Exploring duty cycle distortions along signal paths in FPGAs (abstract only)

Matthias Hinkfoth, R. Joost, R. Salomon
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Abstract

Non-trivial hardware architectures consist of a significant number of fine-grained modules that communication with each other via dedicated signal lines. In field-programmable gate arrays (FPGAs), these communication lines are provided in forms of global vertical and horizontal routing channels, and are subject to the routing process. Since the effects of physical properties on the signal skew along these lines is well understood, this paper investigates the observable effects on a signal's duty cycle. Practical experiments show that the distortion on the duty cycle progressively increases along such wires (connections) and that in the extreme case, a signal may entirely vanish.
探索沿fpga信号路径的占空比畸变(仅抽象)
重要的硬件架构由大量细粒度模块组成,这些模块通过专用信号线相互通信。在现场可编程门阵列(fpga)中,这些通信线路以全局垂直和水平路由通道的形式提供,并受路由过程的约束。由于物理性质对沿这些线的信号偏斜的影响是很容易理解的,因此本文研究了对信号占空比的可观察影响。实际实验表明,沿这种导线(连接),占空比上的失真逐渐增加,在极端情况下,信号可能完全消失。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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