1Which material is commonly used to manufacture semiconductor devices?
Introduction to semiconductor devices
Easy
A.Aluminum
B.Silicon
C.Copper
D.Iron
Correct Answer: Silicon
Explanation:
Silicon is widely used because its electrical conductivity can be controlled by doping.
Incorrect! Try again.
2What process adds impurities to a pure semiconductor to change its conductivity?
Introduction to semiconductor devices
Easy
A.Magnetization
B.Doping
C.Rectification
D.Insulation
Correct Answer: Doping
Explanation:
Doping introduces controlled impurities into a semiconductor to increase its conductivity.
Incorrect! Try again.
3How is a PN junction diode connected for forward bias?
Working and operation of PN junction diode
Easy
A.P-side to positive and N-side to negative
B.Both sides to the negative terminal
C.Both sides to the positive terminal
D.P-side to negative and N-side to positive
Correct Answer: P-side to positive and N-side to negative
Explanation:
Forward bias connects the P-side to the positive terminal and the N-side to the negative terminal.
Incorrect! Try again.
4What happens to the depletion region of a PN junction diode during forward bias?
Working and operation of PN junction diode
Easy
A.It remains unchanged
B.It becomes narrower
C.It becomes wider
D.It becomes an insulator
Correct Answer: It becomes narrower
Explanation:
Forward bias reduces the barrier potential and makes the depletion region narrower.
Incorrect! Try again.
5What is the approximate forward voltage drop of a conducting silicon diode?
Characteristics of PN junction diode
Easy
A.
B.
C.
D.
Correct Answer:
Explanation:
A silicon diode typically has a forward voltage drop of about .
Incorrect! Try again.
6In which bias condition does a PN junction diode normally carry only a very small leakage current?
Characteristics of PN junction diode
Easy
A.Breakdown bias
B.Forward bias
C.Reverse bias
D.Zero bias
Correct Answer: Reverse bias
Explanation:
Before breakdown, a reverse-biased diode carries only a small reverse leakage current.
Incorrect! Try again.
7In which bias condition is a Zener diode normally operated for voltage regulation?
Working and operation of Zener diode
Easy
A.Alternating bias
B.Forward bias
C.Zero bias
D.Reverse bias
Correct Answer: Reverse bias
Explanation:
A Zener diode operates in its reverse-breakdown region to maintain a nearly constant voltage.
Incorrect! Try again.
8What happens to the voltage across a Zener diode in its breakdown region?
Characteristics of Zener diode
Easy
A.It falls steadily to zero
B.It remains nearly constant
C.It changes polarity repeatedly
D.It rises without limit
Correct Answer: It remains nearly constant
Explanation:
In the breakdown region, the Zener voltage stays nearly constant over a useful range of current.
Incorrect! Try again.
9Which logic gate produces a HIGH output only when all its inputs are HIGH?
Logic gates
Easy
A.NOT gate
B.AND gate
C.XOR gate
D.OR gate
Correct Answer: AND gate
Explanation:
An AND gate gives a HIGH output only when every input is HIGH.
Incorrect! Try again.
10Which logic gate reverses the logic state of a single input?
Logic gates
Easy
A.AND gate
B.NOT gate
C.OR gate
D.NAND gate
Correct Answer: NOT gate
Explanation:
A NOT gate produces the complement of its input, changing HIGH to LOW and LOW to HIGH.
Incorrect! Try again.
11A reverse-biased varactor diode mainly behaves as which circuit component?
Working and operation of Varactor diode
Easy
A.Step-up transformer
B.Variable capacitor
C.Fixed resistor
D.Current source
Correct Answer: Variable capacitor
Explanation:
The junction capacitance of a varactor diode changes with the applied reverse voltage.
Incorrect! Try again.
12A good diode tested with a multimeter should show which behavior?
