TX : 34.38 dBi @ 14.25 GHz
RX : 33.11 dBi @ 11.75 GHz
TX : 42.71 dBi @ 29.5 GHz
RX : 39.02 dBi @ 19.7 GHz
TX : 37.21 dBi @ 14.25 GHz
RX : 35.69 dBi @ 11.75 GHz
TX : 39.50 dBi @ 14.25 GHz
RX : 37.89 dBi @ 11.75 GHz
TX : 40.24 dBi @ 14.25 GHz
RX : 38.60 dBi @ 11.75 GHz
TX : 41.42 dBi @ 14.25 GHz
RX : 40.50 dBi @ 11.75 GHz
TX : 48.09 dBi @ 29.5 GHz
RX : 44.59 dBi @ 19.7 GHz
Ku-band
TX : 41.42 dBi @14.25 GHz
RX : 40.30 dBi @ 11.75 GHz
Ka-band
TX : 48.09 dBi @ 29.5 GHz
RX : 44.59 dBi @ 19.7 GHz
Ku - band
TX : 42.45 dBi @ 14.25GHz
RX : 39.75 dBi @ 11.85GHz
Ka - band
TX : 47.10 dBi @ 29.75GHz
RX : 43.35 dBi @ 19.95 GHz
TX : 43.34 dBi @ 14.25 GHz
RX : 41.67 dBi @ 11.75 GHz
Ku-band
TX : 45.44 dBi @14.25 GHz
RX : 44.43 dBi @ 11.75 GHz
Ka-band
TX : 51.24 dBi @ 29.5 GHz
RX : 49.19 dBi @ 19.7 GHz
TX : 45.44 dBi @14.25 GHz
RX : 44.43 dBi @ 11.75 GHz
The high accuracy of signal tracking ensures a stable internet connection. The antenna, equipped with the latest technologies such as DVB-S2X tuner, enables even more precise signal tracking.
A feature is needed to maintain network connectivity even in the absence of a gyro or when the gyro is malfunctioning. The gyro-free mode allows communication to continue in such situations.
With web interface and Wi-Fi support, it can be easily controlled through various devices such as smartphones, PCs, and tablets. This enables real-time status checks and remote software upgrades.
A proven algorithm capable of tracking LEO and MEO satellites should provide stable connections to various satellite networks.