Dual-use applications: from Earth's power to the stars

Discover how our groundbreaking generator technology offers a unified solution for diverse challenges, from sustainable energy on Earth to advanced capabilities for space exploration. One core innovation, countless possibilities.

Waste heat to watts: power for Earth

If proven, the SCG-HMH Generator unlocks significant advancements in terrestrial energy. It transforms waste heat from factories, flues, and existing power grids into usable electricity. Imagine data centres that cool themselves while exporting power, or modular, off-grid baseload solutions without the need for combustion. This technology promises cheaper compute and AI at scale by converting heat directly into watts, and it enables district heating and power from a single liquid nitrogen loop. We are seeking researchers to stress-test thermodynamics, bearings, and nozzles, as well as businesses with waste heat (data centres, plants, grids) interested in hosting, tooling, or funding a Phase-1 cell. Builders in cryogenics, rotors, HTS, and instrumentation are also key to proving this concept. This is about making an abundant future possible and making it a public driven first principle experiment so this can be verified in reality.

Beyond Earth: TITAN's power and propulsion

The same fundamental cell within the SCG-HMH Generator is envisioned as the heart of the TITAN-class craft, providing power, cooling, and a nitrogen jet for propulsion.

This single unit enables mini-magnetosphere shielding and stellar-plasma collection, while also allowing for in-situ resource utilisation (ISRU) to top up propellant and coolant from celestial bodies like Titan, comets, and icy moons. Long-duration habitats can efficiently dump heat into the working fluid, and magnetic handling or tractor-style work around asteroids becomes feasible. Additionally, slow N₂/O₂ seeding for thin-atmosphere work and crew health systems (Guardian) will run on the ship's power. Later, if the physics holds at scale, this technology could lead to relativistic cruise, terraforming arrays, and speculative spacetime layers. We are reaching out to students and the curious who want to follow a public first experiment, and ordinary people who care about bills, climate, and their children’s future.

One Generator, many jobs: benefits and next steps

Waste heat, which is currently a climate cost, transforms into valuable watts. Compute power can help pay for itself, driven by a chemically gentle process where the main challenges lie in high RPM and cryogenics.

For space applications, power, life support, and thrust all share a common fluid with the cold expanse of space as the ultimate sink. None of these ambitious applications will materialise until Phase-1 demonstrates levitation, spin, and a nitrogen jet. 

The same cold cell that cools a data hall and sells power back is the very cell that could sustain a starship. If the generator is proven, Earth and space become part of the same project. We encourage you not to wait for TITAN to care. If you manage heat—be it from servers, flues, or a lab, consider whether a SCG-HMH generator belongs in your facility. If you build or fund hardware, help us prove the fundamental integration of this novel technology.