Testing of diode and BJT
Easy
A.Low resistance forward and high resistance reverse
B.High resistance forward and low resistance reverse
C.High resistance in both directions
D.Low resistance in both directions
Correct Answer: Low resistance forward and high resistance reverse
Explanation:
A good diode conducts in the forward direction and blocks current in the reverse direction.
Incorrect! Try again.
13When tested as diode junctions, which two junctions are present in a BJT?
Testing of diode and BJT
Easy
A.Anode-cathode and gate-cathode
B.Base-emitter and base-collector
C.Gate-source and gate-drain
D.Source-body and drain-body
Correct Answer: Base-emitter and base-collector
Explanation:
A BJT contains base-emitter and base-collector PN junctions that can be checked using a multimeter.
Incorrect! Try again.
14How many half-cycles of an AC input are used by a half-wave rectifier?
Half-wave rectifier
Easy
A.Both half-cycles
B.One half-cycle
C.Four half-cycles
D.Three half-cycles
Correct Answer: One half-cycle
Explanation:
A half-wave rectifier passes one half-cycle of the AC waveform and blocks the other.
Incorrect! Try again.
15What is the ripple frequency of a full-wave rectifier supplied by an AC frequency of ?
Full-wave rectifier
Easy
A.
B.
C.
D.
Correct Answer:
Explanation:
A full-wave rectifier produces one output pulse during each AC half-cycle, so its ripple frequency is .
Incorrect! Try again.
16How many diodes are normally used in a single-phase full-wave bridge rectifier?
Full-wave bridge rectifier
Easy
A.Six diodes
B.Two diodes
C.Four diodes
D.Three diodes
Correct Answer: Four diodes
Explanation:
A standard single-phase bridge rectifier uses four diodes arranged in a bridge circuit.
Incorrect! Try again.
17What are the three main terminals of a MOSFET?
MOSFET representation and characteristics
Easy
A.Input, output, and ground
B.Anode, cathode, and gate
C.Gate, drain, and source
D.Base, collector, and emitter
Correct Answer: Gate, drain, and source
Explanation:
The three main MOSFET terminals are the gate, drain, and source.
Incorrect! Try again.
18Which is a common application of an ordinary PN junction diode?
Applications of diodes
Easy
A.Mechanical amplification
B.Magnetic field generation
C.Sound wave detection
D.AC-to-DC rectification
Correct Answer: AC-to-DC rectification
Explanation:
A diode permits current mainly in one direction, making it useful for AC-to-DC rectification.
Incorrect! Try again.
19Which is a common application of a transistor?
Applications of transistors
Easy
A.Light reflection
B.Thermal insulation
C.Mechanical rotation
D.Signal amplification
Correct Answer: Signal amplification
Explanation:
Transistors are commonly used to amplify electrical signals and act as electronic switches.
Incorrect! Try again.
20What is the main function of a rectifier in a DC power supply?
Applications of rectifiers
Easy
A.Store electrical charge
B.Increase the supply frequency
C.Convert DC into steady AC
D.Convert AC into pulsating DC
Correct Answer: Convert AC into pulsating DC
Explanation:
A rectifier changes an AC input into a unidirectional, pulsating DC output.
Incorrect! Try again.
21An intrinsic semiconductor is heated while the applied voltage remains constant. What happens to its current?
Introduction to semiconductor devices
Medium
A.It decreases because carrier mobility becomes zero
B.It increases because more charge carriers are generated
C.It becomes zero because covalent bonds become stronger
D.It remains constant because the material is intrinsic
Correct Answer: It increases because more charge carriers are generated
Explanation:
Heating generates additional electron-hole pairs. The resulting increase in carrier concentration raises conductivity and current.
Incorrect! Try again.
22A silicon diode and a resistor are connected in series across a supply. If the diode is forward biased, what is the approximate circuit current?
Working and operation of PN junction diode
Medium
A.
B.
C.
D.
Correct Answer:
Explanation:
Using a silicon diode drop of , the current is .
Incorrect! Try again.
23A diode carries at room temperature. Using with , what is its small-signal resistance?
