreased signal of the pseudo clock signal.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:通过再现从信息设备辐射的电磁波来防止信息泄漏。 解决方案:信息泄漏防止装置包括:时钟信号提取部11,IF部111以及主体部112,时钟信号生成部12,防止信号生成部13,防止信号生成电路131, 输出放大器单元132和视频信息管理单元133以及防止信号输出部分14.时钟信号提取部分11接收RGB信号,水平同步信号和垂直同步信号,并提取点时钟信号。 时钟信号生成部分12输出与点时钟信号同步的伪时钟信号或者对于伪时钟信号1预先指定的相位差的伪时钟信号。输出是伪时钟的n阶微分信号中的任何一个 信号,伪时钟信号的N倍周期信号,类似于伪时钟信号的微分信号的信号,以及改变N倍周期信号的幅度方向上的偏移位置或占空比的信号减小 伪时钟信号的信号。 版权所有(C)2008,JPO&INPIT
    • 4. 发明专利
    • Device and method for predicting number of lightning accident failures, program and recording medium
    • 用于预测闪电故障数量,程序和记录介质的设备和方法
    • JP2009015450A
    • 2009-01-22
    • JP2007174319
    • 2007-07-02
    • Nippon Telegr & Teleph Corp 日本電信電話株式会社
    • AOKI NOBUESUGANO SHINTAJIMA KIMIHIRO
    • G01W1/10G06Q50/00G06Q50/10
    • PROBLEM TO BE SOLVED: To improve the efficiency of a maintenance operation by predicting the occurrence of a lightning failure in an arbitrary period, and securing repair components or maintenance personnel according to the scale of the failure in the period. SOLUTION: The device includes: a failure number prediction part 2; a storage part 3; a prediction data output part 4; a lightning data input part 5; a service area information input part 6; lightning database 7; an equipment database 8; a building information input part 100; and a building information database 101. Information relating to lightning is acquired from the lightning database 7. Information relating to equipment is acquired from the equipment database 8. A failure number prediction part 1 assigns the information to a prediction formula: Nd2=B×k2×(Nt2×Ld2) x to calculate the predicted failure number. In the formula, Nd2 is lightning damage failure density; Nt2 is storage density; Ld2 is lightning density; k2 is regression coefficient; x is regression multiplier; and B is building coefficient. The value of x is set so as to be 0.5, 1 or any value which is larger than 0.3 and is smaller than 1 according to the equipment circumstances of a service area in which failure number prediction is carried out. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:通过预测任意期间的雷击的发生来提高维护操作的效率,并且根据该期间的故障的规模来确保维修部件或维护人员。 解决方案:该装置包括:故障数预测部分2; 存储部3; 预测数据输出部4; 闪电数据输入部分5; 服务区域信息输入部6; 闪电数据库7; 设备数据库8; 建筑物信息输入部100; 和建筑物信息数据库101.从闪电数据库7获取与闪电有关的信息。从设备数据库8获取与设备有关的信息。故障号预测部分1将该信息分配给预测公式:Nd2 = B×k2 ×(Nt2×Ld2) x 来计算预测的故障数。 在公式中,Nd2是雷击损伤破坏密度; Nt2是存储密度; Ld2是雷击密度; k2是回归系数; x是回归乘数; B是建筑系数。 根据执行故障数量预测的服务区域的设备情况,将x的值设定为0.5,1或大于0.3且小于1的任何值。 版权所有(C)2009,JPO&INPIT
    • 5. 发明专利
    • エリア消費電力可視化システム
    • 区域消耗可视化系统
    • JP2014203219A
    • 2014-10-27
    • JP2013078082
    • 2013-04-03
    • 日本電信電話株式会社Nippon Telegr & Teleph Corp
    • ENOMOTO HIROYUKISUGAWARA MASAHISAMATSUMOTO MORIHIKOTAJIMA KIMIHIRONAKAMURA JIRONAKAMURA MASAYUKI
    • G06Q50/06G06Q50/16H02J13/00
    • Y02B70/3275Y04S10/40Y04S10/54Y04S20/244
    • 【課題】想定し得るエリア等情報の変更などをユーザが自由に行え、またエリア等情報の変更に追従した設定情報を自動生成する機能を具備する。【解決手段】各エリアの消費電力量を算出するエリア消費電力可視化システムであって、前記エリアの区画および機器の場所が表示される画面データを生成する生成部と、前記画面データ上で前記エリアの区画を変更し、前記機器の移動を特定する要求を受付ける受付部と、前記エリアごとに設置された機器の第1の電力量と、前記複数のエリアにまたがって設置された機器の消費電力量をエリアごとに按分した第2の電力量とから算出されたエリアごとの消費電力量を記憶部から抽出し、前記要求に基づいて、前記第1および第2の電力量を変更し、エリアごとの消費電力量を計算する処理部と、前記第1の要求に基づいたエリアの区画の変更と、前記計算されたエリアごとの消費電力量とを前記画面データに反映させる表示部とを備えた。【選択図】図1
