Calculation of the frequency characteristic of TEM-cell
N.L. Kazanskiy
, E.A. Rakhaeva

Image Processing Systems Institute оf the RAS, Samara, Russia,
Samara State Aerospace University (SSAU), Samara, Russia

Full text of article: Russian language.

Abstract:
Using multimode scattering matrices, the frequency characteristic of TEM-cell designed for electromagnetic compatibility tests of electronic components and systems is calculated.

Key words:
electromagnetic compatibility, test TE-cell, electromagnetic calculation, frequency characteristics.

Citation:
Kazanskiy NL, Rakhaeva EA. Calculation of the frequency characteristic of TEM-cell [In Russian]. Computer Optics 2007; 31(3): 52-54.

References:

  1. Crawford ML. Generation of Standard EM Fields Using TEM Transmission Cells. IEEE Transactions on Electromagnetic Compatibility 1974; EMC-16(4): 40-46.
  2. GOST R 51048-97. Electromagnetic compatibility of technical equipment. Generators of electromagnetic field with TEM-cells. Technical requirements and test methods [In Russian]. Moscow: Standards Publisher, 1998.
  3. Kazanskiy NL, Podlypnov GA, Rakhaeva EA, Sarzhin MA. Calculation of electromagnetic field characteristics in TEM-cell. 6-th International symposium on electromagnetic compatibility and electromagnetic ecology 2005; 226-228.
  4. Kazanskiy NL, Rakhaeva EA. Calculation of the characteristics of the pyramidal transition of TEM-cell [In Russian]. Proceedings of the Samara Research Center of RAS 2007; 9(3): 598-605.
  5. Mitrokhin VN. Adiabatic invariant changing on critical sections of nonhomogeneous waveguides [In Russian]. Series: Instrument Engineering. Herald of the Bauman Moscow State Technical University 1990; 1: 53-60.
  6. Rakhaeva EA, Kazanskiy NL, Podlypnov GA, Rakhaev AA, Suhov VV, Sarzhin MA. Research of resonance effects in TEM-cell. 7-th internftional symposium on electromagnetic compatibility and electromagnetic ecology. Saint-Petersburg, 2007; 104-106.
  7. Kazanskiy NL, Rakhaeva EA. Calculation of characteristics of irregular transmission lines [in Russian]. Antennas 2007; (10): 51-55.
  8. Veselov GI (ed.), Egorov EN, Alekhin YuN, et al. Microwave microelectronic devices [In Russian]. Moscow: “Vysshaya shkola” Publisher, 1988; 280 p.

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