Highly efficient. Reliable. Sustainable cooling.
Keep high-power electronics, GPUs and CPUs for data servers and workstations reliably cool with QuantaCool’s patented direct-to-chip two-phase cooling technology.
QuantaCool systems use an electrically non-conductive, environmentally friendly, and additive-free coolant, which means no risk of damaging water leaks, corrosion, or fouling due biological growth.
Patented Two-Phase Cooling Technology
High Heat-flux Cold Plates
Micro-structured 2-phase cold plates have very low thermal resistance, high internal heat transfer area, and short flow paths to minimize pressure drop to out-perform competing designs. Our cold plates are hermetically sealed, minimizing the potential for leaks. We have several proprietary methods for fabricating and assembling cold plate components that maximize robustness and reliability.
MHP™ Passive Two-Phase Cooling
MHP™ technology takes advantage of phase-change principles and gravity to both drive coolant circulation without pumps and remove and dissipate large quantities of heat, which is rejected to ambient cooling media.
Products
PolarRak™ – For high-end Data Centers
Economical, reliable, high efficiency data center cooling.
Safely cool your data center and improve energy efficiency by reducing reliance on air conditioning with the PolarRak heat removal system. Using either passive MHP™ technology or pumped 2-phase cooling, PolarRak transfers high heat loads and cools without water. The coolant is non-hazardous, electrically insulating and non-flammable, eliminating the risk of short-circuits, electrical shock and equipment damage that can occur when water-cooled systems leak.
PolarMax™
High-power devices such as power conversion modules, IGBTs, and lasers generate a lot of heat. PolarMax™ keeps them cool.
PolarBox™ – For the serious PC Gamer
The efficiency of water cooling without the risk.
Ideal for hardcore gaming enthusiasts, the PolarBox system lets you safely overclock CPUs and GPUs. PolarBox uses QuantaCool’s patented MHP™ technology to manage increased heat load. Users enjoy greater operational efficiency without the risk of computer damage from leaking water or downtime from a broken pump