基于MEMS的热能收集增强功率的比例定律

O. Puscasu, S. Monfray, F. Boeuf, G. Savelli, F. Gaillard, D. Guyomar, T. Skotnicki
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引用次数: 8

摘要

提出了一种创新的热能收集方法。它包括两步将热转化为电。这项新技术可用于为超低功耗电子设备和自主系统供电。提高产生的功率密度的关键之一是缩小单个设备的尺寸。本文建立了缩小尺寸的模型,并表明,由于传热速度的增加,器件的小型化系数k增加了产生的功率密度。缩放定律预测,当使用VLSI技术使器件小型化时,功率增益将增加。这可以帮助提供塞贝克设备的强大替代品。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Scale laws for enhanced power for MEMS based heat energy harvesting
An innovation approach to thermal energy harvesting is presented. It consists of a two step conversion of heat into electricity. The new technique can be used for powering ultra-low power electronics and autonomous systems. One of the keys to improve the generated power density is downscaling of individual devices. Laws modeling downscaling have been established in this paper and show that the miniaturization of the devices by a factor k increases the generated power density by the same factor, due to the increased speed of heat transfer. The scaling laws predict increasing power gain when miniaturizing the devices with use of e.g. VLSI technologies. This can help in providing a strong alternative to Seebeck devices.
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