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Hi everyone, I have a question about active filter, including a simulation,

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5. Active Filter - III Consider the RC op-amp circuit shown in Fig. 5.4. Vin(t) is a sinusoidal signal with Vpp = 1 V, Rı = 1

(b) Simulate the circuit in Multisim/Pspice/LTspice and Plot the amplitude of H(s) vs. frequency (f) assuming frequency has a

5. Active Filter - III Consider the RC op-amp circuit shown in Fig. 5.4. Vin(t) is a sinusoidal signal with Vpp = 1 V, Rı = 10 ㏀ , R, = 20 ㏀ , and C,-C,-0.01 μF. Use Vcc-15V, The capacitors have zero initial energy stored. Ri 741 C1 C2 Volt) Fig. 5.5: Active filter - III (a) Find the transfer function H(s)Vo(s)/Vin(s) [Hint: Ladder Analysis is best] H(s) in terms of symbols Ri.R2 CL.C2 H(s) = [in terms of given R.C values]
(b) Simulate the circuit in Multisim/Pspice/LTspice and Plot the amplitude of H(s) vs. frequency (f) assuming frequency has a range from 0 to 10 kHz. Convert the amplitude of H(s) to decibel using 20logio(H(s)D. Keep amplitude scale linear and use the frequency axis (x-axis) on logarithmic scale.
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Съ- 1 Vin Transser function R, kc1 สู่- P1CIS Vin Vo Ri CS C c.c3. R.,s、R·4s). RF4汀)-vm@、惢.)r. xsci VCC 15.0v ek VCC 8 U2 R1 C1 Tektronix oscilloscope-XSC1 0.01u OBAN Tektronix TDS 202 OSCELOSCOPE VEE V1 C2 VEE M Pos:Design1 AC Analysis 0 125 1.00 4 750 C 500 250 0.00 250.00m 100 10 Frequency (Hz) 100 100 100 Frequency (Hz)

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