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N7 LOGIC VIA PATTERNING USING TEMPLATED DSA: IMPLEMENTATION ASPECTS

机译:使用模板化DSA进行N7逻辑绘图:实施方面

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In recent years, major advancements have been made in the directed self-assembly (DSA) of block copolymers (BCP). Insertion of DSA for IC fabrication is seriously considered for the 7 nm node. At this node the DSA technology could alleviate costs for multiple patterning and limit the number of masks that would be required per layer. At imec, multiple approaches for inserting DSA into the 7 nm node are considered. One of the most straightforward approaches for implementation would be for via patterning through templated DSA; a grapho-epitaxy flow using cylindrical phase BCP material resulting in contact hole multiplication within a litho-defined pre-pattern. To be implemented for 7 nm node via patterning, not only the appropriate process flow needs to be available, but also DSA-aware mask decomposition is required. In this paper, several aspects of the imec approach for implementing templated DSA will be discussed, including experimental demonstration of density effect mitigation, DSA hole pattern transfer and double DSA patterning, creation of a compact DSA model. Using an actual 7 nm node logic layout, we derive DSA-friendly design rules in a logical way from a lithographer's view point. A concrete assessment is provided on how DSA-friendly design could potentially reduce the number of Via masks for a place-and-routed N7 logic pattern.
机译:近年来,嵌段共聚物(BCP)的定向自组装(DSA)取得了重大进展。对于7 nm节点,认真考虑将DSA插入IC制造中。在这个节点上,DSA技术可以减轻多重图案化的成本,并限制每层所需的掩模数量。在imec上,考虑了将DSA插入7 nm节点的多种方法。最直接的实现方法之一是通过模板化DSA进行图案化。使用圆柱相BCP材料的图形外延流,导致在光刻定义的预图案内增加接触孔。为了通过构图为7 nm节点实现,不仅需要适当的工艺流程,而且还需要DSA感知的掩模分解。在本文中,将讨论实现模板化DSA的imec方法的几个方面,包括密度效应缓解,DSA孔图案转移和双DSA图案化的实验演示,创建紧凑的DSA模型。使用实际的7 nm节点逻辑布局,我们从光刻师的角度以逻辑方式得出了DSA友好的设计规则。提供了有关DSA友好设计如何潜在地减少布局和布线N7逻辑图案的Via掩模数量的具体评估。

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