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    • 1. 发明专利
    • Laser shape recognition sensor and measuring device
    • 激光形状识别传感器和测量装置
    • JP2011191253A
    • 2011-09-29
    • JP2010059353
    • 2010-03-16
    • Sanpa Kogyo Kk三波工業株式会社
    • KODAMA HIROTAKAYAMAGUCHI NAOHISA
    • G01B11/24G01B11/245
    • PROBLEM TO BE SOLVED: To make a camera not to receive reflection light on an object rearward from a measuring object.
      SOLUTION: A laser shape recognition sensor irradiates the measuring object 1 with linear laser light 5a to image a shape by receiving the reflection light on the measuring object 1 by the camera 4. The laser shape recognition sensor has a laser light source 5 for irradiating the measuring object 1 with the laser light 5a in a fan shape, and the camera 4 for receiving an image of the reflection light on the measuring object 1 of the laser light 5a irradiated from the laser light source 5 through a filter 6 passing only a wavelength to be extracted. The laser shape recognition sensor covers an irradiation range 5b of the laser light 5a of the laser light source 5 with a viewing field 4a of an element row direction of the camera 4, and assembles the camera 4 in the same casing 7 by being inclined at an angle θ for an optical axis of the laser light 5a so that a detection range 4b of a height direction of the camera 4 is not covered rearward from the measuring object 1. The invention accurately stably measures the shape.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:使相机不会从测量对象向后接收物体上的反射光。 解决方案:激光形状识别传感器通过摄像机4接收测量对象1上的反射光,将测量对象1照射线性激光5a以对形状进行成像。激光形状识别传感器具有激光光源5 用于以扇形对激光5a照射测量对象1,以及照相机4,用于通过过滤器6从激光光源5照射的激光5a的测量对象1上接收反射光的图像 只有要提取的波长。 激光形状识别传感器利用摄像机4的元件行方向的视野4a覆盖激光光源5的激光5a的照射范围5b,并且通过倾斜在相同的壳体7中将照相机4组装在 激光5a的光轴的角度θ,使得相机4的高度方向的检测范围4b没有从测量对象1向后方覆盖。本发明精确地稳定地测量形状。 版权所有(C)2011,JPO&INPIT
    • 2. 发明专利
    • Antenna matching system
    • 天线匹配系统
    • JP2008147929A
    • 2008-06-26
    • JP2006331943
    • 2006-12-08
    • Sanpa Kogyo Kk三波工業株式会社
    • MIWA HISASHIARAKI HIDEJI
    • H04B1/44H01Q1/44
    • PROBLEM TO BE SOLVED: To improve antenna radiation efficiency by speedily constituting an optimal matching circuit.
      SOLUTION: A first matching unit 3A and a second matching unit 3B are connected in series in the middle between a shortwave transmitter/receiver 1 and an antenna 2, and the first matching circuit 3A is provided with detectors 31, 32, and 33 for a traveling wave/a reflected wave, load resistance, and a phase, and variation portions 34, 35, and 36 for parallel inductance, series inductance, and parallel capacitance, respectively, which are connected to a CPU 37 to obtain optimal antenna states for both transmission and reception.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:通过快速构成最优匹配电路来提高天线辐射效率。 解决方案:第一匹配单元3A和第二匹配单元3B在短波发射器/接收器1和天线2之间的中间串联连接,并且第一匹配电路3A设置有检测器31,32和 33,用于行波/反射波,负载电阻和相位,以及用于并联电感,串联电感和并联电容的变化部分34,35和36,其分别连接到CPU 37以获得最佳天线 发送和接收的状态。 版权所有(C)2008,JPO&INPIT
    • 5. 发明专利
    • DEVICE FOR MEASURING PROFILE OF INNER SURFACE OF TAPPING TROUGH IN BLAST FURNACE
    • JPH06200309A
    • 1994-07-19
    • JP35864292
    • 1992-12-28
    • NIPPON STEEL CORPSANPA KOGYO KK
    • TANAKA HIROYUKIFUJIKAKE YOUICHIKIZAWA MITSURU
    • C21B7/24C23C14/34
    • PURPOSE:To enable the measuring of erasion shape of the inner surface of a trough with sufficient precision and resolution power without any dead zone by lifting and shifting a sensor while measuring the distance between the reference point and the inner wall surface of the trough with a triangulation system laser beam range finder. CONSTITUTION:The triangulation system laser beam range finder 1, 2 is incorporated into a protecting box 4 applied with cooling means and inserted into the bottom part of an iron tapping trough. The side surface of the trough is irradiated with the laser beam at the angle near the horizontal line and the dead zone which is impossible to measure in the side surface of the trough, is eliminated. The shift in the vertical direction of the range finder 1, 2 is executed by the driving of a rotary encorder, and the width of the inner surface of the trough is calculated by the measured value of the distance between the laser beam range finder 1, 2 and the inner surface of the trough, and the setting value of the irradiating angle of the laser beam to the inner surface of the trough. Further, the whole device containing the laser beam range finder 1, 2 is shifted in the longitudinal direction of the trough, the cross-sectional profile is measured all over the length of the trough.
    • 7. 发明专利
    • Method and device for checking core wire connection of multi-core cable
    • 用于检查多芯电缆的核心线连接的方法和装置
    • JP2013191335A
    • 2013-09-26
    • JP2012055264
    • 2012-03-13
    • Sanpa Kogyo Kk三波工業株式会社
    • MAEDA KAZUFUMISUGA KENTARO
    • H01R43/00
    • PROBLEM TO BE SOLVED: To enable confirmation work without distributing personnel on the equipment body side, at the necessity of confirming the core wire connection of an intermediate cable before electric conduction, in such a case that the equipment body is remote from an operation room.SOLUTION: Relay interfaces RI1, RI2 are connected to the plugs at of both ends of an intermediate cable CC. The line of each core wire is divided into four, i.e. A, B, C and D. Two wires A, B are connected to a communication line, whereas two wires C, D are connected to a measurement circuit. By switching a relay of each line on and off by personal computers PC1, PC2, conduction check and insulation check are performed for each core wire.
    • 要解决的问题:为了在设备主体侧不分配人员的情况下进行确认工作,在设备主体远离操作室的情况下,需要确认中间电缆在导电之前的芯线连接。 解决方案:继电器接口RI1,RI2连接到中间电缆CC两端的插头。 每根芯线的线分成四个,即A,B,C和D.两条线A,B连接到通信线路,而两条线C,D连接到测量电路。 通过个人计算机PC1,PC2对每行的继电器进行开关切换,对每根芯线执行导通检查和绝缘检查。