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    • 2. 发明授权
    • Parasitic antenna array for microwave frequencies
    • 用于微波频率的寄生天线阵列
    • US08878728B1
    • 2014-11-04
    • US13350917
    • 2012-01-16
    • Matilda G. LivadaruLee M. PaulsenBrian J. HertingJames B. West
    • Matilda G. LivadaruLee M. PaulsenBrian J. HertingJames B. West
    • H01Q1/38
    • H01Q3/446
    • The present invention includes a substrate; a central monopole element configured to radiate electromagnetic energy, the central monopole element disposed within a central monopole element through-hole of the substrate and extending from the first to the second surface of the substrate, the central monopole element formed by plating the central monopole element through-hole; a plurality of parasitic elements surrounding the central monopole element, each of the parasitic elements disposed within a parasitic element through-hole of the substrate and extending from the first to the second surface of the substrate, each of the plurality of parasitic elements formed by plating a parasitic element through-hole; a ground plane disposed on the second surface of the substrate; and a plurality of load circuits, each load circuit being connected to a parasitic element of the plurality of parasitic elements, each load circuit further being connected to the ground plane.
    • 本发明包括基板; 配置成辐射电磁能的中央单极元件,中央单极元件设置在衬底的中心单极元件通孔内并从衬底的第一表面延伸到第二表面,中心单极元件通过电镀中心单极元件 通孔; 围绕中央单极元件的多个寄生元件,每个寄生元件设置在衬底的寄生元件通孔内并从衬底的第一表面延伸到第二表面,每个寄生元件由电镀形成 寄生元件通孔; 设置在所述基板的第二表面上的接地平面; 和多个负载电路,每个负载电路连接到多个寄生元件的寄生元件,每个负载电路还连接到接地层。
    • 5. 发明授权
    • Parallel waveguide slot coupler with reactive buffering region
    • 具有反应缓冲区域的平行波导槽耦合器
    • US07576703B1
    • 2009-08-18
    • US11410582
    • 2006-04-25
    • Brian J. HertingLee M. Paulsen
    • Brian J. HertingLee M. Paulsen
    • H01Q13/10
    • H01Q3/22H01Q21/0006H01Q21/061
    • The present invention is a frequency scanned waveguide antenna including a plurality of radiating waveguides configured as a flat plate array, each radiating waveguide including an enclosure having a front wall and a back wall opposite the front wall, the front wall including a slot configured for radiating and receiving an electromagnetic signal. The antenna further includes a sinuous feed waveguide coupled to each waveguide included in the plurality of radiating waveguides via a slot coupling mechanism, the sinuous feed waveguide including an enclosure having a front wall and a back wall opposite the front wall, the front wall of the sinuous feed waveguide being oriented towards the back walls of the plurality of radiating waveguides, the front wall of the sinuous feed waveguide further including a plurality of slot couplers, the slot couplers each configured for feeding an electromagnetic signal to the plurality of radiating waveguides via a plurality of corresponding feed slots formed by the back walls of the plurality of radiating waveguides. The antenna further includes a reactive buffering region coupled between the flat plate array and the front wall of the sinuous feed waveguide. The sinuous feed waveguide and the plurality of radiating waveguides are oriented as parallel waveguides.
    • 本发明是一种频率扫描波导天线,其包括多个被构造为平板阵列的辐射波导,每个辐射波导包括具有前壁和与前壁相对的后壁的外壳,前壁包括被配置为用于辐射 并接收电磁信号。 该天线还包括经由狭槽耦合机构耦合到包括在多个辐射波导中的每个波导的蜿蜒馈电波导,所述蜿蜒馈电波导包括具有前壁和与前壁相对的后壁的外壳, 所述蜿蜒馈电波导朝向所述多个辐射波导的后壁定向,所述蜿蜒馈送波导的所述前壁还包括多个狭缝耦合器,所述槽耦合器被配置为经由以下步骤将电磁信号馈送到所述多个辐射波导 由多个辐射波导的后壁形成的多个相应的馈送槽。 天线还包括耦合在平板阵列与蜿蜒馈电波导的前壁之间的反应性缓冲区域。 弯曲馈电波导和多个辐射波导被定向为平行波导。