Planning immersion cooling for a new site or an existing facility? CircleGen evaluates the workload, compatible hardware, fluid, primary loop, heat rejection, controls and service access as one integrated system.

You can already use your energy infrastructure to work with your data centers.

Also, our data center works even with the most non-standard energy sources, for example, geothermal electricity

We at CircleGen designed our solution with a focus on clean energy with a zero carbon footprint. We will be able to build a data center using only the cleanest and most renewable energy sources

We at CircleGen are committed to preserving the environment and reducing the carbon footprint in information technology and data processing.

You can use your data center as a hot water generator for residential areas or greenhouses in all climates. This whole system uses a closed water circuit

What is single-phase immersion cooling?

Compatible IT hardware operates in an electrically non-conductive fluid that carries heat to a heat exchanger and a separate facility loop. Suitability must be verified for every hardware and fluid combination.

Why consider immersion cooling?

Immersion cooling can support dense compute and reduce reliance on server fans. Actual efficiency depends on climate, IT load, fluid, pumps and heat-rejection design.

CircleGen
Air Cooling

1,400 times better thermal conductor than air

> 40% less TCO*

8 times less conductor than air

CircleGen
Liquid Cooling

End to end solution to densities and efficiency challenges

Compatible with Fiber Optics

No need of great adaptations to all your HW

CircleGen
Immersion Cooling Competitors

Scalable & modular

Owns fullstack of the technology

Fluid service intervals depend on monitoring and supplier guidance

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Direct heat transfer from components to fluid

Cooling overhead evaluated for each project

Electrical isolation with a dielectric fluid

Immersion loop and facility heat rejection designed as one system

Hardware compatibility verified before deployment

Adaptation plan defined for each server platform

Modular capacity planning

System, controls and service workflow designed together

Fluid condition monitored during operation

Performance and service intervals depend on the approved equipment, fluid data sheet and operating conditions.

Small 12U product for your office or small render farm. Power up to 50 Kw

Thermal capacity, facility efficiency, water use and heat-reuse potential are documented for the selected hardware, site and operating conditions.

Thermal capacity, facility efficiency, water use and heat-reuse potential are documented for the selected hardware, site and operating conditions.

Evaluate the benefits for your facility

Thermal capacity, facility efficiency, water use and heat-reuse potential are documented for the selected hardware, site and operating conditions.

Thermal capacity, facility efficiency, water use and heat-reuse potential are documented for the selected hardware, site and operating conditions. Deployment conditions are reviewed for each site, including climate, utilities, access and service requirements.

Evaluate total cost for your project

Project economics and energy effects are calculated from the approved IT load, facility design and agreed operating baseline.

>50 kW of compute density

Cooling capacity is selected from the approved server configuration, fluid temperatures and facility-side conditions.

Hardware, fluid and materials compatibility, contamination control and maintenance procedures are assessed for every configuration.

Compatible immersed hardware is isolated from airborne dust and ambient humidity during operation. Material compatibility and maintenance procedures must be verified for every deployment.

Speed deployment

Modular systems can be adapted to different facilities after power, access, controls and heat-rejection requirements are reviewed.

Hardware, fluid and materials compatibility, contamination control and maintenance procedures are assessed for every configuration.

Hardware, fluid and materials compatibility, contamination control and maintenance procedures are assessed for every configuration.

Thermal capacity, facility efficiency, water use and heat-reuse potential are documented for the selected hardware, site and operating conditions.

Water use depends on the selected heat-rejection system. Closed-loop and dry-cooler options are evaluated for each site.

Project economics and energy effects are calculated from the approved IT load, facility design and agreed operating baseline.

Project economics and energy effects are calculated from the approved IT load, facility design and agreed operating baseline. Project economics and energy effects are calculated from the approved IT load, facility design and agreed operating baseline. Performance and resource use are documented for the selected hardware, site and operating conditions. Besides, your servers consume less since they do not need fans.

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Measure efficiency for the complete site

We model the IT load and auxiliary systems together, then define measurable design targets for the selected climate and operating profile.

Reduce avoidable cooling overhead

Removing server fans and matching pumps and heat rejection to the load can reduce auxiliary energy. Savings must be calculated against the actual baseline.

Closed-loop heat-rejection options

Dry coolers, hybrid systems and water loops can be evaluated for the site. Water use and operating temperatures are documented in the project design.

Recover heat where demand and temperature align

Rejected heat may support nearby processes or buildings when the temperature level, distance and demand profile justify a recovery system.

Faster deployment through modular design

Predefined interfaces and factory-prepared modules can reduce on-site work. The installation plan still accounts for power, piping, controls, access and commissioning.

Protect hardware from airborne contamination

Immersed components are isolated from dust and ambient humidity during operation. Compatibility, cleaning and maintenance procedures remain essential.

Plan for high-density workloads

Thermal capacity is selected from the server configuration, allowable fluid temperature and facility-side cooling conditions.

Operational controls and maintenance

Monitoring, filtration, alarms and service access are included in the operating concept so the system can be maintained safely.

Immersion cooling project delivery

CircleGen coordinates the cooling tank, fluid, heat exchanger, facility loop, controls and commissioning requirements for each deployment. The final scope, performance targets and responsibilities are documented in the project specification.

You can already use your energy infrastructure to work with your data centers.

Also, our data center works even with the most non-standard energy sources, for example, geothermal electricity

We at CircleGen designed our solution with a focus on clean energy with a zero carbon footprint. We will be able to build a data center using only the cleanest and most renewable energy sources

We at CircleGen are committed to preserving the environment and reducing the carbon footprint in information technology and data processing.

You can use your data center as a hot water generator for residential areas or greenhouses in all climates. This whole system uses a closed water circuit

Plan your cooling architecture

Compare air, direct-to-chip and immersion options against workload density, utilities, maintenance and expansion requirements.

Save money

Your data center saves you money every day with a healthy heat recovery system, thanks to which you can heat residential areas, farms and any infrastructure where heat is needed.

Save ecology

Thermal capacity, facility efficiency, water use and heat-reuse potential are documented for the selected hardware, site and operating conditions.

Save energy

Another advantage of ours is that our technology is 100 percent scalable. You can deploy a data center anywhere in the world and even in the most extreme weather conditions. The average sweep time of the data center is 5 days.

Technology

Circle Gen's technology allows the data center to be deployed using immersion cooling anywhere in the world or in an existing data center. Our solution has its advantages over standard air cooling

Experience

Thanks to our technology and experience in building high performance data centers, we can replace your 5 server risers with just one Circle Gen. The performance will not only be the same, but also increase by 40%, but the consumption of electrical energy will decrease by 30%

Effect

Your data center will not waste heat into the environment. Becouse our technology is completely environmentally friendly. You do not waste water, because water circulates in a closed circuit all the time

Get in touch

Ask questions, tell us more about your upcoming datacenter/HPC or Hyperscale project. We’re here to help

Techical documentation

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