Asetek and Fabric8Labs Collaborate on New AI-Optimized Cold Plate Solution


June 3, 2024 by our News Team

Asetek and Fabric8Labs have joined forces to introduce a liquid cooling technology, the AI Optimized Cold Plate, which utilizes Fabric8Labs' innovative metal 3D printing process to enhance performance, sustainability, and scalability in the gaming hardware industry.

  • The partnership between Asetek and Fabric8Labs promises to bring about advancements in liquid cooling technology.
  • Fabric8Labs' unique 3D printing technology, ECAM, allows for the creation of complex, high-resolution structures that greatly enhance thermal capabilities.
  • The AI Optimized Cold Plate not only offers superior performance, but also places a strong emphasis on sustainability through its innovative manufacturing process.


Asetek, a important player in the gaming hardware industry known for its immersive gaming experiences, has announced a strategic partnership with Fabric8labs, a leading innovator in metal 3D printing. This exclusive collaboration will focus on the commercial and consumer desktop markets and introduce a advancement in Liquid Cooling technology, showcased in the AI Optimized Cold Plate.

The partnership between Asetek and Fabric8Labs is rooted in a mutual commitment to innovation that drives superior performance, high quality, and lasting reliability. The AI Optimized Cold Plate represents a significant leap forward compared to previous generations, underscoring the effectiveness of this collaboration. Fabric8Labs’ unique 3D printing technology, known as Electrochemical Additive Manufacturing (ECAM), plays a key role in this innovation. By leveraging ECAM, Asetek has developed a cold plate design that promises to redefine industry-leading performance.

What sets Fabric8Labs’ ECAM process apart is its ability to create complex, high-resolution structures that greatly enhance thermal capabilities through improved fluid dynamics. Additionally, this method eliminates the need for post-processing, ensuring the highest quality and integrity of each cold plate. Moreover, ECAM is highly scalable, making it capable of meeting high-volume production demands.

Beyond its performance benefits, the AI Optimized Cold Plate also places a strong emphasis on sustainability. The innovative manufacturing process not only boasts efficiency but also marks a significant advancement in metal additive manufacturing technology, making it environmentally friendly.

John Hamill, COO of Asetek, expressed his excitement about the partnership, stating, “Partnering with Fabric8Labs allows us to push the boundaries of liquid cooling technology. Their innovative metal 3D printing process enhances our ability to deliver high-performance, reliable, and sustainable solutions.”

Jeff Herman, CEO and co-founder of Fabric8Labs, echoed this sentiment, saying, “We are excited to collaborate with Asetek to bring our proprietary ECAM technology to the desktop market, providing customers with superior performance. This partnership exemplifies our shared dedication to quality and innovation.”

Asetek and Fabric8Labs Collaborate on New AI-Optimized Cold Plate Solution

Asetek and Fabric8Labs Collaborate on New AI-Optimized Cold Plate Solution

Asetek and Fabric8Labs Collaborate on New AI-Optimized Cold Plate Solution

Asetek and Fabric8Labs Collaborate on New AI-Optimized Cold Plate Solution

Asetek and Fabric8Labs Collaborate on New AI-Optimized Cold Plate Solution

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Technology Explained


Liquid Cooling: Liquid cooling is a technology used to cool down computer components, such as processors, graphics cards, and other components that generate a lot of heat. It works by circulating a liquid coolant, such as water or a special coolant, through a series of pipes and radiators. The liquid absorbs the heat from the components and then dissipates it into the air. This technology is becoming increasingly popular in the computer industry due to its ability to provide more efficient cooling than traditional air cooling methods. Liquid cooling can also be used to overclock components, allowing them to run at higher speeds than their rated speeds. This technology is becoming increasingly popular in the gaming industry, as it allows gamers to get the most out of their hardware.

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