Solution - Scientific Research

Solution - Scientific Research

Solutions · Scientific Research

HPC Infrastructure for
Research at the Frontier.

Research-grade simulation demands compute infrastructure that sustains continuous full-load operation with the thermal capacity for next-generation accelerator density.

Discuss Your Research Infrastructure

Frontier research has outpaced conventional HPC.

Exponential Data Volume

Genomics, climate modeling, and particle physics generate data at scales requiring co-located storage and compute.

Sustained Full-Load Thermal Density

Research campaigns run continuously at maximum utilization with no idle period for thermal recovery.

Existing Facility Constraints

New compute capacity must deploy within or adjacent to existing facilities without structural modification.

EPC Solution

HPC-grade modular infrastructure.

CoolSpace delivers modular hydro-cooling infrastructure with direct-to-chip cold-plate cooling for GB200/GB300-class accelerator platforms and elastic architecture for phased expansion. Container Series deploys on existing campus land; indoor CoolPod installs within existing machine rooms. Reference deployment: Ethiopia 75MW+ facility, 3 years continuous operation, 99.9% availability.

· Direct-to-chip cold-plate for GB200 / GB300 / Rubin accelerator platforms · Container and indoor deployment options — no new building required · Phased expansion: add capacity without replacing existing infrastructure
Research scientist and engineer reviewing simulation results on a tablet in front of a server rack system

Why CoolSpace for research compute.

Sustained Full-Load Operation

Closed-loop hydro-cooling maintains stable thermal performance under continuous maximum utilization with no thermal recovery window.

Next-Generation Accelerator Support

Direct-to-chip cold-plate architecture supports GB200 / GB300 NVL72 and equivalent platforms with headroom for subsequent hardware generations.

Flexible Deployment Format

Container Series deploys on existing campus land; indoor CoolPod installs in existing machine rooms. Both arrive factory pre-engineered.

Elastic Research Capacity

Modular block architecture expands in 380kW-1MW increments alongside research program growth without redesigning existing infrastructure.

Infrastructure Parameters

Research compute block specifications.

Cooling MethodClosed-loop hydro-cooling
Cold-Plate SupportDirect-to-chip for GB200 / GB300 / Rubin
PUE (Free Cooling)≤ 1.05 (PUE < 1.15 North America incl. distribution)
PUE (45°C Ambient)≤ 1.25
Ambient Tolerance65°C / 149°F rated
Water ConsumptionZero
Form FactorsContainer Series (outdoor) · CoolPod Series (indoor)
IT Load Range380 kW (pilot) → 20 MW+ (hyperscale campus)
Deployment TimelinePilot in 4 months · Hyperscale in 6 months
Compatible HardwareH100 / H200 / GB200 / GB300 / Rubin and equivalent
Expansion ModelAdd blocks — no infrastructure redesign required
Modern university supercomputing center with high-density server racks and cooling pipes
Scientist operating a genomics sequencing instrument in a research laboratory

Research-grade compute infrastructure · HPC operations environment

Scaling compute for
a research program?

Share your requirements — CoolSpace engineering will return a configured proposal within 5 business days.