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A Comb-Based Capacitive MEMS Microphone with High Signal-to-Noise Ratio: Modeling and Noise-Level Analysis

机译:一种具有高信噪比的梳型电容MEMS麦克风:建模和噪声级分析

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摘要

We present a physics-based system-level model for optimizing a novel comb-based capacitive MEMS microphone towards high signal-to-noise ratios. The model includes non-linear coupling effects between the electrodes as well as the physical dependencies on relevant design parameters, thus enabling predictive statements w.r.t. the device performance. It is calibrated and validated by finite element simulations and laser Doppler vibrometer measurements of first prototypes. Being formulated as a generalized Kirchhoffian network, it can be implemented in a standard circuit simulation tool. The predicted signal-to-noise ratio of this concept reaches up to 78 dB(A), which significantly exceeds state-of-the-art devices.
机译:我们介绍了一种基于物理的系统级模型,用于优化新型梳基电容MEMS麦克风,朝向高信噪比。该模型包括电极之间的非线性耦合效应以及相关设计参数的物理依赖性,从而实现预测性陈述W.r.t.设备性能。通过有限元模拟和激光多普勒振动计测量的第一个原型的校准和验证。被制定为广义的基希诺网络,它可以在标准电路仿真工具中实现。该概念的预测信噪比达到高达78dB(a),其显着超过最先进的设备。

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