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    • 62. 发明授权
    • Detection and near-field communication device
    • 检测和近场通信设备
    • US08929814B2
    • 2015-01-06
    • US13798466
    • 2013-03-13
    • Continental Automotive FranceContinental Automotive GmbH
    • Mohamed Cheikh
    • H04B5/00G07C9/00G06K7/10H01Q1/32H01Q7/00H01Q19/00H01Q1/38H01Q21/29
    • G07C9/00309G06K7/10128G06K7/10178G06K7/10237H01Q1/3241H01Q1/3283H01Q1/38H01Q7/00H01Q19/00H01Q21/29
    • A detection and near-field communication device for detecting the approach of a portable device integrating a near-field communication antenna for communicating with the portable device, includes: a printed circuit including: an upper face oriented toward the portable device and a lower face, a microcontroller, a near-field reader, a detection module, a near-field communication antenna, situated on a face of the printed circuit having a first surface and being linked to the near-field reader; a plurality of resonators made of copper wire windings, printed on a face of the printed circuit, covering a surface substantially identical to the first surface; the resonators including frequency adjustment elements so as to resonate at the near-field communication frequency; and the resonators generating a voltage variation across their terminals and being connected to the detection module to detect the approach of the portable device.
    • 一种用于检测集成用于与便携式设备通信的近场通信天线的便携式设备的接近的检测和近场通信设备,包括:印刷电路,包括:朝向便携式设备定向的上表面和下表面, 微控制器,近场读取器,检测模块,近场通信天线,位于具有第一表面并且连接到近场读取器的印刷电路的表面上; 多个由铜线绕组制成的谐振器,印刷在印刷电路的表面上,覆盖与第一表面基本相同的表面; 谐振器包括频率调节元件,以便在近场通信频率下谐振; 并且谐振器在其端子之间产生电压变化,并且连接到检测模块以检测便携式设备的接近。
    • 63. 发明申请
    • Inverted F-Antennas at a Wireless Communication Node
    • 无线通信节点的倒置F天线
    • US20140368405A1
    • 2014-12-18
    • US13920781
    • 2013-06-18
    • Telefonaktiebolaget L M Ericsson (publ)
    • Anders EKOla KASPERSSONHakan KARLSSON
    • H01Q21/29
    • H01Q21/28H01Q1/243H01Q1/38H01Q1/521H01Q5/371H01Q9/04H01Q9/0421H01Q9/42H01Q21/12H01Q21/29
    • The disclosure relates to a node in a wireless communication arrangement, the node comprising an antenna arrangement that comprises a first and second inverted F antenna. The inverted F antennas comprise a corresponding first and second feed connection, first and second ground connection and a corresponding first and second radiating element mainly extending from the respective ground connection along a corresponding first and second longitudinal extension. The inverted F antennas are arranged on, or in, a plane. Furthermore, the first and second radiating elements are extending in opposite directions along their respective longitudinal extensions from the respective ground connections, the first longitudinal extension and the second longitudinal extension being mutually parallel. The closest distance between the first radiating element and the second radiating element exceeds 0,4*λ0, where λ0 is the wavelength for the centre frequency of the frequency band for which the inverted F antennas are intended.
    • 本公开涉及无线通信装置中的节点,该节点包括天线装置,该天线装置包括第一和第二倒F天线。 倒置的F天线包括对应的第一和第二馈电连接,第一和第二接地连接以及相应的第一和第二辐射元件,主要从相应的接地连接沿对应的第一和第二纵向延伸部延伸。 倒置的F天线布置在平面上或平面上。 此外,第一和第二辐射元件沿着相应的纵向延伸部分从相应的接地连接件沿相反方向延伸,第一纵向延伸部分和第二纵向延伸部相互平行。 第一辐射元件和第二辐射元件之间的最近距离超过0.4 *λ0,其中λ0是用于反相F天线的频带的中心频率的波长。
    • 65. 发明授权
    • Antenna assembly providing a global multi-directional radiation pattern
    • 天线组件提供全球多方位辐射图
    • US08878744B2
    • 2014-11-04
    • US13235859
    • 2011-09-19
    • Jack Nilsson
    • Jack Nilsson
    • H01Q21/29H01Q21/24
    • H01Q21/29H01Q21/24
    • An antenna assembly having a characteristic frequency band includes an antenna feed, operatively connected to one of a radio frequency (RF) transmitter, an RF receiver, and an RF transceiver system, and a ground component. A first set of conductive elements, including either or both of linear, bent linear, and curvilinear elements, is operatively connected to the antenna feed. A second set of conductive elements, including either or both of linear, bent linear, and curvilinear elements, is operatively connected to the ground component. Each of the first set of linear conductive elements and the second set of linear conductive elements are configured as to provide substantially equal sensitivity within the characteristic frequency band across all elevation and azimuth angles.
