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A Reference-Less Injection-Locked Clock-Recovery Scheme for Multilevel-Signaling-Based Wideband BCC Receivers

机译:基于多电平信令的宽带BCC接收器的无参考注入锁定时钟恢复方案

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Body channel communication (BCC) integrated circuits for emerging wireless body area network multimedia applications call for the need of high-speed inter-device data communication at ultra-low-power consumption and smaller device footprint. In this paper, a novel low-power injection-locking-based clock-recovery circuit (CRC) is proposed for BCC transceivers that employ multilevel direct digital signaling for high data rates. The CRC utilizes transition detection for generating pulses from transmitted digital data and injects them directly into the VCO to recover the clock. The pulse-based direct injection-locking architecture achieves instantaneous clock recovery from random multilevel data with a sensitivity of up to $-$43 dBm, and eliminates the need for a reference crystal used in conventional phase-locked-loop-based CRC circuits. Measured results verify that the proposed CRC achieves clock recovery for two- and three-level signals for data rates up to 160 Mb/s. Implemented in 65-nm CMOS technology, the CRC consumes 0.84 mW with a footprint of 0.12 ${hbox {mm}}^{2}$.
机译:用于新兴的无线人体局域网络多媒体应用的人体通道通信(BCC)集成电路要求以极低的功耗和较小的设备占用空间进行高速装置间数据通信。在本文中,提出了一种新颖的基于低功耗注入锁定的时钟恢复电路(CRC),用于采用多级直接数字信号传输以实现高数据速率的BCC收发器。 CRC利用跃迁检测从传输的数字数据中生成脉冲,并将其直接注入VCO以恢复时钟。基于脉冲的直接注入锁定体系结构可从随机多级数据实现瞬时时钟恢复,灵敏度最高可达 $-$ 43 dBm,并消除了传统的基于锁相环的CRC电路中使用的参考晶体的需要。测量结果验证了所提出的CRC实现了两级和三级信号的时钟恢复,数据速率高达160 Mb / s。 CRC以65纳米CMOS技术实现,消耗功率为0.84 mW,占位面积为0.12 $ {hbox {mm}} ^ {2} $

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