
Natural-Uranium
Runs on natural, unenriched uranium, sidestepping the enrichment supply chain and easing safeguards.
Every design is an incremental build on shared, proven IP, not a capital-heavy program from scratch.
Nine configurations spring from a few shared cores: common materials, fuels, and modules, with coolants swapped per mission. A family of reactors that de-risk one another.
Resilient, transportable reactors for defense bases, remote sites, industry, and the grid.

Runs on natural, unenriched uranium, sidestepping the enrichment supply chain and easing safeguards.
Most EconomicalA compact LEU/HALEU microreactor built from qualified off-the-shelf modules and engineered around the lowest cost per kilowatt for fleet-scale deployment.

A fast-spectrum core that turns transuranic waste into power, closing the fuel cycle.

A HeXe-cooled core delivering very high outlet temperatures for power and process heat.

A NaK-cooled fast reactor: high power density and excellent heat transfer at near-atmospheric pressure.
Launch-safe cores engineered to serve both worlds: silent power for a forward operating site today, a lunar outpost or deep-space mission tomorrow.
Flagship CoreA sub-quarter-tonne reactor compact enough to ship to the field and light enough to fly. The crossover core at the heart of the portfolio.
Flagship CoreA megawatt-scale bridge reactor at roughly one tonne: large surface bases on Earth or the Moon today, deep-space transit tomorrow.
Two distinct flight-class propulsion designs, aligned to NASA and DoW space-nuclear roadmaps.

A high-temperature reactor paired with power conversion to drive efficient electric thrusters for cislunar logistics and deep-space transit.

A high-thrust thermal-propulsion core for fast crewed missions, building on our cislunar-demonstration and propulsion reference-design experience.
Tell us about your mission, terrestrial or space, and we'll show you the fastest credible path from concept to criticality.