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Nemesys

Nemesys provides modular open‑architecture systems that streamline the integration of payloads and compute modules for unmanned aircraft systems.

Updated 1 month ago

Funding

Funding not disclosed

Funding rounds are not available yet.

Founders

Founder details are not available yet.

Product

Problem

Unmanned aircraft systems (UAS) often require extensive custom integration to attach new sensors, payloads, or compute modules, leading to long development cycles and limited flexibility as mission requirements change.

Solution

Nemesys offers a modular open‑architecture platform that decouples payloads and compute from the host aircraft. Its LINK Common Payload Control (CPC) aggregates telemetry, status, and mission data into a shared tactical picture accessible via web and TAK interfaces. By supporting both Nemesys‑built and third‑party payloads, the system enables proven UAS airframes to be rapidly reconfigured for multiple mission profiles without extensive software rewrites. The architecture runs on the host platform or on dedicated Nemesys compute, preserving interoperability with enterprise‑scale platforms and allowing operators to add or swap capabilities as needs evolve.

Target Audience

Primary customers are defense and commercial UAS operators, system integrators, and mission planners who need flexible, quickly reconfigurable aircraft for varied intelligence, surveillance, reconnaissance, and payload‑centric missions.

Features

  • LINK CPC provides unified control, telemetry, and status for all connected payloads through configurable capability layers
  • Web‑based and TAK (Tactical Assault Kit) interfaces deliver a common operating picture for operators and command centers
  • Modular hardware and compute components can be hosted on the aircraft or on external Nemesys compute units
  • Compatibility with both Nemesys and third‑party payloads reduces custom integration effort
  • Scalable design maintains interoperability with enterprise platforms such as Lattice
  • Enables rapid reconfiguration of proven UAS into multi‑role, mission‑configurable vehicles
This profile is AI-generated and may contain inaccuracies.