Advanced Thermal Management for AI & HPC Infrastructure
The ThermInfra Rack-Mounted CDU Platform (v1.0) delivers scalable cooling from 500 kW to 2,000 kW. This proven lineup serves as the engineering blueprint for our advanced manufacturing and field applications.
Compact enclosed form-factor with integrated v1.0 smart controller display.
High-efficiency v1.0 circulation assembly with precision filtration and valves.
| Parameter | 500 kW | 800 kW | 1,000 kW | 1,500 kW | 2,000 kW |
|---|---|---|---|---|---|
| Primary Circuit Temp | 30/40°C | 30/40°C | 30/40°C | 30/40°C | 30/40°C |
| Primary Flow Rate | 45 m³/h | 75 m³/h | 90 m³/h | 135 m³/h | 180 m³/h |
| Secondary Circuit Temp | 40/50°C | 40/50°C | 40/50°C | 40/50°C | 40/50°C |
| Width (mm) | 600 mm | 800 mm | 800 mm | 1,000 mm | 1,200 mm |
This Version 1.0 platform anchors ThermInfra's manufacturing and integration playbook for next-generation thermal architecture and engineering solutions.
Dual hot-swappable pumps run active/standby or synchronized, with hot-swappable sensors throughout — designed for continuous uptime during service.
Exploded reference assembly showing hot-swappable module architecture and quick-disconnect hydraulic loops.
| Parameter | Specification |
|---|---|
| Cooling Capacity | 360 kW / 450 kW |
| Water Pumps | 2 — hot-swappable, active/standby or synchronized |
| Power Factor / THDi | PF ≥ 0.95 • THDi < 10% (full load) |
| Secondary Flow @ Lift | 31.2 m³/h @ 180 kPa — 39.0 m³/h @ 250 kPa |
| Max System Pressure | ≥ 10 bar |
| Dimensions (H×W×D) | 2,250 × 600 × 1,200 mm (with casters) |
| Operating Temp / Altitude | 4–45°C • 0–4,000 m |
| Temp. Adjustment Precision | ±1°C |
Note: Specifications shown above are a reference platform used to inform ThermInfra's design targets; final PoC specs for Version 1.1 to be validated in testing.
A tank-based, single-phase immersion architecture built around ThermInfra's patented optimized flow distribution — engineered to eliminate hot spots and maximize thermal uniformity across densely packed compute.
Illustrative system schematic — architecture is documented and design-complete; validated engineering drawings to follow at PoC stage.
Patented manifold and flow-path design equalizes coolant delivery across every server position in the tank.
Avoids the dielectric-fluid cost and vapor-handling complexity of two-phase systems, while preserving high rack density.
Designed for service access and fluid maintenance without disrupting adjacent, in-service compute.
Engineering Status: Architecture is documented and design-complete. Validated engineering drawings to follow at PoC stage.