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Implementation of an efficient defect classification methodology for advanced reticle inspection

机译:实施有效的缺陷分类方法以进行高级掩模版检查

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As design rule continues to shrink towards ITRS roadmap requirements, reticle defect capture criteria are becoming ever more challenging. Pattern fidelity and reticle defects that were once perceived as insignificant or nuisance are now becoming a significant considerable yield impacting factor. More defects are also detectable and presented with increase in implementation of new generation reticle inspection systems. Therefore, how to review and characterize defects accurately and efficiently is becoming more significant. In particular, defect classification time often corresponds directly to the cost and the cycle time of mask manufacturing or new technology development. In this study we introduce a new mask defect review tool called ReviewSmart, which retrieves and processes defect images reported from KLA-Tencor's high sensitivity TeraScan inspection tool. Compared to the traditional defect review method, ReviewSmart provides a much better method to manage defects efficiently by utilizing the concept of defect grouping disposition. Through the application and qualification results with respectable reticle production cases, the implementation of ReviewSmart has been proven to be effective for reducing defect classification loading and improving defect characterizing efficiency. Moreover, the new review tool is helpful to categorically identify tool or process variations thus allowing users to expedite the learning process for developing production worthy leading node processes.
机译:随着设计规则继续向ITRS路线图要求靠拢,标线缺陷捕获标准变得越来越具有挑战性。曾经被认为微不足道或令人讨厌的图案保真度和标线缺陷现在正成为影响产量的重要因素。随着新一代掩模版检测系统的实施,更多的缺陷也可以检测到并呈现出来。因此,如何准确有效地检查和表征缺陷变得越来越重要。特别地,缺陷分类时间通常直接对应于掩模制造或新技术开发的成本和周期时间。在这项研究中,我们引入了一种名为ReviewSmart的新型掩模缺陷检查工具,该工具可以检索和处理从KLA-Tencor的高灵敏度TeraScan检查工具报告的缺陷图像。与传统的缺陷检查方法相比,ReviewSmart通过利用缺陷分组配置的概念提供了一种更好的方法来有效地管理缺陷。通过在适当的标线生产情况下的应用和鉴定结果,ReviewSmart的实施已被证明可有效减少缺陷分类负荷并提高缺陷表征效率。此外,新的审查工具有助于分类地识别工具或过程的变化,从而使用户能够加快学习过程,以开发有价值的领先节点过程。

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