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首页> 外文期刊>Electron Device Letters, IEEE >High- ${Q}$ Butterfly-Shaped AlN Lamb Wave Resonators
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High- ${Q}$ Butterfly-Shaped AlN Lamb Wave Resonators

机译:高$ {Q} $蝴蝶形AlN Lamb波谐振器

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摘要

Butterfly-shaped aluminum nitride (AlN) plates with anchor-to-plate angle smaller than 90° are proposed to boost the quality factor (Q) of Lamb wave resonators (LWRs) thanks to the elimination of the anchor loss. Finite-element method simulation shows that the butterfly-shaped plate can efficiently reduce mechanical energy leakage via the supporting anchors and accordingly enhance the mechanical Q. Furthermore, the rounded butterfly-shaped LWRs show better suppression in the anchor loss in comparison with the beveled butterfly-shaped LWRs. More specifically, the measured frequency response of an 863-MHz beveled butterfly-shaped AlN LWR yields an unloaded Q of 4189, representing 25% improvement over an LWR on a rectangular AlN plate; another AlN LWR based on the rounded butterfly-shaped plate shows an unloaded Q of 5352, enabling 60% improvement in unloaded Q values.
机译:由于消除了锚固损耗,提出了锚固至板间夹角小于90°的蝶形氮化铝(AlN)板,以提高Lamb波谐振器(LWR)的品质因数(Q)。有限元法仿真表明,蝶形板可以有效地减少通过支撑锚的机械能泄漏,从而提高了机械Q值。此外,与斜角蝶形相比,圆形蝶形轻水堆具有更好的锚固损失抑制能力形的轻水堆。更具体地说,测得的863 MHz斜角蝴蝶形AlN LWR的频率响应产生的空载Q为4189,比矩形AlN板上的LWR提高了25%。另一个基于圆形蝶形板的AlN LWR显示出空载Q为5352,从而使空载Q值提高了60%。

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