一种能量收集芯片,旨在从TEG中提取最大的能量

A. K. Sinha, R. L. Radin, D. Caviglia, C. Galup-Montoro, M. C. Schneider
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引用次数: 6

摘要

在本文中,我们展示了一个原型芯片(采用130纳米CMOS技术制造)的测量结果,该芯片旨在从热电发电机(TEG)中提取最大功率。从解析表达式中,我们证明了在不使用闭环最大峰值功率跟踪来调节输入电压的情况下,最大提取功率约为TEG可用功率的75%。在我们的测量中,TEG由一个电压源(50mV-200mV)模拟,串联电阻为5欧姆。原型车是全电动的,从50 mV开始,可以提取60% (50 mV)到65% (200 mV)的可用功率。因此,测量结果与解析表达式基本吻合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An energy harvesting chip designed to extract maximum power from a TEG
In this paper, we present measurement results from a prototype chip (fabricated in 130 nm CMOS technology), designed to extract maximum power from a Thermoelectric Generator (TEG). From analytical expression, we prove that the maximum extracted power is around 75% of the available power in a TEG, without using a closed loop maximum peak power tracking to regulate the input voltage. In our measurements, the TEG is modeled by a voltage source (50mV-200mV) with a series resistance of 5 Ohms. The prototype is fully electric, starts from 50 mV and can extract 60% (at 50 mV) to 65% (at 200 mV) of the available power. Hence the measurement result closely agrees with the analytical expression.
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