首页> 外文会议>International Conference on Solid-State Sensors, Actuators and Microsystems amp;amp;amp;amp;amp;amp;amp;amp;amp;amp;amp;amp;amp;amp;amp; Eurosensors >Full-System Simulation of Airborne Capacitive Mems Transducers Operating in the Audible and Ultrasonic Regime
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Full-System Simulation of Airborne Capacitive Mems Transducers Operating in the Audible and Ultrasonic Regime

机译:空气传播材料换能器的全系统仿真在可听和超声波制度中运行的

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A compact model of an airborne capacitive acoustic MEMS transducer is generalized to perform predictive full-system simulations in the audible and ultrasonic regime. The model helps to assess and understand the interaction of the device with the surrounding air for frequencies up to 100 kHz while considering acoustic high-frequency effects and sound wave propagation. We successfully simulate transducers with varying design parameters operating under different working scenarios. The predictive power of the model and its potential for full-system design and optimization are highlighted by the very good agreement between simulations and experimental results.
机译:一致的空气电容声学MEMS换能器的型号广泛地是在可听和超声波制度中进行预测的全系统模拟。该模型有助于评估和理解设备与周围空气的相互作用,用于考虑声学高频效应和声波传播的同时高达100 kHz的频率。我们成功模拟了在不同工作场景下运行的不同设计参数的传感器。模型的预测力及其对全系统设计和优化的潜力是通过仿真和实验结果之间的良好一致性突出的。

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