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集成微蒸发微调的烤箱控制微机电系统振荡器。

Oven-Controlled MEMS Oscillator with Integrated Micro-Evaporation Trimming.

作者信息

Pei Binbin, Sun Ke, Yang Heng, Ye Chaozhan, Zhong Peng, Yu Tingting, Li Xinxin

机构信息

State Key Laboratory of Transducer Technology, Shanghai Institute of Microsystem and Information Technology, Chinese Academy of Sciences, Shanghai 200050, China.

School of Graduate Study, University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

Sensors (Basel). 2020 Apr 22;20(8):2373. doi: 10.3390/s20082373.

Abstract

This study reports an oven-controlled microelectromechanical systems oscillator with integrated micro-evaporation trimming that achieves frequency stability over the industrial temperature range and permanent frequency trimming after vacuum packaging. The length-extensional-mode resonator is micro-oven controlled and doped degenerately with phosphorous to achieve a frequency instability of ±2.6 parts per million (ppm) in a temperature range of -40 to 85 °C. The micro-evaporators are bonded to the resonator, integrated face-to-face, and encapsulated in vacuum. During trimming, the micro-evaporators are heated electrically, and the aluminum layers on their surfaces are evaporated and deposited on the surface of the resonator that trims the resonant frequency of the resonator permanently. The impact of the frequency trimming on the temperature stability is very small. The temperature drift increases from ±2.6 ppm within the industrial temperature range before trimming to ±3.3 ppm after a permanent trimming of -426 ppm based on the local evaporation of Al. The trimming rate can be controlled by electric power. A resonator is coarse-trimmed by approximately -807 ppm with an evaporation power of 960 mW for 0.5 h, and fine-trimmed by approximately -815 ppm with an evaporation power of 456 mW for 1 h. Though the -factor decreases after trimming, a -factor of 304,240 is achieved after the trimming of -1442 ppm.

摘要

本研究报告了一种具有集成微蒸发微调功能的烤箱控制微机电系统振荡器,该振荡器在工业温度范围内实现了频率稳定性,并在真空封装后实现了永久频率微调。长度伸缩模式谐振器由微型烤箱控制,并进行磷简并掺杂,以在-40至85°C的温度范围内实现±2.6百万分之一(ppm)的频率不稳定度。微蒸发器与谐振器面对面集成并键合在一起,然后封装在真空中。在微调过程中,微蒸发器被电加热,其表面的铝层蒸发并沉积在谐振器表面,从而永久微调谐振器的谐振频率。频率微调对温度稳定性的影响非常小。温度漂移从微调前工业温度范围内的±2.6 ppm增加到基于铝的局部蒸发进行-426 ppm的永久微调后的±3.3 ppm。微调速率可通过电功率控制。一个谐振器在960 mW的蒸发功率下0.5小时可粗调约-807 ppm,在456 mW的蒸发功率下1小时可微调约-815 ppm。虽然微调后品质因数会降低,但在进行-1442 ppm的微调后仍可实现304240的品质因数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bac5/7219346/bf7c6d420520/sensors-20-02373-g001.jpg

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