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    • 3. 发明授权
    • Circuit breaker
    • 断路器
    • US06411190B1
    • 2002-06-25
    • US09631647
    • 2000-08-02
    • Noboru YamaguchiTakashi GoharaYasuhiro TamaiHideo TakahashiMitsuaki MorimotoYoshinori Ikuta
    • Noboru YamaguchiTakashi GoharaYasuhiro TamaiHideo TakahashiMitsuaki MorimotoYoshinori Ikuta
    • H01H7120
    • H01H39/00H01H2039/008
    • A current sensor 73 detects a current flowing through a first buss bar 11. When a current value detected by the current sensor 73 became equal to or greater than a threshold current value, a CPU 74 outputs a driving control signal to a driving circuit 77, and the driving circuit 77 operates an, ignitor 29 through a second substrate 65 and a terminal 50. Therefore, the ignitor 29 ignites, a second projection 41 is melted by heat of a heating agent 27, a compression spring 34 is expanded and a thermite case 26 jumps up. Thus, electrical connection between the thermite case 26 and the first and second buss bars 11, 19 is interrupted. Further, since an outer container 61 in which the current sensor 73, the CPU and the driving circuit 77 are accommodated is integrally assembled with the cap 14a and the resin case 14b in which the thermite case 26, the ignitor 29, the compression spring 34 and the second projection 41 are accommodated, non-operational state of the ignitor 29 due to disconnection of electric wire is not generated.
    • 电流传感器73检测流过第一总线杆11的电流。当由电流传感器73检测到的电流值变得等于或大于阈值电流值时,CPU74向驱动电路77输出驱动控制信号, 并且驱动电路77通过第二基板65和端子50操作点火器29.因此,点火器29点燃,第二突起41被加热剂27的热量熔化,压缩弹簧34膨胀,并且热 情况26跳了起来。 因此,铝热壳体26与第一和第二母线11,19之间的电连接被中断。 此外,由于容纳有电流传感器73,CPU和驱动电路77的外部容器61与盖体14a和树脂壳体14b一体地组装,在该壳体14b中,散热壳体26,点火器29,压缩弹簧34 并且第二突起41被容纳,不会产生由于电线断开引起的点火器29的非操作状态。
    • 4. 发明授权
    • Current detector
    • 电流检测器
    • US06459255B1
    • 2002-10-01
    • US09640067
    • 2000-08-17
    • Yasuhiro TamaiYoshinori IkutaTakashi GoharaMitsuaki Morimoto
    • Yasuhiro TamaiYoshinori IkutaTakashi GoharaMitsuaki Morimoto
    • G01R3300
    • G01R15/202
    • A current detector having a linear conductor 111, 112, a linear to-be measured conductor 10 disposed substantially in parallel to the conductor 111, 112 and through which a to-be measured current flows. A Hall element 20 disposed in the vicinity of the to-be measured conductor 10 such that a magnetic flux generated by the to-be measured current flowing through the to-be measured conductor 10 enter into a magnetic-force sensing face 21 substantially perpendicularly. A substrate 30 for supporting the conductor and the to-be measured conductor 10 such that the magnetic flux generated by a current flowing through the conductor becomes substantially parallel to the magnetic-force sensing face +21 in the magnetic-force sensing face 21 of the Hall element 20.
    • 具有线性导体111,112的电流检测器,基本上平行于导体111,112设置的待测导线10,待测电流流过该电流检测器。 设置在待测导体10附近的霍尔元件20,使得流过被测导体10的待测电流产生的磁通量基本垂直地进入磁力检测面21。 用于支撑导体和被测导体10的基板30,使得由流过导体的电流产生的磁通变得基本上平行于磁力检测面21中的磁力检测面+21 霍尔元件20。