Deck 11: Power Amplifiers
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Deck 11: Power Amplifiers
1
A class A amplifier has an 8 Vpp output that is being applied to a 200 Ω load. What is the total ac load power?
A) 320 mW
B) 640 mW
C) 40 mW
D) 80 mW
A) 320 mW
B) 640 mW
C) 40 mW
D) 80 mW
40 mW
2

The circuit in Figure has the following values: VCC = 12 V, R1 = 48 kΩ, R2 = 15 kΩ, RC = 4.7 kΩ, RE = 2.2 kΩ, RL = 12 kΩ, and hfe = hFE = 200 How much power is the circuit drawing from the dc power source?
A) 2.3 mW
B) 11.7 mW
C) 14.1 mW
D) 457 μW
14.1 mW
3
An amplifier has values of 2ICQrC = 4.44 V and 2VCEQ = 7 V. If the ac output voltage exceeds 7 V, the amplifier will experience
A) saturation clipping.
B) cutoff clipping.
C) both saturation and cutoff clipping.
D) none of the above.
A) saturation clipping.
B) cutoff clipping.
C) both saturation and cutoff clipping.
D) none of the above.
both saturation and cutoff clipping.
4
An amplifier has values of 2ICQrC = 8.6 V and 2VCEQ = 12 V. If the ac output voltage exceeds 8.6 Vpp, the amplifier will experience
A) saturation clipping.
B) cutoff clipping.
C) both saturation and cutoff clipping.
D) None of the above.
A) saturation clipping.
B) cutoff clipping.
C) both saturation and cutoff clipping.
D) None of the above.
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5

The circuit in Figure has the following values: VCC = 12 V, R1 = 48 kΩ, R2 = 15 kΩ, RC = 4.7 kΩ, RE = 2.2 kΩ, RL = 12 kΩ, and hfe = hFE = 200 What is the ac saturation current for this circuit?
A) 981 μA
B) 1.74 mA
C) 2.53 mA
D) It cannot be determined with the information given.
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6
A transformer-coupled class A amplifier with a transformer turns ratio of 4:1 and a value of RL = 25 Ω draws 220 mW from its dc power supply. What is the efficiency of the circuit?
A) 20.5%
B) 27.3%
C) 40.9%
D) 73%
A) 20.5%
B) 27.3%
C) 40.9%
D) 73%
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7

The circuit in Figure has the following values: VCC = 12 V, R1 = 48 kΩ, R2 = 15 kΩ, RC = 4.7 kΩ, RE = 2.2 kΩ, RL = 12 kΩ, and hfe = hFE = 200 What is the ac cut off voltage for this circuit?
A) 6 V
B) 8.5 V
C) 12 V
D) It cannot be determined with the information given.
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8

A circuit like the one in Figure has values: I1 = 1 mA, ICQ = 50mA, VCC = 15 V, PP = 9.3 V, and RL = 680 Ω
What is the maximum efficiency of the amplifier?
A) 16.62%
B) 15.9%
C) 20.8%
D) 25%
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9
Class C amplifiers usually contain
A) two transistors.
B) an LC tank circuit in the BJT collector circuit.
C) a single BJT that conducts through 360° of the ac input cycle.
D) a single BJT that conducts through 270° of the ac input cycle.
A) two transistors.
B) an LC tank circuit in the BJT collector circuit.
C) a single BJT that conducts through 360° of the ac input cycle.
D) a single BJT that conducts through 270° of the ac input cycle.
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10

A circuit like the one in Figure has values: VCC = 10 V, I1 = 450 μA, and ICQ = 10.55 mA How much power is the circuit drawing from the dc power supply?
A) 4.5 mW
B) 1.21 mW
C) 110 mW
D) Cannot be determined from the information given.
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11
Which of the following is true?
A) Efficiency is the ratio of dc input power to ac output power.
B) The power that an amplifier delivers to its equals the difference between its dc input power and the power that the circuit dissipates.
C) Power amplifiers are typically used to drive high impedance loads.
D) None of the above statements are true.
A) Efficiency is the ratio of dc input power to ac output power.
B) The power that an amplifier delivers to its equals the difference between its dc input power and the power that the circuit dissipates.
C) Power amplifiers are typically used to drive high impedance loads.
D) None of the above statements are true.
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12

The circuit in Figure has the following values: VCC = 12 V, R1 = 48 kΩ, R2 = 15 kΩ, RC = 4.7 kΩ, RE = 2.2 kΩ, RL = 12 kΩ, and hfe = hFE = 200.
What is the compliance of this circuit?
A) 6.6 V
B) 10.5 V
C) 12 V
D) It cannot be determined with the information given.
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13
The transformer-coupled class A amplifier has the lowest efficiency rating of all the class A amplifiers.

