Deck 16: Regulators, Filters, and Op-Amps
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Deck 16: Regulators, Filters, and Op-Amps
1
Op-amp comparators are often used as zero-level detectors.
True
2
An op-amp summing amplifier has no limitations on the number of inputs it can handle.
True
3

If the two input voltages are 9.2 V and 0.7 V in Figure 19-2(a),W hat is the output voltage?
A)-8.5V
B)-9.9V
C)8.5V
D)9.9V
-9.9V
4

-If VIN equals 8 V in Figure 19-1, VOUT equals_______
A) -1 V
B) 1 V
C) 13 V
D) -13 V
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5
A series-pass transistor is used in a voltage regulator.
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6

-If VIN equals 4 V in Figure 19-1, VOUT equals__________
A) -13 V
B) 13 V
C) -1 V
D) 1 V
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7

If the inputs are 8.4 V and 1.2 V in Figure 19-2(a), the output voltage equals ________.
A)9.6V
B)-9.6V
C)10.08V
D)7.2V
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8

What change causes the circuit in Figure 19-2(b) to output the average of the three input voltages?
A) Change the input resistors to 3.3

B) Change the feedback resistor to 3.3

C) Change to a different type of op-amp.
D) Change the feedback resistor to 10

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9

If the inputs are -7.1 V and 12 V in Figure 19-2(a),W hat is the output voltage?
A)4.9V
B)-4.9V
C)19.1V
D)-19.1V
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10
Butter worth filters are characterized by a linear response in the pass band.
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11

-If VIN=-3 V in Figure 19-1, VOUT equals________
A) -13 V
B) 13 V
C) -1 V
D) 1 V
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12
Hartley and Colpitts oscillators can use op-amps.
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13
The terminals on a three-terminal regulator are input voltage, output voltage and ground.
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14

-If VIN=8.3 V in Figure 19-1, VOUT e quals________
A) 3.3 V
B) -3.3 V
C) -13 V
D) 13 V
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15

If the inputs are 4.1 V, -0.7 V and 3.1 V in Figure 19-2(b), the output voltage equals ________.
A)-6.5V
B)13V
C)-13V
D)6.5V
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16

-If VIN=4.2 V in Figure 19-1, VOUT equals__________
A) -0.8 V
B) 0.8 V
C) 13 V
D) -13 V
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17
An op-amp integrator Will produce a linear increasing output voltage for a constant negative input voltage until cutoff is reached.
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18
An op-amp comparator can be used to determineW hen an input voltage crosses a certain reference Voltage.
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19

-If VIN=-2 V in Figure 19-1, VOUT equals______
A) 13 V
B) -3 V
C) 3 V
D) -13 V
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20
A second-order filter rolls-off at 40 dB/decade.
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21

-The circuit in Figure 19-4 is known as the____ and it rolls off at a rate of________
A) Butterworth high-pass filter, -40 dB /decade
B) Butterworth low-pass filter, -40 dB/decade
C) Butterworth low-pass filter, -20 dB/decade
D) Butterworth high-pass filter, -20 dB/decade
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22

The curve in Figure 19-5 is from a ________ and its lower cutoff frequency equals ________.
A)two-pole high-pass filter, 1500 Hz
B)band-reject filter, 450 kHz
C)band-pass filter, 822 Hz
D)band-pass filter, 450 Hz
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23

-If R=1.2 and C=0.005 in Figure 19-3, the equals________
A) 65 Hz
B) 650 Hz
C) 26.5 kHz
D) 2.65 kHz
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24

In Figure 19-3,W hatW ill change the circuit into a high-pass filter?
A)increasing theV
Alue of the resistor
B)switching the positions of the resistor and capacitor
C)decreasing theV
Alue of the capacitor
D)placing the capacitor in the feedback loop
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25

-If R=47 and C=0.02 in Figure 19-3, equals______
A) 5.19 Hz
B) 16.9 Hz
C) 169 Hz
D) 51.9 Hz
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26

