Mesedez, erabili identifikatzaile hau item hau aipatzeko edo estekatzeko: http://elartu.tntu.edu.ua/handle/lib/36928

Titulua: Construction and research of reverse frequency dividers
Egilea: Tsyrulnyk, Serhii
Tromsyuk, Volodymyr
Borodai, Yaroslav
Metelitsa, Artem
Tkachuk, Vasyl
Affiliation: Vinnytsia Technical College, Khmelnytske highway, 91/2, 21021, Vinnytsya, Ukraine
Bibliographic description (Ukraine): Construction and research of reverse frequency dividers / Serhii Tsyrulnyk, Volodymyr Tromsyuk, Yaroslav Borodai, Artem Metelitsa, Vasyl Tkachuk // ICAAEIT 2021, 15-17 December 2021. — Tern. : TNTU, Zhytomyr «Publishing house „Book-Druk“» LLC, 2021. — P. 68–73. — (Electrical engineering and power electronics).
Bibliographic description (International): Tsyrulnyk S., Tromsyuk V., Borodai Y., Metelitsa A., Tkachuk V. (2021) Construction and research of reverse frequency dividers. ICAAEIT 2021 (Tern., 15-17 December 2021), pp. 68-73.
Is part of: Proceedings of the International Conference „Advanced applied energy and information technologies 2021”, 2021
Gordailuaren-data: 15-Dec-2021
Date of entry: 28-Dec-2021
Argitalpen: TNTU, Zhytomyr «Publishing house „Book-Druk“» LLC
Place of the edition/event: Ternopil
Temporal Coverage: 15-17 December 2021
Gako-hitzak: frequency divider
chichby module
division factor
trigger
counter
Number of pages: 6
Page range: 68-73
Start page: 68
End page: 73
Laburpena: In the work, the reversible schemes of frequency dividers are constructed based on JK triggers are offered. It is proved that reversible frequency dividers work with insignificant differences in forward and reverse inclusions. When studying the frequency divider with direct inclusion, it was found that its real frequency differs from the calculated by 1.87%. And at return inclusion frequency dividers from are calculated on 2,17%. In general, such a relative error cannot be caused by the inaccuracy of the marker placement in the Multisim virtual oscilloscope. Such reversible frequency dividers can be used in unidirectional automated systems to build neural networks.
URI: http://elartu.tntu.edu.ua/handle/lib/36928
ISBN: 978-617-8079-60-4
Copyright owner: © Ternopil Ivan Puluj National Technical University, Ukraine, 2021
References (Ukraine): 1.Ali, U., Bober, M., Thiede, A., Wagner S. (2015). 100-166 GHz wide band high speed digital dynamicfrequency divider design in 0.13 μm SiGe BiCMOS technology, Microwave Integrated Circuits Conference, Proceedings of 10th European Conference.
2.Centurelli, F., Scotti, A., Palumbo, G. (2021). A very low voltage frequency divider in folded MOS currentmode logic with complementary n- and p-Type Flip-Flops. IEEE Transactions on Very Large Scale Integration Systems, 998–1008. doi:10.1109/TVLSI.2021.3058730
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5.Shustov, M.A., Shustov, A.M. (2017). Electronic Circuits for All. London: Elektor International Media BV.
6.Tsyrulnyk, S.M., Roptanov, V.I., Zymoglyad, A.S. (2013) Practical approaches to the application of MIMS -Effect. Optoelectronic information and energy technologies, 1(25). 39-46.
7.Shustov, M.A. (2019). Reversible operation of logical elements. Electronic magazine Radio Pilot, 8, 44-46.
8.Tsyrulnyk, S., Tromsyuk, V., Vernygora, V., Borodai, Y. (2021). Simulation of logic elements in reversemode for building neural networks. Computational Linguistics and Intelligent Systems, Proceedins of the 5th International Conference. Lviv, Ukraine.
References (International): 1.Ali, U., Bober, M., Thiede, A., Wagner S. (2015). 100-166 GHz wide band high speed digital dynamicfrequency divider design in 0.13 mm SiGe BiCMOS technology, Microwave Integrated Circuits Conference, Proceedings of 10th European Conference.
2.Centurelli, F., Scotti, A., Palumbo, G. (2021). A very low voltage frequency divider in folded MOS currentmode logic with complementary n- and p-Type Flip-Flops. IEEE Transactions on Very Large Scale Integration Systems, 998–1008. doi:10.1109/TVLSI.2021.3058730
3.Khaikin, C. (2006). Neironnye seti: polnyi kurs. Moskva: Izdatelskii dom Viliams.
4.Paraliukh, I.P. (2014). Shvydkodiiuchyi podilnyk chastoty iz zminnym koefitsiientom dilennia. VisnykNatsionalnoho universytetu "Lvivska politekhnika", 806, 221-225. 5.Kofanov, V.L., Osadchuk, O.V., Havrilov, D.V. (2007). Laboratornyi praktykum z tsyfrovykh prystroivna osnovi SAPR Quartus II. Vinnytsia, Ukraine: Universum. 6.Cetin, K.K. (2009). Cryptographic Engineering. Springer.7.Kofanov, V.L., Osadchuk O.V., Havrilov D.V. (2006). Laboratornyi praktykum z doslidzhenniatsyfrovykh prystroiv na osnovi SAPR MAX+PLUS II. Vinnytsia, Ukraine: Universum.
5.Shustov, M.A., Shustov, A.M. (2017). Electronic Circuits for All. London: Elektor International Media BV.
6.Tsyrulnyk, S.M., Roptanov, V.I., Zymoglyad, A.S. (2013) Practical approaches to the application of MIMS -Effect. Optoelectronic information and energy technologies, 1(25). 39-46.
7.Shustov, M.A. (2019). Reversible operation of logical elements. Electronic magazine Radio Pilot, 8, 44-46.
8.Tsyrulnyk, S., Tromsyuk, V., Vernygora, V., Borodai, Y. (2021). Simulation of logic elements in reversemode for building neural networks. Computational Linguistics and Intelligent Systems, Proceedins of the 5th International Conference. Lviv, Ukraine.
Content type: Conference Abstract
Bildumetan azaltzen da:International conference „Advanced Applied Energy and Information Technologies 2021“, (ICAAEIT 2021)



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