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Thinned-PZT on SOI process and design optimization for piezoelectric inertial energy harvesting

机译:在SOI工艺中的稀释 - PZT和压电惯性能量收割的设计优化

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This paper presents the design, fabrication, and testing of a thinned-PZT/Si unimorph for vibration energy harvesting. It produces a record power output and has state-of-the-art efficiency. The harvester utilizes thinning of bulk-PZT pieces bonded to an SOI wafer, and takes advantage of the similar thermal expansion between PZT and Si to minimize beam bending due to residual stress. Monolithic integration of a tungsten proof mass lowers the resonance frequency and increases the power output. The harvester dimensions, including the PZT/Si thickness ratio and the proof-mass/total-beam length ratio, are optimized via parametric multi-physics FEA. Additionally, a fabrication process for hermetic packaging of the harvester is introduced. It uses vertical Si vias for electrical feed-throughs. An unpackaged harvester with a tungsten proof mass produces 2.74 µW at 0.1 g (167 Hz), and 205 µW at 1.5 g (154 Hz) at resonance (here, g = 9.8 m/s2). The active device volume is 27 mm3 (7 × 7 × 0.55 mm3). We report the highest power output, Normalized Power Density (N.P.D.), and Figure of Merit (N.P.D. × Bandwidth) amongst reported microfabricated vibration energy harvesters.
机译:本文介绍了一种用于振动能量收集的薄膜型-PZT / SI单身人物的设计,制造和测试。它产生了记录功率输出并具有最先进的效率。收割机利用粘合到SOI晶片的体积-PZT片的细化,并利用PZT和Si之间的类似热膨胀,以最小化由于残余应力引起的光束弯曲。单片集成钨防污质量降低了谐振频率并提高了电力输出。通过参数多物理FEA优化,包括PZT / Si厚度比和耐受质量/总光束长度比的收割机尺寸和尺寸另外,引入了用于收割机的密封包装的制造方法。它使用垂直SI通孔用于电气馈送。具有钨防爆块的未包装的收割机产生2.74µ w以0.1g(167 hz),205µ w以1.5g(154 hz)以0.5g(154 Hz)(这里,G = 9.8 m / s 2 )。有源器件体积为27 mm 3 (7× 7× 0.55 mm 3 )。我们报告了最高功率输出,归一化功率密度(N.P.D.),以及报告的Microfabricy振动能量收割机之间的优点(N.P.D.×带宽)。

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