XONE builds advanced RF geolocation sensors that enable signal reconnaissance, surveillance, real‑time threat detection, and force protection at the tactical edge. Their small‑form‑factor, MOSA‑compatible hardware and software deliver precision accuracy and wide‑area, mass geolocation, fitting on platforms from micro‑UAVs to jet aircraft while reducing operator cognitive load. The sensors are an order of magnitude smaller than traditional arrays, supporting autonomous operation and rapid integration across diverse missions.
Funding
Funding not disclosed
Founders
Product
Problem
Military and security operators often lack the ability to detect, locate, and track RF emissions in real time using platforms that are too large, heavy, or power‑intensive for tactical missions, limiting situational awareness and force protection.
Solution
XONE offers compact RF geolocation sensors that combine software‑defined radios, embedded processing, and FPGA‑based signal analysis to provide precision, real‑time tracking of RF sources. The sensors are built to MOSA‑compatible, open‑architecture standards (SOSA, Mod Payload) and can be integrated onto small UAVs, UxS, or larger aircraft, enabling wide‑area, mass geolocation without sacrificing payload constraints. Autonomous operation and an intuitive operator workflow reduce cognitive load, delivering actionable threat data directly to mission crews. The hardware‑software suite supports both signal reconnaissance and electronic warfare applications, delivering consistent performance across airborne, maritime, and ground platforms.
Target Audience
Primary customers are defense and security agencies that equip UAVs, UxS, and manned aircraft with RF sensing capabilities for signal intelligence, surveillance, and force‑protection missions.
Features
- Small‑form‑factor RF sensor array an order of magnitude smaller than traditional systems, suitable for deployment on micro‑UAVs and larger aircraft
- Integrated software‑defined radio front‑end with FPGA‑accelerated digital signal processing for high‑precision geolocation
- Open, modular architecture compliant with industry standards (SOSA, Mod Payload) for easy integration and scalability
- Autonomous operation modes that handle data collection, processing, and transmission without continuous operator input
- Real‑time tracking and wide‑area mass geolocation capabilities delivering precise location estimates of multiple emitters simultaneously
- User‑centered interface that streamlines workflow and minimizes operator cognitive load during tactical missions