Sense
See further. Decide faster. Own the airspace.
Airborne sensing for aircraft and platforms that can't afford constraints — operating in dynamic, high-altitude, and contested environments.
Airborne sensing is a constraints problem.
Size, weight, power, and cost impose limits that traditional radar and RF systems weren't designed to respect. Lyntris delivers multi-mission radar and sensor systems engineered for the platforms that actually fly today's missions — without the SWaP penalty.
HOW WE DO IT
Speed, range, and precision. Here's how we deliver all three.
Full-Spectrum AESA Radar
EX-BAR and SLAMR deliver simultaneous detection and tracking of cruise missiles, UAS, and surface threats — extended range, multi-mode operation, open-architecture design. Built for rapid fielding and sustained production at scale.
Ground Antenna Systems
Multi-band antenna spanning 1GHz to 1THz — from integrated satellite uplink feeds to on-the-move solutions for dismounted and vehicle-mounted operations. Vertically integrated for faster lead times and tighter performance control across C5ISR and EW platforms.
Thermal Management for High-Power Ground Systems
Radar, EW, and mission computing systems run hot — in mobile and fixed environments, including extreme temperatures, confined enclosures, and high-demand field operations. We engineer for all of it.
Power Distribution for Ground Platforms
Resilient power distribution supporting high-power sensing and communications across mobile ground systems — stable electronic performance during extended field operations.
FEATURED SOLUTIONS
Airborne Multifunction Sensor Subsystems
Enabling airborne sensing systems across radar, communications, and electronic warfare performance across modern aircraft platforms. Vertically integrated from design through production and final test to deliver dependable performance and rapid deployment readiness.

Low-SWaP-C AESA Radar (SLAMR)
Our Scalable Low-Cost AESA Multifunction Radar delivers simultaneous multi-mode operation — ISR, detect-and-avoid, search and track, effector hand-off — with a 120° field of regard and power scalability across platform types. Open-architecture. Software-defined.


