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首页> 外文期刊>IEEE Journal of Solid-State Circuits >Multi-Phase Injection Widens Lock Range of Ring-Oscillator-Based Frequency Dividers
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Multi-Phase Injection Widens Lock Range of Ring-Oscillator-Based Frequency Dividers

机译:多相注入拓宽了基于环形振荡器的分频器的锁定范围

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摘要

Injection-locked oscillators divide at very high frequencies and consume low power. They are not widely deployed in commercial products because they operate over small, often unpredictable, ranges of input frequencies. Ring oscillators as dividers are interesting because they are compact, and capable of a multi-phase output, including quadrature phases. Using a generalized Adler''s equation for large injections, we analyze the operation of injection-locked ring oscillators and derive expressions for the input lock range. We discover that injection in the correct progressive phases greatly widens the lock range; all that is needed is the right delay cell circuit, and the injection input in one or two phases. As proof of concept, divide-by-two and six prototypes are built. The measured lock range spans DC to 1.5 $, times$ the free-running frequency, the highest reported to date.
机译:注入锁定振荡器以很高的频率分频并消耗低功率。它们没有在商业产品中广泛使用,因为它们在很小的,通常是不可预测的输入频率范围内工作。环形振荡器作为分频器很有趣,因为它们结构紧凑,并且能够输出多相,包括正交相位。使用广义Adler方程进行大剂量注入,我们分析了注入锁定环形振荡器的操作,并推导了输入锁定范围的表达式。我们发现,在正确的渐进阶段进行注射可以大大拓宽锁定范围。所需要的只是正确的延迟单元电路,以及一相或两相的注入输入。作为概念验证,构建了二分法和六分法原型。测得的锁定范围跨度DC到1.5 $,乘以$自由运行频率,是迄今为止报告的最高频率。

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