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To repair or not to repair - with FAVOR there is no question

机译:修理或不修复 - 有利于毫无疑问

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In the mask shop the challenges associated with today's advanced technology nodes, both technical and economic, are becoming increasingly difficult. The constant drive to continue shrinking features means more masks per device, smaller manufacturing tolerances and more complexity along the manufacturing line with respect to the number of manufacturing steps required. Furthermore, the extremely competitive nature of the industry makes it critical for mask shops to optimize asset utilization and processes in order to maximize their competitive advantage and, in the end, profitability. Full maximization of profitability in such a complex and technologically sophisticated environment simply cannot be achieved without the use of smart automation. Smart automation allows productivity to be maximized through better asset utilization and process optimization. Reliability is improved through the minimization of manual interactions leading to fewer human error contributions and a more efficient manufacturing line. In addition to these improvements in productivity and reliability, extra value can be added through the collection and cross-verification of data from multiple sources which provides more information about our products and processes. When it comes to handling mask defects, for instance, the process consists largely of time consuming manual interactions that are error prone and often require quick decisions from operators and engineers who are under pressure. The handling of defects itself is a multiple step process consisting of several iterations of inspection, disposition, repair, review and cleaning steps. Smaller manufacturing tolerances and features with higher complexity contribute to a higher number of defects which must be handled as well as a higher level of complexity. In this paper the recent efforts undertaken by ZEISS to provide solutions which address these challenges, particularly those associated with detectivity, will be presented. From automation of aerial image analysis to the use of data driven decision making to predict and propose the optimized back end of line process flow, productivity and reliability improvements are targeted by smart automation. Additionally the generation of the ideal aerial image from the design and several repair enhancement features offer additional capabilities to improve the efficiency and yield associated with defect handling.
机译:在面具商店中,与当今先进技术节点相关的挑战,技术和经济,都变得越来越困难。继续缩小特征的恒定驱动器意味着每个装置的掩模更多,沿着所需的制造步骤的数量沿着制造线的较小的制造公差和更复杂。此外,业界的极其竞争性质使面具商店批评,以优化资产利用率和流程,以最大限度地提高其竞争优势,最终盈利。在不使用智能自动化的情况下,在这种复杂和技术复杂的环境中完全无法实现在这种复杂和技术复杂的环境中的完全最大化。智能自动化允许通过更好的资产利用率和流程优化来最大限度地提高生产率。通过最小化手动相互作用导致人类错误贡献和更有效的生产线来改善可靠性。除了这些提高生产率和可靠性之外,可以通过来自多个来源的数据的收集和交叉验证来添加额外的值,这些资源提供有关我们产品和流程的更多信息。例如,当涉及处理掩模缺陷时,该过程在很大程度上在于耗时的手动交互,易于易于出错,并且通常需要来自压力的运营商和工程师的快速决策。缺陷本身的处理是一种多步骤,包括几个检查,处置,修理,审查和清洁步骤的迭代。具有更高复杂性的较小的制造公差和特征有助于必须处理的更高数量的缺陷,以及更高的复杂程度。在本文中,将提出Zeiss提供解决这些挑战,特别是与探测器相关的解决方案的最新努力。从空中图像分析的自动化到使用数据驱动决策来预测并提出线路处理流程的优化后端,生产率和可靠性改进是通过智能自动化实现的。此外,从设计和几种修复增强功能中产生理想的空中图像提供了额外的能力,以提高与缺陷处理相关的效率和产量。

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