Microwave filters based on thin dielectric resonators
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Abstract
In this paper the principle of microwave filters design based on thin dielectric resonators is presented. Variants of construction of such filters are shown. The technique and the results of theoretical and experimental studies are described.
Reference 5, figures 4.
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References
D. D. Tatarchuk, V. I. Molchanov, Y. V. Didenko, and A. S. Franchuk, “Tonkie dielektricheskie rezonatoryi millimetrovogo diapazona dlin voln [Thin Dielectric Resonators of the Millimeter Waves Range],” Electron. Commun., vol. 20, no. 6, pp. 6–10, May 2015.
V. І. Molchanov, V. M. Pashkov, D. D. Tatarchuk, and A. S. Franchuk, “Vymiryuvannya NVCh parametriv dielektrichnikh materialIv metodom tonkogo dielektrichnogo rezonatora [Measurement of the microwave parameters of the dielectric materials by the method of thin dielectric resonator],” Electron. Commun., vol. 20, no. 1, p. 23, 2015.
A. S. Ilinskii, V. V. Kravtsov, and A. G. Sveshnikov, Matematicheskie modeli elektrodinamiki [Mathematical models of electrodynamics]. Moscow: High school, 1991.
A. D. Grigorev and V. B. Yankevich, Rezonatoryi i rezonatornyie zamedlyayuschie sistemyi SVCh: chislennyie metodyi raschYota i proektirovaniya [Resonators and resonator UHF slowing system: numerical methods of calculation and design]. Moscow: Radio and communication, 1984.
Y. M. Bezborodov, T. N. Narytnik, and V. B. Fedorov, Filtryi SVCh na dielektricheskih rezonatorah [Microwave filters based on dielectric resonators]. Kyiv: Tekhnika, 1989.