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Practica 5
1. Monta el circuito de la figura (ten en cuenta que para la adecuada medida del desfase,
conviene que a un extremo de la resistencia esté el punto de tierra). En estas
condiciones, el canal A (CH A) mide la tensión en la resistencia VR, que está en fase con
la intensidad y el canal B (CH B) mide la tensión total del circuito VTOTAL. Captura la
pantalla del osciloscopio y pégala en el documento informe de la práctica.
2. Sitúa la base de tiempos del osciloscopio de tal manera que podamos visualizar un
periodo completo en pantalla. Si 20 DIV son 360º, ¿puedes hallar el desfase entre VR y
V ? Anótalo en la tabla del siguiente apartado
3. Añade al circuito amperímetro y voltímetro y anótalos en la tabla.
I Z=V/I  VR VL VC
VALOR
MEDIDO
0.05uA 0.3v 36º 0.40mV 2.4V 3.4V
4. Captura la pantalla del esquema del circuito con las indicaciones de los aparatos de
medida y pégala en el documento informe de la práctica
5. Calcula la frecuencia de resonancia y anótalo. f = 𝐹 =
1
2 π√LC
= 1.75 hz
6. Conecta el osciloscopio de tal manera que en el canal A tengamos VC y en el canal B
VL. Cambia las posición de la tierra si fuese necesario. Captura la pantalla del esquema
del circuito y la del osciloscopio y pégalas en el documento informe de la práctica.
7. Rellena la siguiente tabla VR en función de la frecuencia
F(Hz) 100 200 500 1K 1.5K 2K 3K 5K 10K 50K
Vr (V) 0.02 0.05 0.14 0.27 0.40 0.54 0.80 1.30 2.28 4.03
8. Calcular la ganancia de la tensión en función de la frecuencia en proteus (Respuesta en
frecuencia)
11. Calcula las frecuencias de corte con los datos de los dos apartados anteriores

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Practica 5 irc

  • 1. Practica 5 1. Monta el circuito de la figura (ten en cuenta que para la adecuada medida del desfase, conviene que a un extremo de la resistencia esté el punto de tierra). En estas condiciones, el canal A (CH A) mide la tensión en la resistencia VR, que está en fase con la intensidad y el canal B (CH B) mide la tensión total del circuito VTOTAL. Captura la pantalla del osciloscopio y pégala en el documento informe de la práctica. 2. Sitúa la base de tiempos del osciloscopio de tal manera que podamos visualizar un periodo completo en pantalla. Si 20 DIV son 360º, ¿puedes hallar el desfase entre VR y V ? Anótalo en la tabla del siguiente apartado 3. Añade al circuito amperímetro y voltímetro y anótalos en la tabla. I Z=V/I  VR VL VC VALOR MEDIDO 0.05uA 0.3v 36º 0.40mV 2.4V 3.4V 4. Captura la pantalla del esquema del circuito con las indicaciones de los aparatos de medida y pégala en el documento informe de la práctica 5. Calcula la frecuencia de resonancia y anótalo. f = 𝐹 = 1 2 π√LC = 1.75 hz
  • 2. 6. Conecta el osciloscopio de tal manera que en el canal A tengamos VC y en el canal B VL. Cambia las posición de la tierra si fuese necesario. Captura la pantalla del esquema del circuito y la del osciloscopio y pégalas en el documento informe de la práctica. 7. Rellena la siguiente tabla VR en función de la frecuencia F(Hz) 100 200 500 1K 1.5K 2K 3K 5K 10K 50K Vr (V) 0.02 0.05 0.14 0.27 0.40 0.54 0.80 1.30 2.28 4.03 8. Calcular la ganancia de la tensión en función de la frecuencia en proteus (Respuesta en frecuencia) 11. Calcula las frecuencias de corte con los datos de los dos apartados anteriores