Vs+ -SA V1 12 V2 12 Vin1 V3 Vin1 C1 HH 1μ PULSE(-5 5 0 5m 5m 0 10m 10) R3 10k +SA+ U1 OP07 Vout Figure A2: Op Amp Differentiator Implement the Op Amp Differentiator shown. Use the LM741 for the Op Amp. Use power supplies for Vs+ at +12V and Vs- at -12V. Use a function generator for V3 with an output of -5V to +5V triangular wave with a frequency of 100Hz. Set the oscilloscope time per division to show two cycles of the sine waves. Please note: the capacitor used here has no polarity.

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Given the schematic below. Compute for the value of Vout and the Peak to Peak Voltage. Show your complete solution and notes 

Vs+
-SA
V1
12
V2
12
Vin1
V3
Vin1
C1
1μ
PULSE(-5 5 0 5m 5m 0 10m 10)
R3
10k
+SA+
U1
OP07
Vout
Figure A2: Op Amp Differentiator
Implement the Op Amp Differentiator shown. Use the LM741 for the Op Amp. Use
power supplies for Vs+ at +12V and Vs- at -12V. Use a function generator for V3 with
an output of -5V to +5V triangular wave with a frequency of 100Hz. Set the
oscilloscope time per division to show two cycles of the sine waves. Please note: the
capacitor used here has no polarity.
2.a. What waveform do you expect to see at Vout, and at what peak to peak value?
Transcribed Image Text:Vs+ -SA V1 12 V2 12 Vin1 V3 Vin1 C1 1μ PULSE(-5 5 0 5m 5m 0 10m 10) R3 10k +SA+ U1 OP07 Vout Figure A2: Op Amp Differentiator Implement the Op Amp Differentiator shown. Use the LM741 for the Op Amp. Use power supplies for Vs+ at +12V and Vs- at -12V. Use a function generator for V3 with an output of -5V to +5V triangular wave with a frequency of 100Hz. Set the oscilloscope time per division to show two cycles of the sine waves. Please note: the capacitor used here has no polarity. 2.a. What waveform do you expect to see at Vout, and at what peak to peak value?
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