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通过化学蚀刻对微半球形谐振器进行低损伤修整

Low-Damage Trimming of Micro Hemispherical Resonators by Chemical Etching.

作者信息

Zhou Zhongzhe, Lu Kun, Shi Yan, Xi Xiang, Sun Jiangkun, Xiao Dingbang, Wu Xuezhong

机构信息

College of Intelligence Science and Engineering, National University of Defense Technology, Changsha 410073, China.

出版信息

Micromachines (Basel). 2024 Aug 29;15(9):1094. doi: 10.3390/mi15091094.

Abstract

To enhance the performance of micro-hemispherical gyroscopes, achieving low-damage and high-surface-quality trimming is essential. This enables greater stability and reliability for the gyroscopes. Current methods for reducing frequency split often come with drawbacks such as high cost, adverse effects on the Q-factor, or surface damage. In this paper, a chemical etching trimming method is proposed to reduce frequency split in micro-hemispherical resonators. This method allows for trimming with minimal damage, while also being cost-effective and easy to implement. The theoretical basis of this method was analyzed, followed by a simulation to determine the optimal trimming range and location on the resonator. The simulated Q-factor analysis before and after trimming preliminarily validated the method's low-damage characteristics. Ultimately, the frequency split of the resonator was reduced to below 1 Hz. Additionally, test results of the Q-factor and surface quality before and after trimming further confirmed that chemical etching offers effective low-damage trimming capabilities. The proposed method holds significant potential for improving the performance of micro-hemispherical resonator gyroscopes.

摘要

为提高微半球陀螺仪的性能,实现低损伤和高表面质量的微调至关重要。这能使陀螺仪具有更高的稳定性和可靠性。当前减少频率分裂的方法往往存在诸如成本高、对品质因数有不利影响或表面损伤等缺点。本文提出一种化学蚀刻微调方法来减少微半球谐振器中的频率分裂。该方法能够以最小的损伤进行微调,同时具有成本效益且易于实施。分析了此方法的理论基础,随后进行模拟以确定谐振器上的最佳微调范围和位置。微调前后的模拟品质因数分析初步验证了该方法的低损伤特性。最终,谐振器的频率分裂降低到1Hz以下。此外,微调前后的品质因数和表面质量测试结果进一步证实了化学蚀刻具有有效的低损伤微调能力。所提出的方法在提高微半球谐振器陀螺仪性能方面具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ff38/11434089/f54216772d3d/micromachines-15-01094-g001.jpg

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