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    • 5. 发明授权
    • Multiprotocol antenna structure and method for synthesizing a multiprotocol antenna pattern
    • 多协议天线结构和合成多协议天线方向图
    • US08368601B2
    • 2013-02-05
    • US12536132
    • 2009-08-05
    • Seong-Youp SuhSalih YargaAnand S KonanurSongnan YangUlun Karacaoglu
    • Seong-Youp SuhSalih YargaAnand S KonanurSongnan YangUlun Karacaoglu
    • H01Q1/24H01Q5/00
    • H01Q9/38H01Q1/2266H01Q5/371H01Q13/10H04B17/29H04B17/318
    • Embodiments of a planar asymmetric antenna structure with shifted feed position for multi-protocol operations are disclosed The antenna structure includes two elliptically tapering right and left arms, each with a different radius, and an off-center feed point positioned between the right and left arms. One arm has a smaller elliptical tapering than the other arm and the feed point is positioned closer to one arm than the other arm. A method of synthesizing a multiprotocol antenna pattern is also disclosed. The method includes providing substantially equally surface currents on both arms of an antenna structure to generate a near-horizontal pattern in far-field at a lower frequency band, providing greater surface currents on the right arm to generate a far-field pattern with a large horizontal component at a higher frequency band, and providing greater surface currents on the left arm to generate an asymmetric far-field pattern at a middle frequency band.
    • 公开了具有用于多协议操作的移动进给位置的平面不对称天线结构的实施例。天线结构包括两个椭圆形渐缩的右臂和左臂,每个具有不同的半径,以及位于右臂和左臂之间的偏心进给点 。 一个臂具有比另一个臂更小的椭圆形锥形,并且进给点被定位成比另一个臂更靠近一个臂。 还公开了一种合成多协议天线方向图的方法。 该方法包括在天线结构的两个臂上提供基本相同的表面电流,以在较低频带的远场中产生近水平图案,在右臂上提供更大的表面电流以产生具有大的 在较高频带处的水平分量,并且在左臂上提供更大的表面电流以在中间频带处产生不对称的远场图案。
    • 8. 发明授权
    • Antenna system with self-identifying antenna
    • 具有自识别天线的天线系统
    • US09276624B2
    • 2016-03-01
    • US13992528
    • 2011-12-29
    • Ulun KaracaogluRobert PaxmanAnand S Konanur
    • Ulun KaracaogluRobert PaxmanAnand S Konanur
    • H04M1/00H04B1/18H01Q1/22
    • H04B1/18H01Q1/2225
    • According to one embodiment disclosed herein, there is provided an antenna module including a self-identification mechanism that may be used by one or more wireless circuits for management purposes. The self-identification mechanism may, for example, take the form of an integrated circuit (IC) device or chip that stores a serial number that may function as a unique identifier for an antenna on which it is mounted or associated. In one embodiment, a wireless module, for example containing RF components for sending and receiving signals from the antenna, queries the serial number device, and acquires the serial number for the antenna. The wireless module can use the serial number for any number of purposes, and in particular to verify that the antenna connected is a compliant antenna that will operate within the range, within the limits, and/or with the performance specified for the radio circuits within the wireless module.
    • 根据本文公开的一个实施例,提供了一种天线模块,其包括可由一个或多个无线电路用于管理目的的自识别机构。 自识别机构可以例如采用集成电路(IC)设备或芯片的形式,该集成电路(IC)设备或芯片存储可用作其所安装或相关的天线的唯一标识符的序列号。 在一个实施例中,例如包含用于从天线发送和接收信号的RF组件的无线模块查询序列号设备,并获取天线的序列号。 无线模块可以使用序列号用于任何数量的目的,并且特别地验证所连接的天线是否将在限制内的范围内和/或具有针对无线电电路内的无线电电路所规定的性能的合规天线 无线模块。
    • 9. 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。