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    • 92. 发明授权
    • Wireless inductive power transfer
    • 无线感应电力传输
    • US09479013B2
    • 2016-10-25
    • US14432574
    • 2014-08-06
    • KONINKLIJKE PHILIPS N.V.
    • Neil Francis JoyeAndries Van WageningenWilhelmus Gerardus Maria Ettes
    • H01F27/42H01F37/00H01F38/00H02J5/00H04B5/00H02J7/02H01F38/14
    • H02J50/60H01F38/14H02J5/005H02J7/025H02J17/00H02J50/10H04B5/0031H04B5/0037H04B5/0075
    • A wireless power transfer system includes a power receiver (105) and a power transmitter (101) generating a wireless inductive power transfer signal for powering the power receiver (105) during a power transfer phase. An apparatus, often the power transmitter (101) comprises a first communication unit (305) communicating with a second communication unit of an entity using an electromagnetic communication signal. The entity may typically be the power receiver (105). The apparatus comprises a reference processor (307) for measuring and storing a reference value of a characteristic of the communication signal and a measurement unit (309) which repeatedly during the power transfer phase determines a measured value of the characteristic. A comparator (311) compares the measured values to the reference value and an initiator (313) triggers an entity detection process if the comparison indicates that a measured value and the reference value do not meet a similarity criterion. The entity detection process detect a presence of another entity.
    • 无线电力传输系统包括电力接收器(105)和功率发射器(101),功率发射器(101)在功率传输阶段期间产生用于为功率接收器(105)供电的无线感应功率传输信号。 一种装置,通常功率发射器(101)包括与使用电磁通信信号的实体的第二通信单元通信的第一通信单元(305)。 实体通常可以是电力接收器(105)。 该装置包括用于测量和存储通信信号的特性的参考值的参考处理器(307)和在功率传送阶段期间重复地确定特性的测量值的测量单元(309)。 比较器(311)将测量值与参考值进行比较,并且如果比较指示测量值和参考值不符合相似性标准,则启动器(313)触发实体检测处理。 实体检测过程检测另一个实体的存在。
    • 96. 发明授权
    • Electromagnetic connectors
    • 电磁连接器
    • US09449756B2
    • 2016-09-20
    • US13875858
    • 2013-05-02
    • Bedrock Automation Platforms Inc.
    • James CalvinAlbert Rooyakkers
    • H01F38/00H01F38/14H01F41/02
    • H01F38/14H01F41/02Y10T29/49071
    • An electromagnetic connector well suited for use in harsh environments. The connector used an E-core or C-core magnetic members for coupling power such as from a backplane to a module mounted on the backplane and using I-cores for coupling signals to and from the module. Separation of the power and signaling allows optimization of each coupling without compromise in performance of each function. Use of I-cores for signal coupling provides efficient use of space, with the use of E-cores or C-cores providing maximum power coupling to the module in a minimum space. Various aspects of exemplary embodiments are disclosed.
    • 非常适合恶劣环境使用的电磁连接器。 连接器使用E型或C型磁性元件来耦合功率,例如从背板到安装在背板上的模块,并使用I芯将信号耦合到模块和从模块耦合。 功率和信号的分离允许每个耦合的优化,而不会影响每个功能的性能。 使用I内核进行信号耦合可以有效利用空间,使用E-core或C-core可在最小的空间内提供与模块的最大功率耦合。 公开了示例性实施例的各个方面。
    • 97. 发明授权
    • Contactless interconnect
    • 非接触式互连
    • US09431168B2
    • 2016-08-30
    • US13495325
    • 2012-06-13
    • Jean-Philippe Fricker
    • Jean-Philippe Fricker
    • H01F38/00H01F38/14H04B5/00
    • H01F38/14H01F2038/143H04B5/0012H04B5/0075
    • A contactless connector requires no physical contact. A terminated transmitting transmission line on a first board is parallel to a dual-terminated receiving transmission line on a second board. The boards are placed face-to-face with a small air gap in-between. A driver drives a driven pulse onto a first end of the transmitting transmission line. The driven pulse capacitively induces a positive induced pulse on the first end of the receiving transmission line. As the driven pulse travels from the first end to the second end of the transmitting transmission line, energy is transferred to the induced pulse, which travels down the receiving transmission line. Inductive coupling becomes stronger than capacitive as the length increases, so that at the second end, the induced pulse is negative and then swings positive. A Schmitt trigger receiver on the second end of the receiving transmission line detects the signal.
    • 非接触式连接器不需要物理接触。 第一板上的端接发射传输线与第二板上的双终端接收传输线平行。 电路板面对面放置,其间有小的气隙。 驱动器将驱动脉冲驱动到发送传输线的第一端。 驱动脉冲电容性地在接收传输线的第一端感应出正的感应脉冲。 当驱动脉冲从发射传输线的第一端传播到第二端时,能量被传送到沿着接收传输线传播的感应脉冲。 感应耦合随着长度增加而变得比电容强,因此在第二端,感应脉冲为负,然后摆动为正。 接收传输线第二端的施密特触发接收器检测信号。