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Oscillator and frequency-shift measurement circuit topologies for micromachined resonant devices

机译:用于微机械谐振装置的振荡器和频移测量电路拓扑

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摘要

A circuit topology is proposed for using micromachined electrostatic/thermal resonators inside an oscillator loop. In this topology, the drive and sense signals are separated from each other in the frequency domain. Consequently, the circuit is significantly less sensitive to the parasitics. Moreover, the insertion losses from the input to the output of the resonator can be easily compensated by adjusting the gains of individual blocks inside the oscillator loop. A circuit design for tracking the changes of the resonant frequency of the signals is also presented. The frequency-shift measurement circuitry produces a voltage at its output which is proportional to the amount of change in the frequency of the input signal. This circuit can precisely detect small changes in the frequency of an input signal with large bandwidth. The topologies can be implemented using either integrated or discrete electronics and the experimental results have proven the viability of both circuits. (C) 2007 Elsevier B.V. All rights reserved.
机译:提出了一种电路拓扑结构,用于在振荡器环路内使用微机械静电/热谐振器。在这种拓扑中,驱动信号和感测信号在频域中彼此分离。因此,电路对寄生虫的敏感性大大降低。而且,通过调节振荡器环路内部各个模块的增益,可以轻松地补偿从谐振器的输入到输出的插入损耗。还提出了一种用于跟踪信号谐振频率变化的电路设计。移频测量电路在其输出端产生一个电压,该电压与输入信号的频率变化量成正比。该电路可以精确地检测具有大带宽的输入信号的频率的微小变化。可以使用集成或分立电子器件实现拓扑,并且实验结果证明了这两种电路的可行性。 (C)2007 Elsevier B.V.保留所有权利。

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