DocumentCode :
4296
Title :
A linearized, low-phase-noise VCO-based 25-GHz PLL with autonomic biasing
Author :
Sadhu, B. ; Ferriss, Mark A. ; Natarajan, Arun S. ; Yaldiz, Soner ; Plouchart, J.-O. ; Rylyakov, A.V. ; Valdes-Garcia, A. ; Parker, Benjamin D. ; Babakhani, A. ; Reynolds, S. ; Li, Xin ; Pileggi, Larry ; Harjani, Ramesh ; Tierno, Jose A. ; Friedman, Danie
Author_Institution :
University of Minnesota, Minneapolis,
Volume :
48
Issue :
5
fYear :
2013
fDate :
May-13
Firstpage :
1138
Lastpage :
1150
Abstract :
This paper describes a new approach to low-phasenoise LC VCO design based on transconductance linearization of the active devices. A prototype 25 GHz VCO based on this linearization approach is integrated in a dual-path PLL and achieves superior performance compared to the state of the art. The design is implemented in 32 nm SOI CMOS technology and achieves a phase noise of - 130 dBc/Hz at a 10 MHz offset from a 22 GHz carrier. Additionally, the paper introduces a new layout approach for switched capacitor arrays that enables a wide tuning range of 23%. More than 1500 measurements of the PLL across PVT variations were taken, further validating the proposed design. Phase noise variation across 55 dies for four different frequencies is σ < 0.6 dB. Also, phase noise variation across supply voltages of 0.7-1.5 V is 2 dB and across 60 °C temperature variation is 3 dB. At the 25 GHz center frequency, the VCO FOMT is 188 dBc/Hz. Additionally, a digitally assisted autonomic biasing technique is implemented in the PLL to provide a phase noise and power optimized VCO bias across frequency and process. Measurement results indicate the efficacy of the autonomic biasing scheme.
Keywords :
Phase locked loops; Temperature measurement; Transconductance; Tuning; Voltage-controlled oscillators; 60 GHz; Calibration; K-band; circuit noise; digitally controlled oscillators; electromagnetic coupling; feedback; high-speed integrated circuits; integrated circuit noise; linearity; linearization; local oscillators; millimeter-wave circuits; millimeter-wave communication; millimeter-wave integrated circuits; mutual coupling; negative feedback; nonlinear circuits; oscillators; phase noise; phase-locked loop (PLL); signal-to-noise ratio (SNR); transconductance; tunable circuits and devices; tuning range; voltage-controlled oscillators (VCOs);
fLanguage :
English
Journal_Title :
Solid-State Circuits, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9200
Type :
jour
DOI :
10.1109/JSSC.2013.2252513
Filename :
6492122
Link To Document :
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