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Apollonius unilateral transducer constant power gain circles on 3D Smith charts

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Apollonius unilateral transducer constant power gain circles on 3D Smith charts

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Muller, AA.; Sanabria Codesal, E.; Moldoveanu, A.; Asavei, V.; Soto Pacheco, P.; Boria Esbert, VE.; Lucyszyn, S. (2014). Apollonius unilateral transducer constant power gain circles on 3D Smith charts. Electronics Letters. 50(21):1531-1533. https://doi.org/10.1049/el.2014.2695

Por favor, use este identificador para citar o enlazar este ítem: http://hdl.handle.net/10251/50738

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Título: Apollonius unilateral transducer constant power gain circles on 3D Smith charts
Autor: Muller, A. A. Sanabria Codesal, Esther Moldoveanu, A. Asavei, V. Soto Pacheco, Pablo Boria Esbert, Vicente Enrique Lucyszyn, S.
Entidad UPV: Universitat Politècnica de València. Instituto Universitario de Telecomunicación y Aplicaciones Multimedia - Institut Universitari de Telecomunicacions i Aplicacions Multimèdia
Universitat Politècnica de València. Departamento de Matemática Aplicada - Departament de Matemàtica Aplicada
Universitat Politècnica de València. Departamento de Comunicaciones - Departament de Comunicacions
Fecha difusión:
Resumen:
[EN] Unilateral transducer constant power gain circles play an essential role in the design of radio-frequency amplifiers and active modulators, as they help to determine optimal impedance matching conditions to meet ...[+]
Palabras clave: Radiofrequency amplifiers , Impedance matching , Modulators
Derechos de uso: Reserva de todos los derechos
Fuente:
Electronics Letters. (issn: 0013-5194 )
DOI: 10.1049/el.2014.2695
Editorial:
Institution of Engineering and Technology (IET)
Versión del editor: http://dx.doi.org/10.1049/el.2014.2695
Código del Proyecto:
info:eu-repo/grantAgreement/EC/FP7/322162/EU/Efficient Synthesis and Design of Reconfigurable MEMS-based Band-Pass Filters in SIW Technology/
info:eu-repo/grantAgreement/ESF//POSDRU%2F159%2F1.5%2FS%2F134398/
info:eu-repo/grantAgreement/MINECO//MTM2012-33073/ES/SINGULARIDADES, GEOMETRIA GENERICA Y MORFOLOGIA MATEMATICA/
Agradecimientos:
This work has been partly funded by the FP7 PCIG11-2012-322162 Marie Curie CIG, POSDRU/159/1.5/S/134398 and by DGCYT grant MTM2012-33073.
Tipo: Artículo

References

Ciccognani, W., Longhi, P. E., Colangeli, S., & Limiti, E. (2013). Constant Mismatch Circles and Application to Low-Noise Microwave Amplifier Design. IEEE Transactions on Microwave Theory and Techniques, 61(12), 4154-4167. doi:10.1109/tmtt.2013.2288696

Mukherjee, B., Patel, P., & Mukherjee, J. (2014). Hemispherical Dielectric Resonator Antenna Based on Apollonian Gasket of Circles—A Fractal Approach. IEEE Transactions on Antennas and Propagation, 62(1), 40-47. doi:10.1109/tap.2013.2287011

Muller, A. A., Soto, P., Dascalu, D., Neculoiu, D., & Boria, V. E. (2011). A 3-D Smith Chart Based on the Riemann Sphere for Active and Passive Microwave Circuits. IEEE Microwave and Wireless Components Letters, 21(6), 286-288. doi:10.1109/lmwc.2011.2132697 [+]
Ciccognani, W., Longhi, P. E., Colangeli, S., & Limiti, E. (2013). Constant Mismatch Circles and Application to Low-Noise Microwave Amplifier Design. IEEE Transactions on Microwave Theory and Techniques, 61(12), 4154-4167. doi:10.1109/tmtt.2013.2288696

Mukherjee, B., Patel, P., & Mukherjee, J. (2014). Hemispherical Dielectric Resonator Antenna Based on Apollonian Gasket of Circles—A Fractal Approach. IEEE Transactions on Antennas and Propagation, 62(1), 40-47. doi:10.1109/tap.2013.2287011

Muller, A. A., Soto, P., Dascalu, D., Neculoiu, D., & Boria, V. E. (2011). A 3-D Smith Chart Based on the Riemann Sphere for Active and Passive Microwave Circuits. IEEE Microwave and Wireless Components Letters, 21(6), 286-288. doi:10.1109/lmwc.2011.2132697

Lucyszyn, S., & Robertson, I. D. (1994). Monolithic narrow-band filter using ultrahigh-Q tunable active inductors. IEEE Transactions on Microwave Theory and Techniques, 42(12), 2617-2622. doi:10.1109/22.339805

Caporal Del Barrio, S., Pedersen, G. F., Bahramzy, P., Jagielski, O., & Svendsen, S. (2014). Thermal loss in high-Q antennas. Electronics Letters, 50(13), 917-919. doi:10.1049/el.2014.1222

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