Complex energy environments
Operate with microgrids, islanded generation or behind-the-meter energy — including oilfield associated gas.
XCITY ENERGY · MODULAR AI INFRASTRUCTURE
XCITY POD integrates compute, power, cooling and backup into a standardized, plug-and-play two-container unit. Factory integration enables independent operation, rapid installation and modular expansion across a wide range of sites.
Rapid. Resilient. Energy-Aware.
The challenge
Six constraints slow conventional data-center delivery.
Zoning, permits and community processes delay delivery.
Land, civil works and equipment create heavy day-one cost.
18–34+ months from planning to commissioning.
Fixed designs struggle to keep pace with evolving AI hardware.
Permanent facilities cannot be stood up quickly.
Sites are constrained by capacity and interconnection.
The product
Select a marker to explore the integrated systems.
Diversify capacity across many sites instead of a single mega-facility.
Replace slow on-site construction with tested factory integration.
Redeploy assets as market, regulatory and energy conditions change.
Product family
40-ft dual-container platform built for the densest AI training and inference racks, with a 1 MW power block and an 800V HVDC-ready pathway.
Six 42U racks for GB200 / B300-class systems; up to 56 kW per rack.
1 MW SST-based block with dual power paths for continuous operation.
70 kW in-row plus liquid cooling for stable operating conditions.
20-ft dual-container platform sized for road transport — mainstream inference and edge capacity that can be stood up wherever power is available.
20-ft form factor for transport across varied sites.
Four 42U racks up to 20 kW per rack for inference and edge.
Accepts 380V input from utility or local generation.
Why it wins
Up to
80%
shorter deployment cycles versus conventional builds.
Deploy close to energy and data. A modular source-grid-load-storage architecture reduces latency and operating cost.
Standard 20-ft and 40HQ formats simplify road, rail and ocean logistics.
ISO formats and lift points move without specialized vehicles.
Combine modules to match workload, site and growth.
Redundant power, automated fire protection and 24/7 monitoring.
Plug & play delivery
Up to 90% of assembly is completed before delivery; site work focuses on power, water and fiber.
Independent ISO containers arrive in phases and need only a prepared pad and crane access.
Add compute, storage or cooling units without redesigning the installed base.
Minimal permanent building work simplifies planning and shortens the path.
Full-load, thermal, power-transfer, fire and storage scenarios validated at the factory.
Global-ready
Configurable for GB, CE and UL. Fire, monitoring and distribution use standardized modules for local certification and remote operations.
ISO-format dimensions and lift points support conventional road, rail and ocean transport — without specialized vehicles.
XPOD supports multi-energy microgrids and an 800V HVDC-ready pathway for B300 and future Rubin-class systems.
Where it runs
Operate with microgrids, islanded generation or behind-the-meter energy — including oilfield associated gas.
Cascade multiple POD units with shared infrastructure to build campuses faster than conventional facilities.
Place capacity near power-rich locations or latency-sensitive demand, wherever reliable energy is available.
Energy advantage
Integrate POD with XCITY Energy’s FGS platform to use renewable generation, long-duration storage and stored cooling for a lower-PUE campus.
Deploy near gas production and convert low-cost associated gas into reliable, behind-the-meter power for computing.
Use rapidly deployable POD capacity as a controllable load during off-peak periods in power-intensive industrial parks.
Safe by design
Clean-agent suppression and smart smoke detection enable early response while protecting equipment and data assets.
A 3D operations platform centralizes power, environment and security status with alerts and remote diagnostics.
Beyond speed
Distributed capacity reduces reliance on any single site and improves continuity during natural disaster or geopolitical disruption.
Relocatable equipment redeploys when regulation, community conditions or energy economics change — preserving hardware value.
Flexible energy interfaces unlock associated gas, industrial heat recovery and waste-to-energy generation.
High compute density, rapid deployment and resilient infrastructure serve both centralized AI clusters and distributed, low-latency applications.
Foundation-model training, fine-tuning and real-time inference.
Scientific research, weather modeling and energy exploration.
Low-latency capacity for smart cities and industrial systems.
Local energy for exploration, optimization and field operations.
Smart mines, ports and mission-critical industrial sites.
End-to-end
From site planning through operations, XCITY supports the full project lifecycle with standardized execution, remote intelligence and field expertise.
Site assessment, engineering, factory integration, logistics, installation and commissioning.
Adapt power, cooling and compute specifications to each workload and environment.
24/7 technical assistance, remote diagnostics and field service when required.
Continuous monitoring and maintenance to protect uptime and asset value.
Let's build
Tell us about the site, the power available and the capacity you need. An XCITY engineer will come back with an indicative configuration and deployment schedule.
Prefer email? hello@xcity.ai
XCITY ENERGY DEVELOPMENT INC.
Rapid. Resilient. Energy-Aware.
An XCITY engineer will follow up at the address you provided. For anything urgent, reach us directly at hello@xcity.ai.