F U N DAM E NTALS O F
CHARLES K. ALEXANDER
MATTHEW N.O. SADIKU
ELECTRIC
CIRCUITS
Figura 13.2 Inductancia mutua de M21 de la bobina 2 respecto de la
bobina 1
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F U N DAM E NTALS O F
CHARLES K. ALEXANDER
MATTHEW N.O. SADIKU
ELECTRIC
CIRCUITS
Figura 13.4 Ilustración de la convención de punto
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F U N DAM E NTALS O F
CHARLES K. ALEXANDER
MATTHEW N.O. SADIKU
ELECTRIC
CIRCUITS
Figura 13.22 Un circuito T equivalente
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F U N DAM E NTALS O F
CHARLES K. ALEXANDER
MATTHEW N.O. SADIKU
ELECTRIC
CIRCUITS
Figura 13.23 Un circuito  equivalente
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F U N DAM E NTALS O F
CHARLES K. ALEXANDER
MATTHEW N.O. SADIKU
ELECTRIC
CIRCUITS
Figura 13.30 (a) transformador ideal, (b) símbolo de circuito para
transformadores ideales
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F U N DAM E NTALS O F
CHARLES K. ALEXANDER
MATTHEW N.O. SADIKU
ELECTRIC
CIRCUITS
Figura 13.32 Circuitos típicos ilustrando la polaridad apropiada para voltajes y dirección de
corrientes en un transformador ideal
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F U N DAM E NTALS O F
CHARLES K. ALEXANDER
MATTHEW N.O. SADIKU
ELECTRIC
CIRCUITS
Figura 13.42 (a) Autotransformador reductor, (b) autotransformador
elevador
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F U N DAM E NTALS O F
CHARLES K. ALEXANDER
MATTHEW N.O. SADIKU
ELECTRIC
CIRCUITS
Figura 13.46 Conexión de transformador Y-Y trifásico
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F U N DAM E NTALS O F
CHARLES K. ALEXANDER
MATTHEW N.O. SADIKU
ELECTRIC
CIRCUITS
Figura 13.52 Para el ejemplo 13.13
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F U N DAM E NTALS O F
CHARLES K. ALEXANDER
MATTHEW N.O. SADIKU
ELECTRIC
CIRCUITS
Figura 13.53 Esquema del circuito de la figura 13.52
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F U N DAM E NTALS O F
CHARLES K. ALEXANDER
MATTHEW N.O. SADIKU
ELECTRIC
CIRCUITS
Figura 13.59 Un transformador proporcionando aislamiento cd entre dos fases del
amplificador
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F U N DAM E NTALS O F
CHARLES K. ALEXANDER
MATTHEW N.O. SADIKU
ELECTRIC
CIRCUITS
Figura 13.63 Transformador usado como dispositivo de apareamiento
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