Characteristics of PN junction diode
Medium
A.
B.
C.
D.
Correct Answer:
Explanation:
The small-signal resistance is .
Incorrect! Try again.
24A Zener diode is used as a shunt regulator with a supply and a series resistor. With no load connected, what is the Zener current?
Working and operation of Zener diode
Medium
A.
B.
C.
D.
Correct Answer:
Explanation:
The resistor has across it, so .
Incorrect! Try again.
25A Zener diode voltage changes from to when its current changes from to . What is its dynamic resistance?
Characteristics of Zener diode
Medium
A.
B.
C.
D.
Correct Answer:
Explanation:
Dynamic resistance is .
Incorrect! Try again.
26Which single logic gate produces the same output as the expression ?
Logic gates
Medium
A.AND gate
B.NOR gate
C.XOR gate
D.NAND gate
Correct Answer: NOR gate
Explanation:
A NOR gate performs an OR operation followed by inversion, giving .
Incorrect! Try again.
27A warning indicator must turn on only when two digital sensor outputs are different. Which gate should be used?
Logic gates
Medium
A.XNOR gate
B.AND gate
C.NOR gate
D.XOR gate
Correct Answer: XOR gate
Explanation:
An XOR gate outputs logic 1 when its two inputs have different logic levels.
Incorrect! Try again.
28A varactor diode is used to tune an oscillator. What happens to its junction capacitance when the reverse-bias voltage is increased?
Working and operation of Varactor diode
Medium
A.It remains fixed until breakdown occurs
B.It decreases as the depletion region widens
C.It increases as the depletion region widens
D.It becomes zero at the cut-in voltage
Correct Answer: It decreases as the depletion region widens
Explanation:
Increasing reverse bias widens the depletion region. Since the region acts as the dielectric, the junction capacitance decreases.
Incorrect! Try again.
29A silicon diode tested with a digital multimeter shows about in one direction and an open indication in the other. What does this result indicate?
Testing of diode and BJT
Medium
A.The diode is internally shorted
B.The diode is operating in breakdown
C.The diode is operating normally
D.The diode is open in both directions
Correct Answer: The diode is operating normally
Explanation:
A healthy silicon diode shows a forward drop near to and blocks current when reverse biased.
Incorrect! Try again.
30During diode-mode testing, one terminal of a BJT shows forward drops to both other terminals when the positive probe is connected to it. What does this indicate?
Testing of diode and BJT
Medium
A.It is the collector of an NPN transistor
B.It is the emitter of a PNP transistor
C.It is the base of a PNP transistor
D.It is the base of an NPN transistor
Correct Answer: It is the base of an NPN transistor
Explanation:
An NPN transistor has two effective PN junctions with the P-type base acting as the anode. Both conduct when the positive probe is on the base.
Incorrect! Try again.
31An ideal half-wave rectifier receives a sinusoidal input with peak value . What is the average output voltage?
Half-wave rectifier
Medium
A.
B.
C.
D.
Correct Answer:
Explanation:
For an ideal half-wave rectifier, .
Incorrect! Try again.
32A center-tapped full-wave rectifier is connected to a AC source. What is the fundamental ripple frequency at its output?
Full-wave rectifier
Medium
A.
B.
C.
D.
Correct Answer:
Explanation:
Both half-cycles produce output pulses, so the ripple frequency is twice the supply frequency: .
Incorrect! Try again.
33A bridge rectifier receives a sinusoidal voltage with a peak of . If each conducting silicon diode drops , what is the peak load voltage?
Full-wave bridge rectifier
Medium
A.
B.
C.
D.
Correct Answer:
Explanation:
Two diodes conduct during each half-cycle, so .
Incorrect! Try again.
34An enhancement-mode n-channel MOSFET has . Which operating condition is most likely when ?
