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Nanogenerator and piezotronic inspired concepts for energy efficient magnetic field sensors

机译:纳米电磁炉和压电推动的概念,节能磁场传感器

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摘要

Inspired by recent developments in the field of nanogenerators and piezotronics, two different approaches for the improvement of magnetic field sensing are discussed and their feasibility has been experimentally demonstrated. In the first concept, it could be shown that a piezotronic read-out eliminates the need for an external preamplifier in MEMS type cantilever sensors. This leads to reduced noise and lower power consumption, which makes the sensors interesting for self-powered applications. Furthermore, the lower noise is measured at short integration times, which reveals further application strategies for piezotronic sensor read-out. In the second concept, a new nanogenerator inspired utilization of electret film allows a reduction of the resonance frequency of cantilever sensors. This reduction is accompanied by higher amplitudes and lower Q-factors allowing energy efficient broadband measurements. A theoretical model has been developed based on an anharmonic oscillator, which is in good agreement with the observed experimental results. Both the demonstrated strategies can help to improve the energy efficiency of the presented magnetic field sensors, allowing lower power consumption and a decreased noise level.
机译:灵感来自纳米液和压电橄榄球场领域的最新发展,讨论了两种不同的用于改善磁场感测的方法,并在实验上证明了它们的可行性。在第一概念中,可以示出压电调读出消除了对MEMS型悬臂传感器中的外部前置放大器的需要。这导致降低噪声和较低的功耗,这使得传感器对自供电应用有趣。此外,在短的积分时间下测量较低的噪声,这揭示了压电传感器读出的进一步应用策略。在第二个概念中,一种新的纳米液的灵感利用驻极体膜允许减少悬臂传感器的谐振频率。这种减少伴随着更高的幅度和较低的Q因子,允许节能宽带测量。基于anharmonic振荡器开发了理论模型,这与观察到的实验结果很好。所示的策略都可以有助于提高所呈现的磁场传感器的能效,允许较低的功耗和降低的噪声水平。

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