-If R=1.5 and C=256 pF in Figure 19-3 , the fCO equals_______
A) 41.4 kHz
B) 25.7 Hz
C) 257 Hz
D) 414 kHz
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27

-If R=56 and C=0.05 in Figure 19-3, equals_____
A) 568 Mz
B) 56.8 Hz
C) 3.0 Hz
D) 300 Hz
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28

If 22 V in the pass-band is input to the circuit in Figure 19-4,W hat is the output voltage at fCO?
A)8.92V
B)7.75V
C)31.1V
D)15.6V
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29

If the inputs are 1.2 V, -0.5 V and 2.4 V in Figure 19-2(b),W hat is the output voltage?
A)13V
B)-6.2V
C)6.2V
D)-4.1V
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30
A three-terminal voltage regulator ________.
A)comes in a variety of Voltage and current ratings
B)is available in both positive and negative Voltage ratings
C)is very durable
D)all of the above
A)comes in a variety of Voltage and current ratings
B)is available in both positive and negative Voltage ratings
C)is very durable
D)all of the above
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31

-If VIN equals 22 V in Figure 19-3, VOUT at the fCO equals______
A) 31.1 V
B) 15.64 V
C) 0
D) 7.79 V
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32

-If VIN=70 VP in Figure 19-3, the output voltage at fCO equals______
A) 13 VP
B) 0 VP
C) 49.5 VP
D) 44.2 VP
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33

If VOUT equals 12 V at 822 Hz in Figure 19-5, the output voltage equals ________ at 450 Hz.
A)4.24V
B)1.06V
C)8.49V
D)2.12V
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34

If 22 V in the pass-band is input to the circuit in Figure 19-4,W hat is the output voltage at a frequency that is 1 decade higher?
A)31.1V
B)22V
C)7.75V
D)15.5V
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35

In Figure 19-4, if the frequency is decreased from the pass band to 1 decade below fCO, the output voltage drops to ________.
A)-40 dB
B)-6 dB
C)-3 dB
D)-20 dB
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36

-If R=22 and C=0.05 in Figure 19-3, fCO equals________
A) 145 Hz
B) 4.8 Hz
C) 48 Hz
D) 1.45 kHz
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37

-The prime characteristic of the filter in Figure 19-4 is ________.
A)it only works in a high-pass configuration
B)the filter roll-off below the corner frequency is 40 dB/decade
C)it has the largest response of any filter type
D)nothing special
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38

The frequency response curve in Figure 19-5 represents the output from the ________, and the bandwidth is ________.
A)band-pass filter, 1050 Hz
B)band-pass filter, 678 Hz
C)band-reject filter, 1050 kHz
D)two-pole high-pass filter, 1050 Hz
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39

If the output voltage is 6 V at 1500 Hz in Figure 19-5,W hat is the output voltage at 822 Hz?
A)4.24V
B)1.06V
C)8.49V
D)2.12V
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40

