Chapter 14 – Semiconductor Electronics Materials, Devices And Simple Circuits

Class 12 Physics · 39 questions · 0 with answers

Questions

Q14.1Multiple choice

The conductivity of a semiconductor increases with increase in temperature because

  • (a)number density of free current carriers increases.
  • (b)relaxation time increases.
  • (c)both number density of carriers and relaxation time increase.
  • (d)number density of current carriers increases, relaxation time decreases but effect of decrease in relaxation time is much less than increase in number density. 1
Q14.2Multiple choice

In Fig. 14.1, Vo is the potential barrier across a p-n 3 junction, when no battery is connected across the junction V0

This question refers to a figure in the original PDF.

  • (a)1 and 3 both correspond to forward bias of junction
  • (b)3 corresponds to forward bias of junction and 1 corresponds to reverse bias of junction
  • (c)1 corresponds to forward bias and 3 corresponds to reverse bias of junction. Fig. 14.1
  • (d)3 and 1 both correspond to reverse bias of junction.
Q14.3Multiple choice

In Fig. 14.2, assuming the diodes to be ideal,

This question refers to a figure in the original PDF.

  • (a)D1 is forward biased and D2 is reverse biased and hence current flows from A to B
  • (b)D2 is forward biased and D1 is reverse biased and hence no current flows from B to A and vice versa.
  • (c)D1and D2 are both R D1 forward biased –10V and hence current flows from A to B. D2
  • (d)D 1 and D 2 are both reverse Fig. 14.2 B biased and hence no current flows from A to B and vice versa.
Q14.4Multiple choice

A 220 V A.C. supply is connected between points A and B (Fig. 14.3). What will be the potential difference V across the capacitor?

This question refers to a figure in the original PDF.

  • (a)220V. A
  • (b)110V.
  • (c)0V. 220V C V A.c.
  • (d)220 2 V. Fig. 14.3 14.5 Hole is (a) an anti-particle of electron. (b) a vacancy created when an electron leaves a covalent bond. (c) absence of free electrons. (d) an artifically created particle.
Q14.6Multiple choice

The output of the given circuit in Fig. 14.4.

This question refers to a figure in the original PDF.

  • (a)would be zero at all times.
  • (b)would be like a half wave rectifier with positive cycles in output.
  • (c)would be like a half wave rectifier with negative vm sin t ~ cycles in output.
  • (d)would be like that of a full wave rectifier. Fig. 14.4 Semiconductor Electronics: Materials Devices and Simple Circuits
Q14.7Multiple choice

In the circuit shown in Fig. 14.5, if the diode forward voltage drop A 0.2 mA is 0.3 V, the voltage difference between A and B is

This question refers to a figure in the original PDF.

  • (a)1.3 V
  • (b)2.3 V 5K
  • (c)0
  • (d)0.5 V
Q14.8Multiple choice

Truth table for the given circuit (Fig. 14.6) is

This question refers to a figure in the original PDF.

  • (a)A B E 5K 0 0 1 0 1 0 B 1 0 1 Fig. 14.5 1 1 0 A C
  • (b)A B E 0 0 1 E 0 1 0 1 0 0 1 1 1 D
  • (c)A B E Fig. 14.6 0 0 0 0 1 1 1 0 0 1 1 1
  • (d)A B E 0 0 0 0 1 1 1 0 1 1 1 0
Q14.9Multiple correct

When an electric field is applied across a semiconductor

  • (a)electrons move from lower energy level to higher energy level in the conduction band.
  • (b)electrons move from higher energy level to lower energy level in the conduction band.
  • (c)holes in the valence band move from higher energy level to lower energy level.
  • (d)holes in the valence band move from lower energy level to higher energy level.
Q14.10Multiple correct

Consider an npn transitor with its base-emitter junction forward biased and collector base junction reverse biased. Which of the following statements are true?.

  • (a)Electrons crossover from emitter to collector.
  • (b)Holes move from base to collector.
  • (c)Electrons move from emitter to base.
  • (d)Electrons from emitter move out of base without going to the collector.
Q14.11Multiple correct

Figure 14.7 shows the transfer characteristics of a base biased CE transistor. Which of the following statements are true?

This question refers to a figure in the original PDF.

