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    • 1. 发明申请
    • WATERPROOF STRUCTURE OF ELECTRONIC UNIT
    • 电子单元防水结构
    • US20120236479A1
    • 2012-09-20
    • US13418816
    • 2012-03-13
    • Toshio TAMAITakahiro SANADA
    • Toshio TAMAITakahiro SANADA
    • H05K5/02
    • H01R13/5812B62D5/0406H01R13/5216H01R13/5227H01R13/5816H02G15/013H05K5/0069H05K5/064H05K5/069
    • A waterproof structure of an electronic unit includes a case that defines a housing portion housing a first terminal, and a connector that includes an insulating body attached to the case. The connector includes a second terminal that is supported by the insulating body and connects a conductor end portion of a cable to the first terminal. The insulating body includes a wall portion that partitions a part of the housing portion by covering an open portion of the case. The insulating body includes a cable lead-in portion that defines a cable lead-in hole for leading the cable into the case and is joined to the wall portion. A potting resin is filled in a space between the inner periphery of the cable lead-in hole and the outer periphery of the cable and the housing portion and cured.
    • 电子单元的防水结构包括限定容纳第一端子的壳体部分的壳体和包括附接到壳体的绝缘体的连接器。 连接器包括由绝缘体支撑并将电缆的导体端部连接到第一端子的第二端子。 绝缘体包括壁部,其通过覆盖壳体的开口部来分隔壳体部分的一部分。 绝缘体包括电缆引入部分,其限定用于将电缆引导到壳体中并连接到壁部分的电缆引入孔。 灌封树脂填充在电缆引入孔的内周与电缆的外周和壳体部分之间的空间中并固化。
    • 4. 发明申请
    • TORQUE-INDEX SENSOR
    • 扭矩指数传感器
    • US20100242627A1
    • 2010-09-30
    • US12750082
    • 2010-03-30
    • Ken OKUYAMAYukio IKEDAYukitoshi TERASAKATakahiro SANADA
    • Ken OKUYAMAYukio IKEDAYukitoshi TERASAKATakahiro SANADA
    • G01L3/10
    • G01D15/00G01D1/00G01L3/104G01L5/221
    • A torque-index sensor having index sensor and torque sensor closely arranged and integrated therein with lightened interference between them is provided. The invented torque-index sensor is comprised of torque sensor that includes first magnetic sensor arranged beside first annular-shaped magnet and index sensor that includes second magnet arranged beside annular-shaped encoder and second magnetic sensor that are arranged being in-line on common axis; and means for varying magnetic flux, which changes direction of magnetic flux that is generated from second magnet toward first magnetic sensor, positioned between first magnetic sensor in torque sensor and second magnet in index sensor.
    • 提供一种转矩指数传感器,其具有紧密排列和集成在其中的折射率传感器和扭矩传感器,其间具有减轻的干涉。 本发明的转矩传感器包括转矩传感器,转矩传感器包括布置在第一环形磁体旁边的第一磁传感器和索引传感器,该传感器包括布置在环形编码器旁边的第二磁体和第二磁传感器, ; 以及用于改变磁通量的装置,其改变位于扭矩传感器中的第一磁传感器和索引传感器中的第二磁体之间的从第二磁体产生的磁通量的方向朝向第一磁传感器。
    • 5. 发明申请
    • TORQUE AND INDEX DETECTION APPARATUS
    • 扭矩和指标检测装置
    • US20120060628A1
    • 2012-03-15
    • US13231127
    • 2011-09-13
    • Takahiro SANADAKen OKUYAMAYukio IKEDAYukitoshi TERASAKA
    • Takahiro SANADAKen OKUYAMAYukio IKEDAYukitoshi TERASAKA
    • G01L3/10
    • G01L5/221B62D6/10B62D15/0215B62D15/0245G01L3/104
    • A torque and index detection apparatus includes a torque sensing section that senses torque exerted on a connecting shaft connecting a first and second shafts by a pair of magnetic sensing elements whose magnetic sensing directions are opposite, and a reference rotational position sensing section that senses a reference rotational position of the second shaft by the magnetic sensing elements. The reference rotational position sensing section includes a pair of magnets provided in the circumferential direction of the second shaft with like magnetic poles facing each other, a first magnetic part that is located between the magnets and the magnetic sensing elements, rotates integrally with the second shaft, and forms a magnetic path for magnetic flux of the magnets in the reference rotational position, and a second magnetic part that is provided between the magnetic sensing elements, and passes the magnetic flux from the first magnetic part uniformly to the magnetic sensing elements.
    • 转矩和转向检测装置包括转矩感测部,其感测通过一对磁感应方向相反的磁感应元件连接第一和第二轴的连接轴施加的扭矩,以及感测参考的基准旋转位置感测部 第二轴由磁感测元件的旋转位置。 参考旋转位置检测部分包括在第二轴的周向设置的一对磁体,其具有彼此面对的相同的磁极,位于磁体和磁感测元件之间的第一磁性部件与第二轴线一体地旋转 并且形成用于参考旋转位置中的磁体的磁通的磁路,以及设置在磁感测元件之间的第二磁性部分,并且将来自第一磁性部分的磁通量均匀地传递到磁感测元件。