V. IN VOUT R1 ww R1 R2 Ay = 1+ R2 Use R2=1000, R1=1kN, Vs=12V. The closed loop gain of the non-inverting amplifier is A, = 1 + R,/R, and V Out = A,V IN OUT In LTSpice, for an input peak-to-peak voltage of 50mV sinusoidal signal, construct a table and a plot of values quantifying the ratio between the output and input voltage for a range of frequencies from 1kHz to 6MHZ with no offset. Note: Discuss your observations and attach a screenshot of your resulting plot/waveform in LTSpice. wWH

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oVout
R1
R2
R1
Ay = 1+
R2
Use R2=1000, R1=1kN, Vs=12V. The closed loop gain of the non-inverting amplifier is
A, = 1 + R,/R, and Vour = A,V in
- UTס
IN
In LTSpice, for an input peak-to-peak voltage of 50mV sinusoidal signal, construct a table and a plot of
values quantifying the ratio between the output and input voltage for a range of frequencies from 1kHz to
6MHZ with no offset.
Note: Discuss your observations and attach a screenshot of your resulting plot/waveform in LTSpice.
Av = Vout/Vin
Frequency
1 kHz
Vout
2 kHz
20 kHz
200 kHz
500 kHz
1 MHz
2 MHz
3 MHz
4 MHz
5 MHz
6 MHz
wwH
Transcribed Image Text:oVout R1 R2 R1 Ay = 1+ R2 Use R2=1000, R1=1kN, Vs=12V. The closed loop gain of the non-inverting amplifier is A, = 1 + R,/R, and Vour = A,V in - UTס IN In LTSpice, for an input peak-to-peak voltage of 50mV sinusoidal signal, construct a table and a plot of values quantifying the ratio between the output and input voltage for a range of frequencies from 1kHz to 6MHZ with no offset. Note: Discuss your observations and attach a screenshot of your resulting plot/waveform in LTSpice. Av = Vout/Vin Frequency 1 kHz Vout 2 kHz 20 kHz 200 kHz 500 kHz 1 MHz 2 MHz 3 MHz 4 MHz 5 MHz 6 MHz wwH
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