O The circuit shown in Figure P8.70 is an integrator. The capacitor is initially uncharged, and the source voltage is Vin (t) = 10 x 10-3 + sin(2,0007 t) V a. At t = 0, the switch Sj is closed. How long does it take before clipping occurs at the output if Rs = 10 k2 and Cr = 0.008 µF? b. At what times does the integration of the DC input cause the op-amp to saturate fully? CF 15 V Rs O-W Vout Vin 1=0 -15 V
O The circuit shown in Figure P8.70 is an integrator. The capacitor is initially uncharged, and the source voltage is Vin (t) = 10 x 10-3 + sin(2,0007 t) V a. At t = 0, the switch Sj is closed. How long does it take before clipping occurs at the output if Rs = 10 k2 and Cr = 0.008 µF? b. At what times does the integration of the DC input cause the op-amp to saturate fully? CF 15 V Rs O-W Vout Vin 1=0 -15 V
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:O The circuit shown in Figure P8.70 is an integrator.
The capacitor is initially uncharged, and the source
voltage is
Vin (t) = 10 x 10-3 + sin(2,0007 t) V

Transcribed Image Text:a. At t = 0, the switch Sj is closed. How long
does it take before clipping occurs at the output if
Rs = 10 k2 and Cr = 0.008 µF?
b. At what times does the integration of the DC input
cause the op-amp to saturate fully?
CF
15 V
Rs
O-W
Vout
Vin
1=0
-15 V
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