DocumentCode
9759
Title
Analysis and Design of a Core-Size-Scalable Low Phase Noise
-VCO for Multi-Standard Cellular Transceivers
Author
Taeho Seong ; Jae Joon Kim ; Jaehyouk Choi
Author_Institution
UNIST, Ulsan, South Korea
Volume
62
Issue
3
fYear
2015
fDate
Mar-15
Firstpage
781
Lastpage
790
Abstract
A core-size-scalable LC-voltage-controlled oscillator (VCO) for multi-standard cellular transceivers was fabricated in a 65-nm CMOS process. Theoretical analysis showed that when core current is small a VCO with a larger core-size can achieve lower phase noise. However, when core current is large, a VCO with a smaller core-size can lower phase noise. Based on the analysis, the effective core-size of the VCO was designed to be scalable according to the core current, by switching the secondary core-transistors on or off. Thus, the proposed VCO becomes adaptive to multi-standard cellular transceivers. By turning on the switch, the VCO can operate in the low power (LP) mode for standards that require moderate phase noise in a tight power budget. On the other hand, by turning off the switch, the VCO can operate in the low noise (LN) mode for standards that demand stringent phase noise in a relaxed power budget. When the core current is set to 4 mA, the VCO in the LP mode achieved the phase noise of -127.9 dBc/Hz at the 3 MHz offset from 3.3-GHz signals. When the core current was set to 15 mA, phase noise of the VCO in the LN mode was minimized to -137.5 dBc/Hz at the same offset. The figure of merit (FOM) was -184.8 and -186.5 dB, respectively.
Keywords
CMOS integrated circuits; cellular radio; integrated circuit design; integrated circuit manufacture; low-power electronics; radio transceivers; voltage-controlled oscillators; CMOS; core-size-scalable low phase noise LC-VCO; figure of merit; frequency 3 MHz; frequency 3.3 GHz; multi-standard cellular transceivers; size 65 nm; transistors; voltage-controlled oscillator; Equations; Mathematical model; Phase noise; Transistors; Voltage-controlled oscillators; $LC$ -VCO; core size; multi-standard; phase noise; power budget; transceivers;
fLanguage
English
Journal_Title
Circuits and Systems I: Regular Papers, IEEE Transactions on
Publisher
ieee
ISSN
1549-8328
Type
jour
DOI
10.1109/TCSI.2014.2382191
Filename
7004878
Link To Document