CALIBRATION CIRCUITS FOR BEAM-FORMING ANTENNAS AND RELATED BASE STATION ANTENNAS

    公开(公告)号:US20190334636A1

    公开(公告)日:2019-10-31

    申请号:US16394094

    申请日:2019-04-25

    Abstract: A base station antenna includes a backplane and a plurality of radiating elements that extend forwardly from the backplane. The antenna further includes a plurality of feed boards, and each of the feed boards has a respective group of one or more of the radiating elements mounted thereon. The antenna also includes a calibration port and a calibration circuit that has a calibration combiner that has an output that is coupled to the calibration port and a plurality of directional couplers that are coupled to the calibration combiner. At least a first portion of a first of the first directional couplers is implemented on a first of the feed boards.

    SMALL CELL BEAM-FORMING ANTENNAS
    33.
    发明申请

    公开(公告)号:US20180367199A1

    公开(公告)日:2018-12-20

    申请号:US15679450

    申请日:2017-08-17

    Abstract: A small cell cellular base station includes an eight port radio and an eight-port base station antenna that has four linear arrays of dual-polarized radiating elements. Each of the linear arrays has a different azimuth boresight pointing direction and each dual-polarized radiating element includes first and second radiators that have respective directional radiation patterns. The radio is configured to determine and apply a first set of amplitude and phase weights to RF signals that are received through the eight ports of the antenna, and to apply a second set of amplitude and phase weights to RF signals that are output by the radio to the eight ports of the antenna.

    DUAL-BEAM SECTOR ANTENNA AND ARRAY
    35.
    发明申请

    公开(公告)号:US20180062258A1

    公开(公告)日:2018-03-01

    申请号:US15787782

    申请日:2017-10-19

    Abstract: A low sidelobe beam forming method and dual-beam antenna schematic are disclosed, which may preferably be used for 3-sector and 6-sector cellular communication system. Complete antenna combines 2-, 3- or -4 columns dual-beam sub-arrays (modules) with improved beam-forming network (BFN). The modules may be used as part of an array, or as an independent 2-beam antenna. By integrating different types of modules to form a complete array, the present invention provides an improved dual-beam antenna with improved azimuth sidelobe suppression in a wide frequency band of operation, with improved coverage of a desired cellular sector and with less interference being created with other cells. Advantageously, a better cell efficiency is realized with up to 95% of the radiated power being directed in a desired cellular sector.

    LOW COMMON MODE RESONANCE MULTIBAND RADIATING ARRAY
    36.
    发明申请
    LOW COMMON MODE RESONANCE MULTIBAND RADIATING ARRAY 有权
    低共模共振多波段雷达阵列

    公开(公告)号:US20160285169A1

    公开(公告)日:2016-09-29

    申请号:US14768398

    申请日:2015-05-28

    Abstract: A higher band radiating element for use in a multiband antenna includes first and second dipole arms supported by a feedboard. The feedboard includes first and second matching circuits, each comprising a capacitor-inductor-capacitor (CLC) matching circuit. The matching circuit further includes a CM tuning circuit connecting a portion of the matching circuit to ground via a microstrip trace selected to pass lower band currents while blocking higher band currents. The CM tuning circuit moves the common mode resonance of the higher band support PCB down below the operating frequency of additional, lower band radiating elements present in the multiband antenna, which is preferable to moving the common mode resonance above the lower band frequencies.

    Abstract translation: 用于多频带天线的较高频带辐射元件包括由馈电板支撑的第一和第二偶极臂。 馈线板包括第一和第二匹配电路,每个包括电容 - 电感 - 电容(CLC)匹配电路。 该匹配电路还包括CM调谐电路,该CM调谐电路通过被选择为传递较低频带电流同时阻挡较高频带电流的微带线迹将匹配电路的一部分连接到地。 CM调谐电路将较高频带支持PCB的共模谐振下移到多频带天线中存在的附加低频辐射元件的工作频率以下,这优于将共模谐振移到低频带以上。

    Printed circuit board for base station antenna

    公开(公告)号:US11576253B2

    公开(公告)日:2023-02-07

    申请号:US17151846

    申请日:2021-01-19

    Abstract: Printed circuit boards for a base station antenna include a substrate layer, and a first conductive trace and a second conductive trace which are printed on the substrate layer and cross each other. The first conductive trace has two trace sections separated by the second conductive trace. Adjacent ends of the two trace sections separated by the second conductive trace are connected electrically by a jumper. The jumper has an electrical conductor, is isolated electrically from the second conductive trace and is fixed on the printed circuit board. The electrical conductor and the two trace sections are connected electrically at adjacent ends. The printed circuit board allows flexible wiring of the conductive traces on the printed circuit board.

Patent Agency Ranking