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Substrate-decoupled,bulk-acoustic wave gyroscopes:Design and evaluation of next-generation environmentally robust devices 被引量:3
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作者 Diego E.Serrano Mohammad F.Zaman +6 位作者 Amir Rahafrooz Peter Hrudey Ron Lipka Duane Younkin Shin Nagpal Ijaz Jafri Farrokh Ayazi 《Microsystems & Nanoengineering》 EI 2016年第1期239-248,共10页
This paper reports on a new type of high-frequency mode-matched gyroscope with significantly reduced dependencies on environmental stimuli such as temperature,vibration,and shock.A novel stress-isolation system is use... This paper reports on a new type of high-frequency mode-matched gyroscope with significantly reduced dependencies on environmental stimuli such as temperature,vibration,and shock.A novel stress-isolation system is used to effectively decouple an axis-symmetric bulk-acoustic wave(BAW)vibratory gyro from its substrate,minimizing the effect that external sources of error have on the offset and scale factor of the device.Substrate-decoupled(SD)BAW gyros with a resonance frequency of 4.3 MHz and Q values near 60000 were implemented using the high aspect ratio poly and single-crystal silicon(HARPSS)process to achieve ultra-narrow capacitive gaps.Wafer-level packaged sensors were interfaced with a customized application-specific integrated circuit(ASIC)to achieve low variations in the offset across temperature(±26°s^(−1) from−40 to 85℃),supreme random-vibration immunity(0.012°s^(−1) gRMS−1)and excellent shock rejection.With a scale factor of 800μV(°s^(−1))^(−1),the SD-BAW gyro system attains a large full-scale range(±1250°s^(−1))with a non-linearity of less than 0.07%.A measured angle-random walk(ARW)of 0.39°/√h and a bias instability of 10.5°h^(−1) are dominated by the thermal and flicker noise of the integrated circuit(IC),respectively.Additional measurements using external electronics show bias-instability values as low as 3.5°h−1,which are limited by feed-through signals coupled from the drive loop to the sense channel,which can be further reduced through proper re-routing of the gyroscope pin-out configuration. 展开更多
关键词 bulk-acoustic wave environmental stability MEMS gyroscope support loss vibration rejection
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小分子液体的高温布里渊散射研究
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作者 马春丽 武晓鑫 +5 位作者 黄凤仙 李敏 王晓霞 周强 李芳菲 崔启良 《高压物理学报》 CSCD 北大核心 2015年第1期35-41,共7页
利用金刚石对顶砧技术,采用180°背向散射和60°前向对称散射两种几何配置,对水、氨、二水合氨和甲烷等含氢小分子液体进行了高温高压布里渊散射研究,计算了在室温(296K)和高温(410K)下的声速,比较了不同小分子液体中的声速及... 利用金刚石对顶砧技术,采用180°背向散射和60°前向对称散射两种几何配置,对水、氨、二水合氨和甲烷等含氢小分子液体进行了高温高压布里渊散射研究,计算了在室温(296K)和高温(410K)下的声速,比较了不同小分子液体中的声速及绝热体弹模量随压力的变化关系。在等温条件下,各体系中声速随着压力的增加逐渐增加;在相同温度下,甲烷液体的声速随着压力增加的速率明显高于水、氨及二水合氨液体;在相同的温度和压力条件下,水、氨及二水合氨液体的体弹模量明显高于甲烷液体的体弹模量,表明氢键的存在对于小分子液体弹性具有较大影响。二水合氨的体弹模量斜率在1.5GPa左右发生改变,表明液体结构可能发生了改变,并分析了氢键对该体系弹性性质的影响。研究有助于理解其他含氢小分子液体中压力和温度诱导的分子结构变化。 展开更多
关键词 高温高压 布里渊散射 声速 绝热体弹模量 小分子液体
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