Sustainable AI data center solutions

Green power for AI innovation

Efficient GPU infrastructure. Scalable. Sustainable. Future-ready.

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30%

Less energy. More performance.

Engineered for eco-friendly AI workloads.

Why Immersion Cooling?

AI workloads are growing rapidly, but traditional air cooling can no longer keep up.
Cooling can account for a major share of data center energy use, increasing both operating cost and carbon emissions.

95%
Cooling Energy
Reduction
30%
Lower Power
Usage
21%
Lower Carbon
Emissions

How SINERGY Works

SINERGY uses a single-phase immersion cooling loop in which heat from submerged servers is transferred through dielectric fluid, circulated via a CDU, and rejected through a dry cooler or cooling tower.

What is single-phase immersion cooling?

SINERGY cools servers by fully immersing IT hardware in a non-conductive dielectric fluid.  Heat absorbed by the fluid is circulated through a CDU and rejected through a dry cooler or cooling tower, without phase change.

✓ Servers fully immersed in dielectric fluid
✓ Internal circulation via CDU
✓ Sensible heat transfer without boiling
✓ Compatible with high-density AI infrastructure

Single-Phase vs Two-Phase

SINERGY uses single-phase immersion cooling for simpler operation, easier maintenance, and long-term reliability.

Single-Phase Cooling

✓ Fluid remains liquid; no boiling or freezing
✓ Long service life
✓ Easier maintenance and safer operation
✓ Compatible with major OEM servers
✓ Reduced fan power consumption
✓ More cost-efficient

Two-Phase Cooling

× More complex fluid evaporation/condensation loop
× Higher maintenance complexity
× Fluid exists as both liquid and vapor
× Periodic fluid replenishment may be required
× Higher system complexity and cost

PUE, Energy, and Cost Efficiency

SINERGY is designed to minimize non-IT overhead, delivering a PUE as low as 1.07 and reducing total facility energy use compared with conventional air-cooled infrastructure.

✓ Lower cooling overhead
✓ Higher power efficiency
✓ Reduced operating cost and emissions
PUE 1.07
Industry-leading efficiency
36% lower facility energy
Reduced non-IT overhead
Lower TCO
Reduced operating cost
Reduced Cooling Overhead
Less non-IT energy waste

Annual Facility and Per-Server Comparison

Comparison between conventional cooling and SINERGY immersion cooling under the same IT load.
Metric
Conventional Cooling (PUE 1.5)
SINERGY (PUE 1.07)
Data center input power
1,440 kW
1,027 kW
Data center input energy
12,614,400 kWh
8,998,272 kWh
Electricity cost
> $1,000,000
$742,000
CO₂ emissions
6,910 tCO₂
4,929 tCO₂

15-Year Per-Server Allocation

Metric
Conventional Cooling
SINERGY
Energy cost
> $15,000
$11,000
CO₂ emissions
103.6 tCO₂
73.9 tCO₂

Operational Impact at Scale

SINERGY improves data center economics by increasing rack density, reducing facility overhead, and lowering energy, water, and noise impact.
PUE
1.67 → 1.07
Rack Density
20kW/rack → 100kW/pod
Water Usage
63,816,480 L → 0L
Noise
85 dB(A) → 40 dB(A)
Floor Area
192㎡ → 86㎡
TCO
$116.2M → $67.2M

Our Solutions

End-to-end technologies powering efficient AI infrastructure.