VNA en la banda MF, HF y VHF
Resumen
Palabras clave
Referencias
D. M. Pozar, Microwave Engineering, Fourth Edition. John Wiley & Sons, Ltd, 2012.
Rigol. (2024) RSA3000 SERIES. [Online]. Disponible en: https://www.rigolna.com/products/spectrum-analyzers/rsa3000/
Keysight. (2024) E5080B. [Online]. Disponible en: https://www.keysight.com/us/en/product/E5080B/e5080b-ena-vector-network-analyzer.html
(2024) NanoVna. [Online]. Disponible en: https://nanovna.com/
G. Colman, J. Bauwelinck, J. Vandewege. “DC-coupled directional bridge front-end for vector network analizer receiver in GHz-range”. IEICE Electronics Express, vol.8, no.11, pp. 814-818, 2011, doi: 10.1587/elex.8.814
E. Nash, E. Brunner. (2018) An Integrated Bidirectional Bridge with Dual RMS Detectors for RF Power and Return-Loss Measurement. [Online]. Disponible en: https://www.analog.com/media/en/analog-dialogue/volume-52/number-2/an-integrated-bi-directional-bridge-with-dual-rms-detectors-for-rf-power-and-return-loss-measurement.pdf
D. Jorgesen, C. Marki. (2010) Directivity and VSWR Measurements. [Online]. Disponible en: https://markimicrowave.com/technical-resources/white-papers/directivity-vswr-measurements/
J. C. de Carvalho Dias. (2016) Vector Network Analyser – Signal Generation.
R. Peter, G. Fischerauer. “Homodyne Vector Network Analysis as a Tool for the Real-Time Measurement of Electrical Material Parameter Distributions in the Field”. 20. GMA/ITG-Fachtagung Sensoren und Messsysteme 2019, 2019, Doi: 10.5162/sensoren2019/5.4.4
Anritsu (2016). Modern Architecture Advances Vector Network Analyzer Performance. [Online]. Disponible en: https://dl.cdn-anritsu.com/en-us/test-measurement/files/Technical-Notes/White-Paper/11410-00812B.pdf
J. Johnson. (2022) Attempting to Build a Low Cost Vector Network Analyser. [Online]. Disponible en: https://joshajohnson.com/vna/
F. Alekseenko, B. M. Gluzman, R. Avalos Ribas, A. J. Uriz, J. Castiñeira Moreira. “Impedancímetro en la banda de UHF mediante técnicas de reflectometría”. Elektron., vol. 7, no. 2, pp. 77-83, 2023, Doi: 10.37537/rev.elektron.7.2.182.2023
David K. Cheng, Fundamentals of Engineering Electromagnetics, Pearson Education, 2014.
D. Rytting, Network analyzer error models and calibration methods. [Online]. Disponible en: https://www.rfmentor.com/sites/default/files/NA_Error_Models_and_ Cal_Methods.pdf. 21 September 2024.
“Atmega328P data sheet”, Atmel, California, Estados Unidos.
“7SI5351 data sheet”, Silicon Laboratories, Texas, Estados Unidos.
“NE612AN data sheet”, NXP Semiconductors, Eindhoven, Paises Bajos.
“DPS05U09 data sheet”, Delta Electronics, Taipéi, Taiwán.
“TL074 data sheet”, Texas Instruments, Texas, Estados Unidos.
“PCM2904 data sheet”, Texas Instruments, Texas, Estados Unidos.
Analog. (2024) LTspice. [Online]. Disponible en: https://www.analog.com/en/resources/design-tools-and-calculators/ltspice-simulator.html
MathWorks. (2024) Matlab. [Online].https://la.mathworks.com/products/matlab.html
“RG174 data sheet”, Crystek Corporation, Florida, Estados Unidos.
HP. (2024) 8496B. [Online]. Disponible en: https://www.testequipmenthq.com/product/keysight-8496b
“ADF4351 data sheet”, Analog, Massachusetts, Estados Unidos.
DOI: https://doi.org/10.37537/rev.elektron.8.2.194.2024
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Copyright (c) 2024 Brian Maximiliano Gluzman, Ramiro Avalos Ribas, Alejandro José Uriz, Juan Alberto Etcheverry, Leonardo David Vazquez, Jorge Castiñeira Moreira
This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.
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