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A low-latency GALS interface implementation

机译:低延迟的GALS接口实现

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With the VLSI technology improving rapidly, SoC has been becoming the most important VLSI application. However, clock distribution and low power have already become the two most important issues in SoC design. In addition, it''s also a very important issue to integrate IPs that can perform operations correctly with different clocks. Asynchronous circuits may resolve these problems by removing the “clock” signal. But it''s too hard to implement the whole circuits with asynchronous circuit. The GALS (Globally-Asynchronous Locally-Synchronous) design methodology can balance this problem via separating each synchronous design with asynchronous interface. Thus, each part of the circuit can perform operations with its own clock. The communication between different parts of the circuit can be achieved via asynchronous channels. The GALS provides a reliable communication between different modules. However, the latency of GALS interface may cause performance degradation seriously. Thus how to reduce the latency of GALS interface is significant. In this paper, we implemented a small and simple stretchable-clock based GALS wrapper with low-latency in Verilog HDL and synthesized the design with TSMC 0.13µm cell library. We also showed that the wrapper can operate correctly with modules which operate with great different clock frequencies. In addition, we also recommend adding FIFO storage element on the transmission path.
机译:随着VLSI技术的飞速发展,SoC已成为最重要的VLSI应用。但是,时钟分配和低功耗已经成为SoC设计中的两个最重要的问题。此外,集成IP以不同的时钟正确执行操作也是一个非常重要的问题。异步电路可以通过消除“时钟”信号来解决这些问题。但是用异步电路来实现整个电路太困难了。 GALS(全局异步本地同步)设计方法可以通过将每个同步设计与异步接口分开来平衡此问题。因此,电路的每个部分都可以使用自己的时钟执行操作。电路的不同部分之间的通信可以通过异步通道来实现。 GALS提供了不同模块之间的可靠通信。但是,GALS接口的延迟可能会严重导致性能下降。因此,如何减少GALS接口的等待时间很重要。在本文中,我们在Verilog HDL中实现了一个小而简单的基于可扩展时钟的低延迟GALS包装器,并使用TSMC 0.13µm细胞库对该设计进行了综合。我们还表明包装器可以与时钟频率差异很大的模块一起正常工作。此外,我们还建议在传输路径上添加FIFO存储元素。

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