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Multiparameter optimization of RSFQ circuits using the method of inscribed hyperspheres

机译:内接超球面法优化RSFQ电路的多参数

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Rapid Single Flux Quantum (RSFQ) circuits must be designed with large operating margins because of variations in the fabrication process. We describe a routine to optimize the yield, rather than the critical margin, of RSFQ circuits, based on the method of inscribed hyperspheres. The operating region is mapped out with a minimum of circuit simulations taking into account the relative size of the process variations. The method is effective for as many as nine parameters. We show that the standard optimization of critical margin will often give a seriously wrong result for multidimensional parameter space.
机译:由于制造工艺的变化,快速单通量量子(RSFQ)电路必须设计有较大的工作裕度。我们描述了一种基于内接超球面方法优化RSFQ电路的成品率而不是临界裕度的例程。考虑到工艺变化的相对大小,可以使用最少的电路仿真来绘制工作区域。该方法对多达9个参数有效。我们表明,临界裕度的标准优化通常会给多维参数空间带来严重错误的结果。

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