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A Technology-Agnostic Simulation Environment (TASE) for Iterative Custom IC Design across Processes

机译:用于跨流程的迭代定制IC设计技术 - 无话学仿真环境(淘汰)

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A designer's intent and knowledge about the critical issues and trade-offs underlying a custom circuit design are implicit in the simulations she sets up for design creation and verification. However, this knowledge is tightly conjoined with technology-specific features and decoupled from the final schematic in traditional design flows. As a result, this knowledge is easily lost when the technology specifics change. This paper presents a Technology Agnostic Simulation Environment (TASE), which is a tool that uses simulation templates to capture the designer's knowledge and separate it from the technology-specific components of a simulation. TASE also allows the designer to form groups of related simulations and port them as a unit to a new technology. This allows an actual design schematic to remain tied to the analyses that illuminate the underlying trade-offs and design issues, unlike the case where schematics are ported alone. Giving the designer immediate access to the trade-offs, which are likely to change in new technologies, accelerates the re-design that often must accompany porting of complicated custom circuits. We demonstrate the usefulness of TASE by investigating Read and Write noise margins for a 6T SRAM in predictive technologies down to 16nm.
机译:设计师的意图和关于自定义电路设计的关键问题和权衡的知识是隐含的模拟中隐含设计创建和验证的模拟。然而,这种知识紧紧地与技术特征的特征密切相关,并从传统设计流中的最终原理图分离。结果,当技术细节变化时,这种知识很容易丢失。本文介绍了一个技术不可知的仿真环境(淘选),它是一种使用模拟模板来捕获设计者的知识并将其与模拟的技术特定组件分开的工具。 Tase还允许设计人员形成相关模拟组,并将其作为一个单元的单元组成。这允许实际的设计原理图保持与照明潜在权衡和设计问题的分析相关联的分析,与单独移植的情况不同。为设计人员立即访问可能改变新技术的权衡,加速了重新设计,这些重新设计通常必须伴随复杂的自定义电路。我们通过调查预测技术的6T SRAM读取和写入噪声边距来展示TAS的有用性,以预测技术降至16nm。

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