DocumentCode
645
Title
Low-phase noise oscillator utilising high-Q active resonator based on substrate integrated waveguide technique
Author
Zhe Chen ; Wei Hong ; Ji Xin Chen ; Jianyi Zhou ; Lin Sheng Li
Author_Institution
Dept. of Radio Eng., Southeast Univ., Nanjing, China
Volume
8
Issue
3
fYear
2014
fDate
February 18 2014
Firstpage
137
Lastpage
144
Abstract
An X-band low-phase noise planar oscillator employing the substrate integrated waveguide (SIW) active resonator is demonstrated. By compensating the losses in the SIW cavity with an active feedback loop, the Q-factor of the SIW active resonator is greatly improved. The measured results show a loaded Q-factor of 1569 and unloaded Q-factor of 8782, which is very high among other planar resonators. A simplified generalised phase noise condition and its optimisation approach are proposed for the low-phase noise oscillator design. To validate the proposed optimisation approach, experimental prototypes of oscillators using different design parameters and resonators are fabricated. The measured results show that the optimised SIW active resonator oscillator possesses low-phase noise of -109.2 dBc/Hz at 100 kHz at X-band, which is 17 and 9 dB better than the microstrip resonator oscillator and SIW passive resonator oscillator, and is comparable with the dielectric resonator oscillator measured in this study.
Keywords
dielectric resonator oscillators; microstrip resonators; phase noise; substrate integrated waveguides; SIW active resonator oscillator; X-band low-phase noise planar oscillator; active feedback loop; dielectric resonator oscillator; frequency 100 kHz; high-Q active resonator; loaded Q-factor; low-phase noise; low-phase noise oscillator; low-phase noise oscillator design; microstrip resonator oscillator; optimisation approach; optimised SIW active resonator oscillator; planar resonators; simplified generalised phase noise condition; substrate integrated waveguide technique; substrate-integrated waveguide active resonator; unloaded Q-factor;
fLanguage
English
Journal_Title
Microwaves, Antennas & Propagation, IET
Publisher
iet
ISSN
1751-8725
Type
jour
DOI
10.1049/iet-map.2013.0380
Filename
6746614
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