STACKED BOWTIE RADIATOR WITH INTEGRATED BALUN
    2.
    发明申请
    STACKED BOWTIE RADIATOR WITH INTEGRATED BALUN 有权
    集成的BOWTID散热器

    公开(公告)号:US20140218253A1

    公开(公告)日:2014-08-07

    申请号:US13956875

    申请日:2013-08-01

    CPC classification number: H01P5/10 H01Q9/28 H01Q21/062 H01Q21/26 Y10T29/49018

    Abstract: A turnstile antenna element and balun for use in a phased array are described. The antenna includes a plurality of stacked bowtie radiators. Each stacked bowtie radiator includes a driven conductor and a passive conductor separated by a dielectric. The balun includes a central member having dielectric slabs symmetrically disposed on external surfaces thereof. At least one end of the balun is provided having a shape such that conductors on the dielectric slabs of the balun can be coupled to the driven radiator conductors.

    Abstract translation: 描述了用于相控阵列的十字转门天线元件和平衡 - 不平衡变换器。 天线包括多个堆叠的弓形散热器。 每个堆叠的弓形散热器包括从动导体和被电介质隔开的被动导体。 平衡 - 不平衡转换器包括具有对称地设置在其外表面上的电介质板的中心构件。 平衡 - 不平衡转换器的至少一端被提供有使得平衡 - 不平衡转换器的电介质板上的导体可以耦合到被驱动的辐射器导体的形状。

    Radome assembly
    4.
    发明授权

    公开(公告)号:US10862204B2

    公开(公告)日:2020-12-08

    申请号:US16594727

    申请日:2019-10-07

    Abstract: A low profile, low loss, wide band, wide scan volume radome assembly is provided for an antenna. The radome assembly includes a fabric radome element disposable over the antenna, first radome securing elements securably embedded within the fabric radome element and second radome securing elements securably embedded within the antenna. The second radome securing elements are respectively engageable with the first radome securing elements to thereby secure the fabric radome element over the antenna.

    RF COVER LAYER
    8.
    发明申请

    公开(公告)号:US20250107006A1

    公开(公告)日:2025-03-27

    申请号:US18471385

    申请日:2023-09-21

    Abstract: A printed circuit board comprises a support structure, a conductive layer operably coupled to the support structure, a mask structure formed on the conductive layer, and a cover layer. The conductive layer comprises first and second portions of conductive material separated by a gap that defines a spacing between the first and second portions that does not contain conductive material. The mask structure defines first and second regions on the conductive layer. The first region is enclosed by a first boundary defined by the mask structure and includes the gap. The second region lies outside of the first boundary. The cover layer is sized to fit within the first region and comprises a laminatible insulating material that flows within the first region during lamination. During lamination, the first boundary prevents the laminatible insulating material from flowing into the second region, and the laminatible insulating material flows to fill the gap.

    STEPPED BALUN
    9.
    发明申请

    公开(公告)号:US20220311117A1

    公开(公告)日:2022-09-29

    申请号:US17215864

    申请日:2021-03-29

    Abstract: An example balun includes a center conductor that passes through a printed wiring board having multiple dielectric layers and cage vias arranged relative to the center conductor. The cage vias include a first set of cage vias that extend between an unbalanced connection to the balun and a balanced connection to the balun. The first set of cage vias are part of a first circular arc and are connected to electrical ground through a first ground ring. The cage vias include a second set of cage vias that extend from the unbalanced connection part-way through the printed wiring board. The second set of cage vias are part of a second circular arc and are connected to the electrical ground through a second ground ring. The second circular arc is longer than the first circular arc.

    SYSTEM AND METHOD FOR DECONTAMINATION OF MATERIALS

    公开(公告)号:US20220133927A1

    公开(公告)日:2022-05-05

    申请号:US17086900

    申请日:2020-11-02

    Abstract: A system includes a container configured to hold one or more items contaminated with a contaminant. The system also includes a power amplifier configured to output radio frequency (RF) energy at a frequency substantially equal to a resonant frequency of the contaminant. The system further includes a horn connected to the power amplifier and configured to propagate the RF energy along a length of the container and through the one or more items to deactivate, damage, or destroy the contaminant by molecular resonance. In addition, the system includes an RF absorbing liner disposed on interior surfaces of the container and configured to absorb and reduce reflection of at least some of the RF energy.

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