Title :
Phase noise in oscillators - Leeson formula revisited
Author :
Nallatamby, Jean-Christophe ; Prigent, Michel ; Camiade, Marc ; Obregon, Juan
Author_Institution :
Inst. de Recherche en Commun. Opt. et Microondes, Univ. de Limoges, Brive, France
fDate :
4/1/2003 12:00:00 AM
Abstract :
In the field of linear feedback-systems formalism, the Leeson formula is a useful tool for the determination of phase noise in feedback oscillators. Nevertheless, a direct application of the Leeson model without care can lead to erroneous results because the formula contains hidden parameters that are generally unwittingly ill evaluated or neglected. Thus, a brute-force calculation of phase noise with the Leeson formula can lead to errors of several orders of magnitude (i.e., several tens of decibels). A detailed analysis enables us to enlighten the hidden parameters leading to a modified Leeson formula that is valid for all oscillator circuits. It explicitly takes into account all the parameters needed for phase-noise calculation. In order to demonstrate the ease of use and accuracy of the new formula, we apply it to several oscillator circuits with lumped elements, transmission lines, and high-Q resonators. Finally the analytical results are confirmed by numerical simulations with a nonlinear transistor model.
Keywords :
Q-factor; circuit simulation; feedback oscillators; microwave circuits; microwave oscillators; phase noise; Leeson formula; errors; high-Q resonators; linear feedback-systems formalism; lumped elements; microwave oscillator design; nonlinear transistor model; numerical simulations; oscillator circuits; phase noise; transmission lines; Circuit noise; Distributed parameter circuits; Feedback circuits; Frequency domain analysis; Numerical simulation; Oscillators; Output feedback; Passive circuits; Phase noise; Semiconductor device noise;
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.2003.809187