开源、多层LSI设计;分布式知识产权开发和教育的制造框架

Junichi Akita
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引用次数: 0

摘要

基于摩尔定律的大规模集成电路(LSI)技术的不断发展导致了大规模集成电路技术的高度发展,但同时也导致了高设计制造成本和高设计复杂性。这一事实阻止了各种用户参与设计lsi、制造lsi和开发知识产权(ip)的活动。另一方面,开源的趋势已经引起了人们的注意,以克服这些问题并扩展LSI技术的潜力。本研究的目的是开发一个开源的大规模集成电路设计框架,旨在连接不同层次的大规模集成电路知识。其方法论由两部分组成。一是利用现有的开源EDA工具及其相关的粘合软件开发LSI设计流程。另一种是用于设计lsi的开源、不受nda限制的PDK(流程设计工具包)。在此框架下进行了大规模集成电路的开发和构建过程,并对其进行了评估。从这些实验中可以看出,提高教学效果对大规模集成电路设计的影响。这些试验增强了贡献者的兴趣和动机,以了解计算机系统的细节及其与lsi的关系。本文还指出,该框架在促进IP的快速发展方面是有效的,并且作为开源软件的教育方面具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Open-source, multi-layer LSI design & fabrication framework for distributed IP development and education
Continuous development of Large Scale Integration (LSI) technologies based on Moore's law results in highly developed LSI technologies, as well as very high costs in design and fabrication and high design complexity. This fact prevents various users from contributing to the activities of designing LSIs, fabricating LSIs, and developing Intellectual Properties (IPs). On the other hand, the trend towards open-source has been attracting attention to overcome these problems and extend the potential of LSI technologies. The purpose of this research is to develop an open-source LSI design framework aimed at connecting various layers of LSI knowledge. Its methodology is composed of two parts. One is the development of the LSI design flow using existing open-source EDA tools and their related glue software. The other is the open-source, NDA-free PDK (process design kit) used in designing LSIs. The process of developing and constructing Large Scale Integrated (LSI) circuits within this framework is conducted and assessed. From these trials, the effect of enhancing educational effectiveness on LSI design is indicated. These trials enhanced the contributors’ interest and motivation to understand the details of computer systems and their relation to LSIs. It is also indicated that this framework is effective in enhancing rapid IP development as well as its importance as an educational aspect of open-source software.
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