Technology That Leads, Not Follows

A full-stack modular autonomy architecture (RF-independent sensing, edge AI, modular hardware, and operator tools) engineered for the mission and proven where most systems fail.

RF-Independent by Design

Most counter-UAS and electronic-warfare systems are optimized to detect, intercept, jam, or exploit radio-frequency emissions. That foundational assumption no longer holds: fibre-optic guided drones, tethered systems, LTE/5G-controlled platforms, and autonomous "dark drones" emit little or no exploitable RF signature.

RF-independence is not a feature of one product at OBJEXIS. It is how the whole stack is built. Detection that tracks physical objects instead of emissions, so it still sees the threat when the spectrum goes dark. Interceptors that fly and strike without emitting a signal to jam or trace. Navigation that keeps working when GPS is jammed or spoofed. The entire system is designed to operate in the electromagnetic environment the front line actually fights in, not the clean one legacy systems assume.

FIXAIT is the clearest proof: architected for non-RF sensing from its first version, it held a live jammed environment on the front line with no degradation while surrounding drones crashed from the jamming. Its detection pathway simply does not depend on RF.

FIXAIT tracking a Russian KVN fibre-optic drone · zero RF to detect, tracked anyway

The Full-Stack Architecture

AI Detection & Targeting: FIXAIT computer vision for detection, classification, tracking, targeting overlays, and C2-ready outputs on any EO/IR sensor.
The AI Pipeline: The connective backbone: data capture, high-fidelity processing, synthetic augmentation, model training, and continuous field improvement in one loop.
Modular Avionics (M2E): A layered hardware stack for flight control, expansion, video and payloads, and AI mission compute, built in Canada, NDAA-compliant configurations.
GNSS-Denied Navigation: Autonomy that keeps flying when satellite navigation is jammed, spoofed, or unavailable.
Sensor Fusion & RF Detection: Multi-source ingestion across video, IR, RF, and environmental feeds from airborne, fixed, or mobile platforms.
Operator & C2 Integration: Mission Builder, operator GUI, NATO symbology support, and CoT/ATAK-native command-and-control integration.

Every layer is modular and containerized, deployable at the tactical edge, and designed to improve continuously from real operations.

TESI: Build, Deploy, Evolve at the Edge

Traditional defence systems move at the speed of contracts. OBJEXIS moves at the speed of the threat. TESI, Tactical Edge Systems Integration, is the OBJEXIS workflow for turning real-world requirements into deployable autonomous capability, fast.

1 Observe Need

Front-line users expose the mission requirement.

2 Configure Modules

Assemble aircraft, avionics, and payloads from the shared stack.

3 Deploy at Edge

Carry, launch, and repair close to the point of need.

4 Sense & Coordinate

FIXAIT and C2 turn the platform into an intelligent system.

5 Capture & Adapt

Field data updates models and mission variants.

TESI turns autonomy from a procurement program into a field-adaptable operating system, closing the loop between operational reality and system capability faster than any traditional defence development cycle.

What Sets Our Technology Apart

We don't wait for government directives; we anticipate mission needs. Our innovation is continuous, not cyclical, because we integrate feedback from the field in real time. We build full-stack solutions, from airframes and avionics to AI and operator software, for seamless integration and performance where it matters.

Experience the OBJEXIS Platform

Contact us to learn more, request a technical demo, or explore partnership opportunities.

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