2. Consider a boost converter with the following parameters: L = 1.8 mH, Vin = 50 V, V = 120 V, R= N, C= 147 μF, and f=15 KHz. Determine (a) the duty cycle for this converter (b) the maximum Imax and minimum Imin inductor currents. redesign a boost converter with the following parameters: R= 59.26 , Vo = 40 V, , f = 35 kHz. Find the Inductor and the capacitor acceptable values to satisfy the CCM mode w = 2% Vin = 28V, (Avo) Vo

Introductory Circuit Analysis (13th Edition)
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2. Consider a boost converter with the following parameters: L = 1.8 mH, Vin
N, C= 147 μF, and f=15 KHz. Determine
=
50 V, Vo = 120 V, R=20
(a) the duty cycle for this converter
(b) the maximum Imax and minimum Imin inductor currents.
(c) redesign a boost converter with the following parameters: R= 59.26 , Vo
= 40 V,, f
= 35 kHz. Find the Inductor and the capacitor acceptable values to satisfy the CCM mode with
(AV)
Vin = 28V, = 2%
Vo
(d) Simulate the circuit in c) by choosing L 200 μH and the corresponding C. Plot the
output voltages and currents and determine the ripples of the load voltage and current using the
plots.
Transcribed Image Text:2. Consider a boost converter with the following parameters: L = 1.8 mH, Vin N, C= 147 μF, and f=15 KHz. Determine = 50 V, Vo = 120 V, R=20 (a) the duty cycle for this converter (b) the maximum Imax and minimum Imin inductor currents. (c) redesign a boost converter with the following parameters: R= 59.26 , Vo = 40 V,, f = 35 kHz. Find the Inductor and the capacitor acceptable values to satisfy the CCM mode with (AV) Vin = 28V, = 2% Vo (d) Simulate the circuit in c) by choosing L 200 μH and the corresponding C. Plot the output voltages and currents and determine the ripples of the load voltage and current using the plots.
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