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Post-route alleviation of dense meander segments in high-performance printed circuit boards

机译:高性能印刷电路板中密集弯折线段的布线后缓解

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Length-matching is an important technique to balance delays of bus signals in high-performance PCB routing. Existing routers, however, may generate dense meander segments with small distance. Signals propagating across these meander segments exhibit a speedup effect due to crosstalks between the segments of the same wire, thus leading to mismatch of arrival times even with the same physical wire length. In this paper, we propose a post-processing method to enlarge the width and the distance of meander segments and distribute them more evenly on the board so that the crosstalks can be reduced. In the proposed framework, we model the sharing combinations of available routing areas after removing dense meander segments from the initial routing, as well as the generation of relaxed meander segments and their groups in subareas. Thereafter, this model is transformed into an ILP problem and solved efficiently. Experimental results show that the proposed method can extend the width and the distance of meander segments about two times even under very tight area constraints, so that the crosstalks and thus the speedup effect can be alleviated effectively in high-performance PCB designs.
机译:长度匹配是一种平衡高性能PCB布线中总线信号延迟的重要技术。但是,现有的路由器可能会生成距离较近的密集弯曲段。跨这些曲折线段传播的信号由于同一根导线的线段之间的串扰而显示出加速效果,因此即使在相同的物理导线长度下,也导致到达时间不匹配。在本文中,我们提出了一种后处理方法,以扩大曲折段的宽度和距离,并将其更均匀地分布在板上,从而减少串扰。在提出的框架中,我们在从初始路由中删除密集的曲折线段以及在子区域中生成松散的曲折线段及其组之后,对可用路由区的共享组合进行建模。此后,该模型转化为ILP问题并得到有效解决。实验结果表明,所提出的方法即使在非常狭窄的面积约束下也能将弯折段的宽度和距离扩展两倍左右,从而在高性能PCB设计中可以有效地减轻串扰,从而加速效果。

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