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Ferrite materials are unique because they are one of a few classes of insulating magnetic oxides that possess moderate values of magnetization, high permeability, moderate to high permittivity, and low-losses at frequencies from dc to sub-millimeter wavelengths. These properties afford them great value in high frequency devices that require strong coupling to electromagnetic signals while experiencing low losses. Additionally, due to their intrinsic magnetism, these materials also provide non-reciprocal behavior that is essential for many device applications in radar and communications systems…mehr

Produktbeschreibung
Ferrite materials are unique because they are one of a few classes of insulating magnetic oxides that possess moderate values of magnetization, high permeability, moderate to high permittivity, and low-losses at frequencies from dc to sub-millimeter wavelengths. These properties afford them great value in high frequency devices that require strong coupling to electromagnetic signals while experiencing low losses. Additionally, due to their intrinsic magnetism, these materials also provide non-reciprocal behavior that is essential for many device applications in radar and communications systems as isolators, circulators, etc. To achieve some of these goals we have made an attempt produce NiCo ferrites doped with lanthanum materials with conventional SGMC method.
Autorenporträt
La dott.ssa Priti K. Nagpure ha una vasta esperienza di insegnamento di 15 anni sia a livello UG che PG. Ha conseguito il dottorato di ricerca presso l'Università Rashtrasant Tukadoji Maharaj Nagpur, Nagpur. I suoi interessi sono i nanomateriali, le ferriti e le loro applicazioni nei dispositivi microelettronici.