首页> 外文期刊>IEEE transactions on very large scale integration (VLSI) systems >A Full Digital Fractional- $N$ TAF-FLL for Digital Applications: Demonstration of the Principle of a Frequency-Locked Loop Built on Time-Average-Frequency
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A Full Digital Fractional- $N$ TAF-FLL for Digital Applications: Demonstration of the Principle of a Frequency-Locked Loop Built on Time-Average-Frequency

机译:用于数字应用的全数字小数- $ N $ TAF-FLL:演示a的原理基于时间平均频率的锁频环

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摘要

Time-average-frequency (TAF) is a novel concept proposed in 2008 for constructing clock signal. TAF direct period synthesis (TAF-DPS) is an emerging frequency synthesis technique based on TAF. Its distinguished features are small frequency granularity and fast frequency switching, achieved simultaneously for a given design. Furthermore, its output frequency is monotonically changed with a digital control word. Those features make it suitable digitally controlled oscillator (DCO). In this paper, a TAF-DPS DCO is created entirely from digital cells. Using it as the core, a 100% digital TAF frequency-locked loop (TAF-FLL) is constructed. Unlike all established FLL and PLL architectures, TAF-FLL's output is in TAF instead of conventional frequency. This fact impacts the design from at least two directions. First, it blurs the boundary between integer-and fractional-N. Second, the issues of output jitter and the loop design are independent of each other and can be treated separately. This novel all-digital architecture has been implemented in field-programmable gate array for verifying the principle. It is the first case of building frequency control loop on TAF. The purpose of this TAF-FLL is to drive digital circuits, for digital-oriented applications.
机译:时间平均频率(TAF)是2008年提出的用于构造时钟信号的新颖概念。 TAF直接周期合成(TAF-DPS)是一种基于TAF的新兴频率合成技术。对于给定的设计,它的显着特征是较小的频率粒度和快速的频率切换。此外,其输出频率通过数字控制字单调更改。这些功能使其适合用作数字控制振荡器(DCO)。在本文中,TAF-DPS DCO完全由数字单元创建。以它为核心,构建了一个100%数字TAF锁频环(TAF-FLL)。与所有已建立的FLL和PLL架构不同,TAF-FLL的输出以TAF代替传统频率。这一事实至少从两个方向影响了设计。首先,它模糊了整数N和分数N之间的边界。其次,输出抖动和环路设计是相互独立的,可以分开处理。这种新颖的全数字架构已在现场可编程门阵列中实现,以验证其原理。这是在TAF上构建频率控制环路的第一种情况。 TAF-FLL的目的是驱动面向数字应用的数字电路。

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