模数转换器比较器的全程序化自动设计程序

IF 2.9 3区 计算机科学 Q2 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE
Veeti Lahtinen;Santeri Porrasmaa;Altti Heikkinen;Miikka Tenhunen;Jussi Ryynänen;Marko Kosunen
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引用次数: 0

摘要

本文提出了一种系统感知的、完全可编程的、自动化的、过程不可知的设计方法,该方法利用系统级仿真,包括优化电路的布局寄生。通过三个具有不同规格和应用的类比-数字转换器设计示例,演示了比较器从规格到布局实现的设计过程,而无需设计人员交互。结果表明,在两种不同半导体工艺的后布局中,该过程有效地收敛于理想比较器所达到的性能。虽然该方法已被证明用于比较器的设计,但所提出的系统感知方法通常适用于任何模拟电路,大大缩短了设计时间,同时提供了一个硅就绪电路实现目的,设计用于更高级别的系统,而没有人在环路中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fully Programmatic Automated Design Procedure of Comparators for Analog-to-Digital Converters
This article proposes a system-aware, fully programmatic and automated, process agnostic design methodology, which utilizes system-level simulations with the layout parasitics of the circuit under optimization included. The methodology is demonstrated with a design procedure for a comparator from specification to layout implementation in three analog-to-digital converter design examples with different specifications and applications without designer interaction. The procedure is shown to effectively converge toward performance achieved with ideal comparator in post-layout across two different semiconductor processes. While the methodology was demonstrated for design of comparators, the proposed system-aware methodology is generally applicable to any analog circuit, drastically reducing design time while providing a silicon ready circuit implementation purpose designed to the higher level system without human-in-the-loop.
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来源期刊
CiteScore
5.60
自引率
13.80%
发文量
500
审稿时长
7 months
期刊介绍: The purpose of this Transactions is to publish papers of interest to individuals in the area of computer-aided design of integrated circuits and systems composed of analog, digital, mixed-signal, optical, or microwave components. The aids include methods, models, algorithms, and man-machine interfaces for system-level, physical and logical design including: planning, synthesis, partitioning, modeling, simulation, layout, verification, testing, hardware-software co-design and documentation of integrated circuit and system designs of all complexities. Design tools and techniques for evaluating and designing integrated circuits and systems for metrics such as performance, power, reliability, testability, and security are a focus.
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