A non-inverting op-amp circuit has the open loop gain of 108 and the resistances R1=2200 Q and R2 = 5.8 k2. Calculate (a) The actual value of voltage gain (b) Considering the finite open loop gain, the ideal value of gain (c) Error, when ideal voltage gain is compared with actual voltage gain (d) The percentage error, when ideal voltage gain is compared with actual voltage gain.

Power System Analysis and Design (MindTap Course List)
6th Edition
ISBN:9781305632134
Author:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Publisher:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Chapter12: Power System Controls
Section: Chapter Questions
Problem 12.3P
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A non-inverting op-amp circuit has the open loop
gain of 108 and the resistances R1=2200 Q and R2
= 5.8 kN . Calculate
(a) The actual value of voltage gain
(b) Considering the finite open loop gain, the ideal
value of gain
(c) Error, when ideal voltage gain is compared with
actual voltage gain
(d) The percentage error, when ideal voltage gain
is compared with actual voltage gain.
(a) The actual value of voltage gain
(b) The ideal value of voltage gain
(c) Error, when ideal voltage gain is compared with
actual voltage gain.
(d) The percentage error, when ideal voltage gain
is compared with actual voltage gain.
Transcribed Image Text:A non-inverting op-amp circuit has the open loop gain of 108 and the resistances R1=2200 Q and R2 = 5.8 kN . Calculate (a) The actual value of voltage gain (b) Considering the finite open loop gain, the ideal value of gain (c) Error, when ideal voltage gain is compared with actual voltage gain (d) The percentage error, when ideal voltage gain is compared with actual voltage gain. (a) The actual value of voltage gain (b) The ideal value of voltage gain (c) Error, when ideal voltage gain is compared with actual voltage gain. (d) The percentage error, when ideal voltage gain is compared with actual voltage gain.
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