Microelectronics: Circuit Analysis and Design
Microelectronics: Circuit Analysis and Design
4th Edition
ISBN: 9780073380643
Author: Donald A. Neamen
Publisher: McGraw-Hill Companies, The
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Textbook Question
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Chapter 2, Problem 2.1EP

Repeat Example 2.1 if the input voltage is υ s ( t ) = 12 sin ω t ( V ) , V B = 4.5 V , and R = 250 Ω . (Ans. i D ( peak ) = 27.6 mA , υ R ( max ) = 16.5 V , 36.0%)

Expert Solution & Answer
Check Mark
To determine

The peak diode current, the maximum reverse-biased voltage of the diode and the fraction of the cycle over which diode conducts for a half-wave battery charging circuit.

Answer to Problem 2.1EP

The peak diode current is id(peak)=27.6 mA

Maximum reversed biased voltage of the diode is VR(max)=16.5 V

Fraction of the cycle diode is conducting is 36.02%

Explanation of Solution

Given Information:

The given values are

  VB=4.5 V

  vs(t)=12sin(ωt) V

  R=250 Ω

  Vγ=0.6 V

Calculation:

Apply Kirchhoff’s voltage law,

  vs(peak)id(peak)RVBVγ=0

Substituting the given values,

  id(peak)=124.50.6250 A=0.0276=27.6×103=27.6mA

Maximum reversed biased voltage of the diode,

  VR(max)=vs(peak)+VB=(12+4.5) V=16.5V

Consider the time at which diode start conducting as (t1) . When the diode is forward biasedthen

  ωt1=sin1( V B + V γ v s(peak) )=sin1( 5.1 12)=25.15°

By symmetry,

  ωt2=180°25.15°=154.85°

Fraction of the cycle diode is conducting can be calculated as,

  ωt2ωt1360°×100%=154.85°25.15°360°×100%=129.7°360°×100%=0.3602×100%=36.02%

Conclusion:

Therefore, the peak diode current is id(peak)=27.6 mA , maximum reversed biased voltage of the diode is VR(max)=16.5 V and the fraction of the cycle diode is conducting is 36.02% .

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Chapter 2 Solutions

Microelectronics: Circuit Analysis and Design

Ch. 2 - Consider the circuit shown in Figure 2.19. Let...Ch. 2 - Suppose the currentlimiting resistor in Example...Ch. 2 - Suppose the power supply voltage in the circuit...Ch. 2 - Design a parallelbased clipper that will yield the...Ch. 2 - Sketch the steadystate output voltage for the...Ch. 2 - Consider the circuit in Figure 2.23(a). Let R1=5k...Ch. 2 - Determine the steadystate output voltage O for the...Ch. 2 - Design a parallelbased clipper circuit that will...Ch. 2 - Consider the circuit shown in Figure 2.38, in...Ch. 2 - Consider the circuit shown in Figure 2.39. The...Ch. 2 - Repeat Example 2.11 for the case when R1=8k ,...Ch. 2 - The cutin voltage of each diode in the circuit...Ch. 2 - Prob. 2.12TYUCh. 2 - Consider the OR logic circuit shown in Figure...Ch. 2 - Consider the AND logic circuit shown in Figure...Ch. 2 - (a) Photons with an energy of hv=2eV are incident...Ch. 2 - Determine the value of resistance R required to...Ch. 2 - What characteristic of a diode is used in the...Ch. 2 - Prob. 2RQCh. 2 - Describe a simple fullwave diode rectifier circuit...Ch. 2 - Prob. 4RQCh. 2 - Prob. 5RQCh. 2 - Describe a simple Zener diode voltage reference...Ch. 2 - What effect does the Zener diode resistance have...Ch. 2 - What are the general characteristics of diode...Ch. 2 - Describe a simple diode clipper circuit that...Ch. 2 - Prob. 10RQCh. 2 - What one circuit element, besides a diode, is...Ch. 2 - Prob. 12RQCh. 2 - Describe a diode OR logic circuit. Compare a logic...Ch. 2 - Describe a diode AND logic circuit. Compare a...Ch. 2 - Describe a simple circuit that can be used to turn...Ch. 2 - Consider the circuit shown in Figure P2.1. Let...Ch. 2 - For the circuit shown in Figure P2.1, show that...Ch. 2 - A halfwave rectifier such as shown in Figure...Ch. 2 - Consider the battery charging circuit shown in...Ch. 2 - Figure P2.5 shows a simple fullwave battery...Ch. 2 - The fullwave rectifier circuit shown in Figure...Ch. 2 - The input signal voltage to the fullwave rectifier...Ch. 2 - The output resistance of the fullwave rectifier in...Ch. 2 - Repeat Problem 2.8 for the halfwave rectifier in...Ch. 2 - Consider the halfwave rectifier circuit shown in...Ch. 2 - The parameters of the halfwave rectifier circuit...Ch. 2 - The fullwave rectifier circuit shown in Figure...Ch. 2 - Consider the fullwave rectifier circuit in Figure...Ch. 2 - The circuit in Figure P2.14 is a complementary...Ch. 2 - Prob. 2.15PCh. 2 - A fullwave rectifier is to be designed using the...Ch. 2 - Prob. 2.17PCh. 2 - (a) Sketch o versus time for the circuit in Figure...Ch. 2 - Consider the circuit shown in Figure P2.19. 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