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High-Q UHF Micromechanical Radial-Contour Mode Disk Resonators

机译:高Q UHF微机械径向轮廓模式磁盘谐振器

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摘要

A micromechanical, laterally vibrating disk resonator, fabricated via a technology combining polysilicon surface-micromachining and metal electroplating to attain submicron lateral capacitive gaps, has been demonstrated at frequencies as high as 829 MHz and with Q's as high as 23 000 at 193 MHz. Furthermore, the resonators have been demonstrated operating in the first three radial contour modes, allowing a significant frequency increase without scaling the device, and a 193 MHz resonator has been shown operating at atmospheric pressure with a Q of 8,880, evidence that vacuum packaging is not necessary for many applications. These results represent an important step toward reaching the frequencies required by the RF front-ends in wireless transceivers. The geometric dimensions necessary to reach a given frequency are larger for this contour-mode than for the flexural-modes used by previous resonators. This, coupled with its unprecedented Q value, makes this disk resonator a choice candidate for use in the IF and RF stages of future miniaturized transceivers. Finally, a number of measurement techniques are demonstrated, including two electromechanical mixing techniques, and evaluated for their ability to measure the performance of sub-optimal (e.g., insufficiently small capacitive gap, limited de-bias), high-frequency, high-Q micromechanical resonators under conditions where parasitic effects could otherwise mask motional output currents.
机译:通过将多晶硅表面微加工和金属电镀相结合以实现亚微米横向电容间隙的技术制造的微机械横向振动盘式谐振器,在高达829 MHz的频率下得到了证明,在193 MHz的Q值高达23000。此外,已证明谐振器在前三个径向轮廓模式下工作,可在不缩放设备的情况下显着提高频率,并且已显示193 MHz谐振器在大气压下工作时的Q为8,880,这表明真空包装不能许多应用程序所必需的。这些结果代表了迈向无线收发器中RF前端所需频率的重要一步。对于该轮廓模式,达到给定频率所需的几何尺寸要比先前谐振器所使用的弯曲模式大。加上其前所未有的Q值,使得该磁盘谐振器成为未来小型收发器的IF和RF级的选择之选。最后,演示了多种测量技术,包括两种机电混合技术,并评估了它们测量次优性能(例如,较小的电容间隙,有限的去偏置),高频,高Q性能的能力。微机械谐振器在寄生效应可能会掩盖运动输出电流的条件下。

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