DTCO optimizes critical path nets to improve chip performance with timing-aware OPC in deep ultraviolet lithography

光学 平版印刷术 光学接近校正 关键路径法 功勋 路径(计算) 炸薯条 临界尺寸 缩放比例 过程(计算) 电子工程 物理 计算机科学 电信 工程类 操作系统 数学 计算机视觉 程序设计语言 系统工程 几何学
作者
Shuang Zhang,Libin Zhang,Chenghong Ding,Lei Wang,Hongru Zhang,Ming Ding,Shengrui Zhang,Weijie Shi,Yayi Wei
出处
期刊:Applied Optics [Optica Publishing Group]
卷期号:62 (27): 7216-7216 被引量:2
标识
DOI:10.1364/ao.499615
摘要

Design technology co-optimization (DTCO) is a potential approach to tackle the escalating expenses and complexities associated with pitch scaling. This strategy offers a promising solution by minimizing the required design dimensions and mitigating the pitch scaling trend. It is worth noting that lithography has played a significant role in dimensional scaling over time. This paper proposes a DTCO flow to reduce the impact of the process variation (PV) band and edge placement error (EPE). First, we performed the digital back-end design of the high-performance processor and got the test layout; second, we executed timing analysis on the test layout to get the critical path net that affects the chip performance; third, we proposed the timing-aware optimized optical proximity correction (OPC) method to optimize the PV band and EPE by adjusting the weights of critical path net merit points, optimizing the generation of the sub-resolution assistant feature, giving tighter EPE specs for merit points on the critical path net, and placing denser merit points as well as denser breakpoints for the critical path net to obtain greater freedom in the OPC process. Finally, it is verified that our proposed DTCO process can significantly reduce the EPE and lead to a slight decrease in the PV band of the chip while maintaining the same process windows.
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