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    • 1. 发明授权
    • Method and structure for laying communication cable in underground line, and members used for laying
    • 地下线铺设通讯电缆的方法和结构,以及用于敷设的构件
    • US07179019B2
    • 2007-02-20
    • US10110001
    • 2001-08-07
    • Ichiro SetoFumiaki TsuchiyaIsaburo YagiKatsuhiko AzumaNobuyasu KishibeKoji AsoYasuhiro Ueda
    • Ichiro SetoFumiaki TsuchiyaIsaburo YagiKatsuhiko AzumaNobuyasu KishibeKoji AsoYasuhiro Ueda
    • F16L7/00F16L3/04
    • H02G1/06G02B6/502G02B6/508H02G1/08H02G9/06
    • A laying method for laying communication cables (16) is provided which allows to lay optical fiber cables (20) in an underground pipeline such as a sewage pipe neither placing direct tension nor allowing slack on them, and for a main pipe in which a plurality of optical fiber cables (20) are to be laid, the method also allows to lay optical fiber cables (20) in the upper space of inside the pipeline and to obviate the need of an expensive robot for the laying operation. In the proposed laying method, a high-strength low-elongation tension member is disposed to be slidable in the lengthwise direction along each optical fiber cable (20, 21, 22), and the tension members (25, 26, 27) are drawn into the underground pipeline (1) to tension the trunk tension member (25) thereby stretching the trunk tension member (25) substantially straight in the underground pipeline (1), and thus the optical fiber cables (20, 21, 22) are laid in the upper space of inside the underground pipeline (1). Also the branch tension member (26, 27) is tensioned in the branch pipe (4, 5) to lay the optical fiber cables (21, 22) in the branch pipe without allowing slack.
    • 提供一种用于铺设通信电缆(16)的铺设方法,其可以将光纤电缆(20)放置在诸如污水管的地下管线中,既不施加直接张力也不允许松弛,并且对于主管,其中多个 要铺设光纤电缆(20),该方法还允许将光纤电缆(20)放置在管道内部的上部空间中,并且不需要用于铺设操作的昂贵的机器人。 在所提出的铺设方法中,高强度低伸长张力构件设置成沿着每根光纤缆线(20,21,22)在长度方向上滑动,并且拉伸构件(25,26,27)被拉伸 进入地下管线(1)以张紧躯干张力构件(25),从而在地下管线(1)中基本上直线地拉伸躯干张紧构件(25),从而铺设光纤电缆(20,21,22) 在地下管线(1)内的上部空间。 此外,分支张紧构件(26,27)在分支管(4,5)中张紧,以将光纤电缆(21,22)布置在分支管中,而不会松弛。
    • 5. 发明申请
    • STATOR OF ROTATING ELECTRIC MACHINE AND WINDING METHOD THEREFOR
    • 旋转电机定子及其绕线方法
    • US20130300247A1
    • 2013-11-14
    • US13981016
    • 2011-02-14
    • Fumiaki TsuchiyaAkira WataraiDaisuke Shijyo
    • Fumiaki TsuchiyaAkira WataraiDaisuke Shijyo
    • H02K3/12H02K15/095
    • H02K3/12H02K3/18H02K15/095
    • A stator of a rotating electric machine includes: a plurality of teeth having a same shape are arranged in a radial direction toward a rotary shaft core with base ends thereof being coupled to a core back in a ring shape; a slot formed between the adjacent teeth; a flange portion formed projecting to opposite sides of apical ends of the teeth; a slot inlet formed between the adjacent flange portions; a winding area formed around each teeth; and a wire wound via an insulator having a same shape in each winding area. A first wire is wound around first teeth provided alternately, and a second wire is wound around second teeth put between the first teeth, and the first wire and the second wire are wound in a different shape in a sectional shape of opposing portions.
    • 旋转电机的定子包括:具有相同形状的多个齿沿着径向方向布置成朝向旋转轴芯,其基端以环形耦合到芯背; 形成在相邻齿之间的槽; 形成为突出于所述齿的顶端的相对侧的凸缘部; 在相邻的凸缘部分之间形成的狭槽入口; 围绕每个牙齿形成的缠绕区域; 以及在每个绕组区域中通过具有相同形状的绝缘体缠绕的电线。 第一线缠绕在交替设置的第一齿上,并且第二线缠绕在放置在第一齿之间的第二齿上,并且第一线和第二线被缠绕成相对部分的截面形状的不同形状。
    • 6. 发明授权
    • Composite particles for electrochemical element electrode
    • 电化学元件电极用复合颗粒
    • US08182944B2
    • 2012-05-22
    • US11919347
    • 2006-04-26
    • Fumiaki TsuchiyaMayumi Fukumine
    • Fumiaki TsuchiyaMayumi Fukumine
    • H01M4/13
    • H01M10/0525H01G11/38H01G11/42H01M4/02H01M4/04H01M4/13H01M4/139H01M4/364H01M4/621H01M4/624H01M2004/021Y02E60/13Y02T10/7011Y02T10/7022Y10T29/49108
    • The present invention provides a method of producing composite particle for high density electrochemical element electrodes in electrochemical elements having low internal resistance and high capacitance.Slurry containing an electric conductive material and a binder is obtained, and the slurry is sprayed to a fluidized electrode active material to carry out fluidized-granulation, and further particles obtained by the fluidized-granulation are rolling-fluidized granulated, and thereby, composite particle for electrochemical element electrode, containing electrode active materials, electric conductive materials, and binders, and being structured of an outer layer portion (outer shell portion) and an inner layer portion (core portion), where the outer shell portion and the core portion are made by bonding the electrode active material and the electric conductive material by the binder, and the weight average particle diameter of the electrode active material and the electric conductive material which form the outer shell portion is smaller than the weight average particle diameter of the electrode active material and the electric conductive material which form the core portion are obtained.
