Product Introduction
- Overview: ModulEdge designs Tier III/IV compliant, prefabricated modular data centers engineered for high-density AI workloads and edge computing deployments.
- Value: Delivers rapid, scalable infrastructure deployment with climate-optimized efficiency for mission-critical operations at 5–50 kW per rack density.
Main Features
- High-Density Power Configuration: Supports 5–50 kW per rack with modular scalability, eliminating overbuilding while accommodating mixed AI/edge workloads.
- Climate-Adaptive Cooling Systems: Integrated DX, chilled-water, adiabatic, or free-cooling options tuned to local conditions for predictable PUE efficiency.
- Extreme Environment Hardening: Operates from –35°C to +52°C with EMP-shielded options, featuring vibration/dust resistance for mobile or remote sites.
Problems Solved
- Challenge: Rapid deployment of high-density computing in harsh/remote environments without overprovisioning infrastructure.
- Audience: Enterprises requiring on-prem AI capacity, telecom operators deploying edge networks, and government/military needing field-deployable secure compute.
- Scenario: Deploying GPU-intensive AI training clusters in desert mining operations with minimal connectivity and extreme temperatures.
Unique Advantages
- Vs Competitors: Combines European engineering rigor with 3–6 month deployment timelines and FAT/SAT validation unmatched by traditional data center builds.
- Innovation: Patent-pending modular cooling systems dynamically adjust to ambient conditions, reducing energy costs by 30–60% versus fixed solutions.
Frequently Asked Questions (FAQ)
- What power densities do ModulEdge systems support? ModulEdge delivers 5–50 kW per rack configurations, scalable in modular increments for AI/edge workloads without overbuilding.
- How do cooling systems adapt to different climates? Each unit integrates site-specific cooling (DX/chilled-water/adiabatic/free-cooling) with automated optimization for maximum PUE efficiency.
- What compliance standards do these modules meet? All designs follow Tier III/IV principles with optional EMP hardening, validated through factory (FAT) and site acceptance testing (SAT).