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    • 125. 发明授权
    • Interlaced multiband antenna arrays
    • 隔行多频天线阵列
    • US07932870B2
    • 2011-04-26
    • US12476308
    • 2009-06-02
    • Carles Puente BaliardaJordi Romeu RobertSebastian Blanch Boris
    • Carles Puente BaliardaJordi Romeu RobertSebastian Blanch Boris
    • H01Q21/08H01Q5/01
    • H01Q21/30H01Q1/246H01Q5/42H01Q21/061H01Q21/062H01Q21/08H01Q21/28H04W16/24
    • Antenna arrays which can work simultaneously in various frequency bands thanks to the physical disposition of the elements which constitute them, and also the multiband behavior of some elements situated strategically in the array. The configuration of the array is described based on the juxtaposition or interleaving of various conventional mono-band arrays working in the different bands of interest. In those positions in which elements of different multiband arrays come together, a multiband antenna is employed which covers the different working frequency bands. The advantages with respect to the classic configuration of using one array for each frequency band are: saving in cost of the global radiating system and its installation (one array replaces several), and its size and visual and environmental impact are reduced in the case of base stations and repeater stations for communication systems.
    • 由于构成它们的元件的物理配置,以及在阵列中策略地定位的一些元件的多频带行为,可以在各种频带中同时工作的天线阵列。 基于在不同感兴趣的频带中工作的各种常规单频阵列的并置或交错来描述阵列的配置。 在其中不同多频带阵列的元件聚集在一起的位置中,采用覆盖不同工作频带的多频带天线。 对于每个频段使用一个阵列的经典配置的优点是:节省了全球辐射系统及其安装的成本(一个阵列替代了几个),其尺寸和视觉和环境影响在 用于通信系统的基站和中继站。
    • 127. 发明申请
    • INTERLACED MULTIBAND ANTENNA ARRAYS
    • 相互连接的多天线天线阵列
    • US20090267863A1
    • 2009-10-29
    • US12476308
    • 2009-06-02
    • Carles Puente BaliardaJordi Romeu RobertSebastian Blanch Boris
    • Carles Puente BaliardaJordi Romeu RobertSebastian Blanch Boris
    • H01Q21/00H01Q5/00
    • H01Q21/30H01Q1/246H01Q5/42H01Q21/061H01Q21/062H01Q21/08H01Q21/28H04W16/24
    • Antenna arrays which can work simultaneously in various frequency bands thanks to the physical disposition of the elements which constitute them, and also the multiband behaviour of some elements situated strategically in the array. The configuration of the array is described based on the juxtaposition or interleaving of various conventional mono-band arrays working in the different bands of interest. In those positions in which elements of different multiband arrays come together, a multiband antenna is employed which covers the different working frequency bands. The advantages with respect to the classic configuration of using one array for each frequency band are: saving in cost of the global radiating system and its installation (one array replaces several), and its size and visual and environmental impact are reduced in the case of base stations and repeater stations for communication systems.
    • 由于构成它们的元件的物理配置,以及在阵列中策略地定位的一些元件的多频带行为,可以在各种频带中同时工作的天线阵列。 基于在不同感兴趣的频带中工作的各种常规单频阵列的并置或交错来描述阵列的配置。 在其中不同多频带阵列的元件聚集在一起的位置中,采用覆盖不同工作频带的多频带天线。 对于每个频段使用一个阵列的经典配置的优点是:节省了全球辐射系统及其安装的成本(一个阵列替代了几个),其尺寸和视觉和环境影响在 用于通信系统的基站和中继站。
    • 130. 发明授权
    • Contactless identification device
    • 非接触式识别装置
    • US07520440B2
    • 2009-04-21
    • US11789724
    • 2007-04-24
    • Juan Ignacio Ortigosa VallejoCarles Puente Baliarda
    • Juan Ignacio Ortigosa VallejoCarles Puente Baliarda
    • G06K19/05
    • H01Q1/2216G06K19/045G06K19/07749G06K19/07786H01Q1/22H01Q1/2208H01Q1/36H01Q1/38H01Q5/371H01Q5/40H01Q7/00
    • The invention relates to a contact-less identification device comprising a flat conducting structure as an electromagnetic sensor or transducer, and more particularly the invention relates to contactless cards, hybrid cards and radio operated electronic labels and tags. The electromagnetic sensor architecture according to the invention is suitable for all the applications where contactless or hybrid cards are of advantage: high volume paying and toll applications (public transportation, public sport events, person and good identification, access to controlled areas, control of shipment of goods, handling of luggage, product control in chain production environments), etc. The contact-less identification device according to the invention has had its performance enhanced by the use of space-filling techniques in the design of its electromagnetic sensor and by the use of a planar capacitor in conjunction with said flat conducting structure.
    • 本发明涉及一种无接触识别装置,其包括作为电磁传感器或换能器的平坦导电结构,更具体地,本发明涉及非接触式卡,混合卡和无线电操作的电子标签和标签。 根据本发明的电磁传感器架构适用于所有非接触式或混合式卡具有以下优点的应用:高容量支付和通行费用(公共交通,公共体育事件,人和良好识别,对受控区域的访问,运输控制 的货物,处理行李,在生产环境中的产品控制)等。根据本发明的无接触识别装置通过在其电磁传感器的设计中使用空间填充技术并且通过使用 平面电容器与所述扁平导电结构结合使用。