MOSFET representation and characteristics
Medium
A.The MOSFET is in the saturation region
B.The MOSFET is in avalanche breakdown
C.The MOSFET is in the cutoff region
D.The MOSFET is in the ohmic region
Correct Answer: The MOSFET is in the cutoff region
Explanation:
An enhancement n-channel MOSFET does not form a strong conducting channel when is below its threshold voltage.
Incorrect! Try again.
35For an enhancement n-channel MOSFET, in saturation. If , , and , what is ?
MOSFET representation and characteristics
Medium
A.
B.
C.
D.
Correct Answer:
Explanation:
The overdrive voltage is , so .
Incorrect! Try again.
36Why is a diode connected in reverse bias across a relay coil driven by a transistor?
Applications of diodes
Medium
A.To increase the transistor's forward current gain
B.To provide a path for the coil's induced current
C.To block the relay current during normal operation
D.To double the voltage applied to the relay coil
Correct Answer: To provide a path for the coil's induced current
Explanation:
When the transistor switches off, the coil produces a high induced voltage. The flyback diode carries the decaying current and protects the transistor.
Incorrect! Try again.
37A BJT is used to switch a load from a microcontroller output. In which regions should it ideally operate for efficient switching?
Applications of transistors
Medium
A.Cutoff and saturation regions
B.Cutoff and active regions
C.Saturation and breakdown regions
D.Active and breakdown regions
Correct Answer: Cutoff and saturation regions
Explanation:
Cutoff represents the OFF state, while saturation gives a low collector-emitter voltage for the ON state.
Incorrect! Try again.
38A DC power supply must use both half-cycles of an AC source and does not have a center-tapped transformer. Which rectifier is most suitable?
Applications of rectifiers
Medium
A.Full-wave bridge rectifier
B.Zener shunt rectifier
C.Center-tapped full-wave rectifier
D.Single-diode half-wave rectifier
Correct Answer: Full-wave bridge rectifier
Explanation:
A bridge rectifier uses both AC half-cycles and works with a standard two-terminal transformer secondary.
Incorrect! Try again.
39Why is a power MOSFET often preferred over a BJT for high-frequency switching converters?
Applications of MOSFET
Medium
A.It is voltage-controlled and switches rapidly
B.It always has zero resistance in the ON state
C.It can operate without any gate-drive voltage
D.It requires continuous base current during conduction
Correct Answer: It is voltage-controlled and switches rapidly
Explanation:
A MOSFET has very high input impedance and requires mainly transient gate-charging current, enabling efficient high-frequency switching.
Incorrect! Try again.
40A Zener diode is rated at . Ignoring derating, what is the maximum safe Zener current?
Characteristics of Zener diode
Medium
A.
B.
C.
D.
Correct Answer:
Explanation:
Using , the maximum current is .
Incorrect! Try again.
41At , silicon has , electron mobility , and hole mobility . An uncompensated n-type sample has with complete ionization. Approximately how many times greater is its conductivity than that of intrinsic silicon?
Introduction to semiconductor devices
Hard
A. times
B. times
C. times
D. times
Correct Answer: times
Explanation:
Using and , the doped sample has . Thus .
Incorrect! Try again.
42A one-sided abrupt PN junction has a built-in potential of . Neglecting breakdown, by what factor does its depletion width change when the applied voltage changes from zero bias to reverse bias?
Working and operation of PN junction diode
Hard
A.It increases by a factor of
B.It increases by a factor of
C.It increases by a factor of
D.It increases by a factor of
Correct Answer: It increases by a factor of
Explanation:
For an abrupt junction, . Hence .
Incorrect! Try again.
43At , a diode current rises from to when its forward voltage rises by . Assuming both currents greatly exceed , what is the diode ideality factor?
Characteristics of PN junction diode
Hard
A.Approximately
B.Approximately
C.Approximately
D.Approximately
Correct Answer: Approximately
Explanation:
From , .
Incorrect! Try again.
44Two reverse-biased silicon diodes are rated at and . Which statement most accurately describes their dominant breakdown mechanisms and temperature coefficients?
