Novel methodology to optimize wafer alignment to enhance 14nm on product overlay

稳健性(进化) 计算机科学 覆盖 材料科学 可靠性工程 薄脆饼 过程(计算) 光电子学 工程类 生物化学 基因 操作系统 化学 程序设计语言
作者
Pavan Kumar Samudrala,Woong Jae Chung,Lokesh Subramany,Haiyong Gao,Nyan Aung,Seung Chul Oh,Shawn Lee,Erik Delvigne,Blandine Minghetti
出处
期刊:Proceedings of SPIE 被引量:1
标识
DOI:10.1117/12.2258137
摘要

With continuous shrink in feature dimensions, overlay tolerance for fabrication of transistors is getting more stringent. Achieving good overlay is extremely critical in getting good yield in HVM environment. It is widely understood that good alignment during exposure is critical for better on product overlay [1]. Conventional methods to choose alignment marks on ASML scanners are based on comparing alignment key performance indicators (KPIs) including signal quality, grid repeatability, etc. It is possible that even with good alignment KPIs, OPO is still impacted. In this paper, we propose aspects that need to be monitored to choose proper alignment marks. LIS (Litho In-Sight) alignment, Ideal overlay/APC parameter signatures are used to determine and validate wafer alignment. LIS alignment ‘Target and Profile selection’ analysis enables us to determine best alignment strategy between multiple strategies/marks based on overlay measurements. Analysis includes examining wafer to wafer OPO variation which is key indicator for alignment robustness. Varying overlay parameters within lot would indicate either large process instability or alignment mark signal instability. It is possible that alignment marks depending on their segmentation can be very differently impacted with the process. Ideal overlay/APC signature stability indicates healthy process and wafer alignment. Having similar APC signatures at corresponding layers would mean that there is no major process or alignment issue.
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