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14
The maximum theoretical efficiency of an RC-coupled class A amplifier is
A) 25%.
B) 50%.
C) 78.5%.
D) 99%.
A) 25%.
B) 50%.
C) 78.5%.
D) 99%.
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15
Class B amplifiers usually contain
A) two transistors.
B) an LC tank circuit in the BJT collector circuit.
C) a single BJT that conducts through 360° of the ac input cycle.
D) a single BJT that conducts through 270° of the ac input cycle.
A) two transistors.
B) an LC tank circuit in the BJT collector circuit.
C) a single BJT that conducts through 360° of the ac input cycle.
D) a single BJT that conducts through 270° of the ac input cycle.
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16
The maximum value of VCE in a transformer-coupled class A amplifier will be greater than VCC. This is caused by
A) the input biasing network.
B) the efficiency characteristics of the amplifier.
C) the counter emf produced by the transformer primary.
D) the natural relationship between VCE and VCC.
A) the input biasing network.
B) the efficiency characteristics of the amplifier.
C) the counter emf produced by the transformer primary.
D) the natural relationship between VCE and VCC.
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17
A transformer-coupled class A amplifier has a transformer with a 3:1 turns ratio and values of RL = 100 Ω, VCEQ = 6 V, and ICQ = 8 mA. What is the value of vceoff) for the circuit?
A) 12 V
B) 6 V
C) 13.2 V
D) Cannot be determined from the information given.
A) 12 V
B) 6 V
C) 13.2 V
D) Cannot be determined from the information given.
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18

The circuit in Figure has the following values: VCC = 12 V, R1 = 48 kΩ, R2 = 15 kΩ, RC = 4.7 kΩ, RE = 2.2 kΩ, RL = 12 kΩ, and hfe = hFE = 200 What is the approximate value of power dissipation for the transistor?
A) 5.1 mW
B) 7.4 mW
C) 12 mW
D) Cannot be determined without input signal
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19
A transformer-coupled class A amplifier has a transformer turns ratio of 4:1 and a load resistance of 25 Ω. The peak-to-peak value of VCE is 12 V. What is the approximate load power for the circuit?
A) 45 mW
B) 160 mW
C) 90 mW
D) 60 mW
A) 45 mW
B) 160 mW
C) 90 mW
D) 60 mW
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20
A class A amplifier has a compliance of 6 Vpp and a load resistance of 120 Ω. What is the maximum theoretical load power for the circuit?
A) 37.5 mW
B) 300 mW
C) 50 mW
D) 100 mW
A) 37.5 mW
B) 300 mW
C) 50 mW
D) 100 mW
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21
A given transistor has a power derating factor of 1.8mW/°C and a power dissipation rating of 400 mW at 25°C. How much power can the device dissipate at 120°C?
A) 184 mW
B) 216 mW
C) 229 mW
D) 355 mW
A) 184 mW
B) 216 mW
C) 229 mW
D) 355 mW
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22
A class AB amplifier has values of VCC = 12 V and RL = 150 Ω. What is the maximum theoretical ac load power for the circuit?
A) 120 mW
B) 240 mW
C) 960 mW
D) Cannot be determined from the information given.
A) 120 mW
B) 240 mW
C) 960 mW
D) Cannot be determined from the information given.
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23
A class B amplifier has a maximum theoretical efficiency of
A) 25%.
B) 78.5%.
C) 50%.
D) 99%.
A) 25%.
B) 78.5%.
C) 50%.
D) 99%.
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24
When properly used, diode bias will prevent
A) crossover distortion and thermal runaway.
B) crossover distortion and saturation clipping.
C) nonlinear distortion and thermal runaway.
D) nonlinear distortion and saturation clipping.
A) crossover distortion and thermal runaway.
B) crossover distortion and saturation clipping.
C) nonlinear distortion and thermal runaway.
D) nonlinear distortion and saturation clipping.
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25
A class AB amplifier has a value of VCC = 15 Vdc. The value of VCEoff) for either transistor is approximately equal to
A) 0.7 V.
B) 5 V.
C) 7.5 V.
D) 15 V.
A) 0.7 V.
B) 5 V.
C) 7.5 V.
D) 15 V.
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26
The circuit in Figure 11-2 has the following values: VCC = 16 V, R1 = R2 = 470 Ω, RL = 8 Ω, and hfe = hFE = 200
Determine the values of ICsat) and VCEoff) for the transistors.
A) 1 A, 8 V
B) 2 A, 8 V
C) 1 A, 16 V
D) 2 A, 16 V
Chapter 11 Power Amplifiers Answer Key
Determine the values of ICsat) and VCEoff) for the transistors.
A) 1 A, 8 V
B) 2 A, 8 V
C) 1 A, 16 V
D) 2 A, 16 V
Chapter 11 Power Amplifiers Answer Key
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27
Complementary-symmetry amplifiers are generally preferred over standard push-pull amplifiers because
A) they use complementary transistors.
B) they do not require the use of an output transformer.
C) they have high efficiency ratings.
D) they can drive lower impedance loads.
A) they use complementary transistors.
B) they do not require the use of an output transformer.
C) they have high efficiency ratings.
D) they can drive lower impedance loads.
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28
When troubleshooting a class AB amplifier, you determine that one of the two transistors is faulty. At this point, you should
A) test each of the transistors with an ohmmeter.
B) simply replace both transistors.
C) look for physical signs of damage to the two transistors.
D) test each transistor with a transistor checker.
A) test each of the transistors with an ohmmeter.
B) simply replace both transistors.
C) look for physical signs of damage to the two transistors.
D) test each transistor with a transistor checker.
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29
Crossover distortion in class B amplifiers is prevented by
A) biasing the transistors deeply into cutoff.
B) biasing the transistors slightly above cutoff.
C) using complementary-symmetry transistors.
D) increasing the load resistance.
A) biasing the transistors deeply into cutoff.
B) biasing the transistors slightly above cutoff.
C) using complementary-symmetry transistors.
D) increasing the load resistance.
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30
The circuit in Figure 11-2 is an example of a amplifier.
A) Class A
B) Class B
C) Class C
D) Class AB
A) Class A
B) Class B
C) Class C
D) Class AB
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31
Heat sink compound may be used to provide both a thermal connection and a mechanical connection.
Figure 11-2

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