Working and operation of Zener diode
Hard
A.The device is tunneling-dominated with a negative coefficient; the device is avalanche-dominated with a positive coefficient
B.Both devices are tunneling-dominated and have positive temperature coefficients
C.The device is avalanche-dominated with a positive coefficient; the device is tunneling-dominated with a negative coefficient
D.Both devices are avalanche-dominated and have negative temperature coefficients
Correct Answer: The device is tunneling-dominated with a negative coefficient; the device is avalanche-dominated with a positive coefficient
Explanation:
Low-voltage breakdown is mainly due to Zener tunneling and normally has a negative temperature coefficient. Higher-voltage breakdown is mainly avalanche action and has a positive coefficient.
Incorrect! Try again.
45An unloaded Zener regulator uses a series resistor. At its operating point, the Zener has dynamic resistance . If the supply increases by without changing the operating region, what is the approximate increase in output voltage?
Characteristics of Zener diode
Hard
A.
B.
C.
D.
Correct Answer:
Explanation:
The incremental circuit is a divider formed by and . Therefore .
Incorrect! Try again.
46For the logic network which simplified expression is equivalent to ?
Logic gates
Hard
A.
B.
C.
D.
Correct Answer:
Explanation:
Applying De Morgan's law gives .
Incorrect! Try again.
47A parallel resonant circuit contains a fixed capacitance in parallel with a varactor. Reverse-bias tuning changes the varactor capacitance from to while the inductance remains constant. What is the ratio of maximum to minimum resonant frequency?
Working and operation of Varactor diode
Hard
A.
B.
C.
D.
Correct Answer:
Explanation:
The total capacitance changes from to . Since , .
Incorrect! Try again.
48In diode-test mode, a digital multimeter reads from red probe on terminal to black probe on , and from red probe on to black probe on . All reversed probe combinations read open circuit. What can be concluded reliably?
Testing of diode and BJT
Hard
A.The device is PNP, is the base, and is necessarily the collector
B.The device is NPN, is the collector, and is necessarily the emitter
C.The device is PNP, is the emitter, and and are interchangeable
D.The device is NPN, is the base, and and require another test to distinguish collector from emitter
Correct Answer: The device is NPN, is the base, and and require another test to distinguish collector from emitter
Explanation:
Forward conduction from the positive probe at to both other terminals identifies an NPN base. Junction-voltage readings alone do not reliably distinguish collector and emitter.
Incorrect! Try again.
49A half-wave rectifier has a sinusoidal source with peak voltage , diode forward resistance , and load resistance . Ignoring threshold voltage, what is its rectification efficiency, defined as DC load power divided by total AC input power?
Half-wave rectifier
Hard
A.
B.
C.
D.
Correct Answer:
Explanation:
Here , , and . Thus .
Incorrect! Try again.
50An ideal center-tapped full-wave rectifier has a peak voltage of from the center tap to either end of the secondary. With a resistive load, which pair gives the average output voltage and the peak inverse voltage of each diode?
Full-wave rectifier
Hard
A. and
B. and
C. and
D. and
Correct Answer: and
Explanation:
For an ideal full-wave output, . The nonconducting diode sees approximately twice the half-secondary peak, so .
Incorrect! Try again.
51A bridge rectifier is supplied by an secondary and feeds a large smoothing capacitor under negligible load. Each conducting diode drops . Which pair most closely gives the capacitor voltage and the approximate peak inverse voltage per diode?
Full-wave bridge rectifier
Hard
A. and
B. and
C. and
D. and
Correct Answer: and
Explanation:
The secondary peak is . Two diode drops give , while each bridge diode requires a PIV approximately equal to the secondary peak.
Incorrect! Try again.
52An enhancement n-channel MOSFET follows in the triode region, where and . What is for and ?
MOSFET representation and characteristics
Hard
A.
B.
C.
D.
Correct Answer:
Explanation:
Since , the device is in the triode region. Substitution gives .
