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A Low-Jitter and Low-Reference-Spur Ring-VCO- Based Injection-Locked Clock Multiplier Using a Triple-Point Background Calibrator

Author(s)
Yoo, SeyeonChoi, SeojinLee, YongsunSeong, TaehoLim, YounghyunChoi, Jaehyouk
Issued Date
2021-01
DOI
10.1109/JSSC.2020.2995326
URI
https://scholarworks.unist.ac.kr/handle/201301/55690
Fulltext
https://ieeexplore.ieee.org/document/9103008
Citation
IEEE JOURNAL OF SOLID-STATE CIRCUITS, v.56, no.1, pp.298 - 309
Abstract
This work presents a low-jitter, low-reference-spur ring voltage-controlled oscillator (ring VCO)-based injection-locked clock multiplier (ILCM). Since the proposed triple-point frequency/phase/slope calibrator (TP-FPSC) can accurately remove the three root causes of the frequency errors of ILCMs (i.e., frequency drift, phase offset, and slope modulation), the ILCM of this work is able to achieve a low-level-reference spur. In addition, the calibrating loop for the frequency drift of the TP-FPSC offers an additional suppression to the in-band phase noise of the output signal. This capability of the TP-FPSC and the naturally wide bandwidth of the injection-locking mechanism allows the ILCM to achieve a very low-RMS jitter. The ILCM was fabricated in a 65-nm CMOS technology. The measured reference spur and RMS jitter of the 2.4-GHz output signal were -72 dBc and 140 fs, respectively, both of which are the best among the state-of-the-art ILCMs. The active silicon area was 0.055 mm(2), and the power consumption was 11.0 mW.
Publisher
IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
ISSN
0018-9200
Keyword (Author)
Voltage-controlled oscillatorsJitterClocksPhase locked loopsFrequency modulationPhase modulationCalibrationCalibratorfrequency errorinjection-locked clock multiplier (ILCM)phase noisereference spurRMS jitterslope modulation

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