uestion 2 (a) The amplitude and phase response of the Colpitts oscillator utilised in a metal detector is depicted in Figure Q2. (a) Gain M 100 50 150 200 Phase Figure Q2. (a) i. Identify the oscillation frequency of the oscillator. 270° 180" 90° Frequency t ii. Design and plot the circuit diagram of the oscillator indicating all components values. Given that the inductor value is 3μH. ii. What is the feedback voltage of the oscillator if the output voltage is 25V? iv. If we wish to increase the gain of this circuit by a factor of 10, how would you change the value of the components of the oscillator.

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Question 2
(a) The amplitude and phase response of the Colpitts oscillator utilised in a metal
detector is depicted in Figure Q2. (a)
ii.
iii.
Gain
[
50
100
iv.
150
Figure Q2. (a)
1. Identify the oscillation frequency of the oscillator.
200
Phase
270⁰
180⁰
90⁰
Frequency MHz
Design and plot the circuit diagram of the oscillator indicating all components
values. Given that the inductor value is 3μH.
What is the feedback voltage of the oscillator if the output voltage is 25V?
If we wish to increase the gain of this circuit by a factor of 10, how would you
change the value of the components of the oscillator.
Transcribed Image Text:Question 2 (a) The amplitude and phase response of the Colpitts oscillator utilised in a metal detector is depicted in Figure Q2. (a) ii. iii. Gain [ 50 100 iv. 150 Figure Q2. (a) 1. Identify the oscillation frequency of the oscillator. 200 Phase 270⁰ 180⁰ 90⁰ Frequency MHz Design and plot the circuit diagram of the oscillator indicating all components values. Given that the inductor value is 3μH. What is the feedback voltage of the oscillator if the output voltage is 25V? If we wish to increase the gain of this circuit by a factor of 10, how would you change the value of the components of the oscillator.
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