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Due to process limitations, wiring rules are imposed on chip layout by foundries. Under nanometer wiring rules, the required separation between two wire ends is dependent on their surrounding wires, and there is a limit on the minimum length of each wire segment. However, traditional shortest path algorithms are not properly designed for these rules. In the paper, we propose a maze routing algorithm,...
To successfully route a design, one essential requirement is to allocate sufficient routing resources. In this paper, we show that allocating routing resources based on horizontal and vertical (H/V) cut-demands can greatly improve routability especially for designs with thin areas. We then derive methods to predict the maximum H/V cut-demands and propose two cut-demand based approaches, one is to...
This paper accurately considers wire short defects and proposes an algorithm to guarantee IC chip yield rate improvement for redundant wire insertion. Without considering yield rate degradation caused by shorts, traditional methods may even lead to yield rate loss. However, shorts are more complicated to analyze than opens. Moreover, since any two points of a routed net can be connected by a redundant...
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