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Element for Matching a Waveguide Transmission Line with a Diode

https://doi.org/10.35596/1729-7648-2022-20-8-67-74

Abstract

The article deals with the issues of matching a waveguide transmission line with millimeter wave diodes. The implementation of the transition of a rectangular waveguide to a microstrip switching line in the form of a line of the fin-line type is described. The computer simulation results of the transmission coefficient module of the developed element and the standing wave coefficient by voltage separately for the transition from a rectangular waveguide to a microstrip transmission line and as part of an amplitude detector are shown. A joint application of the developed element with a microstrip detector based on a Schottky diode in the frequency range from 118.1 to 178.4 GHz is proposed. The results of measuring its parameters and the results of determining the sensitivity are given, as well as the evaluation of the results obtained is performed. The obtained results proved the possibility of using the matching element of a waveguide transmission line with a diode in the millimeter wavelength range. 

About the Authors

I. A. Zakharov
Belarusian State University of Informatics and Radioelectronics
Belarus

Zakharov I. A., Postgraduate at the Information Security Department, Junior Researcher at the Center 1.9 of R&D Department

Minsk



O. A. Karmanova
Belarusian State University of Informatics and Radioelectronics
Belarus

Karmanova O. A., Postgraduate at the Department of Micro- and Nanoelectronics, Software Engineer of the Repair Group of the Radiation Safety Department of SE “Belarusian NPP”

Minsk



A. V. Gusinsky
Belarusian State University of Informatics and Radioelectronics
Belarus

Gusinsky A. V., Cand. of Sci., Director of the Center 1.9 of R&D Department

Minsk



M. M. Kasperovich
Belarusian State University of Informatics and Radioelectronics
Belarus

Kasperovich M. M., Researcher at the Center 1.9 of R&D Department

Minsk



D. G. Bulavko
Belarusian State University of Informatics and Radioelectronics
Belarus

Bulavko D. G., Postgraduate at the Information Security Department, Junior Researcher at the Center 1.9 of R&D Department 

Minsk



A. N. Kuzyukov
Belarusian State University of Informatics and Radioelectronics
Belarus

Kuzyukov A. N., Postgraduate at the Information Security Department, Junior Researcher at the Center 1.9 of R&D Department

Minsk



D. A. Lisov
Belarusian State University of Informatics and Radioelectronics
Belarus

Lisov D. A., Postgraduate at the Information Security Department, Junior Researcher at the Center 1.9 of R&D Department

Minsk



Y. V. Shevaldina
Belarusian State University of Informatics and Radioelectronics
Belarus

Shevaldina Y. V., Postgraduate at the Information Security Department, Consultant at the Metrology Department of the State Committee for Standardization of the Republic of Belarus

Minsk



References

1. Sharov G. A. (2016) Fundamentals of the Theory of Microwave Transmission Lines, Circuits and Devices. Moscow, Hotline – Telecom. 472 (in Russian).

2. Weinstein L. A. (1957) Electromagnetic Waves. Moscow, Soviet Radio Publ. (in Russian).

3. Jeruchim M., Balaban P. (2005) Simulation of Communication Systems: Modeling, Methodology and Techniques. US, Springer. 654–670.

4. Rade L., Westergren B. (2011) Beta, Mathematics Handbook for Science and Engineering. Sweden, Artech House Publ. 145–151.

5. Rogers Corporation [Electronic Resource]. Available: https://rogerscorp.com/.


Review

For citations:


Zakharov I.A., Karmanova O.A., Gusinsky A.V., Kasperovich M.M., Bulavko D.G., Kuzyukov A.N., Lisov D.A., Shevaldina Y.V. Element for Matching a Waveguide Transmission Line with a Diode. Doklady BGUIR. 2022;20(8):67-74. (In Russ.) https://doi.org/10.35596/1729-7648-2022-20-8-67-74

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ISSN 1729-7648 (Print)
ISSN 2708-0382 (Online)