a) Express the gain in the mid-frequency range. b) Determine the lower cut-off frequency such that the asymptotic slope is -40dB/decade. c) Find the upper cut-off frequency (or frequencies).
a) Express the gain in the mid-frequency range. b) Determine the lower cut-off frequency such that the asymptotic slope is -40dB/decade. c) Find the upper cut-off frequency (or frequencies).
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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Question
![RG-3kQ
VGO- W
C1=500nF
R1=33kΩ
Vx
ww
VY
R3=12kQ2
R2=1kQ2
R4=3ΚΩ
C2=500nF
R5=33kΩ.
a) Express the gain in the mid-frequency range.
b) Determine the lower cut-off frequency such that the
asymptotic slope is -40dB/decade.
c) Find the upper cut-off frequency (or frequencies).
Vç
C=50pF](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F1ce1f0c6-8d47-4a8f-972b-f72d20e70a7c%2F64c6fe78-e959-4187-9ecb-e1c4268b731e%2F7dbvpse_processed.png&w=3840&q=75)
Transcribed Image Text:RG-3kQ
VGO- W
C1=500nF
R1=33kΩ
Vx
ww
VY
R3=12kQ2
R2=1kQ2
R4=3ΚΩ
C2=500nF
R5=33kΩ.
a) Express the gain in the mid-frequency range.
b) Determine the lower cut-off frequency such that the
asymptotic slope is -40dB/decade.
c) Find the upper cut-off frequency (or frequencies).
Vç
C=50pF
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Step 1: The amplifier circuit is given as
VIEWStep 2: Calculation of transfer function
VIEWStep 3: continue
VIEWStep 4: continue
VIEWStep 5: Given that
VIEWStep 6: a) Gain at mid frequency range
VIEWStep 7: b) Calculation of lower cutoff frequency
VIEWStep 8: Calculation of upper cut-off frequency
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