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    • 1. 发明授权
    • Electrical equipment module
    • 电气设备模块
    • US06429544B1
    • 2002-08-06
    • US09662480
    • 2000-09-15
    • Atsushi SasakiSatoshi KawaiEiji IchiiAkihito Yahara
    • Atsushi SasakiSatoshi KawaiEiji IchiiAkihito Yahara
    • H02J100
    • B60N2/0232B60N2/0224B60N2002/0264B60R16/0207
    • An electrical equipment module is mounted in, for example, an electrically-powered seat unit for a vehicle. Multiple wire groups (52-56) comprised of wire harnesses or flat cables are led out of a module body (51) of the electrical equipment module (50) from different sides of the module body, thus reducing the outside diameter and thickness of each wire group so that the module body is thin and suited to be mounted in narrow layout space under a seat. By mounting, to the module body, a connector for connecting a printed circuit board (51m) in the module body to an external power supply or an external sensor and by making complicated wiring between the connector and the printed circuit board (51m) in advance in the module body, an assembling (wiring) work at the time of manufacturing the electrical equipment module is simplified.
    • 电气设备模块安装在例如用于车辆的电动座椅单元中。 由线束或扁平电缆组成的多个线组(52-56)从模块体的不同侧被从电气设备模块(50)的模块本体(51)引出,从而减小了每一个的外径和厚度 线组,使得模块体很薄并且适合于安装在座椅下方的狭窄布局空间中。 通过将模块主体中的印刷电路板(51m)连接到外部电源或外部传感器并且在连接器与印刷电路板(51m)之间进行复杂布线的连接器 在模块体中,简化了电气设备模块制造时的组装(布线)工作。
    • 2. 发明授权
    • Magnetically shielding structure
    • 磁屏蔽结构
    • US06486393B1
    • 2002-11-26
    • US08308474
    • 1994-09-19
    • Hironori MatsubaDaiichi IrisawaAkihito Yahara
    • Hironori MatsubaDaiichi IrisawaAkihito Yahara
    • H05K900
    • H05K9/0077G01R33/421Y10S505/872
    • By combining magnetically shielding members of various different properties with each other, a magnetically shielding capability of a magnetically shielding structure is made to improve and a greatly reduced magnetic field, as compared to an external one, can be realized effectively. The penetrating magnetic field has a distribution, on the longitudinal axis of a cylindrical shielding body made of a material manifesting a Meissner effect, which attenuates toward the center direction of the cylindrical shielding body. Magnetic induction is generated in a cylindrical collar made of a highly permeable material. Then, the penetrating magnetic field is shorted magnetically, being absorbed by the highly permeable material. To make this possible, the cylindrical collar, made of a highly permeable material, which has an opening along the longitudinal direction of the cylindrical shielding body, is provided, leaving a space between the cylindrical shielding body made of the superconductive material manifesting the Meissner effect and itself.
    • 通过将各种不同性质的磁屏蔽构件相互结合,可以有效地实现磁屏蔽结构的磁屏蔽能力的提高,并且与外部磁屏蔽结构相比大大减小了磁场。 穿透磁场在由表现出Meissner效应的材料制成的圆筒形屏蔽体的纵向轴线上具有分布,其朝向圆柱形屏蔽体的中心方向衰减。 在由高度可渗透的材料制成的圆柱形套筒中产生磁感应。 然后,穿透磁场被磁性短路,被高度可渗透的材料吸收。 为了实现这一点,提供了沿着圆柱形屏蔽体的纵向具有开口的由高透度材料制成的圆柱形轴环,在由超导材料制成的圆柱形屏蔽体之间留有表现出迈斯纳效应的空间 和本身。