Advanced immersion cooling

THE BENEFITS OF IMMERSION COOLING COMPARED TO TRADITIONAL AIR-COOLING

As the heat generation in modern computing systems continues to rise, traditional air-cooling methods are increasingly strained, struggling to dissipate heat effectively. This can lead to elevated temperatures that negatively impact performance and even risk damaging sensitive components. Immersion cooling emerges as a powerful alternative to air cooling, providing significant benefits such as enhanced thermal performance, increased energy efficiency, and reduced noise pollution. Additionally, immersion cooling presents valuable heat-reuse opportunities, allowing the captured waste heat to be repurposed for other applications, further contributing to overall efficiency and sustainability.

REVOLUTIONIZING BATTERY SOLUTIONS WITH ADVANCED IMMERSION COOLING

Our state-of-the-art immersion cooling solution for lithium-ion batteries sets a new industry standard by offering a groundbreaking approach to thermal management. This cutting-edge technology has the potential to significantly enhance battery performance and longevity.

Precise Temperature Control: Our advanced 2-phase immersion cooling system maintains battery cells within their optimal temperature range, ensuring superior heat transfer performance and uniform temperature distribution. This is vital for the efficient operation and extended life of lithium-ion batteries.

Prolonged Battery Life: Our solution not only keeps the cells at their ideal temperature, but also contributes to a longer lifetime for battery packs. This is a substantial advantage for customers seeking reliable and long-lasting energy storage solutions.

Simplified Maintenance: The innovative design of our immersion cooling system streamlines battery pack maintenance, making it more convenient and cost-effective for users.

Custom Non-Conductive Coolant: We utilize a specially engineered non-conductive liquid with a low boiling point that corresponds to the temperature range of lithium-ion batteries (30°C to 45°C). This ensures efficient and effective heat transfer, while setting a new benchmark in the immersion cooling market.

Pioneering Phase Change Technology: Our patent-pending solution capitalizes on the phase change of the non-conductive liquid (from liquid to vapor and back) to dissipate heat efficiently. This cycle, known as two-phase immersion cooling, is highly effective in managing the thermal loads of battery cells.