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    • 24. 发明授权
    • System and method for charging portable electronic devices
    • 便携式电子设备充电的系统和方法
    • US09373976B2
    • 2016-06-21
    • US14076850
    • 2013-11-11
    • Edward L. O'Neill
    • Edward L. O'Neill
    • H02J7/00H02J7/04H02J7/02H01H3/26H01H9/30H01H83/00H01H33/00
    • H02J7/041H01H3/26H01H9/30H01H33/00H01H83/00H02J7/0013H02J7/0021H02J7/0029H02J7/0052H02J7/027
    • A device charging system that uses the fact that individual devices do not need to be continuously charged for an extended charging period in order to be fully charged at the end of the period. With automatic timing and switching, different devices can be charged at different times during the charging period with the result that all the devices are fully charged at the end of the period. Several charging power boxes that fit into one or more charging cabinets that are controlled by one or more timers. Each charging power box also includes a heat sensor and circuit breaker. User appliances or electronic devices can be stacked in the cabinets, plugged into numerous outlets available on the charging power boxes and then locked inside the cabinet for overnight charging and security. Any abnormal rise in temperature within the cabinet can shut down the entire charging process.
    • 一种装置充电系统,其使用单个装置不需要在延长的充电期间连续地充电以在该期间结束时被完全充电的事实。 通过自动定时和切换,可以在充电期间的不同时间对不同的设备进行充电,从而使得所有设备在周期结束时都被充满电。 几个充电电源箱,适合一个或多个充电柜,由一个或多个定时器控制。 每个充电电源箱还包括热传感器和断路器。 用户电器或电子设备可以堆放在机柜中,插入充电电源箱中的大量插座,然后锁定在机柜内以进行过夜充电和安全保护。 柜内任何温度异常升高都可能导致整个充电过程失效。
    • 27. 发明授权
    • Magnetic flux measuring device and magnetic flux measuring method for stationary induction electrical apparatus, and synchronous switching control gear for circuit breaker
    • 用于静电感应电气设备的磁通测量装置和磁通量测量方法以及用于断路器的同步开关控制装置
    • US08344557B2
    • 2013-01-01
    • US12445640
    • 2007-10-12
    • Minoru Saito
    • Minoru Saito
    • H01H9/54H01H33/59H01H47/00H01H85/46H01H3/26H01H3/28
    • G01R33/04G01R33/0029G01R33/02G01R33/028Y10T307/944
    • The present invention provides a magnetic flux measuring device and magnetic flux measuring method for stationary induction electrical apparatus which can accurately measure the magnetic flux without being influenced by the DC offset component which superimposes on the measurement system, and can constantly and continuously measure the magnetic flux without setting a limit in the magnetic flux measurement period. The magnetic flux measuring method which measures a magnetic flux of a stationary induction electrical apparatus 2 using a voltage waveform of the stationary induction electrical apparatus 2, wherein the magnetic flux 151 of the stationary induction electrical apparatus 2 is determined by the steps of: inputting a voltage waveform 121 of the stationary induction electrical apparatus 2 into a negative-feedback amplification means 14 of which feedback circuit is constructed by a low pass filter; and integrating output of the negative-feedback amplification means 14 by integration means 15.
    • 本发明提供了一种用于固定式感应电气设备的磁通量测量装置和磁通量测量方法,其可以在不受叠加在测量系统上的直流偏移分量的影响下精确地测量磁通量,并且可以持续和连续地测量磁通量 而不设置磁通量测量周期的限制。 使用静止感应电气设备2的电压波形来测量静止感应电气设备2的磁通量的磁通量测量方法,其中静止感应电气设备2的磁通量151通过以下步骤确定:输入 静态感应电气设备2的电压波形121变为负反馈放大装置14,其反馈电路由低通滤波器构成; 并通过积分装置15积分负反馈放大装置14的输出。