產品明細

SSL889XF

擴展濾波器封裝雙頻GNSS低剖面天線

    產品簡述
    ♦ 超低雜訊前置放大器,2.5 dB
    ♦ 軸比:<2 dB(典型值)
    ♦ 緊密相位中心變化
    ♦ LNA增益最小28 dB。
    ♦ 低電流:典型值 25 mA。

    ♦ 靜電放電電路保護:15千伏
    在 2.5 至 16 VDC 電壓範圍內性能保持不變
    符合 IP69K、REACH 和 RoHS 標準


    <<產品型錄>>

     

      產品詳細介紹Product Introduction

      SSL889XF Extended-Filter Housed Dual-Band GNSS Low-Profile Antenna

      The SSL889XF employs Tallysman’s unique Accutenna technology providing dual band GPS L1/L2, GLONASS G1/G2/G3, Galileo E1/E5b, and BeiDou B1/B2 coverage and is specially designed for precision dual-frequency positioning where light weight is important.

      The SSL889XF features a precision tuned, circular dual feed, stacked patch element. The signals from the two orthogonal feeds are combined in a hybrid combiner, amplified in a wideband LNA, then band-split for narrow XF filtering in each band and further amplified prior to recombination at the output.

      The radio frequency spectrum has become more congested as new LTE bands are activated and their signals or harmonic frequencies [e.g. 800MHz x 2 = 1600MHz (GLONASS-G1)] can affect GNSS antennas and receivers. In North America, planned Ligado signals at 1525 - 1536 MHz can especially impact GNSS antennas. New LTE signals in Europe [Band 32 (1452 - 1496 MHz)] and Japan [Bands 11 and 21 (1476 – 1511 MHz)] have also been observed to interfere with GNSS signals. In addition, Inmarsat satellite communication (uplink: 1626.5 - 1660.5 MHz) can also affect GNSS signals. Calian's XF antennas have been designed to mitigate out-of-band signals and prevent GNSS antenna saturation. Calian's custom XF filtering mitigates all existing signals and new Ligado and LTE signals, enabling the antennas and attached GNSS receivers to perform optimally.


      Coverage:

      • Autonomous unmanned aerial vehicles (UAVs)
      • Precision GNSS positioning
      • Precision land survey positioning
      • Mission-critical GNSS timing
      • Marine and avionics systems

       

      Antenna: (Measured with 100 mm ground plane)