DocumentCode :
1324324
Title :
A 14.2 mW 2.55-to-3 GHz Cascaded PLL With Reference Injection and 800 MHz Delta-Sigma Modulator in 0.13 \\mu m CMOS
Author :
Park, Dongmin ; Cho, SeongHwan
Author_Institution :
Qualcomm Technol. Inc., San Diego, CA, USA
Volume :
47
Issue :
12
fYear :
2012
Firstpage :
2989
Lastpage :
2998
Abstract :
In this paper, a low-noise cascaded PLL is proposed where an integer-N digital bang-bang PLL is used to multiply a 50 MHz reference to an 800 MHz clock that is fed to a ΔΣ fractional-N PLL to generate 2.55-to-3 GHz output. In order to minimize the jitter of the 800 MHz clock, a reference injection scheme using dual-pulse ring oscillator is employed. Quantization noise from the delta-sigma modulator is suppressed without any noise cancellation techniques owing to the high operating frequency of the fractional-N PLL. Prototype implemented in 0.13 μm CMOS process achieves the worst-case RMS jitter of 356 fsrms over 100 Hz to 40 MHz integration bandwidth, while consuming 14.2 mW from a 1.2 V supply. The worst-case fractional spur measured over 7 different chips is -53.9 dBc and the reference spur is -84 dBc.
Keywords :
CMOS integrated circuits; UHF oscillators; clocks; delta-sigma modulation; field effect MMIC; jitter; microwave oscillators; phase locked loops; quantisation (signal); ΔΣ fractional-N PLL; CMOS process; clock; delta-sigma modulator; dual-pulse ring oscillator; frequency 2.55 GHz to 3 GHz; frequency 50 MHz; frequency 800 MHz; integer-N digital bang-bang PLL; low-noise cascaded PLL; power 14.2 mW; quantization noise; reference injection scheme; size 0.13 mum; voltage 1.2 V; worst-case RMS jitter; worst-case fractional spur; Delays; Frequency conversion; Noise measurement; Phase frequency detector; Phase locked loops; Ring oscillators; Voltage-controlled oscillators; Bang-bang; PLL; dual-pulse ring oscillator; fractional-N; frequency synthesizer; low-noise; reference injection;
fLanguage :
English
Journal_Title :
Solid-State Circuits, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9200
Type :
jour
DOI :
10.1109/JSSC.2012.2217856
Filename :
6335442
Link To Document :
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