Liu Chang-Shun, Tabrizian Roozbeh, Ayazi Farrokh
IEEE Trans Ultrason Ferroelectr Freq Control. 2018 Aug;65(8):1492-1499. doi: 10.1109/TUFFC.2018.2843781. Epub 2018 Jun 4.
This paper presents a 77.7-MHz silicon microelectromechanical-systems oven-controlled oscillator (MEMS OCXO) that uses the structural resistance ( ) of the resonator as an embedded temperature sensor. The exhibits a large temperature coefficient of resistance and is used as a self-temperature sensor to accurately and locally monitor the temperature of the resonator. A high-Q capacitive cross-sectional Lamé-mode resonator fabricated using the nanogap high aspect-ratio combined poly- and single-crystal silicon process (HARPSS) is used as the frequency selective element. A silicon resistor micro-oven is implemented on the MEMS die adjacent to the resonator and the ensemble is wafer-level packaged in vacuum to yield a 2 mm mm MEMS die. The micro-oven resistor is automatically controlled by the analog loop to provide active temperature stabilization for the resonator. A resistance temperature detector (RTD) circuit, high-gain loop filter, and heater amplifier are implemented as the analog micro-oven control loop. To further boost the frequency stability, a digital feedforward calibration path which uses the digitized RTD output to fine tune the phase shift of the sustaining amplifier is added to the system. The silicon MEMS OCXO achieves ±0.3-ppm frequency stability from -25 °C to 85 °C. The microresonator is interfaced with a sustaining amplifier implemented in Taiwan Semiconductor Manufacturing Company 0.35-s CMOS process, consuming 16 mA from a 3.2-V supply.
本文介绍了一种77.7兆赫兹的硅微机电系统恒温控制振荡器(MEMS OCXO),该振荡器利用谐振器的结构电阻( )作为嵌入式温度传感器。该电阻具有较大的电阻温度系数,用作自温度传感器,以精确地局部监测谐振器的温度。采用纳米间隙高深宽比的多晶硅和单晶硅组合工艺(HARPSS)制造的高Q值电容式横截面拉梅模式谐振器用作频率选择元件。在与谐振器相邻的MEMS芯片上实现了一个硅电阻微加热炉,并且整个组件在真空中进行晶圆级封装,得到一个2毫米× 毫米的MEMS芯片。微加热炉电阻由模拟环路自动控制,为谐振器提供主动温度稳定。一个电阻温度探测器(RTD)电路、高增益环路滤波器和加热器放大器构成了模拟微加热炉控制环路。为了进一步提高频率稳定性,系统中增加了一条数字前馈校准路径,该路径利用数字化的RTD输出对维持放大器的相移进行微调。该硅MEMS OCXO在-25°C至85°C范围内实现了±0.3ppm的频率稳定性。微谐振器与采用台积电0.35微米CMOS工艺实现的维持放大器相连,并从3.2伏电源汲取16毫安电流。