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1. Monta el circuitode lafigura(tenencuentaque,para la adecuadamedidadel desfase,
conviene que aunextremode laresistenciaesté el puntode tierra).Enestas
condiciones,el canal A (CHA) mide latensiónenlaresistenciaVR,que estáenfase con
la intensidadyel canal B(CH B) mide latensióntotal del circuitoVTOTAL.Capturala
pantalladel osciloscopioypégalaenel documentoinforme de lapráctica.Guarda el
archivode proteuscon el nombre practica_5_1 y súbeloal aulavirtual
2. Sitúala base de tiemposdel osciloscopiode tal maneraque podamosvisualizarun
periodocompletoenpantalla.Si 20 DIV son360º, ¿puedeshallarel desfase entreVRy
V ? Anótaloenlatabladel siguiente apartado.
𝜑 =
360 ∗ 0,15
2
Desfase esigual a27 grados
3. Añade al circuitoamperímetroy voltímetroyanótalosenlatabla.Guarda el archivo de
proteuscon el nombre practica_5_3 y súbeloal aula virtual
I Z=V/I ϕ VR VL VC
VALOR
MEDIDO
3,16 1.582,27 27 3,16 2,11 0,57
4. (5) Calculalafrecuenciade resonanciayanótalo. 𝑓 =
1
2∗𝜋√𝐿𝑐
L es el valordel condensadoryC el de la bovina.El valorde la frecuenciade resonancia
esde 1.30KHz
5. (6) Cambiael valorde la frecuenciadel generadorporlade resonancia.
6. (7) Conectael osciloscopiode tal maneraque enel canal A tengamosVCyen el canal
B VL. Cambialasposiciónde latierrasi fuese necesario.Capturalapantalladel
esquemadel circuitoyladel osciloscopioypégalasenel documentoinformede la
práctica. Guarda el archivode proteuscon el nombre practica_5_7 y súbeloal aula
virtual.
7. (8) Mide VL + VC con un voltímetroyanotael resultado.Guardael archivode proteus
con el nombre practica_5_8 y súbeloal aulavirtual.
8. (9) Calcularlaganancia de la tensiónenfunciónde lafrecuenciaenproteus(Respuesta
enfrecuencia) Guardael archivode proteuscon el nombre practica_5_9 y súbeloal
aulavirtual.
F(Hz) 100 200 500 1K 2k 3K 5K 10k 50k
VR(V) 1,02 1,87 3,16 3,52 3,10 2,55 1,78 0,96 0,20
11. Calculalasfrecuenciasde corte con losdatosde losdosapartados anteriores

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Ir practica 5

  • 1. 1. Monta el circuitode lafigura(tenencuentaque,para la adecuadamedidadel desfase, conviene que aunextremode laresistenciaesté el puntode tierra).Enestas condiciones,el canal A (CHA) mide latensiónenlaresistenciaVR,que estáenfase con la intensidadyel canal B(CH B) mide latensióntotal del circuitoVTOTAL.Capturala pantalladel osciloscopioypégalaenel documentoinforme de lapráctica.Guarda el archivode proteuscon el nombre practica_5_1 y súbeloal aulavirtual 2. Sitúala base de tiemposdel osciloscopiode tal maneraque podamosvisualizarun periodocompletoenpantalla.Si 20 DIV son360º, ¿puedeshallarel desfase entreVRy V ? Anótaloenlatabladel siguiente apartado.
  • 2. 𝜑 = 360 ∗ 0,15 2 Desfase esigual a27 grados 3. Añade al circuitoamperímetroy voltímetroyanótalosenlatabla.Guarda el archivo de proteuscon el nombre practica_5_3 y súbeloal aula virtual I Z=V/I ϕ VR VL VC VALOR MEDIDO 3,16 1.582,27 27 3,16 2,11 0,57 4. (5) Calculalafrecuenciade resonanciayanótalo. 𝑓 = 1 2∗𝜋√𝐿𝑐
  • 3. L es el valordel condensadoryC el de la bovina.El valorde la frecuenciade resonancia esde 1.30KHz 5. (6) Cambiael valorde la frecuenciadel generadorporlade resonancia. 6. (7) Conectael osciloscopiode tal maneraque enel canal A tengamosVCyen el canal B VL. Cambialasposiciónde latierrasi fuese necesario.Capturalapantalladel esquemadel circuitoyladel osciloscopioypégalasenel documentoinformede la práctica. Guarda el archivode proteuscon el nombre practica_5_7 y súbeloal aula virtual. 7. (8) Mide VL + VC con un voltímetroyanotael resultado.Guardael archivode proteus con el nombre practica_5_8 y súbeloal aulavirtual.
  • 4. 8. (9) Calcularlaganancia de la tensiónenfunciónde lafrecuenciaenproteus(Respuesta enfrecuencia) Guardael archivode proteuscon el nombre practica_5_9 y súbeloal aulavirtual. F(Hz) 100 200 500 1K 2k 3K 5K 10k 50k VR(V) 1,02 1,87 3,16 3,52 3,10 2,55 1,78 0,96 0,20 11. Calculalasfrecuenciasde corte con losdatosde losdosapartados anteriores