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基于莫尔条纹法的晶圆翘曲测量技术的开发。

Development of a wafer warpage measurement technique using Moiré-based method.

作者信息

Hsieh Hung-Lin, Huang Yung-Guang, Tsai Yu-Hsuan, Huang Yao-Hui

出版信息

Appl Opt. 2016 Jun 1;55(16):4370-7. doi: 10.1364/AO.55.004370.

Abstract

This paper reports on a novel technique for measuring wafer warpage, using the design concepts of moiré shift, digital moiré, autocollimator, and the scanning profiling method. The measurement system is divided into two parts: an optical moiré system and a phase analysis system. The optical arrangement can be adjusted to control the projection of a linear grating image onto the surface of a wafer to be reflected back into a CCD camera. The grating image acquired by the CCD camera is used for measurement whereas a reference grating image is obtained using the digital moiré method. By overlapping the two images of the measurement and the reference gratings, the corresponding moiré fringes are formed. The phase of the moiré fringes will change proportionally to the degree of warpage in the wafer, which can be measured by detecting variations in the phase shift of the moiré fringes in the scanning profile across the surface of the entire wafer. Measurement resolution can be controlled by adjusting the pitch size of the grating or the focal length of the focusing lens, or by adjusting the angle between the images of the measurement and reference gratings. Experiment results demonstrate that the proposed method is able to achieve an angular resolution of 0.2 μrad. As compared to the current warpage measurement techniques, the proposed method has the ability of high measurement resolution, high stability, and high flexibility.

摘要

本文报道了一种用于测量晶圆翘曲的新技术,该技术采用了莫尔条纹位移、数字莫尔条纹、自准直仪和扫描轮廓法的设计理念。测量系统分为两部分:光学莫尔条纹系统和相位分析系统。光学装置可进行调整,以控制线性光栅图像投射到晶圆表面并反射回CCD相机。由CCD相机采集的光栅图像用于测量,而参考光栅图像则通过数字莫尔条纹法获得。通过将测量光栅和参考光栅的两幅图像重叠,形成相应的莫尔条纹。莫尔条纹的相位将与晶圆翘曲程度成比例变化,通过检测整个晶圆表面扫描轮廓中莫尔条纹相移的变化即可测量出该翘曲程度。测量分辨率可通过调整光栅的间距尺寸、聚焦透镜的焦距或调整测量光栅和参考光栅图像之间的角度来控制。实验结果表明,该方法能够实现0.2微弧度的角分辨率。与当前的翘曲测量技术相比,该方法具有高测量分辨率、高稳定性和高灵活性。

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