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Bio-inspired Passive Skin Cooling for Handheld Microelectronics Devices

机译:生物启发的手持式微电子设备的被动式皮肤冷却

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摘要

Increasing functionality demands more heat dissipation from the skin of handheld devices. The maximum amount of heat that can be dissipated passively, prescribed by the natural convection and blackbody radiation theories, is becoming the bottleneck. In this letter, we propose a novel bio-inspirited technique that may overcome this passive cooling limit. It is made possible by using a bio-mimetic skin capable of perspiration on demand. The key component of the biomimetic skin is a thin layer of temperature sensitive hydro gel (TSHG). The TSHG layer can sweat the skin with moisture when the skin temperature is higher than the TSHG's lower critical solution temperature (LCST), and thus boost the heat dissipation rate through evaporation. The TSHG layer can absorb moisture at low temperature to replenish. With this novel passive cooling technology, a handheld device can have nearly four times more power beyond the traditional passive cooling limit, and may be powerful enough to run a desktop operation system like a full functional personal computer.
机译:功能的增加要求从手持设备的皮肤中散发更多的热量。自然对流和黑体辐射理论规定,可以被动消散的最大热量正成为瓶颈。在这封信中,我们提出了一种新颖的生物启发技术,可以克服这种被动冷却限制。通过使用能够按需排汗的仿生皮肤,这成为可能。仿生皮肤的关键成分是一层薄层的热敏性水凝胶(TSHG)。当皮肤温度高于TSHG的较低临界溶液温度(LCST)时,TSHG层可以使皮肤出汗,从而通过蒸发提高散热率。 TSHG层可以在低温下吸收水分以补充水分。利用这种新颖的被动冷却技术,手持设备的功率可以超过传统的被动冷却极限近四倍,并且可能足以运行台式机操作系统(如功能齐全的个人计算机)。

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