Infrastructure Division

Planetary Systems.

Autonomous infrastructure for extreme environments. We are building the foundational systems required to sustain human presence beyond Earth.

Research & Development

Closing the resource loop. Our core research focuses on turning hostile environments into habitable ones through autonomous logic.

[ISRU-01]

In-Situ Utilization

[LOGIC_VERIFIED]

Autonomous extraction protocols. Algorithmic modeling for regolith-to-oxygen conversion cycles without human oversight.

[FAB-02]

Autonomous Assembly

ACTIVE_RESEARCH

Robotic sintering systems. Building radiation-shielded habitats using local geometry and physics.

[ATMOS-V]

Atmospheric Processing

PROTOTYPE

Closed-loop environmental control. Breaking down Martian CO2 for life support and propulsion.

[HYDRO-X]

Subsurface Hydrology

THEORETICAL

Deep-drill autonomous logic for brine extraction and purification in cryogenic environments.

System Status: Active

Planned Simulation
Architecture

Before any system leaves Earth, it undergoes millions of hours of testing in our high-fidelity digital twins. We model physics, fluid dynamics, and failure states.

ID
Environment Name
Fidelity
State
SIM-882
Jezero_Digital_Twin
0.25m/px
[TARGET_ENVIRONMENT]
SIM-901
Atmospheric_Fluid_Dynamics
High
[MODEL_TRAINING]
SIM-104
Regolith_Granular_Physics
Discrete
[DATA_INGESTION]

Active Frameworks & Compliance

COSPAR Category V

Sterile

Adhering to strict biological containment protocols. No biological material leaves LEO without verification. We maintain zero-contamination tolerance for celestial bodies.

Outer Space Treaty

Art. IX

Operating under international provisions for avoiding harmful contamination of celestial bodies. Our mission parameters are defined by the responsible stewardship of interplanetary space.

Build the future
off-world.

We are looking for researchers to solve the hardest problems in autonomous systems.