Q1: a) Design the oscillator in Figure 1 to start oscillation with closed-loop gain of 8.5, then R sustain oscillation at a resonant oV out frequency Assuming of 3.4 kHz. the drain-source D, IN914 resistance of JFET is 600 N. 2N5458 b) What will be the feedback R2 C2 resistance setting when C3 R3 1.0 k R oscillation is stable? Figure 1
Q1: a) Design the oscillator in Figure 1 to start oscillation with closed-loop gain of 8.5, then R sustain oscillation at a resonant oV out frequency Assuming of 3.4 kHz. the drain-source D, IN914 resistance of JFET is 600 N. 2N5458 b) What will be the feedback R2 C2 resistance setting when C3 R3 1.0 k R oscillation is stable? Figure 1
Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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![Q1:
a) Design the oscillator in Figure
1 to start oscillation with
closed-loop gain of 8.5, then
R
sustain oscillation at a resonant
o V out
frequency
Assuming
of
3.4 kHz.
the
drain-source
D,
IN914
resistance of JFET is 600 N.
2N5458
b) What will be the feedback
R2
C2
resistance
setting
when
R3
1.0 k
R
C3
oscillation is stable?
Figure 1](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fc576ea3a-96b0-45be-95c8-69cc6aa14ff3%2F905fa8f7-a4d4-4ac0-9915-5cc621379c3e%2Fc8oiish_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Q1:
a) Design the oscillator in Figure
1 to start oscillation with
closed-loop gain of 8.5, then
R
sustain oscillation at a resonant
o V out
frequency
Assuming
of
3.4 kHz.
the
drain-source
D,
IN914
resistance of JFET is 600 N.
2N5458
b) What will be the feedback
R2
C2
resistance
setting
when
R3
1.0 k
R
C3
oscillation is stable?
Figure 1
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