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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Bulk mode piezoresistive thermal oscillators: time constants and scaling
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Bulk mode piezoresistive thermal oscillators: time constants and scaling

机译:体模压阻式热振荡器:时间常数和换算

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This paper presents design and analysis for engineering the thermal and mechanical time constants of piezoresistive thermal oscillators. The optimal design is obtained by minimizing the threshold current density required to initiate self-sustained oscillations. Optimizing the oscillator geometry is of extreme practical importance given that the threshold current densities (GA/m) are close to the breakdown current densities observed in silicon. The equivalent circuit model of the oscillator is used along with the lumped thermal, mechanical, and piezoresistive parameters to calculate the threshold current density of the oscillator. The optimal ratio of the thermal and mechanical time constants is found to be 3 for bulkmode oscillators where the in-plane dimensions control the mechanical resonant frequency. The final frequency of oscillations is obtained as a function of the mechanical resonant frequency, quality factor (Q), and the ratio of the time constants. Results show that scaling the dimension (or frequency) has a weak sub-linear effect on the oscillator performance. Finally, we compare different bulk modes, based on the calculated threshold dc currents for a 1-GHz oscillator.
机译:本文介绍了用于压阻热振荡器的热和机械时间常数的工程设计和分析。通过最小化启动自持振荡所需的阈值电流密度来获得最佳设计。鉴于阈值电流密度(GA / m)接近硅中观察到的击穿电流密度,优化振荡器的几何形状具有极其重要的实际意义。振荡器的等效电路模型与集总的热,机械和压阻参数一起使用,以计算振荡器的阈值电流密度。对于体模振荡器,其中平面内尺寸控制机械谐振频率的热和机械时间常数的最佳比率为3。最终的振荡频率是机械共振频率,品质因数(Q)和时间常数之比的函数。结果表明,按比例缩放尺寸(或频率)对振荡器性能具有较弱的亚线性影响。最后,根据计算出的1 GHz振荡器的阈值直流电流,比较不同的体模式。

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