Infrastructure

AI Computing Factory

Large-scale liquid-cooled AI computing centers, high-density GPU clusters, modular server rooms

AI ComputingLiquid CoolingData Center
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AI Computing Factory
Product and system interface preview

Overview

The AI Computing Factory provides large-scale liquid-cooled AI computing center delivery spanning high-density computing, cluster networking, liquid cooling, modular rooms, and intelligent O&M. IT loads and operational targets guide a coordinated design across servers, networks, power, cooling, fire safety, monitoring, and site engineering.

Core Capabilities

  • Modular server room and liquid-cooled deployment
  • High-density GPU clusters and high-speed networking
  • Smart O&M and energy efficiency management
  • Full-cycle engineering from planning to delivery

Delivery Principles

Define workload and expansion phases before sizing infrastructure, and define interfaces and test boundaries before manufacturing and construction. Equipment parameters, commissioning records, alert rules, and acceptance evidence are retained for O&M, expansion, and troubleshooting.

PRODUCT EVIDENCE

System & Scenario Evidence

Modular liquid-cooled AI computing center
Modular room, liquid cooling, power, network, and intelligent O&M
AI computing center engineering delivery
Factory prefabrication, rapid on-site assembly, testing, and acceptance
Unified monitoring for AI infrastructure
Unified monitoring of power, environment, network, and equipment · Illustration
SCENARIO PRACTICE

From Computing Demand to an Operable Data Center

IT load, rack density, cooling, power, networking, and O&M are designed together so computing equipment and infrastructure do not evolve in isolation.

Modular AI data center capacity planning
Coordinated computing, racks, cooling, and power · Hanxing solution material
CAPACITY PLANNING

Let IT Load Define Infrastructure

Training, inference, storage, and network needs determine rack count, power density, expansion phases, and availability targets before power, cooling, and space modules are finalized.

  • Load and capacity model
  • Rack power density
  • Network and storage topology
  • Phased expansion boundaries
AI computing center liquid cooling and power
Dense racks, liquid cooling, power, and environmental control · Hanxing material
POWER & COOLING

Power and Liquid Cooling for Dense Computing

Device thermal design power, redundancy, and operating strategy guide liquid or hybrid cooling, with clear primary-loop, secondary-loop, power, and monitoring interfaces.

  • Power architecture
  • Liquid cooling
  • Environmental monitoring
  • Fault isolation and maintenance
Modular data center engineering delivery
Factory prefabrication, site installation, commissioning, and acceptance · Illustration
MODULAR DELIVERY

Coordinate Prefabrication and Site Engineering

Standardized units move to factory prefabrication and testing, while the site focuses on foundations, module placement, utility connections, commissioning, and acceptance.

  • Module detailing
  • Factory testing
  • Rapid site assembly
  • Subsystem and integrated acceptance
Unified O&M for an AI computing center
Equipment monitoring, alert coordination, and operational analysis · Illustration
INTELLIGENT O&M

Unified Monitoring Supports Continuous Operations

Power, environment, cooling, network, and equipment status feed alert levels, work orders, capacity trends, and energy analysis for evidence-based expansion and maintenance.

  • Power and environment monitoring
  • Capacity and energy trends
  • Alert work orders
  • Operational reporting
DELIVERY FLOW

AI Infrastructure Delivery Path

Capacity planning, module detailing, factory prefabrication, site commissioning, and operational handover form an expandable engineering loop.

01

Demand and Capacity

Confirm chips, servers, IT load, rack density, availability, and expansion plans.

02

Module Detailing

Design space, power, liquid cooling, networks, fire safety, monitoring, and interfaces.

03

Manufacture and Build

Coordinate prefabrication tests, logistics, placement, installation, and subsystem startup.

04

Test and Handover

Complete integrated tests, load validation, fault drills, documentation, and O&M training.

PROJECT REFERENCES

Solution Materials and Public Industry References

Hanxing materials explain delivery capabilities. Public references illustrate industry approaches only and are not Hanxing customers or delivered projects.

Modular AI factory solution
HANXING MATERIAL

Modular 30 MW-Class AI Factory Design

A complete design framework organizes dense computing, modular rooms, power, cooling, networks, and delivery stages for capacity planning and detailed engineering.

Source: Hanxing 30 MW AI Factory and modular server room materials
Prefabricated modular data center industry practice
PUBLIC REFERENCE · NOT A CUSTOMER CASE

Prefabricated Modular Data Center Practice

A public industry white paper describes prefabrication, site assembly, lower-carbon design, elastic expansion, and intelligent O&M as common modular data center practices.

Source: ODCC, New-Generation Prefabricated Modular Data Center White Paper; not a Hanxing customer case
Unified computing center O&M
O&M SCENARIO

Unified Power, Environment, and Capacity Management

Power, cooling, environment, network, and device alerts share one operational view for duty management, work orders, capacity trends, and replay.

Source: Hanxing infrastructure solution scenario

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