12.41 The circuit shown in Fig. P12.41 was introduced in Problem 5.68. Then, a time-domain solution was sought for Dout, (1) and Dout₂ (1) for 10, given that v₁(1) = 10u(t) mV, Vcc 10 V for both op amps, and the two capacitors had no change prior to t = 0. Analyze the circuit and plot Dout, (t) and Dout (1) using the Laplace transform technique. 4μF 5 μF Οι 5 ΚΩ Dout 1 MQ Dout2 + Vcc = 10 V Vec = 10 V Figure P12.41 Circuit for Problems 12.41 and 12.42.
12.41 The circuit shown in Fig. P12.41 was introduced in Problem 5.68. Then, a time-domain solution was sought for Dout, (1) and Dout₂ (1) for 10, given that v₁(1) = 10u(t) mV, Vcc 10 V for both op amps, and the two capacitors had no change prior to t = 0. Analyze the circuit and plot Dout, (t) and Dout (1) using the Laplace transform technique. 4μF 5 μF Οι 5 ΚΩ Dout 1 MQ Dout2 + Vcc = 10 V Vec = 10 V Figure P12.41 Circuit for Problems 12.41 and 12.42.
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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Transcribed Image Text:12.41 The circuit shown in Fig. P12.41 was introduced in
Problem 5.68. Then, a time-domain solution was sought for
Dout, (1) and Dout₂ (1) for 10, given that v₁(1) = 10u(t) mV,
Vcc 10 V for both op amps, and the two capacitors had no
change prior to t = 0. Analyze the circuit and plot Dout, (t) and
Dout (1) using the Laplace transform technique.
4μF
5 μF
Οι 5 ΚΩ
Dout 1 MQ
Dout2
+
Vcc = 10 V
Vec = 10 V
Figure P12.41 Circuit for Problems 12.41 and 12.42.
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