If the output voltage is 27.4 V at 822 Hz in Figure 19-5,W hat is the output voltage at 1.5 kHz?
A)27.4V
B)13.7V
C)6.85V
D)19.4V
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41
A series-pass voltage regulator has ________.
A)a load
B)a shunt regulator
C)an error amplifier
D)all of these
A)a load
B)a shunt regulator
C)an error amplifier
D)all of these
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42
A series and a shunt regulator are differentiated by the circuit placement of a:
A)series resistor versus parallel resistor.
B)series transistor versus parallel transistor.
C)series reference Voltage versus parallel reference Voltage.
D)none of these.
A)series resistor versus parallel resistor.
B)series transistor versus parallel transistor.
C)series reference Voltage versus parallel reference Voltage.
D)none of these.
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43
In a series voltage regulator, the four circuit blocks are:
A)error detector, referenceVoltage, series regulator, sampling circuit.
B)control element, referenceVoltage, error detector, sampling circuit.
C)referenceVoltage, series load, referenceVoltage, current limiter.
D)control element, referenceVoltage, error detector, current limiter.
A)error detector, referenceVoltage, series regulator, sampling circuit.
B)control element, referenceVoltage, error detector, sampling circuit.
C)referenceVoltage, series load, referenceVoltage, current limiter.
D)control element, referenceVoltage, error detector, current limiter.
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44
At the cutoff frequency of a filter circuit, the output voltage is:
A)-20 dB.
B)-40 dB.
C)-3 dB.
D)-10 dB.
A)-20 dB.
B)-40 dB.
C)-3 dB.
D)-10 dB.
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45
Short-circuit or overload protection is an integral part of
A) most JFETs
B) most three-terminal regulators
C) most op-amps
D) most TRIACs
A) most JFETs
B) most three-terminal regulators
C) most op-amps
D) most TRIACs
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46
The output of an op-amp differentiator depends on the values of ________ and ________.
A)CIN, CF
B)RIN, RF
C)RIN, CF
D)CIN, RF
A)CIN, CF
B)RIN, RF
C)RIN, CF
D)CIN, RF
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47
In an inverting input op-amp, differentiator suppliedW ith a ramp or triangularW ave, the output is a:
A)opposite phase ramp.
B)same phase square Wave.
C)sine Wave.
D)opposite phase square Wave.
A)opposite phase ramp.
B)same phase square Wave.
C)sine Wave.
D)opposite phase square Wave.
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48
The purpose of a comparator is to ________.
A)detect the occurrence of a changing input voltage
B)produce a change in output when an input voltage equals a reference voltage
C)maintain a constant output when the dc inputVoltage changes
D)amplify an input voltage
A)detect the occurrence of a changing input voltage
B)produce a change in output when an input voltage equals a reference voltage
C)maintain a constant output when the dc inputVoltage changes
D)amplify an input voltage
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49
Using op-amps in a triangularW ave oscillator results in a:
A)triangular Wave output.
B)function generator output.
C)square Wave output.
D)all of these.
A)triangular Wave output.
B)function generator output.
C)square Wave output.
D)all of these.
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50
If all four input resistors to a summing amplifier are 2.2 and the feedback resistor is 2.2 . then the gain equals________
A) 4
B) 2.2
C) 1
D) unknown
A) 4
B) 2.2
C) 1
D) unknown
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51
In a scaling adder, the ________.
A)input resistors have values depending on the assigned weight of each input
B)input resistors are all different values
C)input resistors are all the same value
D)ratio RF/RIN must be the same for each input
A)input resistors have values depending on the assigned weight of each input
B)input resistors are all different values
C)input resistors are all the same value
D)ratio RF/RIN must be the same for each input
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52
In a filter circuit, the terminology single pole means:
A)one fixed contact.
B)one single RC circuit.
C)one movable contact.
D)two cascaded RC circuits.
A)one fixed contact.
B)one single RC circuit.
C)one movable contact.
D)two cascaded RC circuits.
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53
The basic op-amp squareW ave oscillator is actually a:
A)Wein-bridge oscillator.
B)resistor-capacitor (RC)time constant oscillator.
C)sine Wave oscillator.
D)all of these.
A)Wein-bridge oscillator.
B)resistor-capacitor (RC)time constant oscillator.
C)sine Wave oscillator.
D)all of these.
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54
The input frequency of a single-pole, low-pass active filter increases from 1.5 kHz to 150 kHz. If the critical frequency is 1.5 kHz, the gain decreases by ________.
A)60 dB
B)3 dB
C)40 dB
D)20 dB
A)60 dB
B)3 dB
C)40 dB
D)20 dB
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55
If an inverting amplifier has a capacitor in the feedback loop, the circuit is known as the ________. When a square wave input is applied, the output is a ________wave.
A)integrator, square
B)open loop, triangle
C)differentiator, triangle
D)integrator, triangle
A)integrator, square
B)open loop, triangle
C)differentiator, triangle
D)integrator, triangle
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56
The ideal amplifier has infinite gain, infinite input impedance, and zero output impedance.
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57
In a Wein-bridge op-amp oscillator, the output is a repetitive:
A)square Wave.
B)sine Wave.
C)triangular Wave.
D)all of these.
A)square Wave.
B)sine Wave.
C)triangular Wave.
D)all of these.
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58
In a voltage-controlled oscillator (VCO), the output signal frequency is dependent on:
A)the value of a resistor-capacitor combination.
B)the value of a resistor.
C)the value of an applied Voltage.
D)the value of a capacitor.
A)the value of a resistor-capacitor combination.
B)the value of a resistor.
C)the value of an applied Voltage.
D)the value of a capacitor.
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59
In an inverting input op-amp integrator suppliedW ith a squareW ave pulse or a step, the output is a:
A)opposite phase ramp.
B)same phase ramp.
C)opposite phase square Wave.
D)sine Wave.
A)opposite phase ramp.
B)same phase ramp.
C)opposite phase square Wave.
D)sine Wave.
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60
If all four input resistors to a summing amplifier are 2.2 , the feedback resistor is 2.2 and all four input voltages are -2 V , the output voltage equals_______
A) 2 V
B) 2.2 V
C) 8 V
D) 10 V
A) 2 V
B) 2.2 V
C) 8 V
D) 10 V
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61
The open-loop voltage gain of an op-amp is very large.
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62

