Title :
SiGe Clock and Data Recovery System Based on Injection-Locked Oscillator for 100 Gbit/s Serial Data Link
Author :
BeÌraud-Sudreau, Q. ; Begueret, J.-B. ; Mazouffre, O. ; Pignol, M. ; Baguena, L. ; Neveu, C. ; Deval, Y. ; Taris, T.
Author_Institution :
e2v Semicond., St. Egrève, France
Abstract :
Clock and data recovery (CDR) systems are the first logic blocks in serial data receivers and the latter´s performance depends on the CDR. In this paper, a 100 Gbit/s CDR designed in 130 nm BiCMOS SiGe is presented. The CDR uses an injection locked oscillator (ILO) which delivers the 100 GHz clock. The inherent phase shift between the recovered clock and the incoming data is compensated by a feedback loop which performs phase and frequency tracking. Furthermore, a windowed phase comparator has been used, first to lower the classical number of gates, in order to prevent any delay skews between the different phase detector blocks, then to decrease the phase comparator operating frequency, and furthermore to extend the ability to track zero bit patterns The measurements results demonstrate a 100 GHz clock signal extracted from 50 Gb/s input data, with a phase noise as low as 98 dBc/Hz at 100 kHz offset from the carrier frequency. The rms jitter of the 25 GHz recovered data is only 1.2 ps. The power consumption is 1.4 W under 2.3 V power supply.
Keywords :
BiCMOS integrated circuits; Ge-Si alloys; clock and data recovery circuits; comparators (circuits); injection locked oscillators; microwave oscillators; phase noise; BiCMOS SiGe; CDR system; SiGe; bit rate 100 Gbit/s; bit rate 50 Gbit/s; clock and data recovery system; frequency 100 GHz; frequency 25 GHz; frequency tracking; injection-locked oscillator; phase noise; phase tracking; power 1.4 W; serial data link; size 130 nm; time 1.2 ps; voltage 2.3 V; windowed phase comparator; zero bit patterns; Clocks; Detectors; Logic gates; Oscillators; Phase locked loops; Synchronization; Voltage control; 100 Gb/s; BiCMOS SiGe; clock and data recovery (CDR); injection-locked oscillator (ILO); millimeter-wave data communication; phase comparator; phase-locked loop (PLL);
Journal_Title :
Solid-State Circuits, IEEE Journal of
DOI :
10.1109/JSSC.2014.2317151