用于Colpitts晶体振荡器的MEMS光束谐振器系统模型提取

Faisal Nawaz, Muhammad Sulaiman, Umar Jamil, R. I. Shakoor
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引用次数: 1

摘要

互补金属氧化物半导体-微机电系统(CMOS-MEMS)平台适用于在单芯片上集成MEMS谐振器和CMOS集成电路。这提供了MEMS与电子器件的单片连接。通过这种集成,不同配置的单片集成MEMS谐振器和CMOS放大器已开发用于商业多用户目的。它还为谐振器应用提供了各种设计灵活性。在本文中,设计和分析了一个2。介绍了用于Colpitts晶体振荡器电路的14MHz MEMS波束谐振器。设计了微机电系统波束谐振器作为振荡器。所提出的MEMSColpitts振荡器电路在不同的工作模式下可以产生1到5MHz的时钟。这个振子只在2上工作。仅在$9^{\mathrm{t}\mathrm{h}}$模式下通过宏模型提取14MHz。光束谐振器大约需要$10\ mathm {V}_{\ mathm {d}\ mathm {c}}$来运行。在IntelliSuite(热电机械模块)中进行了驱动仿真。采用系统模型提取(SME)方法提取谐振器的宏观模型,并将其应用于科尔皮茨晶体振荡器的电路中。并与其他研究成果进行了比较。
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System Model Extraction of MEMS Beam Resonator for Colpitts Crystal Oscillator
A complementary metal oxide semiconductormicro electro-mechanical systems (CMOS-MEMS) platform is applicable for integrating MEMS resonators and CMOS integrated circuits on a single chip. This provides a monolithic connection of MEMS with electronics. With this integration, different configurations of monolithically integrated MEMS resonators and CMOS amplifiers have been developed for commercial multi user purpose. It also provides variety of design flexibilities for resonator applications. In this paper, the design and analysis of a 2. 14MHz MEMS beam resonator for Colpitts crystal oscillator circuit is presented. A MEMS beam resonator is designed to function as an oscillator. The proposed MEMSColpitts oscillator circuit can generate 1 to 5MHz clocks, when operated in different modes. This oscillator works specifically on 2. 14MHz by macro model extraction for $9^{\mathrm{t}\mathrm{h}}$ mode only. The beam resonator requires approximately $10\mathrm{V}_{\mathrm{d}\mathrm{c}}$ to operate. The actuation was simulated in IntelliSuite (thermo-electro mechanical module). A macro model of resonator is extracted by using system model extraction (SME) and utilized in electrical circuit of Colpitts crystal oscillator. The comparison with other research works is also presented.
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