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Insertion Error in LPRT Temperature Measurements

机译:LPRT温度测量中的插入误差

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摘要

Accurate measurement of surface temperature distribution is of great concern in the semiconductor industries, particularly in rapid thermal processing (RTP). The International Technology Roadmap for Semiconductors 2004 (ITRS) has established requirements of uncertainties of plusmn1.5 degC at temperature of 1000 degC, with temperature calibration traceable to ITS-90 (International Temperature Scale-1990). Light-pipe radiation thermometers (LPRTs) are becoming increasingly important as an industrial tool for temperature measurement, especially in the semiconductor industry. However, there are several radiation issues associate with LPRTs, and without fully understanding them, achieving further accuracy could be hobbled. In this paper, we concentrate on the insertion error in the LPRTs temperature measurement. The "drawdown effect" and "shadow effect" are investigated. The "drawdown effect" is caused by the physical mass of the light-pipe probe acting as a heat sink for the measured object and the "shadow effect" is caused by distortion of radiosity due to the presence of the light-pipe probe. Monte Carlo simulation was conducted and compared to the experiment results
机译:表面温度分布的准确测量是在半导体工业的极大关注,特别是在快速热加工(RTP)。国际技术路线图2004年半导体(ITRS)建立了在1000摄氏度的温度plusmn1.5摄氏度的不确定性的要求,温度校准溯源到ITS-90(国际范围内的1990年的温度)。光管辐射温度计(LPRTs)正在成为作为用于温度测量的工业工具越来越重要,特别是在半导体工业中。但是,有几个问题,辐射与关联LPRTs,并没有充分了解他们,从而实现进一步的高精度,可以步履蹒跚。在本文中,我们集中在LPRTs温度测量的插入错误。该“缩编效应”和“阴影效应”进行了研究。了“提款效果”是通过充当散热片被测物体和“阴影效应”光管探针的物理质量引起由辐射度的失真由于光管探针的存在而引起的。蒙特卡罗模拟,并进行了比较试验结果

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