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Ring Oscillator Based Injection Locked Frequency Divider Using Dual Injection Paths

机译:使用双注入路径的基于环形振荡器的注入锁定分频器

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Ring oscillator based injection locked frequency dividers (ILFD) generally feature higher power efficiency compared to conventional static frequency dividers. However it is difficult for ring oscillator based ILFDs to achieve large division ratio and wide input locking range at the same time. To increase the input locking range, a ring oscillator based ILFD utilizing dual injection technique is proposed in this letter. For this, both tail injection and direct injection are applied in phase such that the output currents of the two mixing processes corresponding to the two injection paths are added constructively at the output frequency and the overall injection efficiency is therefore increased. A differential buffer circuit with dual injection is proposed. Equivalent circuit modeling of the dual injection buffer and mathematical analysis of locking range enhancement are presented. The core ring oscillator consists of 4 stages of the dual injection buffers. It is fabricated in a 65 nm CMOS technology and consumes less than 2 mW with supply voltage of 1.2 V. Its locking range is from 1.2 to 20.7 GHz without any tuning at 0 dBm injection power level. The proposed ILFD is compact with the core only occupying 15 m30 m and does not need any extra controls, making it suitable for integrated wideband phase locked loop.
机译:与传统的静态分频器相比,基于环形振荡器的注入锁定分频器(ILFD)通常具有更高的功率效率。但是,基于环形振荡器的ILFD很难同时实现较大的分频比和较宽的输入锁定范围。为了增加输入锁定范围,本文提出了一种采用双注入技术的基于环形振荡器的ILFD。为此,同相施加尾部喷射和直接喷射,使得对应于两个喷射路径的两个混合过程的输出电流以输出频率被相长地相加,因此总喷射效率得以提高。提出了一种双注入差分缓冲电路。提出了双注入缓冲器的等效电路建模和锁止范围增强的数学分析。核心环形振荡器由4级双注入缓冲器组成。它采用65 nm CMOS技术制造,在1.2 V电源电压下的功耗不到2 mW。其锁定范围为1.2至20.7 GHz,在0 dBm注入功率水平下无需任何调节。所提出的ILFD紧凑,核心仅占15 m30 m,不需要任何额外的控制,使其适合集成宽带锁相环。

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