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A design flow for locally-clocked XBM asynchronous state machines using synchronous CAD tools

机译:使用同步CAD工具的本地时钟XBM异步状态机的设计流程

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Controllers based on Synchronous Finite State Machines (SFSM) are widely used in the control unit design of complex digital systems. These systems can present serious problems related to the global clock. In this context, the asynchronous paradigm shows interesting features that fit as an alternative for the design, despite of the difficulties of the application of asynchronous logic. An interesting architecture for the Asynchronous Finite State Machines Asynchronous (AFSM) is based on local clock, because it reduces the requirements of asynchronous logic. This paper proposes a new architecture of local clock to AFSMs, which is described by a popular specification known as Extended Burst-Mode (XBM). This architecture has a better cycle time when compared to other local clock architectures. Also, the paper proposes a "necessary and sufficient" condition for the local clock AFSMs on the proposed architecture to be synthesized completely by the use of conventional tools. Through a case study, we present the architecture, its robustness, the synthesis procedure and compare it with other local clock architectures, highlighting its advantages.
机译:基于同步有限状态机(SFSM)的控制器广泛用于复杂数字系统的控制单元设计中。这些系统可能会带来与全局时钟有关的严重问题。在这种情况下,尽管应用异步逻辑有困难,但异步范例显示了一些有趣的功能,可以替代设计。异步有限状态机异步(AFSM)的一种有趣的体系结构基于本地时钟,因为它减少了异步逻辑的需求。本文提出了一种针对AFSM的本地时钟的新体系结构,该体系结构由称为扩展突发模式(XBM)的流行规范描述。与其他本地时钟体系结构相比,该体系结构具有更好的循环时间。此外,本文提出了一个“必要和充分”的条件,以使所提出的体系结构上的本地时钟AFSM能够通过使用常规工具来完全合成。通过案例研究,我们介绍了该体系结构,其健壮性,综合过程,并将其与其他本地时钟体系结构进行了比较,突出了其优势。

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