Shahed-series drones are challenging to detect because they combine a small radar cross section, low-altitude flight, slow speed, and minimal radio-frequency emissions, allowing them to blend with ground clutter and evade many conventional air-defense sensors.
Their compact airframe and use of composite materials reduce radar visibility, while terrain masking further limits detection range. Since they typically follow pre-programmed GPS/INS navigation rather than continuous RF control links, passive RF detection systems have limited opportunities to detect them.
Their relatively low infrared signature also makes long-range thermal detection more difficult. When deployed in large numbers, they can overwhelm air-defense networks and complicate target prioritization. As a result, effective detection requires a layered, multi-sensor approach combining advanced radar, EO/IR, acoustic sensing, and AI-based sensor fusion.
EchoShield is a 4D Ku-band AESA radar optimized for the detection and precision tracking of low-RCS aerial threats, including FPV drones, UAVs, loitering munitions, Shahed-class drones, interceptor drones, and ballistic targets.
It delivers high-resolution range, azimuth, elevation, and Doppler measurements with fire-control quality accuracy. Advanced digital beamforming, adaptive clutter suppression, and micro-Doppler processing ensure reliable detection and discrimination in complex environments.
Its exceptional long-range tracking accuracy supports interceptor drone guidance, ballistic trajectory estimation, and precision engagement. The compact AESA architecture integrates seamlessly into layered air-defense and Counter-UAS networks for real-time target tracking and engagement.
The Advanced 1000 Hz Coherent Multi-Constellation GNSS Spoofer with DRFM EW Jammer delivers precision electronic attack against modern UAV navigation and communication spoofing for rapid target takeover. Integrated DRFM technology provides coherent jamming and deceptive waveform generation against multiple RF threats. CEMA (Cyber Electromagnetic Activities) capabilities enable coordinated cyber-electromagnetic attacks, including protocol manipulation, network disruption, and spectrum dominance. Designed for network-centric Counter-UAS and EW missions, it integrates seamlessly into layered air-defense architectures.
The 40 GHz 3D Multilateration Location Finder provides passive geolocation, wideband drone detection, direction finding across the RF spectrum up to 40 GHz. it accurately determines the three-dimensional position of UAVs, controllers, and RF emitters without transmitting any signals. Wideband digital receivers enable detection of commercial, military, FPV, and frequency-hopping drone communications. Designed for network-centric Counter-UAS and Electronic Warfare operations, it seamlessly integrates with radar, jammers, spoofers, and AI-based command-and-control systems for active enagment.
High-Speed Interceptor Drones provide a rapid and agile hard-kill capability against hostile UAVs, loitering munitions, and FPV drones. AI-assisted guidance, precision navigation, and advanced target tracking enable autonomous interception of high-speed and maneuvering aerial threats.
The system integrates seamlessly with radar, RF detection, and command-and-control networks for automated threat cueing and engagement. Designed for rapid launch and high acceleration, it delivers effective point and area defense with minimal engagement time. Modular payload options and network-centric operation make it a scalable solution for layered Counter-UAS and integrated air-defense missions.
As a last mile precision hard-kill engagement against drones, loitering munitions, and other low-altitude aerial threats. Integrated with radar, RF detection, and AI-based command-and-control systems, it automatically receives target tracks and engagement cues in real time.
Advanced ballistic computation and target prediction enable accurate interception of high-speed and maneuvering targets. The stabilized fire-control system delivers high first-round hit probability under static and mobile operating conditions.
Automated target tracking, lead-angle calculation, and threat prioritization significantly reduce operator workload and engagement time. The modular open architecture supports integration with a wide range of kinetic effectors and remote weapon stations. Designed for layered air-defense operations, the CUA-FCWS enhances force protection against single threats and coordinated drone swarm attacks.
The Drone Counter-Drone Integrated Management System (DCIMS) provides a unified command-and-control platform for real-time detection, tracking, identification, and engagement of aerial threats. It fuses data from radars, RF sensors, direction finders, jammers, spoofers, interceptor drones, and fire-control systems to generate a single operational picture.
AI-driven threat evaluation, automated kill-chain management, and intelligent effector allocation enable rapid and coordinated responses. Built on an open, network-centric architecture, it supports seamless integration with existing and future C-UAS, air-defense, and Electronic Warfare assets.
Secure communications, GIS-based visualization, and multi-level command interfaces provide scalable situational awareness from tactical units to strategic headquarters.
Contact IIO Technologies and talk to one of our drone defense specialists. We'll design a solution around your exact operational requirements — from single-site installations to multi-domain national networks.