    • 具有特征频带的天线组件包括可操作地连接到射频(RF)发射机,RF接收机和RF收发器系统之一的天线馈送和接地部件。 包括线性,弯曲线性和曲线元件中的一个或两者的第一组导电元件可操作地连接到天线馈送。 包括线性,弯曲线性和曲线元件中的一个或两者的第二组导电元件可操作地连接到地面部件。 第一组线性导电元件和第二组线性导电元件中的每一个被配置为在跨越所有高程和方位角的特征频带内提供基本相等的灵敏度。
    • 67. 发明申请
    • Microstrip Antenna
    • 微带天线
    • US20140306846A1
    • 2014-10-16
    • US14252009
    • 2014-04-14
    • Nippon Pillar Packing Co., Ltd.
    • Akira NakatsuKoji Onishi
    • H01Q9/04
    • H01Q21/0075H01Q21/08H01Q21/29H01Q21/30
    • To provide a microstrip antenna that can radiate electromagnetic waves in two or more different directions while suppressing an increase in manufacturing cost. The microstrip antenna is configured to include: a dielectric substrate 10 that is adapted to be of a folded flat plate shape; two or more radiating patterns 2 for radiating electromagnetic waves; and a connecting pattern 3 for mutually connecting the radiating patterns 2 and feeding electricity from a common feeding point 4 to each of the radiating patterns 2. The radiating patterns 2 and connecting pattern 3 are respectively adapted as microstrip lines formed on the dielectric substrate 10, and the dielectric substrate 10 is folded such that the connecting pattern 3 intersects with a ridge line 5, and has two or more radiating surfaces 10a to 10c of which normal directions are mutually different.
    • 提供一种能够抑制制造成本增加的同时在两个以上的不同方向发射电磁波的微带天线。 微带天线被配置为包括:电介质基板10,其适于折叠的平板形状; 用于辐射电磁波的两个或更多辐射图案2; 以及用于将辐射图案2相互连接并从公共馈电点4馈送到每个辐射图案2的连接图案3.辐射图案2和连接图案3分别适合于形成在电介质基板10上的微带线, 并且电介质基板10被折叠成使得连接图案3与棱线5相交,并且具有两个或更多个法向相互不同的辐射表面10a至10c。
    • 68. 发明申请
    • CONCENTRIC CELLS IN A WIRELESS COMMUNICATION SYSTEM
    • 无线通信系统中的集中电池
    • US20140274076A1
    • 2014-09-18
    • US13832752
    • 2013-03-15
    • SMARTSKY NETWORKS LLC
    • Douglas HyslopAndrew P. Caplan
    • H04W16/24H04W16/28H01Q21/29
    • H04W16/30H01Q1/246H01Q21/00H01Q21/28H01Q21/29H01Q25/00H04B1/40H04B7/18506H04W16/24H04W16/28H04W88/08
    • Aspects described herein relate to a base station for providing air-to-ground wireless communication over various altitudes. The base station includes a first antenna array comprising one or more antennas configured to form a first cell coverage area extending substantially from a horizon up to a first elevation angle away from the first antenna array to a predetermined distance from the first antenna array. The base station further includes a second antenna array configured at an uptilt elevation angle to form a second cell coverage area extending at least from the first elevation angle to a second elevation away from the second antenna array, wherein the first cell coverage area and the second cell coverage area are concentric to define the ATG cell at least to the predetermined distance and up to a predetermined elevation.
