Title :
Broadband permeability measurement method for ferrites at any magnetization state: Direct problem
Author :
Lezaca, Jorge E. ; Queffelec, Patrick ; Chevalier, Alexis
Author_Institution :
Lab.-STICC, Eur. Univ. of Brittany, Brest, France
Abstract :
A data processing program based on a full-wave electromagnetic (EM) analysis of a non-reciprocal transmission line partially filled with a ferrite sample is presented. A predictive permeability tensor model is introduced in the Maxwell equations to allow the program to work at any magnetization state. The dispersion diagram for the first significant modes inside the ferrite loaded region of the line is obtained. The presence of magnetostatic modes generated by magnetized ferrite inside the line is verified. Using a mode matching technique, the theoretical scattering parameters (S-parameters) of the non-reciprocal transmission line are calculated. The analysis is validated by the comparison between the calculated S-parameters with those obtained with a FEM based EM simulator and the measurements at limit cases.
Keywords :
Maxwell equations; S-parameters; ferrites; magnetic permeability measurement; magnetisation; mode matching; Maxwell equations; broadband permeability measurement method; ferrites; full-wave electromagnetic analysis; magnetization state; magnetized ferrite; magnetostatic modes; mode matching technique; predictive permeability tensor model; scattering parameters; Permeability measurement; electromagnetic analysis; mode matching methods; scattering parameters;
Conference_Titel :
Microwave Conference (EuMC), 2010 European
Conference_Location :
Paris
Print_ISBN :
978-1-4244-7232-1