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Zero expansion glass ceramic ZERODUR~? roadmap for advanced lithography

机译:零膨胀玻璃陶瓷Zerodur〜?高级光刻路线图

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The zero expansion glass ceramic ZERODUR~? is a well-established material in microlithography in critical components as wafer- and reticle-stages, mirrors and frames in the stepper positioning and alignment system. The very low coefficient of thermal expansion (CTE) and its extremely high CTE homogeneity are key properties to achieve the tight overlay requirements of advanced lithography processes. SCHOTT is continuously improving critical material properties of ZERODUR~? essential for microlithography applications according to a roadmap driven by the ever tighter material specifications broken down from the customer roadmaps. This paper will present the SCHOTT Roadmap for ZERODUR~? material property development. In the recent years SCHOTT established a physical model based on structural relaxation to describe the coefficient of thermal expansion's temperature dependence. The model is successfully applied for the new expansion grade ZERODUR~? TAILORED introduced to the market in 2012. ZERODUR~? TAILORED delivers the lowest thermal expansion of ZERODUR~? products at microlithography tool application temperature allowing for higher thermal stability for tighter overlay control in IC production. Data will be reported demonstrating the unique CTE homogeneity of ZERODUR~? and its very high reproducibility, a necessary precondition for serial production for microlithography equipment components. New data on the bending strength of ZERODUR~? proves its capability to withstand much higher mechanical loads than previously reported. Utilizing a three parameter Weibull distribution it is possible to derive minimum strength values for a given ZERODUR~? surface treatment. Consequently the statistical uncertainties of the earlier approach based on a two parameter Weibull distribution have been eliminated. Mechanical fatigue due to stress corrosion was included in a straightforward way. The derived formulae allows calculating life time of ZERODUR~? components for a given stress load or the allowable maximum stress for a minimum required life time.
机译:零膨胀玻璃陶瓷Zerodur〜?是临界部件中的微光刻的良好材料,作为晶片和掩模版 - 级,斜面定位和对准系统中的镜子和框架。非常低的热膨胀系数(CTE)及其极高的CTE均匀性是实现先进光刻工艺的紧密覆盖要求的关键特性。肖特不断提高Zerodur的关键材料特性〜?根据由不完全更严格的材料规格从客户路线图中分解的更严格的材料规格的路线图,对于微光学应用。本文将介绍Zerodur的肖特路线图〜?材料物业发展。在近年来,Schott建立了基于结构松弛的物理模型来描述热膨胀系数的温度依赖性。该模型成功应用于新的扩展级Zerodur〜? 2012年按照推广到市场。Zerodur〜?量身定制提供Zerodur的最低热膨胀〜?微光学工具的产品应用温度允许IC生产中更紧密的覆盖控制较高的热稳定性。将报告数据展示Zerodur的独特CTE均匀性〜?及其非常高的再现性,对于微光线设备组件的连续生产的必要前提。 Zerodur弯曲强度的新数据〜?证明其能力能够承受比以前报道的更高的机械载荷。利用三个参数Weibull分布,可以导出给定Zerodur的最小强度值〜?表面处理。因此,基于两个参数Weibull分布的早期方法的统计不确定性已被淘汰。引起应力腐蚀引起的机械疲劳以直接的方式包括。衍生的公式允许计算Zerodur的寿命〜?用于给定应力负载的组件或允许的最大应力最小所需的寿命。

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