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Strategy of Insertion of Merge Features in a Sea of Wires SADP Integration

机译:在电线海洋中插入策略SADP集成

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SADP are one of the important patterning techniques for all the FEOL/BEOL levels in 7 nm technology node and beyond. In BEOL, not only the minimum features, but wide lines are also important for power distribution even in the thin wire levels. However, in the conventional SADP integration, insertion of wide features in the sea-of-wires area cannot be achieved easily. In this paper, various strategies are presented for creating merge features in SADP/SAQP integration. Firstly, using an add on lithography, the mandrel can be selectively merge or remove before the spacer deposition, as a result, merged mandrels or non-mandrels without touching others are created. On the other hand, a spacer cut lithography can be applied after the mandrel pull, then, there is a freedom to cut the spacer between the select features that will merge all the features in the area. Nevertheless, the undesired connections can be cut off by adding one more block-lithography. Therefore, it is possible to create any arbitrary shapes with this technique. The last block-lithography can also be eliminated by introducing pre-defined cuts in the mandrel cut or non-mandrel cut step.
机译:SADP是7个NM技术节点和超越的所有Feol / BEOL水平的重要模式技术之一。在BEOL中,不仅是最低功能,而且宽线路即使在细线水平上也对功率分配也很重要。然而,在传统的SADP集成中,不能轻易地在线区域插入宽带区域。在本文中,提出了各种策略,用于在SADP / SAQP集成中创建合并功能。首先,在光刻上使用加法,可以在间隔沉积之前选择性地合并或去除,结果,创建不触摸其他人的合并心轴或非心轴。另一方面,在心轴拉动之后可以施加间隔剪切光刻,然后,存在自由度来切割将合并该区域中所有特征的选择特征之间的垫片。然而,通过添加一个块状光刻可以切断不期望的连接。因此,可以使用这种技术创建任何任意形状。还可以通过在心轴切割或非心轴切割步骤中引入预定义的切口来消除最后一个块光刻。

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