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Characterization of MEMS sensor for RF Transmitted Power Measurement

机译:用于射频发射功率测量的MEMS传感器的特性

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In this report we introduce the procedure for performing a thermo mechanical design and analysis of thermal GaAs-based MEMS devices. It will provide the procedure how thermal analysis should be made and model equations used to describe conduction, convection, radiation and mechanical effects caused by nonhomogenous temperature distribution. This is demonstrated on the design of Micromechanical thermal converter (MTC) that creates heart of the RF power sensor microsystem. The conception of absorbed power measurement is based on thermal conversion, where absorbed RF power is transformed into thermal power, inside a thermally isolated system. The temperature changes induced in the MTC by electrical power dissipated in the HEMT (High Electron Mobility Tranzistor) are sensed using the temperature sensor. The temperature distribution, over the sensing area, and mechanical stress was optimized by studying different MTC sizes, and layouts of the heater and temperature sensor.
机译:在本报告中,我们介绍了执行基于热GaAs的MEMS器件的热机械设计和分析的过程。它将提供如何进行热分析的程序,以及用于描述由非均匀温度分布引起的传导,对流,辐射和机械效应的模型方程。这在微机械热转换器(MTC)的设计中得到了证明,该设计是RF功率传感器微系统的核心。吸收功率测量的概念基于热转换,在热转换系统内,吸收的RF功率转换为热功率。使用温度传感器感测由HEMT(高电子迁移率晶体管)中消耗的电能在MTC中引起的温度变化。通过研究不同的MTC尺寸以及加热器和温度传感器的布局,优化了感应区域上的温度分布和机械应力。

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