Marine Vessel Communication FHSS Ship mount RF radio with 7ms 2.5MHz/hop Latency and IFS Compatibility

Ship Mounted Data Link
March 04, 2025
Category Connection: Ship Mounted Data Link
Brief: Discover the advanced Marine Vessel Communication FHSS Ship mount RF radio, designed for long-range maritime applications. Featuring 7ms latency, 2.5MHz/hop, and IFS compatibility, this cutting-edge system ensures secure, real-time communication in challenging marine environments. Perfect for ship-to-ship communication and MESH RF radio networks.
Related Product Features:
  • Advanced Frequency Hopping capability (1300-1500MHz range, customizable to 70MHz-6GHz) for secure, interference-free communication.
  • Remarkably low latency of just 7ms@2.5MHz/hop for real-time data transmission critical for maritime operations.
  • Compact 2U form factor (483×390×89mm) and lightweight design (12.5kg) for easy integration into existing ship systems.
  • FPGA Radio technology provides enhanced flexibility, security, and performance with efficient signal processing.
  • Supports multiple modulation types (BPSK, QPSK, 16QAM, 64QAM) for diverse communication requirements.
  • Long-range communication with high power and receiver sensitivity of -100dBm.
  • Operates in extreme conditions with a working temperature range of -40ºC to +70ºC.
  • Throughput rates up to 28Mbps@10MHz & 56Mbps@20MHz for high-speed data transmission.
Faqs:
  • What is the frequency range of the Marine Vessel Communication FHSS Ship mount RF radio?
    The system operates in the 1300-1500MHz range, which is customizable from 70MHz to 6GHz for flexible communication needs.
  • How does the low latency feature benefit maritime operations?
    The remarkably low latency of 7ms@2.5MHz/hop ensures real-time data transmission, which is critical for timely and secure maritime communication.
  • What are the dimensions and weight of the system?
    The system has a compact 2U form factor (483×390×89mm) and weighs just 12.5kg, making it easy to integrate into existing ship systems without excessive space requirements.