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Design of Spring Coupling for High-$Q$ High-Frequency MEMS Filters for Wireless Applications

机译:用于高$ Q $高频MEMS滤波器的弹簧耦合设计,用于无线应用

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摘要

A second-order microelectromechanical systems (MEMS) filter with high selectivity and sharp rolloff is required in wireless transceivers used in dense wireless sensor networks (WSNs). These sensors are expected to replace existing wired sensors used in industrial-plant management and environmental monitoring. These filters, together with MEMS-based oscillators and mixers, are expected to replace off-chip components and enable the development of a single-chip transceiver. Such a transceiver will leverage the integrated MEMS componentsÕ characteristics to operate at lower power and, hence, longer battery life, making autonomous WSNs more feasible in a wider range of applications. As a result, this paper presents the design and optimization of the coupling beam of wineglass-mode micromechanical disk filters using simulated annealing. The filter under consideration consists of two identical wineglass-mode disk resonators, mechanically coupled by a flexural-mode beam. The coupled two-resonator system exhibits two mechanical-resonance modes with closely spaced frequencies that define the filter passband. A constraint is added on the beam length to eliminate the effect of the coupling-beammass on the filterÕs resonant frequency. A new process flow is proposed to realize self-aligned overhanging coupling beams designed in this paper.
机译:在密集的无线传感器网络(WSN)中使用的无线收发器中需要具有高选择性和锐利滚动的二阶微机电系统(MEMS)滤波器。这些传感器预计将取代工业设备管理和环境监测中使用的现有有线传感器。这些过滤器与基于MEMS为基础的振荡器和混频器,预计将更换片外组件,并使单芯片收发器的开发能够开发。这种收发器将利用集成的MEMS组件õ特性以在较低的功率下运行,因此,更长的电池寿命,使自主WSN在更广泛的应用中更加可行。结果,本文介绍了使用模拟退火的葡萄酒玻璃模型微机械盘滤波器的耦合梁的设计和优化。所考虑的过滤器由两个相同的葡萄酒夹具模式磁盘谐振器组成,由弯曲模式光束机械耦合。耦合的双谐振器系统具有两个具有密切间隔频率的机械谐振模式,其限定过滤器通带。在光束长度上添加约束,以消除耦合光束在滤波器谐振频率上的效果。提出了一种新的工艺流程来实现本文中设计的自对准耦合光束。

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