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Non-linear modeling of MEMS-based oscillators using an analog hardware description language

机译:使用模拟硬件描述语言对基于MEMS的振荡器进行非线性建模

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This paper presents a Verilog-A model of a mi-croelectromechanical systems (MEMS) clamped-clamped beam resonator. The model captures the electrical and mechanical non-linear effects, and accounts for the spring softening and Duffing behavior present in resonators at high drive levels. A transimpedance amplifier is designed in 0.13μm CMOS to implement and simulate a MEMS-based oscillator incorporating the Verilog-A model. The phase noise performance dependance on the resonator non-linear effects and its bias voltage are illustrated through simulations. Simulation results confirm that careful design must be applied when MEMS resonators are utilised in order to ensure that non-linearities and biasing do not significantly deterirate oscillator performance.
机译:本文提出了微机电系统(MEMS)夹钳式束谐振器的Verilog-A模型。该模型捕获了电气和机械非线性效应,并说明了在高驱动水平下谐振器中存在的弹簧软化和达芬(Duffing)行为。跨阻放大器采用0.13μmCMOS设计,以实现和仿真结合了Verilog-A模型的基于MEMS的振荡器。通过仿真说明了相位噪声性能取决于谐振器非线性效应及其偏置电压的情况。仿真结果证实,在使用MEMS谐振器时必须谨慎设计,以确保非线性和偏置不会显着降低振荡器性能。

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