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Low-Power MEMS-Based Pierce Oscillator Using a 61-MHz Capacitive-Gap Disk Resonator

机译:基于低功耗的基于MEMS的Pierce振荡器,使用61 MHz电容间隙振荡器

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A 61-MHz Pierce oscillator constructed in 0.35-mu m CMOS technology and referenced to a polysilicon surface-micromachined capacitive-gap-transduced wine-glass disk resonator has achieved phase noise marks of - 119 dBc/Hz at 1-kHz offset and -139 dBc/Hz at far-fromcarrier offsets. When divided down to 13 MHz, this corresponds to -132 dBc/Hz at 1-kHz offset from the carrier and - 152 dBc/Hz far-from-carrier, sufficient for mobile phone reference oscillator applications, using a single MEMS resonator, i.e., without the need to array multiple resonators. Key to achieving these marks is a Pierce-based circuit design that harnesses a MEMS-enabled input-to-output shunt capacitance more than 100x smaller than exhibited by macroscopic quartz crystals to enable enough negative resistance to instigate and sustain oscillation while consuming only 78 mu W of power-a reduction of similar to 4.5x over previous work. Increasing the bias voltage of the resonator by 1.25 V further reduces power consumption to 43 mu W at the cost of only a few decibels in far-from-carrier phase noise. This oscillator achieves a 1-kHz-offset figure of merit (FOM) of -231 dB, which is now the best among published chip-scale oscillators to date. A complete linear circuit analysis quantifies the influence of resonator input-to-output shunt capacitance on power consumption and predicts further reductions in power consumption via reduction of electrode-to-resonator transducer gaps and bond pad sizes. The demonstrated phase noise and power consumption posted by this tiny MEMS-based oscillator are attractive as potential enablers for low-power "set-and-forget" autonomous sensor networks and embedded radios.
机译:在0.35-mu M CMOS技术中构造的61 MHz刺穿振荡器,并参考多晶硅表面 - 微机械电容间隙转导的葡萄酒玻璃盘谐振器,实现了1-KHz偏移的相位噪声标记 - 119 dBc / Hz - 远从乘客偏移的139个DBC / Hz。当划分为13 MHz时,这对应于来自载波的1-KHz的-132 DBC / Hz,并且使用单个MEMS谐振器,即用于移动电话参考振荡器应用,即用于移动电话参考振荡器应用,即,无需阵列多个谐振器。实现这些标记的关键是一种基于Pierce的电路设计,其利用比宏观石英晶体的展示比展示的MEMS的输入到输出分流电容具有大于100倍,以使得能够施加足够的负负性并持续振荡,同时仅消耗78亩功率 - 在以前的工作中减少与4.5倍相似。增加谐振器的偏置电压为1.25V进一步将功耗降低到43μW以远离载波相位噪声的少数分贝的成本。该振荡器实现了-231 dB的1 kHz偏移的优点(FOM),现在是发布的芯片型振荡器中的最佳迄今为止。完整的线性电路分析量化了谐振器输入到输出分流电容对功耗的影响,并通过减小电极到谐振器换能器间隙和键合焊盘尺寸来进一步降低功耗。基于微小的MEMS的振荡器发布的显示相位噪声和功耗是具有吸引力的低功耗“设定和忘记”自主传感器网络和嵌入式无线电的潜在推动力。

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