Adaptive Frequency Hopping
The system automatically shifts frequency channels when interference or congestion is detected. Unlike fixed-frequency systems, it maintains link continuity under jamming attempts.
TURLINK // CORE TECHNOLOGY
To stay reliable in contested RF environments, every TURLink datalink modem shares the same core technology set: adaptive waveform, hardware-level encryption, and autonomous reconnection.
The system automatically shifts frequency channels when interference or congestion is detected. Unlike fixed-frequency systems, it maintains link continuity under jamming attempts.
Modulation scheme and coding rate adjust in real time based on link quality — maximum throughput under high SNR, maximum range and reliability under weak signal.
End-to-end encryption is implemented at the hardware (FPGA) level, delivering lower latency and higher assurance than software-based approaches. AES-128 is available on select models.
Automatically switches between multiple antenna paths based on signal quality, keeping the link alive through obstruction or multipath fading.
A fast physical-layer retransmission mechanism engages on packet loss, keeping latency low without burdening upper-layer protocols.
ADV and QB series products support point-to-multipoint and relay (NLOS) topologies with up to 64 nodes — building flexible field networks without a single central node.
Up to 200 KM of LOS range, ultra-light modules (starting at 25g), and video/telemetry/RC data carried over a single link.
Wide operating voltage range (DC 7-48V) and -40°C to +85°C operating temperature suit both vehicle-mounted and fixed-station installs.
Node- and hop-based flexible mesh architecture lets multiple platforms communicate simultaneously, relaying through one another.
High-power (up to 10W) range-extension units and auto-tracking antennas for wide-area coverage.