微科氏质量流量传感器的参数放大:降低功耗而不损失灵敏度

J. Groenesteijn, H. Droogendijk, R. Wiegerink, T. Lammerink, J. C. Lotters, R. Sanders, G. Krijnen
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引用次数: 2

摘要

我们报道了将参数放大技术应用于微型科氏质量流量传感器,以降低系统的功耗,同时保持对流量的灵敏度。通过减少功率耗散,传递到流体和通道的热量将减少,从而有可能实现更稳定的温度流动测量。我们通过实验证明,参数放大可以在不损失流量灵敏度的情况下大大降低功耗,或者在不增加功耗的情况下提高总体灵敏度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Parametric amplification in a micro Coriolis mass flow sensor: Reduction of power dissipation without loss of sensitivity
We report on the application of parametric amplification to a micro Coriolis mass flow sensor to reduce the system's power dissipation while retaining sensitivity to flow. By reducing this power dissipation, less heat will be transferred to the fluid and channel, potentially resulting in more temperature-stable flow measurements. We show experimentally that parametric amplification can be used to either greatly reduce power dissipation without loss of flow sensitivity, or to increase the overall sensitivity without increased power dissipation.
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