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This work presents the development of a prototype micro-wave oscillator with fixed frequency, around 3 GHz, with microstrip lines, using high frequency and low noise bipolar transistor, through the Swaves oscillator with fixed frequency, around 3 GHz, with microstrip lines, using high frequency and low noise bipolar transistor, through the S scattering parameters, in order to support the practical activities developed in the RF laboratory of the electrical engineering course at IFSUL. Computational tools are used to develop the equations for the conversion of the scattering parameters, the…mehr

Produktbeschreibung
This work presents the development of a prototype micro-wave oscillator with fixed frequency, around 3 GHz, with microstrip lines, using high frequency and low noise bipolar transistor, through the Swaves oscillator with fixed frequency, around 3 GHz, with microstrip lines, using high frequency and low noise bipolar transistor, through the S scattering parameters, in order to support the practical activities developed in the RF laboratory of the electrical engineering course at IFSUL. Computational tools are used to develop the equations for the conversion of the scattering parameters, the impedance matching calculations, the making of the microstrip lines and the transistor biasing. Finally, two prototypes are built and the results presented. The prototypes worked properly, highlighting the one designed with the aid of a computational tool.
Autorenporträt
Studente di Master in Ingegneria dei Materiali UFPEL. Laurea in ingegneria elettrica IFSUL (2015). Tecnico in elettronica IFSUL (2004). Attualmente Professore sostituto di Elettronica IFSUL. Ho lavorato come sostituto prof. di Automazione industriale IFRS - Campus Rio Grande (dal 2021 al 2022) e di Telecomunicazioni IFSUL - Câmpus Pelotas (dal 2017 al 2019), come celetista tecnico (dal 2011 al 2020).