Incorrect! Try again.
53A MOSFET operating in saturation at fixed has drain current at and at . Using , estimate .
MOSFET representation and characteristics
Hard
A.
B.
C.
D.
Correct Answer:
Explanation:
The ratio satisfies . Solving gives .
Incorrect! Try again.
54An inductive load is connected between and the drain of a low-side n-channel MOSFET. Where should an ordinary flyback diode be connected to protect the MOSFET during turn-off?
Applications of diodes
Hard
A.Across the MOSFET, with cathode at ground and anode at the drain
B.In series with the load, with cathode toward the supply terminal
C.Across the load, with anode at and cathode at the drain
D.Across the load, with cathode at and anode at the drain
Correct Answer: Across the load, with cathode at and anode at the drain
Explanation:
The diode is reverse-biased during normal operation. At turn-off, the drain voltage rises above , forward-biasing the diode and providing a path for the inductive current.
Incorrect! Try again.
55An NPN transistor driven by a logic output must switch a relay current. For a forced current gain of and , which listed base resistor is the largest value that satisfies the design requirement?
Applications of transistors
Hard
A.
B.
C.
D.
Correct Answer:
Explanation:
The required base current is , so . Of the listed values, is the largest that meets this limit.
Incorrect! Try again.
56A full-wave rectifier operating from a supply delivers a nearly constant load current to a smoothing capacitor. Neglecting conduction time and source resistance, what is the approximate peak-to-peak ripple voltage?
Applications of rectifiers
Hard
A.
B.
C.
D.
Correct Answer:
Explanation:
Full-wave rectification produces a ripple. Thus .
Incorrect! Try again.
57A bootstrap gate driver is used with an n-channel MOSFET as the high-side switch of a half-bridge. Why can a conventional bootstrap supply generally not maintain the switch continuously on at duty cycle?
Applications of MOSFET
Hard
A.The high-side channel changes from n-type to p-type during continuous conduction
C.The MOSFET body diode permanently shorts the bootstrap capacitor at high duty cycle
D.The gate threshold voltage becomes zero when the drain remains at the supply voltage
Correct Answer: The bootstrap capacitor cannot recharge unless the switch node periodically returns low
Explanation:
The bootstrap capacitor is normally recharged while the switch node is low. At continuous high-side conduction, its charge is gradually lost through gate-driver and leakage currents.
Incorrect! Try again.
58Four NAND gates are connected as follows: , , , and . What function does implement?
Logic gates
Hard
A.
B.
C.
D.
Correct Answer:
Explanation:
The network is the standard four-NAND realization of XOR: the output is high only when and differ.
Incorrect! Try again.
59A Zener diode has a temperature coefficient of . A forward-biased silicon diode has a coefficient of . If they are placed in series with voltages adding, what is the approximate temperature behavior of the combined reference?
Characteristics of Zener diode
Hard
A.Nearly zero net coefficient at about
B.A positive coefficient of at about
C.Nearly zero net coefficient at about
D.A negative coefficient of at about
Correct Answer: Nearly zero net coefficient at about
Explanation:
The opposite temperature coefficients approximately cancel. The reference voltage is the sum of the Zener and forward drops, approximately .
Incorrect! Try again.
60During reverse recovery, a diode's reverse current is approximated by a triangular pulse with peak magnitude and total duration . If the recovered charge is , what is ?
Characteristics of PN junction diode
Hard
A.
B.
C.
D.
Correct Answer:
Explanation:
The recovered charge is the pulse area: . Therefore .
Incorrect! Try again.
Did this save you a night before the exam?
LPU Notes is free, and it stays free. Ads cover part of the server bill.
The rest comes out of a student's own pocket: the domain, the storage,
and keeping the site up through the weeks everyone needs it at once.
The payment button didn't load. An ad blocker or a filtered network is the usual reason.
to try again.
Nothing here is ever locked, and nothing unlocks. Chip in only if it was worth it.
What it pays for →