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dc.contributor.authorRamirez Cerpa, Elkin Dubanspa
dc.contributor.authorSanchez Dams, Ruben Dariospa
dc.contributor.authorSimancas García, Jose Leonardospa
dc.contributor.authorCama Pinto, Alejandrospa
dc.contributor.authorSilva Cardenas, Carlosspa
dc.date.accessioned2019-05-21T13:36:16Z
dc.date.available2019-05-21T13:36:16Z
dc.date.issued2017
dc.identifier.issn07981015spa
dc.identifier.urihttp://hdl.handle.net/11323/4610spa
dc.description.abstractDebido a la complejidad para introducir por primera vez la temática de los convertidores de impedancia en el ámbito universitario, específicamente los giradores (Circuito de Antoniou) y circuitos FDNR (Frequency Dependent Negative Resistance), se elabora una introducción didáctica, básica y detallada de los convertidores de impedancia, específicamente de los giradores y los circuitos FDNR usados en el curso de Electrónica II de la Universidad de la Costa.spa
dc.description.abstractDue to the complexity to introduce for first time the subject of impedance converters in the university scope, specifically gyrators (Antoniou circuit) and FDNR circuits (Frequency Dependent Negative Resistance), is elaborated a didactic, basic and detailed introduction of the impedance converters, specifically of the gyrators and the FDNR circuits used in the course of Electronics II in the University of the Coast.spa
dc.language.isospa
dc.publisherEspaciosspa
dc.rightsAttribution-NonCommercial-ShareAlike 4.0 Internationalspa
dc.rights.urihttp://creativecommons.org/licenses/by-nc-sa/4.0/spa
dc.subjectActive filtersspa
dc.subjectAntoniou's circuitspa
dc.subjectFDNRspa
dc.subjectFilter notch twin tspa
dc.subjectGyratorsspa
dc.subjectNegative resistancespa
dc.subjectSuppressor narrowband filterspa
dc.subjectFiltros activosspa
dc.subjectEl circuito de antoniospa
dc.subjectFDNRspa
dc.subjectFiltro muesca doble Tspa
dc.subjectGiradoresspa
dc.subjectResistencia negativaspa
dc.subjectSupresor filtro de banda estrechaspa
dc.titleAnálisis comparativo con fines pedagógicos en el diseño de filtros supresores de banda angosta con T gemela y FDNRspa
dc.typeArtículo de revistaspa
dc.rights.accessrightsinfo:eu-repo/semantics/openAccessspa
dc.identifier.instnameCorporación Universidad de la Costaspa
dc.identifier.reponameREDICUC - Repositorio CUCspa
dc.identifier.repourlhttps://repositorio.cuc.edu.co/spa
dc.relation.referencesBiolek, D., Senani, R., Biolkova, V., and Kolka, Z. (2008). Active elements for analog signal processing: Classification, review, and new proposals Radioengineering. 17(4):15–32. Boylestad R. L. and Nashelsky L. (2003). Electrónica: teoría de circuitos y dispositivos electrónicos. México: Pearson Educación Boylestad, R. L. (2013). Introductory Circuit Analysis. Pearson Education, Limited. Bruton L. T. (1969). Network Transfer Functions Using the Concept of Frequency-Dependent Negative Resistance. IEEE Trans. Circuit Theory. 16(3):406–408. Bruton V. and Treleaven D. (1973). Electrical noise in low-pass FDNR filters. Circuit Theory, IEEE Trans. 20(2):154–158. Cooperman M. and Kapral C. W. (1983), Integrated switched-capacitor FDNR filter. Solid-State Circuits, IEEE J. 18(4):378–383. Corron, N. J., and Hahs, D. W. (1997). A new approach to communications using chaotic signals. Circuits Syst. I Fundam. Theory Appl. IEEE Trans. 44(5):373–382. Elwakil, A. S., and Kennedy, M. P. (2000). Chaotic oscillator configuration using a frequency dependent negative resistor. Int. J. circuit theory Appl. 28(1):69–76. Förster, A., Udugama, A., Görg, C., Kuladinithi, K., Timm-Giel, A., Cama-Pinto, A. A novel data dissemination model for organic data flows (2015) Lecture Notes of the Institute for Computer Sciences, Social-Informatics and Telecommunications Engineering, LNICST, 158, pp. 239-252. DOI: 10.1007/978-3-319-26925-2_18 Franco S. (2005). Diseño con amplificadores operacionales y circuitos integrados analógicos. 3ra ed. McGraw-Hill. Gray P. R. and Meyer R. G. (1990). Analysis and design of analog integrated circuits. 2a ed. New York: John Wiley and Sons, Inc. Hasler M. (1980). A new class of RC-active filters using FDNR-elements and generalized terminations. Circuits Syst. IEEE Trans. 27(7):636–641. Hickman I. (1997). Filters using negative resistance. Electron. World Wirel. World. 103(1731):217–223. Horenstein M. N. (1996). Microelectronic Circuits and Devices. 