首页> 外文会议>Conference on MOEMS and Miniaturized Systems III, Jan 27-29, 2003, San Jose, California, USA >A Miniature Thermoacoustic Cryo-cooler Driven by a Vertical Comb-Drive
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A Miniature Thermoacoustic Cryo-cooler Driven by a Vertical Comb-Drive

机译:垂直梳状驱动器驱动的微型热声低温冷却器

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In this paper, we propose a novel miniature MEMS based thermoacoustic cryo-cooler for thermal management of cryogenic electronic devices. The basic idea is to exploit a new way to realize a highly-reliable miniature cryo-cooler, which would allow integration of a cryogenic cooling system directly into a cryogenic electronic device. A vertical comb-drive is proposed as the means to provide an acoustic source through a driving plate to a resonant tube. By exciting a standing wave within the resonant tube, a temperature difference develops across the stack in the tube, thereby enabling heat exchange between two heat exchangers. The use of gray scale technology to fabricate tapered resonant tube provides a way to improve the efficiency of the cooling system, compared with a simple cylinder configuration. Furthermore, a tapered tube leads to extremely strong standing waves with relatively pure waveforms and reduces possible harmonics. The working principle of this device is described here. The fabrication of this device is considered, which is compatible with current MEMS fabrication technology. Finally, the theoretical analysis of key components of this cryo-cooler is presented.
机译:在本文中,我们提出了一种新颖的基于MEMS的微型热声低温冷却器,用于低温电子设备的热管理。基本思想是开发一种实现高度可靠的微型低温冷却器的新方法,该方法可将低温冷却系统直接集成到低温电子设备中。提出了一种垂直梳状驱动器,作为通过驱动板向谐振管提供声源的装置。通过激发谐振管内的驻波,在管内的烟囱上会产生温差,从而使两个热交换器之间能够进行热交换。与简单的气缸配置相比,使用灰度技术制造锥形谐振管提供了一种提高冷却系统效率的方法。此外,锥形管会产生具有相对纯净波形的极强驻波,并减少可能的谐波。在此说明该设备的工作原理。考虑到该器件的制造,该器件与当前的MEMS制造技术兼容。最后,对该冷冻机关键部件进行了理论分析。

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