-.18 For the transformer shown in Figure P13.18, N = 1,000 turns, h = 16 cm, A¡ = 4 cm², ½ = 22 cm, A2 = 4 cm?, k = 5 cm, and A3 = 2 cm?. The relative permeability of the material is µ, = 1,500. a. Construct the equivalent magnetic circuit, and find the reluctance associated with each part of the circuit. b. Determine the self-inductance and mutual inductance for the pair of coils (that is, L11, L22, and M = L12 = L21). l1, A1 l2, A2 N turns -3, A3 N turns

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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-.18 For the transformer shown in Figure P13.18,
N = 1,000 turns, h = 16 cm, A¡ = 4 cm², ½ = 22 cm,
A2 = 4 cm?, k = 5 cm, and A3 = 2 cm?. The relative
permeability of the material is µ, = 1,500.
a. Construct the equivalent magnetic circuit, and find
the reluctance associated with each part of the
circuit.
b. Determine the self-inductance and mutual
inductance for the pair of coils (that is, L11, L22, and
M = L12 = L21).
Transcribed Image Text:-.18 For the transformer shown in Figure P13.18, N = 1,000 turns, h = 16 cm, A¡ = 4 cm², ½ = 22 cm, A2 = 4 cm?, k = 5 cm, and A3 = 2 cm?. The relative permeability of the material is µ, = 1,500. a. Construct the equivalent magnetic circuit, and find the reluctance associated with each part of the circuit. b. Determine the self-inductance and mutual inductance for the pair of coils (that is, L11, L22, and M = L12 = L21).
l1, A1
l2, A2
N turns
-3, A3
N turns
Transcribed Image Text:l1, A1 l2, A2 N turns -3, A3 N turns
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