Connect 2 Semester Access Card for Fundamentals of Electric Circuits
Connect 2 Semester Access Card for Fundamentals of Electric Circuits
6th Edition
ISBN: 9781259893674
Author: Charles Alexander, Matthew Sadiku
Publisher: McGraw-Hill Education
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Chapter 5, Problem 7P

5.7 The op amp in Fig. 5.46 has Ri = 100 kΩ, Ro = 100 Ω, A = 100,000. Find the differential voltage vd and the output voltage vo.

Chapter 5, Problem 7P, 5.7 The op amp in Fig. 5.46 has Ri = 100 k, Ro = 100 , A = 100,000. Find the differential voltage vd

Figure 5.46

For Prob. 5.7.

Expert Solution & Answer
Check Mark
To determine

Calculate the differential voltage vd and the output voltage vo of the op amp in Figure 5.46.

Answer to Problem 7P

The differential voltage vd is 100nV_ and the output voltage vo is 10mV_.

Explanation of Solution

Given data:

Refer Figure 5.46 in the textbook for the op amp circuit.

The open-loop gain A is 100,000,

The input resistance Ri is 100, and

The output resistance Ro is 100Ω.

Calculation:

The equivalent circuit of the the given 741 op amp is drawn and it is shown in Figure 1.

Connect 2 Semester Access Card for Fundamentals of Electric Circuits, Chapter 5, Problem 7P

Apply Kirchhoff's current law at node 1 in Figure 1.

v1vs10+v10100+v1vo100=010(v1vs)+v1+v1vo100=010vs10v1=v1+v1vo10vs+vo=12v1

Simplify the equation as follows.

v1=10vs+vo12 (1)

From Figure 1, consider the expression for the voltage vd.

vd=v1

Apply Kirchhoff's current law at node 2 in Figure 1.

vo(Avd)100Ω+vov1100=0103(vo+Avd)+vov1100=0103(vo+Avd)+vov1=0

Substitute 100,000 for A and v1 for vd.

103(vo+100,000v1)+vov1=0v1vo=1000(vo+100,000v1)

1001vo+99,999,999v1=0 (1)

Substitute equation (1) in (2).

1001vo+99,999,999[(10vs+vo)12]=083,333,332.5vs+8,334,334.25vo=0

Simplify the equation as follows.

vovs=10

Substitute 1 mV for vs.

vo1mV=10vo=10mV

From Figure 1, consider the expression for the output voltage vo.

vo=Avd

Substitute 100,000 for A.

vo=(100,000)vdvd=vo100,000

Substitute 10mV for vo.

vd=10mV100,000=10×103V105=100×109V=100nV

Conclusion:

Thus, the differential voltage vd is 100nV_ and the output voltage vo is 10mV_.

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Chapter 5 Solutions

Connect 2 Semester Access Card for Fundamentals of Electric Circuits

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