Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN: 9780133923605
Author: Robert L. Boylestad
Publisher: PEARSON
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- - V2 15Vdo 3 U1A R1 2 1k V- LM324 1k V3 15Vde | VOFF = 0 VAMPL = 1 FREQ = 2k AC = 0 0. R2 Figure 4. Operational amplifier circuit. What frequency does the output voltage (across R3) have? What is the amplitude of the output voltage? From the output waveform and the input waveform, determine the gain of the op-amp circuit. Does this match with what you predicted? How could you change this circuit so that the output voltage would be nearly the same as the input voltage? What purpose would that serve? Can you modify the existing circuit and verify this experimentally? What is the phase difference between the output and input voltage? Derive the transfer function for the output-input relationship for the operational amplifier. How would the gain and the output change if a capacitor were in the feedback path instead of a resistor? (Examine the circuit using phasors and impedance and circuit analysis techniques). -w-arrow_forwardRs R1 Vio W R4 o Vo R2 Given that V1= 10 V R1 = 30 R2 = 42 R3 = 20 R4 = 32 R5 = 32 For the ideal op-amps, determine Vo in Volts. Round your answer to the nearest single digit place and do not enter units.arrow_forwardDerive the output voltage (Vol, Voz and Vas) of cach Op-Amp in Figure QI. Va Ra Rb U1 ww Vo1 U2 Vb VO2 Ry Rx Rd U3 VO3 4 RI Figure QIarrow_forward
- The push-pull stage of the figure below has an output power of 1 W and R = 100. Vcc= 5 V and VEE = -5 V. Ignoring the power of D1, D2, Q3 and Q4. Vcc VD1Q3 D₁ D₂ Vino 124 +9₁ The efficiency in percent is: Q₂ VEE "W RL - Vout %arrow_forwardThe three opamps used in this instrumentation amplifier are one of the types shown in Table Q2. Without detailed calculation, pick an opamp type and justify your choice Component CMRR (dB) Price (£) LT1180 116 2.08 85 4.2 TLC2201 95 0.6 LMH6642 88 1.28 AD8091 Table Q2arrow_forward
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