DocumentCode :
1476529
Title :
Physical and technical bases of using ferromagnetic resonance in hexagonal ferrites for electromagnetic compatibility problems
Author :
Kitaytsev, Alexander A. ; Koledintseva, Marina Y.
Author_Institution :
Ferrite Lab., Power Eng. Inst., Moscow, Russia
Volume :
41
Issue :
1
fYear :
1999
fDate :
2/1/1999 12:00:00 AM
Firstpage :
15
Lastpage :
21
Abstract :
Frequency-selective measurement of microwave signal parameters based on application of gyromagnetic converters has proven advantageous for the research of microwave radiation over a wide spectrum (several octaves) in multisignal regime in microwave path and for the solution of a number of electromagnetic compatibility (EMC) problems. The measurement frequency band can be enlarged to millimeter-waves with application of monocrystal hexagonal ferrite resonators (HFR) having high internal magnetic fields. Millimeter-wave field interactions with the HFR having alternating resonance frequency are analyzed. This is useful for millimeter-wave signal modulation and demodulation. The analysis is based on the solution of magnetization vector motion equation of the uniaxial spherical HFR with time-varying bias magnetic field or angle of the HFR orientation (for modulation problem) and with amplitude-modulated microwave signal action (for demodulation problem). The novel principle of the HFR frequency-selective measuring system based on automodulation design is discussed
Keywords :
amplitude modulation; demodulation; electromagnetic compatibility; ferrite devices; ferromagnetic resonance; magnetic microwave devices; measurement systems; microwave measurement; power measurement; resonators; EMC problems; FM; alternating resonance frequency; amplitude-modulated microwave signal; automodulation design; electromagnetic compatibility; ferromagnetic resonance; frequency modulation; frequency-selective measurement; frequency-selective measuring system; gyromagnetic converters; magnetization vector motion equation; measurement frequency band; microwave path; microwave power measurement; microwave radiation; microwave signal parameters; millimeter-wave signal demodulation; millimeter-wave signal modulation; monocrystal hexagonal ferrite resonators; time-varying bias magnetic field; Demodulation; Electromagnetic compatibility; Electromagnetic measurements; Frequency conversion; Frequency measurement; Magnetic analysis; Magnetic field measurement; Magnetic resonance; Microwave measurements; Millimeter wave measurements;
fLanguage :
English
Journal_Title :
Electromagnetic Compatibility, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9375
Type :
jour
DOI :
10.1109/15.748132
Filename :
748132
Link To Document :
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