LowGuard Systems

Detection is the hard part

Small, slow, low-flying drones are genuinely difficult to detect: tiny radar cross-sections, cluttered backgrounds, radio silence. Our work is building the sensing layer that makes everything downstream possible — and specifying it with open parameters.

EO/IR · passiveRadar · activeRF spectrum · passiveAI · on-deviceEffectors · specified openly

The doctrine: layered, fused, detection-first

No single sensor class solves low-altitude surveillance. Radar sees through weather but cannot identify; spectrum monitoring only hears emitting targets; acoustics struggle with background noise; electro-optics sees and identifies but needs a cue to search efficiently. The answer is fusion: each sensor class covers the others' blind spots, and a command layer correlates them into one air picture.

Detection-first means the architecture is built around the sensing core. Effectors — jamming, capture, directed energy — exist in the complete system picture, specified openly in the countermeasures section, and are deployed only where law and licensing allow.

The technology pages

Interface philosophy

Every device speaks standard protocols: 100 Mbit Ethernet, UDP data, RTSP video, RS-422/232/485 on AI modules. Radar and spectrum receivers cue electro-optics to a search box; electro-optics hands off fire-control-grade coordinates. This openness is deliberate — our sensors are designed to drop into integrators' existing command layers, not to lock anyone in.

Comparing approaches for your scenario?

Tell us the terrain, the threat and the existing sensors — we will suggest a sensor mix, with reasoning.

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