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# -*- coding: iso-8859-1 -*- | |
""" | |
Created on Sat May 24 17:13:35 2014 | |
@author: iury | |
""" | |
import numpy as np | |
matNucleo = [1, 0.4] | |
print("\n--------------TRANSFORMADOR----------------") | |
print("---------------------------------------------") | |
tensaoIn = int(input("Informe a tensao de entrada(V): ")) | |
tensaoOut = int(input("Informe a tensao de saida(V): ")) | |
potenciaOut = int(input("Informe a potencia de saida(Watts): ")) | |
rendimento = int(input("Informe o rendimento(%): ")) | |
frequencia = int(input("Informe a frequencia(Hz): ")) | |
nucleo = int(input("Escolha o material do nucleo( 1 - Ferrite, 2 - Laminado): ")) | |
potenciaIn = (1+(1-(rendimento/100)))*potenciaOut | |
secaoNucleo = int(np.ceil(np.sqrt(potenciaIn))) | |
nPrincipal = int(np.ceil((tensaoIn*10000)/(4.44*matNucleo[nucleo-1]*frequencia*secaoNucleo))) | |
nSecundario = int(np.ceil(nPrincipal/(tensaoIn/tensaoOut))) | |
i1 = np.ceil(potenciaIn/tensaoIn) | |
i2 = np.ceil(potenciaOut/tensaoOut) | |
condutor1 = np.ceil(i1/3) | |
condutor2 = np.ceil(i2/3) | |
print("----------------RESULTADO-------------------") | |
print("--------------------------------------------") | |
print("Secao do Nucleo: ", secaoNucleo, " cm2") | |
print("Bobina principal: ", nPrincipal, " voltas") | |
print("Bobina Secundaria: ", nSecundario, " voltas") | |
print("Secao do condutor 1: ", condutor1, " mm2") | |
print("Secao do condutor 2: ", condutor2, " mm2") |
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