DocumentCode
82649
Title
Rotary Traveling-Wave Oscillator With Differential Nonlinear Transmission Lines
Author
Ponton, Mabel ; Suarez, Almudena ; Stevenson Kenney, J.
Author_Institution
Dipt. de Ing. de Comun., Univ. de Cantabria, Santander, Spain
Volume
62
Issue
5
fYear
2014
fDate
May-14
Firstpage
1149
Lastpage
1161
Abstract
A methodology for the harmonic-balance analysis and design of rotary-traveling wave oscillator is presented. Two different implementations are compared. The first one is the standard configuration based on a distributed transmission lines. The second one is a new configuration based on a differential nonlinear transmission line (NLTL), which enables the generation of square waveforms with reduced number of stages, while still maintaining the capability to produce multiphase signals. The possible coexistence of oscillation modes is investigated with a detailed bifurcation analysis versus practical parameters such as the device bias voltage. The phase-noise spectrum is predicted from the variance of the common phase deviation. The parameters that determine this variance are identified with the conversion-matrix approach. The two prototypes, based on a distributed transmission line and a differential NLTL, have been manufactured and characterized experimentally, obtaining very good agreement between simulations and measurements.
Keywords
bifurcation; circuit stability; harmonic analysis; matrix algebra; oscillators; transmission lines; bifurcation analysis; common phase deviation; conversion-matrix approach; differential NLTL; differential nonlinear transmission line; distributed transmission lines; harmonic-balance analysis; multiphase signals; oscillation modes; phase-noise spectrum; practical parameters; rotary-traveling wave oscillator; square waveforms generation; Phase noise; Power transmission lines; Prototypes; Stability analysis; Transistors; Varactors; Bifurcation; differential nonlinear transmission line (NLTL); harmonic balance (HB); phase noise; rotary traveling-wave oscillator (RTWO); stability;
fLanguage
English
Journal_Title
Microwave Theory and Techniques, IEEE Transactions on
Publisher
ieee
ISSN
0018-9480
Type
jour
DOI
10.1109/TMTT.2014.2315778
Filename
6799301
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