首页> 外文期刊>Solid-State Circuits, IEEE Journal of >A Compact and Low-Power Fractionally Injection-Locked Quadrature Frequency Synthesizer Using a Self-Synchronized Gating Injection Technique for Software-Defined Radios
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A Compact and Low-Power Fractionally Injection-Locked Quadrature Frequency Synthesizer Using a Self-Synchronized Gating Injection Technique for Software-Defined Radios

机译:使用自同步选通注入技术的紧凑型低功耗分数注入锁定正交频率合成器,用于软件无线电

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This paper describes a compact and low-power frequency synthesizer with quadrature phase output for software-defined radios (SDRs). The proposed synthesizer is constructed using a core phase-locked loop (PLL), which is coupled with a fractional-N injection-locked frequency divider (ILFD). The fractional-N injection-locking operation is achieved by the proposed self-synchronized gating injection technique. The principle of a fractional-N injection locking operation and the concept of the proposed circuits are described in detail. Analysis for predicting the locking range of the proposed fractional-N ILFD is investigated. A digital calibration scheme is adopted in order to compensate for process, voltage, and temperature (PVT) variations. Implemented in a 65 nm CMOS process, this work demonstrates continuous frequency coverage from 10 MHz to 6.6 GHz with quadrature phase output while occupying a small area of 0.38 mm 2 and consuming 16 to 26 mW, depending on the output frequency. The normalized phase noise achieves -135.3 dBc/Hz at an offset of 3 MHz and -95.1 dBc/Hz at an offset of 10 kHz, both from a carrier frequency of 1.7 GHz.
机译:<?Pub Dtl?>本文介绍了一种用于软件定义无线电(SDR)的具有正交相位输出的紧凑型低功耗频率合成器。拟议的合成器使用核心锁相环(PLL)构成,该锁相环与小数N注入锁定分频器(ILFD)耦合。分数N注入锁定操作是通过提出的自同步门控注入技术实现的。详细介绍了分数N注入锁定操作的原理和所提出的电路的概念。研究了预测提出的分数N ILFD锁定范围的分析。采用数字校准方案以补偿过程,电压和温度(PVT)的变化。这项工作采用65 nm CMOS工艺实现,展示了从10 MHz到6.6 GHz的连续频率覆盖范围,具有正交相位输出,同时根据输出频率占用0.38 mm 2的小面积并消耗16至26 mW。从1.7 GHz的载波频率开始,归一化的相位噪声在3 MHz的偏移处达到-135.3 dBc / Hz,在10 kHz的偏移处达到-95.1 dBc / Hz。

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