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The comparison of the effectiveness of model-based SRAFs and rule-based SRAFs

机译:基于模型的SRAF和基于规则的SRAF的有效性比较

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The SRAFs that are usually in the form of scattering bars (SBs) are inserted to the contact layer to maintain proper local pattern densities, ensuring a good resolution on a full chip scale. There exist 2 practical addition schemes of SBs; namely, the rule-based (RB) SB and model-based (MB) SB. The RB SBs are set up by the inspection of local pattern geometries and their effectiveness heavily relies on engineers' experiences. In contrast, the MB scheme adds the SBs in accordance to the computed contrasts of contact edges. It is fully environment adaptive and can hence save a huge amount of human efforts. Moreover, the MB scheme is capable of taking the process window (PW) conditions into account so that DOF (depth of focus) and EL (energy latitude) can be optimized on a full chip scale due to the added SBs. Since the PW conditions are not explicitly included in the RB scheme, it is expected that the MB SBs should have a better performance than the RB SBs. Using a real chip as a test case, we have found that the MB scheme can better control the PV (process variability) band width though, the overall performances of these 2 SB schemes are comparable. However, optimizing a limited number of adjustable parameters can further improve the performance of MB SBs. Both schemes yield some weak points. The weak points that are resulted from one scheme can be fixed by the other scheme. Hence, these 2 schemes are complementary to each other. This inspires us to incorporate the MB SB into the post-OPC repair flow.
机译:通常以散射棒(SB)形式的SRAF被插入到接触层中,以保持适当的局部图案密度,从而确保在整个芯片规模上具有良好的分辨率。 SB存在两种实用的添加方案;即基于规则的(RB)SB和基于模型的(MB)SB。 RB SB是通过检查局部图案的几何形状而建立的,其有效性在很大程度上取决于工程师的经验。相比之下,MB方案根据计算得出的接触边缘对比度来添加SB。它完全适应环境,因此可以节省大量的人力。此外,MB方案能够考虑工艺窗口(PW)条件,因此由于增加了SB,可以在整个芯片规模上优化DOF(聚焦深度)和EL(能量纬度)。由于PW条件未明确包括在RB方案中,因此期望MB SB应具有比RB SB更好的性能。使用真实的芯片作为测试案例,我们发现MB方案可以更好地控制PV(过程可变性)带宽,尽管这两个SB方案的总体性能是可比的。但是,优化有限数量的可调参数可以进一步提高MB SB的性能。两种方案都存在一些弱点。由一种方案导致的弱点可以由另一种方案修复。因此,这两种方案是相互补充的。这激励我们将MB SB纳入OPC后的维修流程。

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