标题: | 单晶片微机电谐振器整合之振荡器设计及其延伸应用于多元感测 Monolithic MEMS Resonator Integrated Oscillator Design and Its Applications on Multi-sensors |
作者: | 张嘉夆 Chang, Chia-Feng 温瓌岸 Wen, Kuei-Ann 电子工程学系 电子研究所 |
关键字: | 微机电;谐振器;震荡器;单晶片;转阻放大器;低功耗;CMOS-MEMS;Resonator;Oscillator;Monolithic;TIA;Low Power |
公开日期: | 2014 |
摘要: | 本论文提出可于标准1P6M 0.18μm电路制程下,完成可单晶片整合之电容式高品质因素微机电震荡器以及转阻读出电路设计。震荡器设计上采用梳状式结构并以静电力致动产生共振现象。在气压20帕下之真空腔内可测得品质因素高达2600,共振频率设计在32.768 kHz以应用于时脉产生器。 震荡器之电容变化转换可得到输出电流变化,利用转阻放大电路读取电流并输出电压讯号回授至震荡器产生共振。转阻放大电路采用电容式回授架构并利用电容源极退化(Capacitive Source Degeneration)技巧拓展频宽与补偿相位移,其增益高达107MΩ以克服微机电震荡器之高介入损耗,频宽为235.8kHz使得在32.768kHz时仅有1.3度的相位移,核心电路功耗仅1.836μW达成低功率之微机电时脉产生器。 为了从整合的前端电路取得精准值,采用感测器电脑辅助设计软体与电子设计自动化软体模拟整合后的微机电震荡器暨低功耗转阻放大电路,藉以具体分析模拟与实际量测之差异,并完成微机电制程与积体电路整合设计流程。 A monolithic low-power MEMS oscillator is proposed for 32-kHz real-time clock based on the 0.18 μm 1-poly-6-metal standard CMOS-MEMS process and monolithically integrated with TIA readout circuitry. The system consists of an electrostatic-actuated resonator along with the TIA readout circuitry inside the oscillator loop. The MEMS resonator is measured for high Q value of 2600 at 40 pa pressure with moderate motional impedance under strict design constraints of the fabrication process. A high gain low-power capacitive-feedback TIA readout circuitry is designed to overcome the high insertion loss from the input to the output of the MEMS resonator. The proposed TIA takes advantage of the capacitive source degeneration technique as well as Shunt-Series feedback topology converting output current to voltage through a load resistance to achieve 107 MDC gain and 1.3° phase shift respectively at target frequency and the bandwidth is 235.8 kHz with power consumption of 1.836 μW. It can be compactly integrated with the MEMS resonator structure on a single die for low-power 32 kHz clock generation. The proposed MEMS oscillator can be embedded monolithically as a real-time clock source in common SoC applications with the standard CMOS process. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT070150244 http://hdl.handle.net/11536/75730 |
显示于类别: | Thesis |