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Dado un circuitoRL formadopor unaresistenciade 10KΩy una bobinade 100 mH alimentados
por un alternadorde 15 V 10kHz.
1. Dibujael esquemadel circuitodandovaloresaloscomponentes.
2. Conectael osciloscopiode tal maneraque el canal A (CHA) mide latensióndel
generadorV y el canal B (CH B) mide latensiónenlaresistenciaVR.Capturatantoel
esquemadel circuitocomolapantalladel osciloscopio.Indicalaposiciónde labase de
tiemposylosatenuadoresde tensión.Guardael archivode proteusconel nombre
practica_4_2 y súbeloal aulavirtual.
3. Sitúala base de tiemposdel osciloscopiode tal maneraque podamosvisualizarun
periodocompletoenpantalla.Si 20 DIV son360º, ¿puedeshallarel desfase entreVRy
V ? Anótaloenlatabladel siguiente apartado.
𝜑 =
360 × 0,01𝑚𝑠
0,1𝑚𝑠
El desfase entre laondaazul y laonda amarillaes36 grados
4. Mide en el circuitoconvoltímetroy amperímetro.Capturalapantalla.calculaZ.Anota
losvaloresenlatabla. Guarda el archivode proteuscon el nombre practica_4_4 y
súbeloal aulavirtual.I
I Z=V/I ϕ VR VL
Valormedio 0,89 mA 16,85 36 8,93 5,69
5. Conectael osciloscopiode tal maneraque el canal A (CHA) mide latensiónenla
bobinaVLy el canal B (CH B) mide latensiónenla resistenciaVR.Capturalapantalla.
Guarda el archivode proteusconel nombre practica_4_5 y súbeloal aulavirtual.
6. Determinael desfase()entre VRyVL .
Desfase
𝜑 =
360 × 0,03
0,1𝑚𝑠
El desfase esde 90 grados
7. Cambiael valorde lafrecuenciaa500Hz. Anotalaslecturasde losinstrumentos
(valoreseficaces) enlasiguiente tabla.Guardael archivode proteusconel nombre
practica_4_7 y súbeloal aulavirtual.
I Z=V/I ϕ VR VL
Valormedio 1,06 mA 14150.94 108 0,34 10,6
8. Repite el procesoparavaloresde lafrecuenciade 1 kHz y 10 kHz y anota losvalores
frecuencia I(mA) VR(V) VL(V)
5 KHz 10,1 3,22 10,1
15 KHz 0,77 7,33 7,66
20 KHz 0,65 8,33 6,54
100 KHz 0,16 10,3 1,64
200 KHz 0,16 10,3 1,64
500 KHz 0,16 10,3 1,64
9. Contestaa la pregunta:¿Qué ocurre enel circuitoRC si se aumentala frecuenciade
la fuente?¿Porqué?
Cuandoaumente lafrecuenciael voltajeenlabobinaaumentayenla resistenciabaja
Porque esun filtropaso-altas
10. Representalatensiónenel condensadorenfunciónde lafrecuenciaenproteus
(Respuestaenfrecuencia).Capturalapantallacorrespondiente.Guardael archivode
proteuscon el nombre practica_4_10 y súbeloal aulavirtual.
11. Repite el apartadoanteriorperointercambiandolaposiciónde laresistenciayel
condensador.Añade lacapturade pantalla.¿Qué conclusionessacas?Guardael
archivode proteuscon el nombre practica_4_11 y súbeloal aulavirtual.

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Ir practica4 2

  • 1. Dado un circuitoRL formadopor unaresistenciade 10KΩy una bobinade 100 mH alimentados por un alternadorde 15 V 10kHz. 1. Dibujael esquemadel circuitodandovaloresaloscomponentes. 2. Conectael osciloscopiode tal maneraque el canal A (CHA) mide latensióndel generadorV y el canal B (CH B) mide latensiónenlaresistenciaVR.Capturatantoel esquemadel circuitocomolapantalladel osciloscopio.Indicalaposiciónde labase de tiemposylosatenuadoresde tensión.Guardael archivode proteusconel nombre practica_4_2 y súbeloal aulavirtual.
  • 2. 3. Sitúala base de tiemposdel osciloscopiode tal maneraque podamosvisualizarun periodocompletoenpantalla.Si 20 DIV son360º, ¿puedeshallarel desfase entreVRy V ? Anótaloenlatabladel siguiente apartado. 𝜑 = 360 × 0,01𝑚𝑠 0,1𝑚𝑠 El desfase entre laondaazul y laonda amarillaes36 grados 4. Mide en el circuitoconvoltímetroy amperímetro.Capturalapantalla.calculaZ.Anota losvaloresenlatabla. Guarda el archivode proteuscon el nombre practica_4_4 y súbeloal aulavirtual.I I Z=V/I ϕ VR VL Valormedio 0,89 mA 16,85 36 8,93 5,69 5. Conectael osciloscopiode tal maneraque el canal A (CHA) mide latensiónenla bobinaVLy el canal B (CH B) mide latensiónenla resistenciaVR.Capturalapantalla. Guarda el archivode proteusconel nombre practica_4_5 y súbeloal aulavirtual.
  • 3. 6. Determinael desfase()entre VRyVL . Desfase 𝜑 = 360 × 0,03 0,1𝑚𝑠 El desfase esde 90 grados 7. Cambiael valorde lafrecuenciaa500Hz. Anotalaslecturasde losinstrumentos (valoreseficaces) enlasiguiente tabla.Guardael archivode proteusconel nombre practica_4_7 y súbeloal aulavirtual.
  • 4. I Z=V/I ϕ VR VL Valormedio 1,06 mA 14150.94 108 0,34 10,6 8. Repite el procesoparavaloresde lafrecuenciade 1 kHz y 10 kHz y anota losvalores frecuencia I(mA) VR(V) VL(V) 5 KHz 10,1 3,22 10,1 15 KHz 0,77 7,33 7,66 20 KHz 0,65 8,33 6,54 100 KHz 0,16 10,3 1,64 200 KHz 0,16 10,3 1,64 500 KHz 0,16 10,3 1,64 9. Contestaa la pregunta:¿Qué ocurre enel circuitoRC si se aumentala frecuenciade la fuente?¿Porqué? Cuandoaumente lafrecuenciael voltajeenlabobinaaumentayenla resistenciabaja Porque esun filtropaso-altas 10. Representalatensiónenel condensadorenfunciónde lafrecuenciaenproteus (Respuestaenfrecuencia).Capturalapantallacorrespondiente.Guardael archivode proteuscon el nombre practica_4_10 y súbeloal aulavirtual.
  • 5. 11. Repite el apartadoanteriorperointercambiandolaposiciónde laresistenciayel condensador.Añade lacapturade pantalla.¿Qué conclusionessacas?Guardael archivode proteuscon el nombre practica_4_11 y súbeloal aulavirtual.