DocumentCode :
541107
Title :
An on-chip low power low phase noise VCO with frequency divider for low jitter low phase noise applications
Author :
Shah, Kriyang ; Le, Hai P. ; Singh, Jugdutt ; Moghe, Yashodhan ; Brawley, Andrew
Author_Institution :
Centre for Technol. Infusion, La Trobe Univ., Melbourne, VIC, Australia
fYear :
2010
fDate :
23-25 Nov. 2010
Firstpage :
149
Lastpage :
152
Abstract :
This paper presents the design and implementation of a low power low phase noise Voltage Controlled Oscillator (VCO) using 0.25-micron Silicon-on-Sapphire (SOS) technology for low jitter low phase noise applications. The VCO comprised of a cross-coupled complementary LC core generating 3.6GHz output and a fully optimised Injection Locked Frequency Divider (ILFD) circuit generating the divide-by-two frequency output at 1.8GHz. In addition, a controllable tail current source is added to the VCO and divider to optimise their phase noise, power consumption and performance. The phase noise of the proposed VCO and divider is also improved by employing a filtering circuit to suppress the second harmonic component of drain and source currents. High-Q custom inductors were also designed and implemented to improve the system performance. Results indicate that the VCO and divider achieved the phase noise of -106.2dBc/Hz and -112.2dBc/Hz respectively at 100kHz offset. The VCO and divider core consumed only 6.1mW and 15.7mW of power respectively at 2.5 V power supply.
Keywords :
UHF frequency convertors; frequency dividers; low-power electronics; microwave integrated circuits; microwave oscillators; silicon-on-insulator; voltage-controlled oscillators; complementary LC core; divide-by-two frequency; frequency 1.8 GHz; frequency 3.6 GHz; injection locked frequency divider circuit; low jitter low phase noise application; low phase noise voltage controlled oscillator; on-chip low power low phase noise VCO; power 15.7 mW; power 6.1 mW; silicon-on-sapphire technology; size 0.25 micron; voltage 2.5 V; Frequency conversion; Inductance; Inductors; Jitter; Mathematical model; Phase noise; Voltage-controlled oscillators; Voltage controlled oscillator; figure of merit; inductor; injection locked frequency divider; jitter; low power; phase noise; quality factor; silicon on sapphire;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Circuits and Systems for Communications (ECCSC), 2010 5th European Conference on
Conference_Location :
Belgrade
Print_ISBN :
978-1-61284-400-8
Type :
conf
Filename :
5733878
Link To Document :
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