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Área Electricidad, Electrónica, Automatización
Electromecánica
Electricidad y Electrónica Aplicada 2
Laboratorio Virtual Labvolt
Cargas RLC Docente: Mg. Cristian Ibarra
Unidad de Aprendizaje N°1: Circuitos en corriente alterna monofásica.
Aprendizajes esperados:
Realiza mediciones de magnitudes eléctricas en circuitos eléctricos RLC serie.
Objetivo:
Calcular y Medir variables de corriente, voltaje, potencias en circuitos alternos monofásicos.
Nombre: Sección: Fecha:
I. Instrucciones:
1. Resolver los ejercicios que se presentan, aplicando los Conceptos de Redes de Corriente
Alterna Monofásicas en la maqueta virtual Labvolt.
2. En la maqueta virtual Labvolt (https://lvsim.labvolt.com/) instalar los siguientes módulos:
 Dinamómetro de cuatro cuadrantes/Fuente de Alimentación 8060-20. (Seleccionar
Fuente de Alimentación, Ajustar 100 Volts)
 Fuente de Alimentación 8821.
 Carga Resistiva 8311.
 Carga Inductiva y Capacitiva 8333.
 Interfaz de Adquisición de Datos y Control 9063.
2 de 6
Área Electricidad, Electrónica, Automatización
Electromecánica
Electricidad y Electrónica Aplicada 2
3. Seguir las indicaciones del Docente.
II. Ejercicios:
a) En la maqueta Labvolt configurar el siguiente circuito:
 Calcular.
I1 (RMS), VG máx, Potencia Activa (RMS). Factor de Potencia (FP).
 Medir.
VG (RMS), VG máx, I1 (RMS), I1 máx, Periodo de la Señal (T), Potencia Actica RMS
(P), Potencia Reactiva (Q) RMS, Potencia Aparente (S) RMS, Factor de Potencia (P),
Desfase entre V y I, el Periodo de la Potencia.
 Comparar los valores medidos con los calculados.
3 de 6
Área Electricidad, Electrónica, Automatización
Electromecánica
Electricidad y Electrónica Aplicada 2
b) En la maqueta Labvolt configurar el siguiente circuito:
4 de 6
Área Electricidad, Electrónica, Automatización
Electromecánica
Electricidad y Electrónica Aplicada 2
 Calcular.
VG máx, Reactancia Inductiva (XL), Impedancia (Z), I1 (RMS), Potencia Activa (RMS),
Potencia Reactiva (Q), Potencia Aparente, Factor de Potencia (FP), Desfase entre V
y I (Angulo 𝜑).
 Medir.
VG (RMS), VG máx, I1 (RMS), I1 máx, Periodo de la Señal (T), Potencia Actica RMS
(P), Potencia Reactiva (Q) RMS, Potencia Aparente (S) RMS, Factor de Potencia (P),
Desfase entre V y I (Angulo 𝜑), el Periodo de la Potencia.
 Comparar los valores medidos con los calculados.
5 de 6
Área Electricidad, Electrónica, Automatización
Electromecánica
Electricidad y Electrónica Aplicada 2
c) En la maqueta Labvolt configurar el siguiente circuito:
 Calcular.
VG máx, Reactancia Capacitiva (XC), Impedancia (Z), I1 (RMS), Potencia Activa
(RMS), Potencia Reactiva (Q), Potencia Aparente (S), Factor de Potencia (FP),
Desfase entre V y I (Angulo 𝜑).
 Medir.
VG (RMS), VG máx, I1 (RMS), I1 máx, Periodo de la Señal (T), Potencia Actica RMS
(P), Potencia Reactiva (Q) RMS, Potencia Aparente (S) RMS, Factor de Potencia (P),
Desfase entre V y I (Angulo 𝜑), el Periodo de la Potencia.
 Comparar los valores medidos con los calculados.
