L C-диапазон RF Ethernet приемопередатчик видеоданных

Нам нужен OEM-трансивер RF с этими функциями.:

  • Частотный диапазон: L Band and C Band (1200-1800 MHz and 4400-5000MHz)
  • RF Bandwidth: 2M/5M/10M/20M/40MHz
  • Выходная мощность: 36-40 дБм (4W and 10W 2×2 МИМО)
  • Чувствительность приемника: L Band-97dBm Max, C band -90 dBm Max
  • Modulation Support: ОЧМ: DSSS/CCK BPSK/QPSK, КОФДМ: BPSK/QPSK/16-QAM/64-QAM
  • Layer 2 // ETH Port
  • Шифрование: AES256
  • Входная мощность: 12V-26V DC
  • Рабочая температура: -40℃ ~ +65℃

Мы также предпочитаем FHSS. Are there any products with these specifications? In that case, would you be able to provide the datasheet? Even if you don’t currently produce products with these features, let’s discuss the possibility of future development.

The device described by the specifications is aмощный, ruggedized, dual-band wireless communication system предназначен длябезопасный, дальнобойный, high-throughput data transmission in challenging environments. Here’s a breakdown of its key features and typical applications:

Ключевые особенности & Анализ

  1. Диапазоны частот:
    • L Band (1200–1800 MHz): Better penetration through obstacles, suitable for non-line-of-sight (НЛОС) scenarios (например, леса, urban areas).
    • C Band (4400–5000 MHz): Higher bandwidth for faster data rates but shorter range; ideal for line-of-sight (ЛОС) links.
  2. RF Bandwidth Flexibility (2–40 MHz): Balances data throughput and range. Wider bandwidths (например, 40 МГц) enable high-speed applications, while narrower ones extend range or reduce interference.
  3. High Output Power (4W–10W, 2×2 МИМО): Supports long-distance links (potentially tens of kilometers). MIMO improves spectral efficiency and reliability through spatial diversity.
  4. Чувствительность приемника: Excellent for detecting weak signals (-97 dBm in L Band, -90 dBm in C Band), critical for maintaining links in low-signal conditions.
  5. Modulation Schemes:
    • Legacy Support: DSSS/CCK (used in older Wi-Fi/802.11b) for backward compatibility.
    • Modern Standards: OFDM/COFDM with up to 64-QAM for high-speed data (similar to LTE/Wi-Fi 802.11ac).
  6. Layer 2 Ethernet Port: Acts as a wireless bridge, connecting wired networks (например, LANs) over a wireless link.
  7. AES-256 Encryption: Ensures secure data transmission, aligning with military/enterprise-grade requirements.
  8. Rugged Design:
    • Входная мощность (12–26V DC): Compatible with vehicles (12V/24V systems) or industrial DC sources.
    • Рабочая температура (-40°C to +65°C): Survives extreme environments (arctic cold to desert heat).

Typical Use Cases

  1. Military/Defense Tactical Networks:
    • Secure, mobile field communications for command centers, дроны, or vehicle-to-vehicle links.
    • Survivable in electronic warfare (dual-band redundancy mitigates jamming).
  2. Общественная безопасность & Emergency Response:
    • Rapid deployment for disaster recovery (например, connecting temporary command posts, hospitals).
    • Fire/police departments requiring reliable NLOS links in urban/rural areas.
  3. Промышленный & Remote Site Connectivity:
    • Oil/gas pipelines, mining, or wind farms needing backhaul for SCADA/IoT sensors.
    • Replaces fiber/cable in hard-to-reach locations.
  4. Cellular Backhaul:
    • Cost-effective alternative to wired backhaul for 4G/5G small cells in rural areas.
  5. Наблюдение & Border Security:
    • Transmitting HD video from remote cameras or UAVs (using high-bandwidth C Band).
  6. Transportation & Maritime:
    • Ship-to-shore or train-to-base communications leveraging L Band’s NLOS capabilities.

Why This Device?

  • Dual-Band Versatility: Switch between L Band (range/resilience) and C Band (скорость) as needed.
  • MIMO Performance: Doubles capacity/reliability for critical data (видео, VoIP, телеметрия).
  • Ruggedness: Deployable in mobile/outdoor settings without climate-controlled enclosures.

This system is ideal for organizations needingбезопасный, high-speed wireless links in austere or dynamic environments where traditional infrastructure is impractical.

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