
SCAⁿ combines high-performance DSPs, FPGAs, and wideband RF front-ends in a single, programmable radio package—delivering secure, jam-resistant voice and data links that can be re-tuned or re-purposed in the field with new waveforms.
With SCAⁿ, defence and public-safety organisations gain a future-proof radio backbone that adapts to evolving spectrum, security, and mission requirements—without replacing the underlying hardware.
SCAⁿ combines high-performance DSPs, FPGAs, and wideband RF front-ends in a single, programmable radio package—delivering secure, jam-resistant voice and data links that can be re-tuned or re-purposed in the field with new waveforms.
With SCAⁿ, defence and public-safety organisations gain a future-proof radio backbone that adapts to evolving spectrum, security, and mission requirements—without replacing the underlying hardware.
Runs narrow- and wide-band waveforms on the same hardware, letting operators swap missions without swapping radios.
Fast-hop algorithms and adaptive patterns cut through interference and electronic attack.
Digital / analog voice plus IP data at rates up to 1 Mbps support C2, sensor backhaul, and situational-awareness traffic.
Dynamic time-slot allocation maximises throughput and spectrum use as network load changes.
Plug-and-play RF modules simplify platform installs—from manpack to vehicular or airborne—while preserving RF performance.
Low-bit-rate codec maintains intelligibility under the toughest channel conditions.
Hardware crypto, key fill, and physical red/black separation secure every transmission end-to-end.
Central NMS provides configuration, health, and OTAR; open SDK accelerates custom waveform development and test.






