MIMO system and method utilizing interferometric pattern

    公开(公告)号:US10790883B2

    公开(公告)日:2020-09-29

    申请号:US16466728

    申请日:2017-12-05

    摘要: A communications system 10 comprises a source arrangement 12 of periodic waves. The source arrangement is configured to generate an interferometric wave pattern having a plurality of lobes 18.1 to 18.13. Each lobe has a main axis 20 diverging from an origin 22 at the source arrangement and a null 24 between any two adjacent lobes. At least one sensor arrangement 26 is provided for the waves. The sensor arrangement comprises a first sensor 28 and a second sensor 30 which are spaced from one another. A first signal source 40 is connected to the source arrangement 12 via a phase shift arrangement 41 to generate a first interferometric wave pattern 18 which illuminates the first sensor 28 more than the second sensor 30. A second signal source 42 is connected to the source arrangement via the phase shift arrangement to generate a second interferometric pattern 46 which is off-set from the first interferometric pattern and which illuminates the second sensor more than the first sensor.

    Antenna with diverging antenna elements

    公开(公告)号:US09819090B2

    公开(公告)日:2017-11-14

    申请号:US14432605

    申请日:2013-01-07

    摘要: An antenna 10 comprises at least a first pair 12 of elongate radiating elements and a second pair 14 of elongate radiating elements. Each pair comprises a first element 12.1 and a second element 12.2. Each element has a feed end 12.11 and a distal end 12.12. The first and second elements of each of the at least first pair and second pair have their respective feed ends 12.11, 12.21 in juxtaposition relative to one another and extend in diverging relationship relative to one another in a direction from their feed ends towards their distal ends. The at least first and second pairs are electrically connected in parallel. In some embodiments the elements may diverge exponentially. The invention also relates to antennas which may be packaged in at least partially knock-down form to be assembled or deployed conveniently at a user site.

    ANTENNA WITH DIVERGING ANTENNA ELEMENTS
    4.
    发明申请
    ANTENNA WITH DIVERGING ANTENNA ELEMENTS 有权
    天线与分支天线元素

    公开(公告)号:US20150244076A1

    公开(公告)日:2015-08-27

    申请号:US14432605

    申请日:2013-01-07

    IPC分类号: H01Q9/46 H01Q1/08 H01Q9/10

    摘要: An antenna 10 comprises at least a first pair 12 of elongate radiating elements and a second pair 14 of elongate radiating elements. Each pair comprises a first element 12.1 and a second element 12.2. Each element has a feed end 12.11 and a distal end 12.12. The first and second elements of each of the at least first pair and second pair have their respective feed ends 12.1 1, 12.21 in juxtaposition relative to one another and extend in diverging relationship relative to one another in a direction from their feed ends towards their distal ends. The at least first and second pairs are electrically connected in parallel. In some embodiments the elements may diverge exponentially. The invention also relates to antennas which may be packaged in at least partially knock-down form to be assembled or deployed conveniently at a user site.

    摘要翻译: 天线10包括细长辐射元件的至少第一对12和细长辐射元件的第二对14。 每对包括第一元件12.1和第二元件12.2。 每个元件具有进给端12.11和远端12.12。 所述至少第一对和第二对中的每一个的第一和第二元件具有它们各自的进给端12.1,112.21,它们相对于彼此并置并且沿着从它们的进给端向其远端的方向相对于彼此延伸的关系延伸 结束。 所述至少第一和第二对并联电连接。 在一些实施例中,元件可以指数地发散。 本发明还涉及可以至少部分地击倒形式被封装以便在用户现场方便地组装或部署的天线。

    Broad band directional antenna
    5.
    发明授权

    公开(公告)号:US11862853B2

    公开(公告)日:2024-01-02

    申请号:US17638488

    申请日:2020-08-18

    摘要: The invention provides for a broad band directional antenna (10) comprising a ground plane (12) having an axis (14) extending perpendicularly to the ground plane, an active radiator (13) which is axially spaced from the ground plane, a metamaterial ground plane assembly (16) and a conductive pillar (28.1) between the first conductive wall and the ground plane. The metamaterial ground plane assembly comprises a metamaterial ground plane (17), a first conductive wall (20) adjacent a periphery of the metamaterial ground plane, the first conductive wall having a bottom (22) and atop (24) and a second wall (26) comprising two mutually insulated conductive wall parts (26.1, 26.2) located spaced from and outside of the first conductive wall. The bottom of the first conductive wall is located between the ground plane and the metamaterial ground plane and the top of the first conductive wall is located beyond the active radiator.

    Heat sink
    8.
    外观设计

    公开(公告)号:USD1042372S1

    公开(公告)日:2024-09-17

    申请号:US29854562

    申请日:2022-09-26

    摘要: FIG. 1 is a top perspective view of a heat sink;
    FIG. 2 is a bottom perspective view thereof;
    FIG. 3 is a top plan view thereof;
    FIG. 4 is a bottom plan view thereof;
    FIG. 5 is a first side view thereof;
    FIG. 6 is an opposite first side view thereof;
    FIG. 7 is a second side view thereof; and,
    FIG. 8 is an opposite second side view thereof.
    The broken lines in the drawings illustrate portions of the article that form no part of the claimed design.

    System and method for providing communications services on both sides of a corridor

    公开(公告)号:US10687224B2

    公开(公告)日:2020-06-16

    申请号:US16482205

    申请日:2018-01-22

    IPC分类号: H04W16/30

    摘要: A system 10 for providing communication services to user stations 14.1 to 14.n which are spaced on first and second opposed sides 16, 18 of an elongate corridor 12, comprises a first node 20 and a second node 22. The nodes drive respective radiation patterns comprising at least first, second, third and fourth lobes 30, 32, 34 and 36 having respective main axes 38, 40, 42 and 44. The arrangement is such that in respect of the second corridor node: main axis 38 is directed towards a first region 14.27 which is on the first side 16, to illuminate stations on the first side; main axis 40 is directed towards a second region 14.46 which is on the second side 18, to illuminate stations on the second side; main axis 42 is directed towards a third region 14.10 which is on the first side, to illuminate stations on the first side; and main axis 44 is directed towards a fourth region 14.63, to illuminate stations on the second side.