A 6.5-12.5-Gb/s Half-Rate Single-Loop All-Digital Referenceless CDR in 28-nm CMOS

  • Yu, Changzhi; 
  • Sa, Euije; 
  • Jin, Soowan; 
  • Park, Himchan; 
  • Shin, Jongshin; 
  • ... Burm, Jinwook
Citations

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초록

This article presents a novel method for frequency tracking based on an extended bang-bang phase detector (XBBPD) in a referenceless clock and data recovery (CDR) circuit. The XBBPD-based structure has a frequency tracking range that completely covers the tuning range of the digitally controlled oscillator (DCO) with a fast locking feature. To minimize the loop delay and thereby improve the jitter tolerance, the CDR design includes an additional proportional path that is realized by directly controlling the phase of the oscillator with the output signal of the phase detector. The design is all-digital, including digital filters that simplify the design. The CDR occupies an active area of 0.031 mm(2), implemented in a 28-nm CMOS process. The receiver operates up to 12.5 Gb/s. The frequency locking time, measured as the time required for every 1-Gb/s change in the input data, is 320 ns. The power consumption is only 21.13 mW, corresponding to an energy efficiency of 2.11 pJ/bit.

키워드

Digital loop filter; digitally controlled oscillator (DCO); extended bang-bang phase detector (XBBPD); half-rate sampling; high-speed integrated circuits; referenceless clock and data recovery (CDR); CLOCK; DESIGN; GB/S
제목
A 6.5-12.5-Gb/s Half-Rate Single-Loop All-Digital Referenceless CDR in 28-nm CMOS
저자
Yu, Changzhi; Sa, Euije; Jin, Soowan; Park, Himchan; Shin, Jongshin; Burm, Jinwook
DOI
10.1109/JSSC.2020.3005750
발행일
2020-10
유형
Article
저널명
IEEE Journal of Solid-State Circuits
권
55
호
10
페이지
2831 ~ 2841