    • 要解决的问题:具有允许用户自由地执行区域信息等的可变更改的功能,并且随着区域信息的改变等自动生成设置信息。解决方案:一种区域功耗可视化系统,用于 计算每个区域的功耗包括:生成单元,用于生成屏幕数据,其中显示设备的区域和位置的部分; 接收单元,用于改变屏幕数据中的区域的各部分,并接收指定设备移动的请求; 一个处理单元,用于提取从安装在每个区域中的装置的第一电力量计算出的每个区域的功耗,以及通过比较地将安装在每个区域的多个区域上的装置的功率消耗 存储单元,基于所述请求改变所述第一和第二功率量,并计算每个区域的功耗; 以及显示单元,用于将每个区域的基于第一请求的区域的部分和所计算的功耗反映到屏幕数据。
    • 6. 发明专利
    • Device and method for detecting radio wave
    • 用于检测无线电波的装置和方法
    • JP2010054339A
    • 2010-03-11
    • JP2008219598
    • 2008-08-28
    • Nippon Telegr & Teleph Corp 日本電信電話株式会社
    • HIRASAWA NORIHITOTAJIMA KIMIHIROSUZUKI YASUNAO
    • G01R29/08G08B21/18
    • PROBLEM TO BE SOLVED: To provide a device and method for detecting a radio wave capable of quantitatively determining a sensitivity level.
      SOLUTION: A sensitivity level determination section 14 calculates electric field strength distribution of a room to a frequency to be detected by a numerical calculation method for performing a prescribed electromagnetic analysis, calculates a place rate where a region having prescribed electric field strength occupies to the size of the room for each electric field strength included in the electric field strength distribution, and determines the electric field strength corresponding to the cover rate as a sensitivity level.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种用于检测能够定量地确定灵敏度水平的无线电波的装置和方法。 解决方案:灵敏度等级确定部分14通过用于执行规定的电磁分析的数值计算方法来计算房间的电场强度分布与要检测的频率的电场强度分布,计算具有规定的电场强度的区域的位置率 对于包括在电场强度分布中的每个电场强度的室的尺寸,并且将与覆盖率相对应的电场强度确定为灵敏度级别。 版权所有(C)2010,JPO&INPIT
    • 8. 发明专利
    • Coupling/decoupling device
    • 联接/解除装置
    • JP2008206315A
    • 2008-09-04
    • JP2007039933
    • 2007-02-20
    • Nippon Telegr & Teleph Corp 日本電信電話株式会社
    • KONO HIDEHIROTAJIMA KIMIHIRO
    • H02H9/02H04M1/24
    • PROBLEM TO BE SOLVED: To provide a coupling/decoupling device that enhances a resonance frequency while preventing a lightning-surge overvoltage, applied to a device to be tested, from being applied to a counter device being communication equipment such as IT equipment not as a test target. SOLUTION: The coupling/decoupling device is provided with a common mode choke coil 310 composed by serially connecting a plurality of air-cored cylindrical coils (3061-3091) for allowing an xDSL communication signal to pass therethrough. Capacitance occurring between windings is maximally suppressed so as to improve a resonance frequency. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种耦合/去耦装置,其增强谐振频率,同时防止施加到要测试的装置的雷电浪涌过电压被应用于作为诸如IT设备的通信设备的计数器装置 不作为测试目标。 耦合/去耦装置具有共模扼流线圈310,该共模扼流线圈310通过串联连接多个空心圆柱形线圈(3061-3091),以允许xDSL通信信号通过。 发生在绕组之间的电容被最大程度地抑制,以提高共振频率。 版权所有(C)2008,JPO&INPIT
    • 9. 发明专利
    • Decoupling circuit
    • 解除电路
    • JP2009128304A
    • 2009-06-11
    • JP2007306152
    • 2007-11-27
    • Nippon Telegr & Teleph Corp 日本電信電話株式会社
    • KONO HIDEHIROKOBAYASHI RYUICHITAJIMA KIMIHIRO
    • G01R29/08H04M1/24
    • PROBLEM TO BE SOLVED: To provide a decoupling circuit capable of preventing degradation of the throughput of xDSL signals, transmitted between a test object device and an oppositei-side device in a lightning surge test of IT equipment for xDSL.
