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    • 1. 发明申请
    • EDGE-EMITTING ANTENNAS FOR ULTRA SLIM WIRELESS MOBILE DEVICES
    • 用于超薄无线移动设备的边缘发射天线
    • US20130335284A1
    • 2013-12-19
    • US13527015
    • 2012-06-19
    • Hao-Han HsuDong-Ho HanSongnan YangAnand S. KonanurChung-Hao Joseph Chen
    • Hao-Han HsuDong-Ho HanSongnan YangAnand S. KonanurChung-Hao Joseph Chen
    • H01Q7/08
    • H01Q7/08H02J7/025H02J17/00H02J50/10H02J50/70H04B5/0037H04B5/0081
    • Described herein are techniques related to near field coupling and wireless power transfers. A mobile device may include an edge-emitting antenna that offers ultra slim, all-metallic chassis packaging option with no cutout, uses lesser area, has robust mechanical strength, and provides EMI/ESD protection. In one example, an inductor coil is wrapped around a magnetic core and a pair of conductive layers is configured to interpose the magnetic core and the inductor coil between them to expose an edge of the magnetic core. The inductor coil being operable in a transmit mode to generate a magnetic field in response to a current passing through it. The edge is configured to enhance outward radiation of the magnetic field. Based on simulation results, the edge-emitting antenna occupies less space and provides an acceptable level of performance for coupling coefficients compared to conventional antenna.
    • 这里描述了与近场耦合和无线功率传输相关的技术。 移动设备可以包括边缘发射天线,其提供超薄,全金属底盘封装选项,没有切口,使用较小的面积,具有坚固的机械强度,并且提供EMI / ESD保护。 在一个示例中,电感线圈缠绕在磁芯周围,并且一对导电层被配置为将磁芯和电感线圈插入它们之间以暴露磁芯的边缘。 电感线圈可在发射模式下工作,以响应于通过它的电流而产生磁场。 边缘被配置为增强磁场的向外辐射。 基于仿真结果,与传统天线相比,边缘发射天线占用更少的空间,并且提供了耦合系数的可接受的性能水平。
    • 2. 发明授权
    • Edge-emitting antennas for ultra slim wireless mobile devices
    • 用于超薄无线移动设备的边缘发射天线
    • US08907859B2
    • 2014-12-09
    • US13527015
    • 2012-06-19
    • Hao-Han HsuDong-Ho HanSongnan YangAnand S KonanurChung-Hao Joseph Chen
    • Hao-Han HsuDong-Ho HanSongnan YangAnand S KonanurChung-Hao Joseph Chen
    • H01Q7/06
    • H01Q7/08H02J7/025H02J17/00H02J50/10H02J50/70H04B5/0037H04B5/0081
    • Described herein are techniques related to near field coupling and wireless power transfers. A mobile device may include an edge-emitting antenna that offers ultra slim, all-metallic chassis packaging option with no cutout, uses lesser area, has robust mechanical strength, and provides EMI/ESD protection. In one example, an inductor coil is wrapped around a magnetic core and a pair of conductive layers is configured to interpose the magnetic core and the inductor coil between them to expose an edge of the magnetic core. The inductor coil being operable in a transmit mode to generate a magnetic field in response to a current passing through it. The edge is configured to enhance outward radiation of the magnetic field. Based on simulation results, the edge-emitting antenna occupies less space and provides an acceptable level of performance for coupling coefficients compared to conventional antenna.
    • 这里描述了与近场耦合和无线功率传输相关的技术。 移动设备可以包括边缘发射天线,其提供超薄,全金属底盘封装选项,没有切口,使用较小的面积,具有坚固的机械强度,并且提供EMI / ESD保护。 在一个示例中,电感线圈缠绕在磁芯周围,并且一对导电层被配置为将磁芯和电感线圈插入它们之间以暴露磁芯的边缘。 电感线圈可在发射模式下工作,以响应于通过它的电流而产生磁场。 边缘被配置为增强磁场的向外辐射。 基于仿真结果,与传统天线相比,边缘发射天线占用更少的空间,并且提供了耦合系数的可接受的性能水平。