Engineering systems that operate at the boundaries of human possibility from deep ocean to low Earth orbit, enabling people to safely operate where humans dream to explore.
A unified human systems infrastructure, engineered to perform across extreme environments on Earth and beyond.


A vertically integrated platform engineering the systems, tools and protocols. Built for the next generation of frontier operations.
Pressure, vacuum, thermal and hazardous-atmosphere qualification across the full operating envelope, from heliox saturation at 21 ata to orbital vacuum. Campaigns structured on MIL-STD-810 environmental methods, with a requirement-to-evidence chain auditable on demand.
Human surrogate platforms and digital twin environments that generate physical ground truth without operator exposure. SYNHUM occupies the suit and measures; SYNSUIT predicts what the measurement should be. Divergence between them refines the model.
Core and skin temperature, heart-rate variability, blood oxygen saturation, CO₂ retention and work of breathing, correlated against work rate and environmental load. Sub-250 ms sensor-to-alert design target through Kernel360.
Crew physiological baselining before the mission, live supervisor and medical views during it, and an exportable evidence package after. Every run becomes a measured event with a traceable record rather than a procedure assumed to have worked.
Engineered to the standards our customers certify against: NASA-STD-3001 Volume 2 for human-systems integration, NFPA 1994 for CBRN ensembles, IMCA D 014 and DMAC for saturation diving, AS/NZS 2299 for occupational diving. Certification evidence is generated by the validation programme, not retrofitted to it.
Collaborative R&D with research institutions including UTS Tech Lab and CSIRO, advancing biomechanics, materials science and human performance under extreme load, with a direct path from lab bench to field deployment.

The Bioastronautics Engine turns a suit into an instrumented node. Physiological, environmental and system telemetry on one data model, whether the operator is at 90 msw, at altitude, or in vacuum. Every application above it runs on that layer.
Kernel360 delivers the live operational picture through the PULSE program: supervisor and medical views configurable by domain, intervention-grade alerting to the operator, full record to the mission desk.
The Bioastronautics Engine drives the internal test and validation toolchain. Protocol versioning, sensor characterisation and a requirement-to-evidence chain that holds up under audit.
Evidence packages assembled from operational and test telemetry, structured for the qualification frameworks our customers certify against, rather than reconstructed after the fact.
The engine does not require a Metakosmos suit. Legacy suits and next-generation systems instrument on the same data model, so operators can start with the fleet they already field.
Co-development of human systems technologies with academia, government agencies and frontier technology companies.
Live mission demonstrations showcasing platform capabilities for prospective partners, clients and government stakeholders.
Educational initiatives and public outreach programs to inspire the next generation of human spaceflight pioneers.
Metakosmos Next Generation Commercial Spacesuit
An introduction to the commercial approach to Spacesuits and suit as a platform model. Inside the CEO vision for commercial human spaceflight systems
A 4K trailer exploring the Metakosmos mission and the future of human operations in extreme environments.
Humanity is expanding the limits of exploration, industry, and endurance. Be part of building the infrastructure that sustains life beyond Earth.