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Non-linear electromechanical RF model of a MEMS varactor based on VerilogA#x00A9; and lumped-element parasitic network

机译:基于Veriloga©和集成元素寄生网络的MEMS变容二极管的非线性机电RF模型

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In this paper we discuss an approach for the implementation of non-linear electromechanical and RF models of complete RF-MEMS devices within a standard circuit simulator, such as Cadence Spectre© or Agilent ADS™ The intrinsic electromechanical core is based on a structural hierarchical model library implemented in VerilogA© language. Moreover, a surrounding lumped element network accounting for the electromagnetic RF behaviour of the MEMS device is extracted from S-parameters measured data. The whole nonlinear model network, composed of the intrinsic VerilogA© core plus lumped-element parasitics, can be analysed within a radiofrequency circuit simulator schematic. The model is fully validated against electromechanical and RF static and dynamic measurements, showing good agreement between simulations and experimental results. The presented modeling approach can be the basis for the development of complete RF-MEMS design technology libraries, aiming at optimum hierarchical designs of MEMS-enabled RF circuit blocks.
机译:在本文中,我们讨论是基于一种结构层次模型的完整的RF-MEMS设备的标准电路模拟器内的非线性机电和RF模式,如Cadence幽灵©或Agilent ADS™固有机电芯执行的方法图书馆在Veriloga实现©语言。此外,从S参数测量数据中提取了用于MEMS器件的电磁RF行为的周围的集总元件网络。可以在射频电路模拟器原理图中分析由内在Veriloga©Core r Core Plus Lumper-Element寄生寄生体组成的整个非线性模型网络。该模型完全验证了机电和RF静态和动态测量,显示模拟与实验结果之间的良好一致性。所呈现的建模方法可以是开发完整的RF-MEMS设计技术库的基础,旨在最佳的MEMS的RF电路块设计。

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