If


A) -38.3
B) -1
C) -39.3
D) infinite
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63

Figure
-VRF equals____ in Figure 18-1(c).
A) VRI
B) VOUT
C) VIN
D) VCC
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64
The slew rate of an op-amp is determined by the frequency response of the internal amplifiers.
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65
Which one of these op-amp terminals provides an output that is in-phase with the input?
A) offset null
B) non-inverting
C) VCC
D) inverting
A) offset null
B) non-inverting
C) VCC
D) inverting
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66

What is the voltage gain of the amplifier in Figure 18-1(a)?
A)1000
B)1
C)100,000
D)10
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67

Identify the open-loop amplifier in Figure 18-1.
A)Figure 18-1(a)
B)Figure 18-1(b)
C)Figure 18-1(c)
D)none of these
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68
A voltage-follower op-amp has a voltage gain greater than one.
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69

Figure
-If and in Figure 18-1(b), the voltage gain equals________
A) 6
B) 5
C) 50
D) 51
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70

Figure
-If and in Figure 18-1(b), the voltage gain equals_________
A) 1.01
B) 470
C) 94
D) 95
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71
An op-ampʹs input offset voltage, VOS, is the differential input voltage required to make the differential output voltage zero.
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72
An op-ampW ith a low CMRR easily rejects noise signals that appear at both inputs.
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73
Differential amplifiers provide high voltage gain and low common-mode rejection.
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74
Practical op-amps come reasonably close to the requirements for an ideal amplifier.
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75
An op-ampʹs CMRR is usually expressed in dB.
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76

The circuit in Figure 18-1(c)is known as the ________.
A)open-loop amplifier
B)voltage follower amplifier
C)non-inverting amplifier
D)inverting amplifier
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77

Figure
-If and AV=120 in Figure 18-1( c), Ri equals___________
A) 1
B) 10
C) 120
D) 100
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78
A typical value of input bias current for an op-amp is around 80 nA.
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79

Identify the non-inverting amplifier in Figure 18-1.
A)Figure 18-1(a)
B)Figure 18-1(b)
C)Both A and B
D)Neither of these
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80

Which of the amplifiers in Figure 18-1W ould be used as a buffer amplifier?
A)Figure 18-1(a)
B)Figure 18-1(b)
C)Figure 18-1(c)
D)none of these
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