Simulation study of power loss components in a microheater

G. Saxena, R. Paily
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引用次数: 7

Abstract

Microheaters have been employed in wide variety of applications. While designing microheaters for any specific application, it is necessary to identify the individual loss components because the total power consumption depends primarily on the significant part of loss mechanism. Proper design of a microheater that can perform efficiently over the entire operating region is of utmost importance. This paper identifies the individual components of heat loss mechanisms and their region of dominance with respect to the temperature spectrum. The convection loss mechanism has as much as 30% contribution of total heat losses. The nitride layer, which is used for providing the electrical insulation has resulted in an additional 56:6% of power demand for a heater operating at 620K. This is a significant power intake for any battery operated, hand held devices for a continuous monitoring applications such as gas sensors or air quality monitors.
微加热器功率损耗元件的仿真研究
微加热器已广泛应用于各种场合。在为任何特定应用设计微加热器时,有必要确定单个损耗元件,因为总功耗主要取决于损耗机制的重要部分。正确设计一个能在整个操作区域有效运行的微加热器是至关重要的。本文确定了热损失机制的各个组成部分及其相对于温度谱的优势区域。对流损失机制对总热损失的贡献高达30%。用于提供电绝缘的氮化物层导致在620K下运行的加热器额外的56:6%的电力需求。对于任何电池供电的手持设备,如气体传感器或空气质量监测器,这是一个重要的功率摄入。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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