vi(t)u(t) + R L R C vo(t) See the dynamic RLC circuit shown above. It has a time dependent input of vi(t)u(t). Let R = 1 kN, C = 0.5 µF, L = 1 µH and t = 0; a constant voltage (Vs = 3.3volts) is turned on; and all other initial conditions are zero except the capacitor (Vc(0) = 0.5). Derive the total time domain response. Use superposition and follow these steps: Step 1: redraw the CCT in the s-domain with the initial conditions Step 2: set the initial condition to "off" and derive the zero state response input "on" Step 3: Set the input to "off" and derive the zero input response Uzir (t) set to "on" Step 4: Find the total output response by adding: vo(t) = Uzsr(t) + Uzir (t) Uzsr (t) with the initial with the initial condition
vi(t)u(t) + R L R C vo(t) See the dynamic RLC circuit shown above. It has a time dependent input of vi(t)u(t). Let R = 1 kN, C = 0.5 µF, L = 1 µH and t = 0; a constant voltage (Vs = 3.3volts) is turned on; and all other initial conditions are zero except the capacitor (Vc(0) = 0.5). Derive the total time domain response. Use superposition and follow these steps: Step 1: redraw the CCT in the s-domain with the initial conditions Step 2: set the initial condition to "off" and derive the zero state response input "on" Step 3: Set the input to "off" and derive the zero input response Uzir (t) set to "on" Step 4: Find the total output response by adding: vo(t) = Uzsr(t) + Uzir (t) Uzsr (t) with the initial with the initial condition
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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