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Design and technology for 3D MEMS device for vibration energy harvesting

机译:用于振动能量收集的3D MEMS器件的设计和技术

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In this work we present a new concept of a threedimensional vibration power generator made by micro-electromechanical systems (MEMS) technology, which can convert electric energy through transverse mode piezoelectric effect. The presented power generator is based on a long, thick-film, piezoelectric beam configured as a conical helical spring structure. The controlled release metal layer (CRML) MEMS technology has been used to realize the structure from photolithography-defined pattern on a silicon wafer. The advantage of CRML technology is the high repeatability and resolution and its compatibility with back-end of line (BEOL) processes of the integrated circuit (IC) industry. The purpose of the helical structure is also to combine the piezoelectric generator with a conical-helical antenna for RF applications in low-power, autonomous sensors network. The novel construction process of the piezoelectric generator and its structure are presented with finite element method (FEM) simulations to determine its resonant frequencies. This energy-harvesting structure is made enclosing a piezoelectric material between two metal layers. The presented structures operate, as antenna, in the 55-85 GHz frequency band and resonate with mechanical vibrations in the kHz region. These two characteristics are the ideal components for the deployment of miniaturized battery-free low-cost sensors in the emerging 60 GHz band and energy harvesting for power supply. Keywords - MEMS;energy harvesting; model analysis
机译:在这项工作中,我们提出了一种由微机电系统(MEMS)技术制成的三维振动发电机的新概念,该发电机可以通过横模压电效应转换电能。提出的发电机基于构造成圆锥形螺旋弹簧结构的长而厚膜的压电梁。控释金属层(CRML)MEMS技术已用于通过光刻定义的图案在硅晶圆上实现结构。 CRML技术的优势是高重复性和分辨率,并且与集成电路(IC)行业的后端(BEOL)工艺兼容。螺旋结构的目的还在于将压电发生器与锥形螺旋天线相结合,以用于低功率,自主传感器网络中的RF应用。通过有限元方法(FEM)仿真,介绍了压电发电机的新型构造过程及其结构,以确定其谐振频率。这种能量收集结构被制成为在两个金属层之间封装了压电材料。提出的结构在55-85 GHz频带中作为天线工作,并在kHz范围内与机械振动产生共振。这两个特性是在新兴的60 GHz频带中部署小型无电池低成本传感器以及为电源收集能量的理想组件。关键词-MEMS;能量收集;模型分析

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