    • 本发明提供一种生产高密度电化学元件电极的复合颗粒的方法,所述电化学元件具有低内阻和高电容。 得到含有导电性材料和粘合剂的浆料,将该浆料喷射到流化电极活性物质进行流化造粒,通过流化造粒得到的其他粒子进行轧制流化造粒,由此形成复合粒子 用于电化学元件电极,含有电极活性材料,导电材料和粘合剂,并且由外层部分(外壳部分)和内层部分(芯部分)构成,其中外壳部分和芯部分是 通过粘合剂粘合电极活性材料和导电材料而制成,并且形成外壳部分的电极活性材料和导电材料的重均粒径小于电极活性物质的重均粒径 获得形成芯部的材料和导电材料 d。
    • 8. 发明申请
    • Break-in detection sensor
    • 插入式检测传感器
    • US20060197665A1
    • 2006-09-07
    • US11336962
    • 2006-01-23
    • Norihiko ShibataFumiaki TsuchiyaToshihiro NozawaShinya Ishi
    • Norihiko ShibataFumiaki TsuchiyaToshihiro NozawaShinya Ishi
    • G08B13/18H04B10/08H04B10/12G08B13/00G08B23/00
    • G08B13/124G08B13/186
    • Intrusion by climbing or jumping over a fence can be detected, and intrusion is detected in a wide area without large-scale equipment. FGBs (grating sections) of different types having different refractive indexes of fiber glass are arranged at predetermined intervals in a longitudinal direction of optical fibers 12, 13A, and 13B, the optical fibers are laid down between poles on the top of a fence or a side thereof, reflected waves from the FBGs are issued by photodetection devices 14, 15A, and 15B in response to an optical input to the optical fibers, and a wavelength shift detection device 16 detects a position of an FBG which exhibits a wavelength shift by swinging of the optical fibers by a stress acting on the fence. A pattern recognition device 19 fetches positions of the wavelength-shifted FBGs as differences between timings of the pulse signals and discriminates swinging of the fence caused by intrusion from swinging of the fence caused by other factors on the basis of output patterns of the pulse signals.
    • 可以检测到爬坡或跳过围栏的入侵,并且在没有大型设备的情况下在广泛的区域内检测入侵。 纤维玻璃的折射率不同的不同类型的FGB(光栅部分)沿光纤12,13A和13B的长度方向以预定的间隔布置,光纤被放置在栅栏顶部的两极之间 或其一侧,响应于对光纤的光输入,由光电检测装置14,15A和15B发出来自FBG的反射波,波长偏移检测装置16检测FBG的位置, 通过作用在栅栏上的应力使光纤摆动而波长偏移。 图案识别装置19将波长偏移的FBG的位置作为脉冲信号的定时之间的差异,基于脉冲信号的输出图案,鉴别由其他因素引起的栅栏摆动而引起的栅栏的摆动。
    • 9. 发明授权
    • Break-in detection system
    • 入侵检测系统
    • US07068166B2
    • 2006-06-27
    • US10856828
    • 2004-06-01
    • Norihiko ShibataFumiaki TsuchiyaToshihiro NozawaShinya Ishi
    • Norihiko ShibataFumiaki TsuchiyaToshihiro NozawaShinya Ishi
    • G08B13/00
    • G08B13/124G08B13/186G08B13/19656G08B13/19697
    • A break-in detection system includes a detection sensor of an FBG type for detecting an intruder trying to climb over a fence around a premises, and a detection sensor of an OTDR type for detecting an intruder trying to demolish the fence. A fiber optic cable used as a detection sensor has a sensor core wire and a LAN transmission core wire arranged in parallel to form a LAN transmission channel. The LAN transmission core wire transmits videotaped image signals from ITV cameras and image control signals two ways between a monitoring room and an ITV control device. The LAN transmission channel is available for connection by IP telephone sets, a LAN terminal, a wireless LAN terminal, and an IP-BOX for internet communication. The system has excellent reliability and maintenance-free characteristics.
    • 一种入侵检测系统包括:FBG型检测传感器,用于检测试图爬过房屋周围的围栏的入侵者;以及OTDR型的检测传感器,用于检测试图拆除护栏的入侵者。 用作检测传感器的光缆具有并联布置的传感器芯线和LAN传输芯线,以形成LAN传输通道。 LAN传输核心线在监控室和ITV控制设备之间以两路方式从ITV摄像机和图像控制信号传输录像图像信号。 LAN传输通道可用于通过IP电话机,LAN终端,无线LAN终端和用于互联网通信的IP-BOX连接。 该系统具有优异的可靠性和免维护特性。