Ground-up sites give full control of the thermal and power architecture, and the longest runway. We integrate the stack alongside civil and structural delivery, so density requirements shape the building rather than being fitted into it afterwards.
Existing facilities carry secured power and a live schedule advantage, but were designed for a fraction of AI density. We assess what the envelope, distribution, and heat rejection can actually carry, then engineer the density upgrade around real constraints.
Prefabricated modules compress schedule by moving integration off the critical path and into a controlled build environment. Delivered in MW increments, they suit staged capacity and constrained sites.
We evaluate available utility capacity, interconnection timeline, envelope, and heat rejection potential across candidate sites and models.
Deployment model is selected against schedule, density target, and capital structure together — including which costs the partner network can absorb.
The unified stack architecture is developed for the chosen envelope, with the same engineering standard applied regardless of model.
Partners execute under one schedule and one authority, with commissioning verifying performance against the original specification.