A Comparative Study between Silicon Carbide and Silicon Nitride based Single Cell CMUT

Rakesh Kanjilal, Reshmi Maity
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Abstract

This research explores the design and conducts a comparative analysis of a non-insulated Capacitive Micromachined Ultrasonic Transducer (CMUT) featuring an innovative asymmetric electrode configuration to improve the performance of the device. Specifically, this configuration involves the utilization of a top electrode with a smaller radius in comparison to the bottom electrode. The study encompasses an investigation into the effects of varying biasing voltage within the range of 40 V to 100 V. The materials employed in this study are carefully selected to optimize the CMUT's performance. The substrate material is silicon, and the bottom and top electrodes are made from aluminium. Additionally, silicon dioxide is utilized as the foundation material within the device's structure.
碳化硅与氮化硅单芯CMUT的比较研究
本研究探索了一种非绝缘电容式微机械超声换能器(CMUT)的设计并进行了比较分析,该换能器采用了创新的非对称电极配置,以提高器件的性能。具体地说,这种配置涉及到与底部电极相比具有更小半径的顶部电极的利用。该研究包括对40 V至100 V范围内不同偏置电压的影响的调查。本研究中使用的材料经过精心挑选,以优化CMUT的性能。衬底材料是硅,底部和顶部电极由铝制成。此外,二氧化硅被用作设备结构内的基础材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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