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A 19 μW 20 MHz All-Digital PLL for 2-tone Envelope Detection Radios

机译:用于2个音调包络检测无线电的19μW20MHz All-Digital PLL

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This paper describes the design and implementation of a low power IF frequency synthesizer which can be used in 2-tone envelope detection radios [1]. The synthesizer is based on an All-Digital PLL (AD-PLL) architecture. By means of a system noise analysis, overall noise performance is optimized while maintaining low-power operation. A current controlled ring-oscillator is designed, optimized for low-power and low phase-noise. An integer and fractional phase quantiser (PQ) is designed, where the fractional PQ is co-integrated with the oscillator to save power. The DAC, which digitally controls the oscillator, is implemented by a 'coarse' and 'fine' DAC topology to reduce the resolution requirement. The 'fine' DAC resolution is increased by a third-order Delta-Sigma Modulator (DSM) to alleviate matching problems while maintaining monotonicity and keeping the power consumption low. Current division of the 'fine' DAC, using a highly-linear current-mirror, enables fine frequency tuning while keeping low bias currents. The chip, consisting of a current controlled oscillator, 'coarse' and 'fine' DAC and fractional part of the phase quantiser is implemented in a 90 nm CMOS technology. The AD-PLL operates from 10 to 20 MHz and the power consumption (excluding digital loop filter and DSM) is only 19 μW at 20 MHz operation.
机译:本文介绍了可用于2个音调包络检测无线电[1]的频率合成器的低功耗的设计和实现。合成器基于All-Digital PLL(AD-PLL)架构。通过系统噪声分析,在保持低功耗操作的同时优化整体噪声性能。设计了电流控制的环形振荡器,针对低功耗和低相位噪声进行了优化。设计了整数和分数相位量子(PQ),其中分数PQ与振荡器共同集成以节省电力。数字控制振荡器的DAC由“粗”和“精细”DAC拓扑实现,以降低分辨率要求。 “细”DAC分辨率由三阶Δ-Σ调制器(DSM)增加,以减轻匹配问题,同时保持单调性并保持低功耗低。使用高线性电流镜子的“精细”DAC的电流划分能够进行微小频率调谐,同时保持低偏置电流。由电流控制振荡器,'粗'和“细分”的芯片组成的芯片,在90nm CMOS技术中实现了相位量子量的DAC和分数部分。 AD-PLL从10到20 MHz操作,功耗(不包括数字环路滤波器和DSM)仅为20 MHz操作的19μW。

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