首页> 外文会议>Frontiers in Biomedical Devices Conference 2006 >DEVELOPMENT OF AN IMPROVED MICRO PIEZOELECTRIC POWER GENERATION /ACTUATION SYSTEM FOR BIOMEDICAL BIO-MEMS APPLICATIONS
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DEVELOPMENT OF AN IMPROVED MICRO PIEZOELECTRIC POWER GENERATION /ACTUATION SYSTEM FOR BIOMEDICAL BIO-MEMS APPLICATIONS

机译:用于生物医学和生物微机电应用的改进型微压电发电/驱动系统的开发

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Micro Electro Mechanical Systems have become increasingly more diversified in their applications. This trend is expected to continue and one of the main areas of focus will be biomedical applications. Condition monitoring of biological structures and intelligent implants are being researched and developed with increasing levels of complexity. Although many of these devices are in the conceptual stage, in most cases, they assume that power will be provided by a built-in battery. This limits the practical applications of such devices when they are designed to work for very long periods of time. This paper proposes MEMS devices made from piezo-electric materials that can scavenge power from low-level vibration sources and use this power to do useful work. This generated power, when supported by appropriate signal conditioning like rectifying & filtering, is sufficient to support actuators of low power capabilities or power remote condition monitoring systems.
机译:微机电系统的应用变得越来越多样化。预计这一趋势将继续下去,重点关注的领域之一将是生物医学应用。生物结构和智能植入物的状态监测正在研究和开发中,其复杂性水平越来越高。尽管这些设备中的许多设备都处于概念阶段,但在大多数情况下,它们假定电源将由内置电池提供。当此类设备设计为可长时间工作时,这会限制其实际应用。本文提出了一种由压电材料制成的MEMS器件,该器件可以从低电平振动源中清除能量,并利用该能量完成有用的工作。当通过适当的信号调理(例如整流和滤波)支持时,这种生成的功率足以支持低功率功能的执行器或功率远程状态监测系统。

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