350 rub
Journal Electromagnetic Waves and Electronic Systems №6 for 2021 г.
Article in number:
Research and development of magnetrons generating 1.3 mm and 1.0 mm wavelengths
Type of article: scientific article
DOI: https://doi.org/10.18127/j15604128-202106-03
UDC: 537.8
Authors:

N.I. Skripkin¹, A.V. Shmelev², A.I. Pronikov³

¹−² JSC «Pluton» (Moscow, Russian)

Abstract:

Significant results have been achieved in the development of design variants of magnetrons for different values of pulse powers. However, the use of the advantages of the short-wave part of the millimeter range and its development in location systems is very slow. JSC «Pluton» has investigated the possibility of manufacturing magnetrons with a generation wavelength of 1.3 and 1.0 mm. The purpose of this article is to present the results of computer modeling of magnetron structures designed to generate wavelengths of 1.3 and 1.0 mm, and also to consider the feasibility of their use. As a result, computer modeling was carried out and the possibilities of creating magnetrons in the short-wave part of the millimeter wavelength range were investigated. The results of calculating the design variants of magnetrons for wavelengths of 1.3 and 1.0 mm are presented. The presented version of computer simulation can be used to design magnetrons. It allows to drastically reduce the conduct of full-scale experiments, to reduce the number of units and parts during development work, to unload metal-working complexes to a minimum and to reduce the cost of machining.

Pages: 29-36
For citation

Skripkin N.I., Shmelev A.V., Pronikov A.I. Research and development of magnetrons generating 1.3 mm and 1.0 mm wavelengths. Electromagnetic waves and electronic systems. 2021. V. 26. № 6. P. 29−36. DOI: https://doi.org/10.18127/j15604128-202106-03 (in Russian)

References
  1. Pat. na izobretenie. Magnetron kompaktnoi konstruktsii s vozdushnym prinuditelnym okhlazhdeniem. Skripkin N.I., Lifanov N.D., Li I.P., Shmelev A.V. (in Russian)
  2. Pat. na izobretenie. Magnetron s plavnoi perestroikoi magnitnogo polya. Skripkin N.I. (in Russian)
  3. Ivanov I.M., Skripkin N.I., Petyushin N.V. Summator moshchnosti magnetronov 3-kh millimetrovogo diapazona dlin voln. Naukoemkie tekhnologii. 2014. № 11. (in Russian)
  4. Boev S.F., Vagin A.I., Ivanov I.M., Skripkin N.I., Khodataev K.V. Eksperimentalnoe issledovanie samosinkhronizatsii magnetronov trekhmillimetrovogo diapazona dlin voln. Naukoemkie tekhnologii. 2015. № 5. (in Russian)
  5. Ivanov I.M., Petyushin N.V., Skripkin N.I. Perekhodnye protsessy pri fazirovanii impulsnykh magnetronnykh generatorov trekhmillimetrovogo diapazona dlin voln. Doklad na konf. «Problemy SVCh-Elektroniki». 2015. MIEM. (in Russian)
  6. Ivanov I.M., Skripkin N.I., Shmelev A.V. Magnetron 3-kh millimetrovogo diapazona dlin voln s vozmozhnostyu perestroiki i stabilizatsii chastoty. Elektromagnitnye volny i elektronnye sistemy. 2016. T. 21. № 10. S. 68−72. (in Russian)
  7. Ivanov I.M., Skripkin N.I., Shmelev A.V. Stabilizatsiya chastoty impulsnykh magnetronov W-diapazona. Doklad na konf. «Problemy W-diapazona». 2017. MIEM. (in Russian)
  8. Skripkin N.I., Morugin S.L. Perestroika chastoty magnetrona 3-mm diapazona dlin voln s pomoshchyu dopolnitelnogo vyvoda. Pribory i tekhnika eksperimenta. 2018. № 4. S. 47−52. (in Russian)
  9. Vagin A.I., Evdokimov Yu.V., Ivanov I.M., Petyushin N.V., Skripkin N.I.              Peredatchik            sistemy   dosmotra                na      osnove sverkhkorotkoimpulsnogo magnetrona W-diapazona v rezhime mnogopozitsionnoi lokatsii i radioosveshcheniya. Doklad na konf. «Elektronika i mikroelektronika SVCh». 2019. LETI. (in Russian)
  10. Vagin A.I., Evdokimov Yu.V., Ivanov I.M., Petyushin N.V., Skripkin N.I. Korotkoimpulsnyi peredachik sistemy dosmotra v rezhime mnogopozitsionnoi radiolokatsii. Doklad na konf. «Radiolokatsiya − sovremennye vyzovy i resheniya». 2019. Nizhnii Novgorod. (in Russian)
  11. Skripkin N.I., Shmelev A.V., Pronikov A.I. Modelirovanie i razrabotka magnetronov v korotkovolnovoi chasti millimetrovogo diapazona dlin voln. Doklad na konf. «Moshchnye vakuumnye SVCh-pribory». 2019. AO «NPP «Torii». Moskva. (in Russian)
  12. Skripkin N.I., Shmelev A.V., Pronikov A.I. Modelirovanie i razrabotka magnetronov v korotkovolnovoi chasti millimetrovogo diapazona dlin voln. Doklad na konf. «Vakuumnaya nauka i tekhnika». 2020. Sudak. (in Russian)
  13. Skripkin N.I., Shmelev A.V., Pronikov A.I. Modelirovanie i razrabotka magnetronov v korotkovolnovoi chasti millimetrovogo diapazona dlin voln. Nanoindustriya. 2021. T. 14. № S6. S. 156−166. (in Russian)
  14. Skripkin N.I., Shmelev A.V., Pronikov A.I. Kompleksirovannyi SVCh-modul s sinkhronizirovannymi magnetronnymi generatorami. Elektromagnitnye volny i elektronnye sistemy. 2021. T. 26. № 4. S. 5−11. (in Russian)
  15. Marimanov R.G.. Millimetrovye i submillimetrovye volny. Sb. statei. Izdatelstvo inostrannoi literatury. 1959. Moskva. (in Russian)
  16. Bernshtein, Kroll. Elektronnye sverkhvysokochastotnye pribory so skreshchennymi polyami. Sb. statei.. Pod redaktsiei Fedorova M.M. Izd-vo inostrannoi literatury. 1961. T. 2. S. 224−235. (in Russian)
  17. Samsonov D.E.. Osnovy rascheta i konstruirovaniya mnogorezonatornykh magnetronov. M.: Sov. radio. 1966. (in Russian)
  18. Shlifer E.D.. Raschet mnogorezonatornykh magnetronov. Izd. 2-e. M.: MEI. Kafedra elektronnykh priborov. 1966. (in Russian)
Date of receipt: 11.10.2021
Approved after review: 11.10.2021
Accepted for publication: 23.11.2021