Problem 3: 4 Design a buck-boost converter to meet the following specifications. Assume that the ESR of the 40x106 capacitor in the available type is given by ESR = 2, where C is the capacitance in C Farads (this information is given so that the students do not have to refer to a capacitor datasheet to complete this design; for example, if you need to limit the ESR to be less than 0.12, based on the design equations given in the notes, then C should be more than 400 uF for this type of capacitors). Vin = 10V - 14Vdc; Vo = 12Vdc; I, max = 5A; Io min = 1A fs = 100kHz; AV, < 100mV (pk – pk)
Problem 3: 4 Design a buck-boost converter to meet the following specifications. Assume that the ESR of the 40x106 capacitor in the available type is given by ESR = 2, where C is the capacitance in C Farads (this information is given so that the students do not have to refer to a capacitor datasheet to complete this design; for example, if you need to limit the ESR to be less than 0.12, based on the design equations given in the notes, then C should be more than 400 uF for this type of capacitors). Vin = 10V - 14Vdc; Vo = 12Vdc; I, max = 5A; Io min = 1A fs = 100kHz; AV, < 100mV (pk – pk)
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
Problem 1P: Visit your local library (at school or home) and describe the extent to which it provides literature...
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Transcribed Image Text:Problem 3:
Design a buck-boost converter to meet the following specifications. Assume that the ESR of the
40x106
capacitor in the available type is given by ESR =
2, where C is the capacitance in
C
Farads (this information is given so that the students do not have to refer to a capacitor datasheet
to complete this design; for example, if you need to limit the ESR to be less than 0.12, based on
the design equations given in the notes, then C should be more than 400 uF for this type of
capacitors).
Vin = 10V - 14Vdc; Vo = 12Vdc; I, max = 5A; Io_min = 1A
fs
= 100kHz; AV, < 100mV (pk – pk)
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