Construction

From Factory Floor to Energized Campus

Container data halls, a common modular platform, protected power and the site work that ties it all together.

Footplan

Container Data Hall Sideview

The three-layer design ensures that each functional area operates independently: water piping is routed below, IT equipment sits in the middle, and cabling runs above.

Container data hall sideview render: piping below, racks in the middle, cabling above
Container data hall sideview, showing the three stacked layers
Modular Data Hall · 10 MW

IT power capacity 10,352 kW
Designed for 96 racks

Modular Data Hall · 20 MW

IT power capacity 20,704 kW
Designed for 192 racks

Main Benefits
  • Reduces complexity and time of a large data center build-out
  • Module design specifically engineered for larger deployments
CABLING · BUSWAY · TRAY IT EQUIPMENT · 96 RACKS PER 10 MW HALL WATER PIPING · SUPPLY / RETURN
Cabling layerBusway, power cabling and communications trays run above the racks, keeping every joint reachable for service.
IT layer96 racks per 10 MW hall (192 per 20 MW) in the middle tier, each functional area operating independently.
Hydronic layerSupply and return water piping routed below the floor, isolated from the IT and electrical layers.
Piping Below · IT Middle · Cabling Above

Water piping is routed below, IT equipment is located in the middle, and cabling runs above.

4–5 Months

Approximate schedule for container customization, validation and testing.

Final Structural Design

Final structural design, stacking and any dual-layer integration.

Container Family

One Modular Platform, Four Core Functions

Functions vary while transport envelopes, connection datums and service principles remain consistent.

1 · IT Hall

High-density racks, busway, liquid piping and containment.

2 · Power

MV/LV, UPS, batteries and distribution.

3 · Cooling

CDU, pumps, heat exchange, water treatment and drainage.

4 · Support

Controls, fire, security, spares and operating space.

Key Points
  • All containers are custom-designed
  • Site visit case: diesel generator container
  • Dimensions: length 9.0 m / height 4.0 m / width 3.6 m
  • The fuel tank sits in the lower container, integrated with the diesel generator system in the subsequent stage
  • Diesel generator equipment is owner-supplied
Containerized UPS & Battery

Power Module + Battery Container: Modular UPS N+1, 10-Minute Autonomy

UPS and batteries are separated by compartment and enclosure to reduce thermal events and common-cause failure. Factory-prefabricated, tested modules connect to the POD through standardized interfaces.

Power Module Container
Power module container: LV switchboard, three UPS and bypass EMS
LV SWBD UPS A UPS B UPS C BYPASS / EMS

Switchboard, three UPS modules and bypass/EMS in one prefabricated, pre-tested enclosure.

Battery Container
Battery container: three strings with BMS, HVAC and fire protection
STRING A STRING B STRING C BMS / HVAC / FIRE

Battery strings compartment-separated from the UPS, with dedicated BMS, HVAC and fire protection.

0MW IT block design load 3 × 1.35 MW UPS (2+1)
0% Per-unit loading, three units sharing 862.7 kW per unit; approx. 47.9–51.1% at 75–80% daily IT load
0% Per-unit UPS loading during N+1 event 1.294 MW per unit; two units carry the load when any UPS is out
0min Battery autonomy target Usable 215.7 kWh; preliminary selection 240–270 kWh per UPS

Final battery capacity is verified against OEM constant-power curves, inverter efficiency, DC voltage window, temperature, EOL aging and BMS reserve.