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Escaped Boundary Pins Routing for High-Speed Boards

机译:高速电路板的转义边界引脚布线

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摘要

Routing for high-speed boards is still achieved manually today. There have recently been some related works to solve this problem; however, a more practical problem has not been addressed. Usually, the packages or components are designed with or without the requirement from board designers, and the boundary pins are usually fixed or advised to follow when the board design starts. In this paper, we describe this fixed ordering boundary pin routing problem, and propose a practical approach to solve it. Not only do we provide a way to address, we also further plan the wires in a better way to preserve the precious routing resources in the limited number of layers on the board, and to effectively deal with obstacles. Our approach has different features compared with the conventional shortest-path-based routing paradigm. In addition, we consider length-matching requirements and wire shape resemblance for high-speed signal routes on board. Our results show that we can utilize routing resources very carefully, and can account for the resemblance of nets in the presence of the obstacles. Our approach is workable for board buses as well.
机译:如今,仍然需要手动完成高速板的布线。最近有一些相关的工作来解决这个问题。但是,还没有解决更实际的问题。通常,在有或没有电路板设计人员要求的情况下设计封装或组件,通常在电路板设计开始时固定或建议使用边界引脚。在本文中,我们描述了此固定排序边界引脚布线问题,并提出了解决该问题的实用方法。我们不仅提供了一种解决方法,而且还以更好的方式进一步规划了布线,以将宝贵的布线资源保留在板上有限数量的层中,并有效地处理障碍。与传统的基于最短路径的路由范例相比,我们的方法具有不同的功能。此外,我们还考虑了船上高速信号路径的长度匹配要求和线形相似性。我们的结果表明,我们可以非常谨慎地利用路由资源,并且可以说明存在障碍物时网络的相似性。我们的方法对于板载巴士也是可行的。

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