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A low-power reference-less clock/data recovery for visible light communication devices requiring low data throughput

机译:低功耗参考时钟/数据恢复,用于需要低数据吞吐量的可见光通信设备

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摘要

In this study a reference-less clock and data recovery (CDR) is designed and developed for the low speed visible light communication system based Internet of Things (IoT) tags. Design system incorporates an off-chip photodiode and an integrated-on chip front-end receiver with the reference-less CDR. For an IoT tags low power consumption, low supply voltage, and small area are the major design constraint. Considering these constraints, the circuit of the front-end receiver incorporate the near-threshold cascode current mirror based transimpedance amplifier, low pass filter and a comparator. On the other-hand, low power all-digital phase locked loop-based reference-less CDR is design herein with a modified loop filter, auto tune digital control oscillator and auto duty cycle adjustment circuit. The circuit is implemented in an integrated chip with area of 0.728 mm(2) via TSMC 180 nm process. Experimental measurement results of the tapeout chip shows that the phase noises are - 39.54 dBc/Hz @ 1 kHz, - 80.35 dBc/Hz @ 10 kHz and - 92.26 dBc/Hz @ 100 kHz. The measured jitter in the recovered clock is 3.312 ns (0.0033 UI). At 1 Mbps, the measured total power consumption is 5.58 mu W. The achieve results shows that the implemented circuit in this study highly support the commercial low data rate based optical wireless sensing nodes for IoT tags.
机译:在本研究中,设计并开发了基于基于Internet的Internet(IoT)标签的低速可见光通信系统设计和开发了少的时钟和数据恢复(CDR)。设计系统采用了一个片外光电二极管和集成的芯片前端接收器,具有较少的CDR。对于IOT标签,低功耗,低电源电压和小面积是主要的设计约束。考虑到这些约束,前端接收器的电路包括基于近阈值的CASCODE电流镜的跨阻抗放大器,低通滤波器和比较器。另一方面,基于低功耗的低功耗全数字锁相循环的参考CDR在本文中设计,具有修改的环路滤波器,自动调谐数字控制振荡器和自动占空比调整电路。该电路通过TSMC 180nm工艺在具有0.728mm(2)面积的集成芯片中实现。磁带芯片的实验测量结果表明,相位噪声是 - 39.54 dBc / Hz @ 1kHz, - 80.35 dbc / hz @ 10khz和 - 92.26 dbc / hz @ 100khz。恢复时钟中的测量抖动为3.312 ns(0.0033 UI)。在1 Mbps,测量的总功耗为5.58 mu W.实现结果表明,本研究中的实施电路高度支持基于商业低数据速率的基于IOT标签的光无线传感节点。

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