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A 7.5-Gb/s Referenceless Transceiver With Adaptive Equalization and Bandwidth-Shifting Technique for Ultrahigh-Definition Television in a 0.13- $muhbox{m}$ CMOS Process

机译:具有自适应均衡和带宽移位技术的7.5 Gb / s无参考收发器,适用于0.13- $ muhbox {m} $ CMOS工艺

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摘要

This brief proposes a 7.5-Gb/s transceiver with adaptive equalization and a bandwidth (BW)-shifting technique for ultrahigh-definition television. By applying dynamic preemphasis calibration and a BW-shifting phase-locked loop/clock and data recovery, the measured jitter of the output data with a 16.88-dB loss cable and clock are enhanced by 49.9% and 40%, respectively. In addition, a data-width-comparison-based adaptive equalizer with a self-adjusting reference voltage is proposed. With a 3.37-MHz sinusoidal jitter, the measured jitter tolerance of the proposed receiver is improved from 1.07UI to 2.97UI. The transmitter and the receiver consume 10.08 and 9.28 mW/Gb/s at 7.5 Gb/s, respectively, and occupy 0.14 and 0.15 , respectively, using a 0.13- complementary metal–oxide–semiconductor process.
机译:本简介提出了一种具有自适应均衡和带宽(BW)移位技术的7.5 Gb / s收发器,用于超高清电视。通过应用动态预加重校准以及BW移相锁相环/时钟和数据恢复,使用损耗为16.88dB的电缆和时钟所测得的输出数据抖动分别提高了49.9%和40%。此外,提出了一种具有自调整参考电压的基于数据宽度比较的自适应均衡器。利用3.37 MHz正弦波抖动,建议的接收器的测量抖动容限从1.07UI提高到2.97UI。使用0.13互补金属-氧化物-半导体工艺,发送器和接收器在7.5 Gb / s时分别消耗10.08和9.28 mW / Gb / s,分别占0.14和0.15。

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