Engineering the Foundation for AI Data Centers
Heavy-duty raised floors and liquid cooling infrastructure platforms engineered for AI factories, GPU clusters and next-generation data centers.
Direct structural load transfer for the heaviest GPU racks.
DLC supply, return and manifolds built into the platform.
Modular growth and full underfloor accessibility.
The AI Infrastructure Challenge
AI racks are heavier, hotter and more power-dense than anything legacy data centers were built for. The floor is no longer passive — it is critical infrastructure.
Extreme Rack Loads
GPU racks now exceed 1,500 kg and demand direct, uninterrupted structural load transfer to the slab.
Direct Liquid Cooling
High-density compute requires continuous DLC loops, manifolds and leak-safe distribution at rack level.
Future Expansion
Facilities must scale without rebuilds — flexible routing, inspection corridors and modular growth.
Operational Efficiency
Maintenance, airflow and thermal management must stay simple even as power density keeps climbing.
Why Traditional Raised Floors Fail
Legacy raised floors were designed for yesterday's IT rooms — not for AI factories running liquid-cooled GPU clusters.
Traditional Raised Floor
Built for low-density legacy IT
- ✕ Limited routing space for cooling and power
- ✕ Difficult liquid cooling integration
- ✕ Complex, disruptive maintenance
- ✕ Not designed for AI rack weight or heat
FlexFloor + FlexPod
Purpose-built for AI infrastructure
- ✓ Large service corridor for pipes & manifolds
- ✓ Direct Liquid Cooling (DLC) ready by design
- ✓ Easy maintenance and full accessibility
- ✓ AI / HPC optimized structural performance
FlexFloor — Heavy-Duty Raised Floor
Five engineered load classes from FS1000 to FS2500, topping out at the highest structural capacity in the range.
| Model | Distributed Load | ≈ Equivalent | Deflection |
|---|---|---|---|
| FS1000 | 23.1 kN/m² | ≈ 2,400 kg/m² | ≤ 2.5 mm |
| FS1250 | 28.9 kN/m² | ≈ 3,000 kg/m² | ≤ 2.5 mm |
| FS1500 | 34.7 kN/m² | ≈ 3,600 kg/m² | ≤ 2.5 mm |
| FS2000 | 46.2 kN/m² | ≈ 4,800 kg/m² | ≤ 2.5 mm |
| FS2500PEAK | 57.79 kN/m² | ≈ 6,000 kg/m² | ≤ 2.5 mm |
Indicative working-load values. Request the full datasheet for certified test reports and concentrated-load ratings.
FlexPod — Liquid Cooling Platform
A modular structural platform installed beneath the racks that carries the entire cooling distribution layer — supply, return, manifolds and quick connectors.
A dedicated cooling corridor under every rack
FlexPod separates the cooling infrastructure from the structural floor, creating a large, serviceable underfloor area engineered for direct liquid cooling.
- ✓ Large underfloor service area
- ✓ Easy maintenance & inspection access
- ✓ Future expansion without rebuilds
- ✓ Improved airflow management
- ✓ Simplified cooling infrastructure
Supply Ring
High-capacity chilled-water supply loop running the structural corridor.
Return Ring
Dedicated return loop keeping supply and return fully separated.
Quick Connect
Drip-free quick connectors for fast, leak-safe rack hookups.
Hydraulic Hoses
Flexible high-performance hoses for direct AI rack cooling.
Cooling Distribution
Hydraulic manifolds balancing flow across the GPU cluster.
AI Rack Integration
Native integration with rack CDUs and DLC server loops.
How It Works
A closed-loop liquid cooling path from the plant to the AI servers and back — all routed through the FlexPod platform.
Cooling Plant
Chiller / CDU source
Supply Ring
Chilled fluid in
Quick Connect
Leak-safe hookup
Rack CDU
Distributes to servers
AI Servers
Heat captured
Return Ring
Warm fluid out
Built for Every AI Workload
From hyperscale AI factories to research HPC clusters, FlexFloor and FlexPod scale to the most demanding environments.
Technical Advantages
Engineered numbers that define the platform.
Documentation & Downloads
Request technical documentation, CAD/BIM data and certified load tables for your project.
Build AI Infrastructure Without Limits
Partner with our engineering team to design the structural and cooling foundation of your next AI factory — from load class to liquid loop.