Basic Engineering Circuit Analysis
11th Edition
ISBN: 9781118539293
Author: J. David Irwin, R. Mark Nelms
Publisher: WILEY
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Chapter 4, Problem 32P
To determine
The expression for
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Find the voltage gain of the op-amp circuit shown in Fig. P4.30.
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Figure P4.30
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Chapter 4 Solutions
Basic Engineering Circuit Analysis
Ch. 4 - An amplifier has a gain of 15 and the input...Ch. 4 - An amplifier has a gain of 5 and the output...Ch. 4 - An op-amp based amplifier has supply voltages of...Ch. 4 - For an ideal op-amp, the voltage gain and input...Ch. 4 - Revisit your answers in Problem 4.4 under the...Ch. 4 - Revisit the exact analysis of the inverting...Ch. 4 - Revisit the exact analysis of the inverting...Ch. 4 - An op-amp based amplifier has 18V supplies and a...Ch. 4 - Assuming an ideal op-amp, determine the voltage...Ch. 4 - Assuming an ideal op-amp, determine the voltage...
Ch. 4 - Assuming an ideal op-amp in Fig. P4.11, determine...Ch. 4 - Assuming an ideal op-amp, find the voltage gain of...Ch. 4 - Assuming an ideal op-amp in Fig. P4.13, determine...Ch. 4 - Determine the gain of the amplifier in Fig. P4.14....Ch. 4 - For the amplifier in Fig. P4.15, find the gain and...Ch. 4 - Using the ideal op-amp assumptions, determine the...Ch. 4 - Using the ideal op-amp assumptions, determine...Ch. 4 - In a useful application, the amplifier drives a...Ch. 4 - The op-amp in the amplifier in Fig. P4.19 operates...Ch. 4 - For the amplifier in Fig. P4.20, the maximum value...Ch. 4 - For the circuit in Fig. P4.21, (a) find Vo in...Ch. 4 - Find Vo in the circuit in Fig. P4.22, assuming...Ch. 4 - The network in Fig. P4.23 is a current-to-voltage...Ch. 4 - Prob. 24PCh. 4 - Determine the relationship between v1 and io in...Ch. 4 - Find Vo in the network in Fig. P4.26 and explain...Ch. 4 - Determine the expression for vo in the network in...Ch. 4 - Show that the output of the circuit in Fig. P4.28...Ch. 4 - Find vo in the network in Fig. P4.29.Ch. 4 - Find the voltage gain of the op-amp circuit shown...Ch. 4 - Determine the relationship between and in the...Ch. 4 - Prob. 32PCh. 4 - For the circuit in Fig. P4.33, find the value of...Ch. 4 - Find Vo in the circuit in Fig. P4.34.Ch. 4 - Find Vo in the circuit in Fig. P4.35.Ch. 4 - Determine the expression for the output voltage,...Ch. 4 - Determine the output voltage, of the noninverting...Ch. 4 - Find the input/output relationship for the current...Ch. 4 - Find V0 in the circuit in Fig. P4.39.Ch. 4 - Find Vo in the circuit in Fig. P4.40.Ch. 4 - Find the expression for in the differential...Ch. 4 - Find vo in the circuit in Fig. P4.42.Ch. 4 - Find the output voltage, vo, in the circuit in...Ch. 4 - The electronic ammeter in Example 4.7 has been...Ch. 4 - Given the summing amplifier shown in Fig. 4PFE-l,...Ch. 4 - Determine the output voltage V0 of the summing...Ch. 4 - What is the output voltage V0 in Fig. 4PFE-3. a....Ch. 4 - What value of Rf in the op-amp circuit of Fig....Ch. 4 - What is the voltage Vo in the circuit in Fig....
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- 4.27 Design an op-amp circuit that performs an averaging operation of five inputs v₁ to v5.arrow_forward4.17 Using the ideal op-amp assumptions, determine I₁, I₂, and I3 in Fig. P4.17. 1 mA Figure P4.17 m R₁ 1₁ 13 12 ww R₂ Voarrow_forward(Q4.1) Determine the voltage gain G1=vO1/vS: (Q4.2) Determine the voltage gain G2=vO/vS:arrow_forward
- 4.17 Using the ideal op-amp assumptions, determine I₁, I2, and 13 in Fig. P4.17. 1 mA (₁ M R₁ Figure P4.17 13 1₂2 www R₂ It -1₁ OV₂arrow_forward4.90 A reverse-biased photodiode is specified to have a dark current of 100 pA and a responsivity of 0.5 A/W. It is connected to the transresistance amplifier shown in Fig. P4.90. Assume an ideal op amp. (a) What is the reverse-bias voltage across the photodiode? (b) What is the output voltage vo with no illumination? (c) What is the output voltage vo with 10 µW of light incident on the photodiode? 250 kN On o +3 V. Figure P4.90 Hint: since we are assuming an ideal op amp, there is a virtual short-circuit between input terminals.arrow_forward4- In the circuit in following figure, obtain v1, v2, and v3. 15 V 25 V 10 V 20 V V3 University of Thi-Qar/Department of Electrical and Electronic Engineering-Lectures are prepared by M.Sc. Ali Kareem ilartric Circuits", by: Charles K. Alexander and Matthew N. O. Sadiku. Page 6arrow_forward
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- Elaborate on this sentence with diagrams if necessary: Inverting comparator, it produces one ofthe two values +Vsat and −Vsat at theoutput based on the values of its inputvoltage Vi and the reference voltageVref.arrow_forwardv. Perform an analysis of the circuit to find Vo if V₁=1.1 and V2=0.6. Your working should include: a. An accurate, clear, and complete schematic b. Nodes and resistor values should be clearly labeled on the schematic c. Equations for relationships between the voltages, state clearly the reasoning for each equation: e.g. KCL at node, or ideal op-amp rules d. Numbering for equations ✓ Screenshot 2024-10-22 at 18.0... a. Solution for the equations and result a for Vo What is your result for Vo? V V1 C R2 U1 D B R2 M -o + R2 E Vo 310 ΚΩ V2 =arrow_forwardB4.833 C. 7.250 D. 2.417 Fig. 8 50 kOhm m Sk Ohm M+ 5 k Ohm M mm-11 N Ex >10k Ohm Vo 23 Q15. The non-ideal Op. Amp. in the circuit shown in Fig. 8 has an open-loop gain A = 75, an input resistance ris of 10 ks2 and a zero output resistance. Then the gain of the amplifier is: 4.04 しっ Q16. Which one of the following statements is (are) correct about JFET: A. The JFET has a high input impedance. B. The JFET is considered as a low power consumption device. In JFET, the gate source cut off voltage is numerically greater than the pinch off voltage. D. A and B. E. B and C. Good Luckarrow_forward
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