      SOLUTION: A balanced cable 900, wound around the outer periphery of a bobbin of a common mode choke coil constituting the decoupling circuit, has one paired strand electric wire 90a made by pair-stranding two electric wires W1, W2 coated with an insulating material 9a, and one paired strand electric wire 90b made by pair-stranding two electric wires W3, W4 coated with the insulating material 9a. The insulating material 900a is coated concentrically on a single strand of multiple paired stranded electric wire 90, made by pair-stranding two paired of stranded electric wires 90a, 90b.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种能够防止在xDSL的IT设备的雷电浪涌测试中在测试对象设备和对方设备之间传输的xDSL信号的吞吐量的降低的解耦电路。 解决方案:围绕构成去耦电路的共模扼流线圈的绕线管的外周缠绕的平衡电缆900具有一对成对绞线电线90a,其通过将两根电线W1, 绝缘材料9a和通过对绞合分别涂覆有绝缘材料9a的两个电线W3,W4制成的一对绞线电线90b。 绝缘材料900a被同心地涂覆在通过绞合两条绞合的电线90a,90b而制成的多条成对绞线90的单股上。 版权所有(C)2009,JPO&INPIT
    • 10. 发明专利
    • Noncontact-type voltage and current probe device
    • 非接触型电压和电流探头器件
    • JP2009103608A
    • 2009-05-14
    • JP2007276348
    • 2007-10-24
    • Nippon Telegr & Teleph Corp 日本電信電話株式会社
    • KOBAYASHI RYUICHITAJIMA KIMIHIRO
    • G01R15/18G01R15/06
    • PROBLEM TO BE SOLVED: To provide a noncontact-type voltage and current probe device for voltage in a cable and the current which flows in the cable. SOLUTION: This noncontact-type voltage and current probe device includes a toroidal coil 1A, having a cylindrical inner core 1 formed in its inside with a space through which the cable 6 is penetrated, and an internal conductor line 2 wound around the inner core 1; a cylindrical outer conductor 3; formed in its inside with a space through which the cable 6 is penetrated, and in which the toroidal coil 1A is arranged; a terminal-end resistance 8 inserted between one end and the other end of the inner conductor line 2; a metal storage box 10, provided with a connection terminal 9 that is a means for connecting the outer conductor 3 to the ground; a voltage-detecting circuit 11a for detecting the potential difference in one end of the terminal end resistance 8, with respect to the ground; a voltage-detecting circuit 11b for detecting the potential difference at the other end of the terminal end resistance 8, with respect to the ground, an adder 13a for measuring the sum of the detected fellow potential differences; and a subtracter 13b for measuring the differences among the potential differences themselves detected. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:为电缆中的电压提供非接触式电压和电流探针装置以及在电缆中流动的电流。 解决方案:该非接触型电压和电流探针装置包括环形线圈1A,其具有在其内部形成有圆柱形内芯1,其中电缆6穿过该空间,并且内部导线2围绕 内芯1; 圆柱形外导体3; 在其内部形成有电缆6穿过的空间,并且其中布置有环形线圈1A; 插入在内导体线2的一端与另一端之间的终端电阻8; 金属储存箱10,设有连接端子9,连接端子9是用于将外部导体3连接到地面的装置; 用于检测终端电阻8的一端的电位差相对于地的电压检测电路11a; 用于检测终端电阻8的另一端的电位差相对于地的电压检测电路11b,用于测量检测到的同侧电位差之和的加法器13a; 以及用于测量所检测的电位差本身之间的差异的减法器13b。 版权所有(C)2009,JPO&INPIT