COLD PLATES

Liquid cooling

Our products are exceptionally suited for cooling and thermal management applications. Their unique microstructure excels at dissipating heat, making them ideal for overcoming thermal challenges in demanding applications such as high-performance computing, AI, or data centers. Incorporating our metal foams into your thermal management solutions will help you achieve superior performance, extended product life, and reduced energy consumption.

apheros cold plate
Industry-leading thermal performance

Single-phase cold plate

Our hero product.

Unmatched thermal resistance

Our cold plates deliver unmatched thermal resistance across the entire tested range, achieving a benchmark of just 0.007 °C/W at a standard flow rate of 2 L/min, approximately 70% lower than competing high-performance fin architectures. Crucially, this performance advantage holds strong even at low flow rates down to 1 L/min. For system integrators, this means you don't have to push the system to its limits to get elite cooling; instead, you can leverage this low-flow efficiency to downsize pump requirements, simplify cooling loops, and capture measurable energy savings without sacrificing thermal control.

Why does the foam make a difference?

Apheros copper foam promotes fluid mixing through boundary layer interruption. With porosity up to 95%, it creates inherently turbulent flow and a dramatically higher heat exchange surface area than conventional fin or microchannel designs.

The result: our cold plates deliver +75% better performance than the commercial standard for >1 kW GPU and CPU cooling applications, and 3x better performance than the current state-of-the-art.

Building for the future

Two-phase cold plate

Our two-phase cold plates deliver the highest nucleation site density of any comparable solution, enabling earlier and more stable boiling onset, lower wall superheat, and reduced chip junction temperatures at identical power inputs, without sacrificing flow efficiency.

High wicking capacity ensures superior capillary action and consistent fluid return under sustained thermal load.

Currently in development, we are actively seeking pilot partners and pre-development agreements to validate performance in real operating environments.

Interested in our state-of-the-art two-phase cold plate? Reach out!