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供职机构:东南大学电子科学与工程学院微电子机械系统教育部重点实验室更多>>
发文基金:国家高技术研究发展计划国家重点基础研究发展计划更多>>
相关领域:电子电信自动化与计算机技术更多>>

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Frequency response of a new kind of silicon nanoelectromechanical systems resonators
2012年
Diffraction effects will bring about more difficulties in actuating resonators,which are electrostatically actuated ones with sub-micrometer or nanometer dimensions,and in detecting the frequency of the resonator by optical detection.To avoid the effects of diffraction,a new type of nanoelectromechanical systems(NEMS) resonators is fabricated and actuated to oscillate.As a comparison,a doubly clamped silicon beam is also fabricated and studied.The smallest width and thickness of the resonators are 180 and 200 nm,respectively.The mechanical oscillation responses of these two kinds of resonators are studied experimentally.Results show that the resonant frequencies are from 6.8 to 20 MHz,much lower than the theoretical values.Based on the simulation,it is found that over-etching is one of the important factors which results in lower frequencies than the theoretical values.It is also found that the difference between resonance frequencies of two types of resonators decreases with the increase in beam length.The quality factor is improved greatly by lowering the pressure in the sample chamber at room temperature.
于虹袁为民刘春胜岳东旭吴士杰顾勇陈志远黄庆安
H型亚微米梁的混频特性测量被引量:1
2011年
本文简述了H型亚微米梁的工艺实现过程,从实验上详细研究H型梁的两种混频方式:向下混频和向上混频.考察的H型梁长度分别为8μm、10μm、12μm和15μm,小激励下谐振频率分别为13.30 MHz、8.77 MHz、6.12 MHz和3.65 MHz.通过在梁上施加两路不同频率的静电激励信号,调整两信号频率差值及和值在梁的本振频率附近变化,经过梁的自适应过程实现信号混频,最后由多普勒测振仪检测梁的混频特性.实验结果表明梁在向下混频时的振幅随两路信号频率的平移而改变,出现所谓的窗口效应;对于这两种混频方式,混频分量越接近梁的本征频率,梁的振幅越大,反之梁振幅下降越多;在输入信号功率均设置为14 dBm时,对比向上混频,向下混频使得梁的振幅更大,诸如12μm长的梁向下混频时梁振幅为4.082 nm,而向上混频时混频处振幅仅为1.826 nm.
于虹袁为民岳东旭
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