2a ed. New york: Prentice Hall. Kaçar F. and Kuntman H. (2009). On the realization of the FDNR simulators using only a single current feedback operational amplifier. In International Conference on Electrical and Electronics Engineering, ELECO. II-223-II-226. Kaçar F. and Kuntman H. (2011). New realization of FDNR and sixth order band pass filter application. In 20th European Conference on Circuit Theory and Design (ECCTD). 381-384. LTC1050. (2015). Linear Technology, LTC1050 datasheet. Recuperado el 10 de abril de 2016, de, http://cds.linear.com/docs/en/datasheet/1050fb.pdf. Iu, H.H.C., Yu, D.S., Fitch, A.L., Sreeram, V., Chen, H. Controlling chaos in a memristor based circuit using a twin-T notch filter (2011) IEEE Transactions on Circuits and Systems I: Regular Papers, 58 (6), art. no. 5688203, pp. 1337-1344. DOI: 10.1109/TCSI.2010.2097771. Mahmoud, S., Abdallah, A., Khalid, S. A 5.2nV/√Hz noise density third-order FDNR filter for DVB-H mobile-TV receiver (2013) Proceedings of the IEEE International Conference on Electronics, Circuits, and Systems, art. no. 6815520, pp. 739-742. DOI: 10.1109/ICECS.2013.6815520. Merrill, j. l. (1951). Theory of the negative impedance converter. Bell Syst. Tech. J., vol. 30(1):88–109. Prodanov, V. I., and Green, M. M. (1994). A current-mode FDNR circuit element using capacitive gyrators. In IEEE International Symposium on Circuits and Systems(ISCS). 5:409-412. Quinayas C., Fabian R., Jorge B., Nadia M., and Lucy M. (2012). ECG portátil Portable ECG. Revista Colombiana de Física. 44(3):3–6. Rashid M. (2002). Circuitos microelectrónicos: análisis y diseño. Primera. Thomson-Paraninfo. Sedlácek J. and Szabó V. (2009). A simple economical building FDNR blocks with modern operational amplifiers. In Proceedings of the Progress in Electromagnetics Research Symposium-PIERS.1113-1117. Sedra A. S. (2009). Circuitos Microelectrónicos. 5ta Edición. México, D.F.: Mc Graw Hill. Senani V. (1979). Some observations concerning the methods of filter/oscillator realization using the concept of FDNR. Proc. IEEE. 67(12):1665–1666. Silva, C. P., and Young, A. M. (2000). Introduction to chaos-based communications and signal processing. In Aerospace Conference Proceedings, IEEE. 1: 279-299. Stavrinides, S. G., Anagnostopoulos, A. N., Miliou, A. N., Valaristos, A., Magafas, l., Kosmatopoulos, K., and Papaioannou, S. (2009). Digital chaotic synchronized communication system. J. Eng. Sci. Technol. Rev. 2(1):82–86. Susan, D., and Jayalalitha, S. (2012). Frequency Dependent Negative Resistance-A Review. Res. J. Appl. Sci. Eng. Technol. 4(17):2988-2994. Susan, D., and Jayalalitha, S. (2010). Analog filters using simulated inductor. ICMET 2010 - 2010 Int. Conf. Mech. Electr. Technol. Proc. Icmet. 659–662. Szabó Z., Friedl M., and Sedláček J. (2013). Comparison of the Dynamic Range of FDNR Building Blocks. PIERS TAIPEI. 159–162. Universidad Antonio Nariño (2015). Plan de estudios asignatura Sistemas Analógicos III. Recuperado el 10 de abril de 2016, de, http://www.uan.edu.co/ingenieria-electronica-plan-deestudios. Universidad del Norte. (2015). Plan de asignatura Electrónica II. Recuperado el 10 de abril de 2016, de, https://pomelo.uninorte.edu.co/pls/prod/bwckctlg.p_disp_course_detail? cat_term_in=201510andsubj_code_in=IENandcrse_numb_in=4030. Universidad de la Costa. (2015). Plan de Estudios Académicos Ingeniería Electrónica. Recuperado el 10 de abril de 2016, de, http://www.cuc.edu.co/index.php? option=com_wrapperandview=wrapperandItemid=1957. Yang X. and Shiyan Z. (1991). Design of FDNR continuous time MOSFET-C band-pass filters with low sensitivity and fewer number of op-amps. In IEEE International Sympoisum on Circuits and Systems. 3:1335-133 Zamora-Musa, R., Velez, J., Paez-Logreira, H., Coba, J., Cano-Cano, C., Palmera, O.M. Implementation of an open educational resource through the model of universal design for learning taking into account competency-based assessment and the individual needs of students (2017) Espacios, 38 (5), p. 3.spa
dc.title.translatedComparative analysis with pedagogical purposes in the design of narrowband suppressor filters with twin-T and FDNRspa
dc.type.coarhttp://purl.org/coar/resource_type/c_6501spa
dc.type.contentTextspa
dc.type.driverinfo:eu-repo/semantics/articlespa
dc.type.redcolhttp://purl.org/redcol/resource_type/ARTspa
dc.type.versioninfo:eu-repo/semantics/acceptedVersionspa
dc.type.coarversionhttp://purl.org/coar/version/c_ab4af688f83e57aaspa
dc.rights.coarhttp://purl.org/coar/access_right/c_abf2spa


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