    • 本文所述的方面涉及用于在各种高度上提供空对地无线通信的基站。 基站包括第一天线阵列,其包括一个或多个天线,其被配置为形成从第一天线阵列基本上从水平线延伸到第一仰角延伸到距离第一天线阵列预定距离的第一小区覆盖区域。 基站还包括以上升的仰角配置的第二天线阵列,以形成至少从第一仰角延伸到远离第二天线阵列的第二高度的第二小区覆盖区域,其中第一小区覆盖区域和第二小区覆盖区域 小区覆盖区域是同心的,以将ATG小区至少定义到预定距离并且直到预定高度。
    • 69. 发明申请
    • WIRELESS ANTENNA SYSTEM
    • 无线天线系统
    • US20140269862A1
    • 2014-09-18
    • US14353555
    • 2012-10-23
    • OPTION NV
    • Aleksander KrewskiWerner SchroederJan Vercruysse
    • H04L27/26
    • H04L27/2626H01Q21/29H04B7/0413H04L27/2647
    • A wireless antenna system for a terminal comprises an antenna structure and frontend ports for connecting to transmit and/or receive circuitry of the terminal. The antenna system is operable in a first radiation mode and a second radiation mode, wherein the modes are orthogonal. The circuitry is arranged to map the first feed port to the antenna structure for the first radiation mode across a first frequency band having a bandwidth which covers one of an uplink frequency band and a downlink frequency band of the transmit/receive circuitry. The circuitry is arranged to map the second feed port to the antenna structure for the second radiation mode across a second frequency band, wherein the second frequency band covers both of an uplink frequency band of the transmit/receive circuitry and a downlink frequency band of the transmit/receive circuitry. The above concepts are extendible to more than two modes.
    • 用于终端的无线天线系统包括天线结构和用于连接到终端的发射和/或接收电路的前端口。 天线系统可在第一辐射模式和第二辐射模式中操作,其中模式是正交的。 电路布置成跨越具有覆盖发射/接收电路的上行链路频带和下行链路频带之一的带宽的第一频带将第一辐射模式的第一馈送端口映射到天线结构。 电路被设置为跨越第二频带将第二馈送端口映射到用于第二辐射模式的天线结构,其中第二频带覆盖发射/接收电路的上行链路频带和下行链路频带 发送/接收电路。 上述概念可扩展到两种以上的模式。
    • 70. 发明申请
    • METHOD TO DRIVE AN ANTENNA COIL MAINTAINING LIMITED POWER SOURCE OUTPUT
    • 用于驱动天线线圈有限的电源输出的方法
    • US20140266727A1
    • 2014-09-18
    • US14211432
    • 2014-03-14
    • Guillermo H. Padula
    • Guillermo H. Padula
    • G08B13/24
    • G08B13/2431H01Q1/2216H01Q3/30H01Q7/00H01Q21/29
    • Electronic article surveillance system includes an antenna system comprised of two or more of resonant circuits. Each resonant circuit includes an exciter coil having at least one wire turn aligned on a common coil axis. A transmitter is coupled to the antenna system and is arranged to generate an antenna system composite exciter signal. The composite exciter signal is comprised of a plurality of co-exciter signals having the same predetermined frequency. The composite exciter signal is capable of exciting an EAS security tag when applied to the antenna system. The transmitter has two or more transmitter output ports, each independently coupled to one of the plurality of resonant circuits. Each of the plurality of co-exciter signals is respectively provided separately from a transmitter output port to one of the of resonant circuits.
    • 电子物品监视系统包括由两个或更多个谐振电路组成的天线系统。 每个谐振电路包括具有在公共线圈轴线上对准的至少一个线匝的激励器线圈。 发射机耦合到天线系统并且被布置成产生天线系统复合激励器信号。 复合激励器信号由具有相同预定频率的多个辅助激励器信号组成。 当应用于天线系统时,复合激励器信号能够激发EAS安全标签。 发射器具有两个或更多个发射器输出端口,每个发射器输出端口独立地耦合到多个谐振电路之一。 多个辅助激励器信号中的每一个分别从发射机输出端口分别提供到谐振电路中的一个。