| Brand Name: | IWAVE |
| Model Number: | FDM-6800 |
| MOQ: | 2units |
| Price: | Negotiable |
| Delivery Time: | 5-8working days |
| Payment Terms: | T/T,L/C |
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FDM-6800 Tactical SDR Radio for Unmanned Systems - Reliable Connectivity in Challenging Environments Mission-Critical Communications for Drones & UGVs The FDM-6800 delivers uninterrupted video, telemetry and control channels for small UAVs and robotic systems operating in:
Next-Gen Tactical SDR Platform Features:
UGV-Optimized Communication System Specifically engineered for unmanned ground vehicles requiring:
Proven in Extreme Environments:
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1.Low Latency
By utilizing IWAVE’s proprietary point-to-multipoint technology, algorithms, and waveforms, latency can be kept to an ultra-low level, enabling near real-time data transmission between the robot and the control center.
2.High Throughput
FDM-6800 adopts carrier aggregation technology CA technology, which can aggregate two 20MHz bandwidth carriers together to achieve 40MHz wireless carrier bandwidth, effectively improving the uplink and downlink transmission rates, and enhancing the robustness and environmental adaptability of the entire wireless transmission system. Supports 20MHz+20MHz carrier aggregation, and the data transmission peak rate exceeds 100Mbps
3.Cyber-secure, High-integrity Data Transmission
Malicious interception of data streams is a major threat to robotic systems that use mobile technology to transmit critical data and intelligence. IWAVE uses a unique waveform and AES encryption to ensure your robot communications are always secure.
4.Centralized Network Management & Control
The intuitive management software provides real-time network topology visualization, displaying critical parameters like SNR, RSSI, and inter-node distances. Users can:
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FHSS(Frequency Hopping Spread Sprectrum) Utilizing IWAVE's proprietary algorithms and mechanisms FDM-6800 will internally calculate and evaluate the current link quality based on RSRP, SNR, and SER,ect. When predefined thresholds are met, the system initiates frequency hopping and selects the optimal frequency point from its database. Frequency hopping execution depends entirely on real-time wireless conditions:
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Robotic missions demand dependable wireless links that perform consistently in scenarios where operator intervention ranges from impractical to impossible. The IWAVE radio excels in non-line-of-sight (NLOS) tele-robotics operations, delivering robust performance in both harsh urban environments and remote locations. Idea for:
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| General | Wireless | ||
| Technology | Star Network based on IWAVE proprietary time slot frame structure & waveform. | Communication | 1T1R1T2R2T2R |
| Encryption | ZUC/SNOW3G/AES(128) Optional Layer-2 | Data Link | Full duplex communication |
| Data Rate | Max 100Mbps(Uplink and Downlink) | Up and Down Ratio | 2D3U/3D2U/4D1U/1D4U |
| Range | Non-line-of-sight 1-3km | Auto Reconnection | Automatic link re-establishment after link failure/ re-deploy the network after a link failure |
| Capacity | 8nodes | Sensitivity | |
| MIMO | 2x2 MIMO | 1.4GHZ | 20MHZ |
| Power | 23dBm±2 (2w, 5w or 10w on request) | 10MHZ | |
| Latency | End to end≤5ms-15ms | 5MHZ | |
| Modulation | QPSK, 16QAM, 64QAM | 600MHZ | 20MHZ |
| Anti-jam | FHSS(Frequency Hop Spread Spectrum) | 10MHZ | |
| Bandwidth | 1.4Mhz/3Mhz/5Mhz/10MHz/20MHz/40Mhz | 5MHZ | |
| Power Consumption | 5Watts | Dual Frequency Band | |
| Power Input | DC5-32V | 1.4Ghz | 1420Mhz-1530MHz |
| Dimension and Weight | 71*60*10mm/33g | 600Mhz | 566Mhz-678Mhz |