ay be preferable in certain situations. Analytically determine the "gain" of the non-inverting amplifier shown in Figure 4 (not including Capacitor C1). C1 1 nF R2 10 ka Vdd Vs R1 Vd 1 kQ Vout +v2 5 V +v3 -5 V OA1 Vin TLO81 + Vss V1 sine 1 kHz Figure 4: Non-Inverting Amplifier

Delmar's Standard Textbook Of Electricity
7th Edition
ISBN:9781337900348
Author:Stephen L. Herman
Publisher:Stephen L. Herman
Chapter18: Resistive-inductive Parallel Circuits
Section: Chapter Questions
Problem 13PP: In an R-L parallel circuit, IT=1.25 amps, R=1.2k, and XL=1k. Find IR
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By switching around the inputs, an Inverting Amplifier can be made into a Non-Inverting Amplifier which
may be preferable in certain situations.
1. Analytically determine the “gain" of the non-inverting amplifier shown in Figure 4 (not including
Capacitor C1).
C1
1 nF
R2
10 kQ
Vdd
Vss
R1
Vdd
1 ko
Vout
+ v3
-5 V
OA1
V2
Vin
TLO81
+
5 V
Vss
V1
sine
1 kHz
Figure 4: Non-Inverting Amplifier
Transcribed Image Text:By switching around the inputs, an Inverting Amplifier can be made into a Non-Inverting Amplifier which may be preferable in certain situations. 1. Analytically determine the “gain" of the non-inverting amplifier shown in Figure 4 (not including Capacitor C1). C1 1 nF R2 10 kQ Vdd Vss R1 Vdd 1 ko Vout + v3 -5 V OA1 V2 Vin TLO81 + 5 V Vss V1 sine 1 kHz Figure 4: Non-Inverting Amplifier
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