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Scanner Overlay Mix and Match Matrix Generation; Capturing all Sources of Variation

机译:扫描仪叠加混合和匹配矩阵生成;捕获所有变异来源

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Although lithography equipment and alignment capabilities have evolved significantly since the early stepper days of the 1980's, the techniques for generating overlay mix and match matrices have remained virtually unchanged. The underlying assumption for traditional mix and match matrices is that the lens signature is the dominant influence in total overlay, and that metrology errors need to be averaged out of the raw data. As step and scan systems were introduced in the mid 1990s, improved lens quality has reduced the lens signature errors significantly. However, improvements in stepping accuracy and precision did not keep pace with the rapid reduction in lens distortions. As a result, lens distortion signatures, combined with stepping and scanning repeatability issues, render the traditional "lens distortion matrix" methods for generating mix and match matrices invalid. In this paper several metrology sampling layouts were generated, and demonstrated that with appropriate sampling across known degrees of freedom, it is possible to create a mix and match matrix and modeling more appropriate for 65 nm node alignment tolerances. The mix and match approach captures worst case overlay errors in the matching matrix, and also identifies the root causes of the mix and match error sources between scanners.
机译:尽管光刻设备和对准能力在1980年初的步进时期以来已经显着发展,但是用于产生叠加混合和匹配矩阵的技术仍然保持不变。传统混合和匹配矩阵的潜在假设是镜头签名是总覆盖层的主导影响,并且需要从原始数据中取出计量误差。随着步骤和扫描系统在20世纪90年代中期介绍,改善的镜头质量显着降低了镜头签名误差。然而,踩踏精度和精度的改进并没有跟上镜片扭曲的快速减少。结果,镜头失真签名,与踩踏和扫描重复性问题相结合,使传统的“镜头失真矩阵”用于生成混合的方法和匹配矩阵无效。在本文中,产生了几个计量采样布局,并证明在已知的自由度跨越适当的采样,可以创建混合和匹配矩阵和建模更合适的65nm节点对准公差。混合和匹配方法在匹配矩阵中捕获最差别的覆盖错误,并且还识别混音的根原因和扫描仪之间的匹配错误源。

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