6 de 6
Área Electricidad, Electrónica, Automatización
Electromecánica
Electricidad y Electrónica Aplicada 2

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Laboratorio virtual labvolt 1 carga rlc

  • 1. 1 de 6 Área Electricidad, Electrónica, Automatización Electromecánica Electricidad y Electrónica Aplicada 2 Laboratorio Virtual Labvolt Cargas RLC Docente: Mg. Cristian Ibarra Unidad de Aprendizaje N°1: Circuitos en corriente alterna monofásica. Aprendizajes esperados: Realiza mediciones de magnitudes eléctricas en circuitos eléctricos RLC serie. Objetivo: Calcular y Medir variables de corriente, voltaje, potencias en circuitos alternos monofásicos. Nombre: Sección: Fecha: I. Instrucciones: 1. Resolver los ejercicios que se presentan, aplicando los Conceptos de Redes de Corriente Alterna Monofásicas en la maqueta virtual Labvolt. 2. En la maqueta virtual Labvolt (https://lvsim.labvolt.com/) instalar los siguientes módulos:  Dinamómetro de cuatro cuadrantes/Fuente de Alimentación 8060-20. (Seleccionar Fuente de Alimentación, Ajustar 100 Volts)  Fuente de Alimentación 8821.  Carga Resistiva 8311.  Carga Inductiva y Capacitiva 8333.  Interfaz de Adquisición de Datos y Control 9063.
  • 2. 2 de 6 Área Electricidad, Electrónica, Automatización Electromecánica Electricidad y Electrónica Aplicada 2 3. Seguir las indicaciones del Docente. II. Ejercicios: a) En la maqueta Labvolt configurar el siguiente circuito:  Calcular. I1 (RMS), VG máx, Potencia Activa (RMS). Factor de Potencia (FP).  Medir. VG (RMS), VG máx, I1 (RMS), I1 máx, Periodo de la Señal (T), Potencia Actica RMS (P), Potencia Reactiva (Q) RMS, Potencia Aparente (S) RMS, Factor de Potencia (P), Desfase entre V y I, el Periodo de la Potencia.  Comparar los valores medidos con los calculados.
  • 3. 3 de 6 Área Electricidad, Electrónica, Automatización Electromecánica Electricidad y Electrónica Aplicada 2 b) En la maqueta Labvolt configurar el siguiente circuito:
  • 4. 4 de 6 Área Electricidad, Electrónica, Automatización Electromecánica Electricidad y Electrónica Aplicada 2  Calcular. VG máx, Reactancia Inductiva (XL), Impedancia (Z), I1 (RMS), Potencia Activa (RMS), Potencia Reactiva (Q), Potencia Aparente, Factor de Potencia (FP), Desfase entre V y I (Angulo 𝜑).  Medir. VG (RMS), VG máx, I1 (RMS), I1 máx, Periodo de la Señal (T), Potencia Actica RMS (P), Potencia Reactiva (Q) RMS, Potencia Aparente (S) RMS, Factor de Potencia (P), Desfase entre V y I (Angulo 𝜑), el Periodo de la Potencia.  Comparar los valores medidos con los calculados.
  • 5. 5 de 6 Área Electricidad, Electrónica, Automatización Electromecánica Electricidad y Electrónica Aplicada 2 c) En la maqueta Labvolt configurar el siguiente circuito:  Calcular. VG máx, Reactancia Capacitiva (XC), Impedancia (Z), I1 (RMS), Potencia Activa (RMS), Potencia Reactiva (Q), Potencia Aparente (S), Factor de Potencia (FP), Desfase entre V y I (Angulo 𝜑).  Medir. VG (RMS), VG máx, I1 (RMS), I1 máx, Periodo de la Señal (T), Potencia Actica RMS (P), Potencia Reactiva (Q) RMS, Potencia Aparente (S) RMS, Factor de Potencia (P), Desfase entre V y I (Angulo 𝜑), el Periodo de la Potencia.  Comparar los valores medidos con los calculados.
  • 6. 6 de 6 Área Electricidad, Electrónica, Automatización Electromecánica Electricidad y Electrónica Aplicada 2