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A Burst-Mode Digital Receiver With Programmable Input Jitter Filtering for Energy Proportional Links

机译:具有可编程输入抖动滤波的突发模式数字接收机,用于能量比例链路

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摘要

A full-rate burst-mode receiver that achieves fast on/off operation needed for energy-proportional links is presented. By injecting input data edges into the oscillator embedded in a classical Type-II digital clock and data recovery (CDR) circuit, the proposed receiver achieves instantaneous phase-locking and input jitter filtering simultaneously. In other words, the proposed CDR combines the advantages of conventional feed-forward and feedback architectures to achieve energy-proportional operation. By controlling the number of data edges injected into the oscillator, both the jitter transfer bandwidth and the jitter tolerance corner are accurately controlled. The feedback loop also corrects for any frequency error and helps improve CDR's immunity to oscillator frequency drift during the power-on and -off states. This also improves CDR's tolerance to consecutive identical digits present in the input data. Fabricated in a 90 nm CMOS process, the prototype receiver instantaneously locks onto the very first data edge and consumes 6.1 mW at 2.2 Gb/s. Owing to its short power-on time, the receiver's energy efficiency varies only from 2.77 pJ/bit to 3.87 pJ/bit when the effective data rate is varied from 0.44 Gb/s to 2.2 Gb/s. Input sensitivity of the receiver is 36 mV for a BER of 10.
机译:提出了一种全速率突发模式接收机,该接收机可实现能量比例链路所需的快速开/关操作。通过将输入数据边沿注入嵌入经典II型数字时钟和数据恢复(CDR)电路的振荡器中,所提出的接收器同时实现了瞬时锁相和输入抖动滤波。换句话说,建议的CDR结合了常规前馈和反馈体系结构的优点,以实现能量比例操作。通过控制注入振荡器的数据边沿数量,可以精确控制抖动传输带宽和抖动容限拐角。反馈环路还可以纠正任何频率误差,并有助于提高CDR在加电和断电状态下对振荡器频率漂移的抵抗力。这也提高了CDR对输入数据中存在的连续相同数字的容忍度。原型接收器采用90 nm CMOS工艺制造,可立即锁定到第一个数据边缘,在2.2 Gb / s的功耗为6.1 mW。由于上电时间短,当有效数据速率从0.44 Gb / s变化到2.2 Gb / s时,接收机的能量效率仅从2.77 pJ / bit到3.87 pJ / bit改变。 BER为10时,接收器的输入灵敏度为36 mV。

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