首页> 外文会议>Conference on Photomask Technology; 20070918-21; Monterey,CA(US) >Safe Interpolation Distance for VT5 Resist Model
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Safe Interpolation Distance for VT5 Resist Model

机译:VT5抵抗模型的安全插值距离

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As the technology shrinks toward 65nm technology and beyond, Optical Proximity Correction (OPC) becomes more important to insure proper printability of high-performance integrated circuits. This correction involves some geometrical modifications to the mask polygons to account for light diffraction and etch biasing. Model-based OPC has proven to be a convenient, accurate, and efficient methodology. In this method, raw calibration data are measured from the process. These data are used to build a VT5 resist model [1] that accounts for all proximity effects that attendant to the lithography process. To ensure the reliability of the calibrated VT5 model, these data must be broad in the image parameter space (IPS) to account for different one-dimensional and two-dimensional features for the design intent.Failure to provide sufficient IPS (i.e. mimic the design intent) coverage during model calibration could result in marginalizing the VT5 model during OPC, but is difficult to judge when there is enough data volume to safely interpolate and extrapolate design intent. In this paper we introduce a new metric called Safe Interpolation Distance (SID). This metric is a multi-dimensional metric which can be used to automatically detect the portions of the target design that are not covered well by the desired VT5 model.
机译:随着技术向65纳米技术及以后的技术发展,光学邻近校正(OPC)对于确保高性能集成电路的适当可印刷性变得越来越重要。该校正涉及对掩模多边形进行一些几何修改,以解决光衍射和蚀刻偏压的问题。基于模型的OPC已被证明是一种方便,准确和有效的方法。在这种方法中,从过程中测量原始校准数据。这些数据用于建立VT5抗蚀剂模型[1],该模型考虑了光刻过程带来的所有邻近效应。为了确保校准后的VT5模型的可靠性,这些数据必须在图像参数空间(IPS)中宽泛,以考虑到不同的设计意图的一维和二维特征。无法提供足够的IPS(即模仿设计)在模型校准期间覆盖可能会导致OPC期间的VT5模型边缘化,但是很难判断何时有足够的数据量可以安全地内插和外推设计意图。在本文中,我们介绍了一种称为安全插值距离(SID)的新指标。此度量是一个多维度量,可用于自动检测目标设计中未被所需VT5模型覆盖的部分。

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