Orbital infrastructure platform in orbit above the Earth

SPACE INFRASTRUCTURE PROGRAMS

Efficiency for space
infrastructures

Dual-use technologies serving space infrastructures.

Architecture and support of space programmes through the integration of technologies from computing, artificial intelligence and industrial systems. We help make orbital infrastructures more efficient, more resilient and more sovereign.

Convergence of industrial technologies — computing, energy and systems — towards an orbital platform

Our conviction

Dual-use: an accelerator for space infrastructures.

The cost of reaching orbit has fallen, yet designing space infrastructures remains long and expensive — partly because industry often develops, for space alone, capabilities that already exist elsewhere. Our conviction is the opposite: bring the non-space world to space. Reuse, adapt and qualify technologies already industrialised in defence, nuclear or advanced computing, to drive down costs and accelerate programmes.

Our approach

Orchestrate dual-use skills, not reinvent building blocks.

Identify what already exists

Spot, across terrestrial and defence industries, the mature technologies that already meet space constraints — computing, sensors, hardened electronics.

Adapt & qualify

Carry out the integration, additional hardening and qualification needed to bring a proven building block to reliable orbital use.

Architect the programme

Design the end-to-end dual-use Earth–Space architecture and support the programme, from strategy to operational implementation.

Illustrative case

Radiation-hardened electronics: an already-industrial heritage.

Space, defence and nuclear share the same constraint: operating electronics in highly radiative environments. It is precisely this kind of overlap that we seek to exploit.

Why develop twice?

Components already designed to withstand radiation

The space industry already relies heavily on commercial off-the-shelf components (COTS) or components from other sectors, driven by the need to reduce satellite costs. According to industry players, adapting existing components rather than relying solely on dedicated rad-hard parts can halve the cost of a computing board.

The logic extends beyond electronics: materials, hardening processes and qualification expertise developed for harsh terrestrial environments form a heritage that can be reused for orbit.

EarthIndustrial & defence heritage
1Terrestrial heritageComponents & processes hardened for nuclear and defence.
2Dual-use assessmentRelevance to the targeted orbital constraint.
3Adaptation & qualificationUpscreening, mitigation by design, testing.
4Orbital integrationLower cost, shorter lead time, controlled reliability.
SpaceReliable & sovereign orbital programme

Our strength

A network that connects worlds.

Hyperion's value lies less in a proprietary technology than in its ability to bring together the right skills at the right time. Our network connects space, defence and terrestrial industries to build coherent dual-use programmes.

Space

Orbital expertise

Programme architecture, space data and the constraints of the orbital environment.

Defence

Dual-use standards

Robustness standards, sovereignty and proven dual-use thinking.

Terrestrial industries

Mature technologies

Nuclear, computing and industrial systems: building blocks already qualified in harsh environments.

Computing & AI

Data intelligence

Processing and computing, in orbit and on the ground, to make data actionable.

We believe humanity can only sustain its growth by widening its horizon of resources beyond Earth. Making space more affordable is what makes that future possible.

Towards efficiency, through space — Hyperion Stellar Technologies

Let's talk

Let's build your space programme.