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    • 4. 发明授权
    • Control of water discharge system by reflected wave detection threshold(s)
    • 通过反射波检测阈值控制排水系统
    • US08612057B2
    • 2013-12-17
    • US12809251
    • 2008-12-17
    • Kensuke MurataMasayuki NagaishiKatsuhisa TsuchiyaShoichi TsuikiMasami TsujitaHiroshi Tsuboi
    • Kensuke MurataMasayuki NagaishiKatsuhisa TsuchiyaShoichi TsuikiMasami TsujitaHiroshi Tsuboi
    • G05D7/00E03C1/05F16K31/02
    • E03C1/05E03C1/057G01S7/415G01S13/50G01S13/88Y10T137/8158
    • A water discharge system capable of preventing a mistaken detection to surely perform the stop of water discharge or continue the start of water discharge is provided. The water discharge system includes: a water discharge unit; a sensor unit configured to obtain information about an object to be detected through a reflected wave of a radiated radio wave; a control unit configured to control the start of water discharge from the water discharge unit based on a detective signal from the sensor unit; and a storage mechanics. The sensor unit is installed so that at least part of a radiated radio wave comes into contact with a discharged water flow discharged from the water discharge unit and receives the reflected wave reflected by the discharged water flow, and the control unit determines a state of the discharged water flow by checking a relationship between a first threshold set larger than amplitude of oscillation around a reference value of the detective signal in a water flow state in which only the start of water discharge from the water discharge unit is performed and amplitude of the detective signal received by the sensor unit.
    • 提供了能够防止错误检测以确定地执行排水停止或继续开始排水的排水系统。 排水系统包括:排水单元; 传感器单元,被配置为通过辐射无线电波的反射波获得关于要检测的对象的信息; 控制单元,被配置为基于来自所述传感器单元的检测信号来控制从所述排水单元开始排水; 和存储机制。 传感器单元被安装成使得辐射无线电波的至少一部分与从排水单元排出的排出水流接触并接收由排出水流反射的反射波,并且控制单元确定 通过检查在仅执行来自排水单元的排水开始的水流状态下的检测信号的基准值周围的振荡振幅周围的第一阈值与检测器的振幅之间的关系, 信号由传感器单元接收。
    • 6. 发明授权
    • Mold for drum-shaped magnetic core
    • 鼓形磁芯模具
    • US6113378A
    • 2000-09-05
    • US862703
    • 1997-05-23
    • Hiroshi TsuboiToshinori OkamotoKunio Kojima
    • Hiroshi TsuboiToshinori OkamotoKunio Kojima
    • B30B11/02B30B11/04B29C43/02
    • B30B11/04B30B11/027
    • A mold for molding a drum shaped magnetic core having two flanges connected by a coil winding core portion. The mold includes a die defining a cylindrical cavity having an inner diameter substantially equal to an outer diameter of the flanges. A pair of die inserts are movable in an orthogonal direction relative to the cylindrical cavity and define a diameter of the coil winding core portion of the drum shaped magnetic core. The diameter of the coil winding core portion is smaller than the outer diameter of the flanges. An upper punch and a lower punch are inserted into the cylindrical cavity from a corresponding end opening of the mold such that each forms a flange. A central punch is disposed coaxially within one of the punches to form the coil winding core portion.
    • 一种用于模制鼓形磁芯的模具,其具有通过线圈绕组芯部分连接的两个凸缘。 模具包括限定具有基本上等于凸缘的外径的内径的圆柱形腔的模具。 一对模插件可以相对于圆柱形空腔在正交方向上移动,并且限定鼓形磁芯的线圈绕组芯部分的直径。 线圈绕芯部分的直径小于凸缘的外径。 上冲头和下冲头从模具的对应的端部开口插入到圆柱形腔中,使得每个形成凸缘。 中心冲头同轴地布置在一个冲头内以形成线圈卷绕芯部分。
    • 7. 发明授权
    • Apparatus for sampling urine
    • 尿液取样装置
    • US5625911A
    • 1997-05-06
    • US537760
    • 1996-01-19
    • Chiaki NakayamaKuniaki ShinoharaNaoki SatoHiroshi Tsuboi
    • Chiaki NakayamaKuniaki ShinoharaNaoki SatoHiroshi Tsuboi
    • A47K13/00A61B10/00E03D9/00G01N1/10G01N33/483G01N33/493E03D11/00A61B5/00
    • G01N33/493A61B10/007
    • A method and an apparatus (30) for sampling urine at a toilet (10) equipped with a standard water closet bowl fixture (12). An elongated, curved, urine sampling trough (32) having a U-shaped cross-section is used. For sampling of urine, the sampling trough (32) is positioned in the vertical central plane (46) of the toilet bowl fixture in such a manner that it extends obliquely between the upper front region and the bottom region of the inner space of the bowl (14). As the urine sampling trough (32) covers a substantial length in the vertical direction as well as in the fore-and-aft direction, the urine column hits on the sampling trough even when the trajectory of urine column is fluctuated in the vertical or fore-and-aft direction, whereby urine is effectively sampled. As the urine sampling trough is elongated and curved, it can be readily stored under the toilet seat when not in use.
    • PCT No.PCT / JP95 / 00259 Sec。 371日期1996年1月19日 102(e)日期1996年1月19日PCT提交1995年2月23日PCT公布。 公开号WO95 / 23337 日期1995年8月31日一种用于在配备有标准洗手间碗具(12)的马桶(10)上抽尿的方法和装置(30)。 使用具有U形横截面的细长弯曲的尿液采样槽(32)。 为了取样尿液,采样槽(32)以这样的方式定位在马桶装置的垂直中心平面(46)中,使其在碗的内部空间的上部前部区域和底部区域之间倾斜地延伸 (14)。 当尿液采样槽(32)在垂直方向和前后方向上覆盖相当长的长度时,即使当尿液柱的轨迹在垂直或前方波动时,尿液塔也会在取样槽上撞击 后方向,从而有效地抽取尿液。 当尿液采样槽细长且弯曲时,可以在不使用时容易地储存在马桶座下。