Frore Systems Launches AirJet Mini Sport Solid-State Active Cooling Chip IP68 Water resistant

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Frore Systems has introduced the AirJet Mini Sport, the latest addition to its AirJet series of solid-state active cooling chips. Notably, this is Frore Systems' first waterproof cooling solution. The AirJet Mini Sport builds on the previously launched AirJet Mini Slim, sharing similar basic parameters. It measures 45.5×27.5×2.5 mm, features a back pressure of 1750 Pa, an air volume of 0.21 CFM, and achieves a heat dissipation capacity of 5.25 W at a silent level with a power consumption of 1 W, resulting in a net heat dissipation capacity of 4.25 W.

Frore Systems has highlighted the increasing performance demands on mobile devices driven by advancements in edge AI and other technologies. Current mobile processors offer excellent instantaneous performance but tend to overheat and slow down within seconds. Traditional fan-based active cooling systems are bulky, noisy, and prone to dust accumulation, which diminishes their effectiveness over time. Furthermore, fan cooling is neither waterproof nor dustproof, limiting its applicability in varied usage scenarios, such as smartphones and sports cameras.

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The AirJet Mini Sport addresses these challenges with its IP68 certification, ensuring it remains functional even after immersion in water up to 1.5 meters deep for 30 minutes. This makes the AirJet Mini Sport suitable for a wide range of environments and applications.

By integrating the AirJet Mini Sport, Frore Systems claims that it can enhance the performance of a smartphone's processor by up to 80% without increasing the device's thickness. This improvement is particularly significant for enhancing the AI processing capabilities of mobile devices.

In summary, the AirJet Mini Sport offers a robust solution for mobile device cooling, combining solid-state technology with waterproof and dustproof features. This innovation addresses the limitations of traditional fan-based cooling systems and meets the growing performance demands of modern mobile processors.


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