Power AI Corp

    Phased, De-Risked, AI-Ready Infrastructure

    Design intent aligned to Tier III expectations with redundancy at the block level. Modular 25 MW IT block architecture enables phased commissioning and operational flexibility.

    25 MW IT

    Block size

    150 MW IT

    Phase 1 per campus

    40–120 kW

    Rack density

    Direct-to-chip liquid

    Cooling

    Campus design.

    25 MW IT block standard

    Each data hall is a standardised 25 MW IT module. Phased commissioning enables capital efficiency and rapid scaling. Modules are pre-engineered for high density AI workloads.

    Direct-to-chip liquid cooling

    AI-ready power distribution with direct-to-chip liquid cooling baseline. Cold climate free cooling reduces mechanical chiller runtime across all Canadian sites.

    Utility interconnection pathways

    Primary power through provincial grid supply. Interconnection pathways subject to utility studies and commercial agreements. Resilience options assessed per site.

    Security and data residency

    Tenant isolation, controlled access, and audit logging. All data processed and stored in Canada, supporting federal data sovereignty requirements.

    Facility and compute ownership model.

    Facility

    Power AI Corp builds, owns, and operates the physical campus including power, cooling, and connectivity.

    Colocation

    Tenants provide and own GPUs for initial blocks. Tenant isolation with Canadian data residency.

    Sovereign GPUs

    Sovereign GPU blocks added only with anchor public sector commitments for federal workloads.

    Energy pathways.

    Primary power is provincial grid supply through utility interconnection pathways. Resilience options are assessed per site, including geothermal and renewable energy growth on partnered lands.

    • Provincial utility interconnection, subject to system impact studies and commercial agreements.
    • Renewable growth pathways on partner lands where available.
    • Cold climate free cooling using outside air and water side economization.
    • Waste heat recovery into nearby district heating where feasible.