提高双尾比较器性能的计算机辅助设计方法

Sadegh Mohammadi-Esfahrood, Mostafa Najafzadeh Ashrafi, S. Zahiri
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引用次数: 0

摘要

设计电路对寄生元件敏感、设计方程不准确、人工计算复杂、需要大量的试错以及缺乏精确的无源集成元件模型等问题促使工程师们寻求计算机辅助设计(CAD)方法。本文将Hspice与grasshopper优化算法相结合,提出了一种CAD工具,旨在对双尾比较器进行优化设计。该工具采用了精确的晶体管模型,并考虑了所有寄生元件,得到了接近实际的结果。提出的工具同时最小化多个目标,并提出一组最优解作为帕累托前沿。设计者可以根据具体的应用情况,了解目标函数之间的关系,选择任意组态,提取电路参数。最后,通过在PVT弯道处对设计进行验证,对最终方案进行评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Computer-Aided Design Approach for Improving the Performance of Double-Tail Comparators
Problems of designing circuits including being sensitive to parasitic elements, inaccurate design equations, complicated manual calculations, requiring a large number of trials and errors and lack of accurate passive integrated element model have motivated engineers to look for computer-aided design (CAD) methods. In this paper, a CAD tool is presented through linking Hspice and grasshopper optimization algorithm aiming to design a double-tail comparator optimally. This tool employs accurate model of transistors and considers all parasitic elements, to obtain results which are close to reality. The proposed tool minimizes multiple objectives simultaneously and presents a set of optimal solutions as a Pareto front. The designer can select any configuration and extract circuit parameters considering the specific application and understanding the relationship between objective functions. Finally, the designer evaluates the final solutions by verifying the design at PVT corners.
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