Plan the data hall, power and thermal systems together.
Bring the critical physical systems inside one coordinated design and operating boundary.
Illustrative integrated campus · configuration varies by approved power pathwayENERCUBE™ PLATFORMS
ENERCUBE™ integrates secure AI-ready infrastructure, governed onsite power, dynamic power assurance and liquid-cooling readiness into a repeatable deployment platform.
THE PLATFORM
ENERCUBE™ is designed around the interdependence of power, secure AI infrastructure and cooling—not as three separate projects joined late in development.
Bring the critical physical systems inside one coordinated design and operating boundary.
Customer technology can evolve while the controlled physical platform remains useful.
Use a consistent planning basis without pretending every location or customer is identical.
PLATFORM ARCHITECTURE
The suite order defines the platform. The energy pathway below explains how the systems operate together.
Secure, AI-ready compute infrastructure and the controlled physical environment for mission-critical AI workloads.
Governed, project-specific selection between co-equal PAFC electrochemical and thermo-mechanical microturbine CCHP pathways.
Power assurance, energy storage, electrical stability, dynamic response and control systems.
Technology-flexible, not technology-agnostic. The project pathway is selected against reliability, dynamic response, thermal, permitting, supply-chain and financeability requirements.
Steady baseload operation, low local emissions and low water intensity.
Dynamic response, thermal recovery and absorption-chilling integration.
REFERENCE OPERATING PATH
MODULAR BY DESIGN
The platform begins with a consistent 6.25 MW IT increment and combines modules into 12.5 MW and 18.75 MW reference products.
Reference configurations are planning concepts. Final capacity, performance and equipment selections remain subject to customer requirements, vendor support, detailed engineering and site conditions.
WHERE THE PLATFORM FITS
ENERCUBE™ is designed for AI deployments that require greater control over delivery, resilience and thermal performance.
Coordinate power, secure physical infrastructure and thermal readiness around high-density AI load requirements from the outset.
Create a controlled infrastructure setting where security, resilience, jurisdiction and operational authority matter.
Support deployments where conventional utility delivery and interconnection cannot match the timing or density of demand.
They become one governed infrastructure system.
START THE CONVERSATION