  • (a)At Vi = 0.4V, transistor is in active state.
  • (b)At Vi = 1V , it can be used as an amplifier. 0 0.6V 2V Vi
  • (c)At Vi = 0..5V, it can be used as a switch turned off. Fig. 14.7
  • (d)At Vi = 2.5V, it can be used as a switch turned on.
Q14.12Multiple correct

In a npn transistor circuit, the collector current is 10mA. If 95 per cent of the electrons emitted reach the collector, which of the following statements are true?

  • (a)The emitter current will be 8 mA.
  • (b)The emitter current will be 10.53 mA.
  • (c)The base current will be 0.53 mA.
  • (d)The base current will be 2 mA.
Q14.13Multiple correct

In the depletion region of a diode

  • (a)there are no mobile charges
  • (b)equal number of holes and electrons exist, making the region neutral.
  • (c)recombination of holes and electrons has taken place.
  • (d)immobile charged ions exist.
Q14.14Multiple correct

What happens during regulation action of a Zener diode?

  • (a)The current in and voltage across the Zenor remains fixed.
  • (b)The current through the series Resistance (Rs) changes.
  • (c)The Zener resistance is constant.
  • (d)The resistance offered by the Zener changes.
Q14.15Multiple correct

To reduce the ripples in a rectifier circuit with capacitor filter

  • (a)RL should be increased.
  • (b)input frequency should be decreased.
  • (c)input frequency should be increased.
  • (d)capacitors with high capacitance should be used. Semiconductor Electronics: Materials Devices and Simple Circuits
Q14.16Multiple correct

The breakdown in a reverse biased p–n junction diode is more likely to occur due to

  • (a)large velocity of the minority charge carriers if the doping concentration is small.
  • (b)large velocity of the minority charge carriers if the doping concentration is large.
  • (c)strong electric field in a depletion region if the doping concentration is small.
  • (d)strong electric field in the depletion region if the doping concentration is large.
Q14.17Very short answer

Why are elemental dopants for Silicon or Germanium usually chosen from group XIII or group XV?

Q14.18Very short answer

Sn, C, and Si, Ge are all group XIV elements. Yet, Sn is a conductor, C is an insulator while Si and Ge are semiconductors. Why?

Q14.19Very short answer

Can the potential barrier across a p-n junction be measured by simply connecting a voltmeter across the junction?

Q14.20Very short answer

Draw the output waveform across the resistor (Fig.14.8). V0 +1V –1V Input waveform at A Fig. 14.8

This question refers to a figure in the original PDF.

Q14.21Multiple choice

The amplifiers X, Y and Z are connected in series. If the voltage gains of X, Y and Z are 10, 20 and 30, respectively and the input signal is 1 mV peak value, then what is the output signal voltage (peak value)

  • (i)if dc supply voltage is 10V?
  • (ii)if dc supply voltage is 5V?
Q14.22Very short answer

In a CE transistor amplifier there is a current and voltage gain associated with the circuit. In other words there is a power gain. Considering power a measure of energy, does the circuit voilate conservation of energy? S.A I I

Q14.23Multiple choice

( A) P P V V (volt) (a) (b) Fig. 14.9

This question refers to a figure in the original PDF.

  • (i)Name the type of a diode whose characteristics are shown in Fig. 14.9 (A) and Fig. 14.9(B).
  • (ii)What does the point P in Fig. (A) represent?
  • (iii)What does the points P and Q in Fig. (B) represent?
Q14.24Very short answer

Three photo diodes D1, D2 and D3 are made of semiconductors having band gaps of 2.5eV, 2eV and 3eV, respectively. Which ones will be able to detect light of wavelength 6000 A ?

Q14.25Very short answer

If the resistance R1 is increased (Fig.14.10), how will the readings of the ammeter and voltmeter change? R2 v R1 Fig. 14.10

This question refers to a figure in the original PDF.

Q14.26Very short answer

Two car garages have a common gate which needs to open automatically when a car enters either of the garages or cars enter both. Devise a circuit that resembles this situation using diodes for this situation.

Q14.27Very short answer

How would you set up a circuit to obtain NOT gate using a transistor?

Q14.28Very short answer

Explain why elemental semiconductor cannot be used to make visible LEDs. Semiconductor Electronics: Materials Devices and Simple Circuits

Q14.29Very short answer

Write the truth table for the circuit shown in Fig.14.11. + 5V Name the gate that the circuit resembles.

This question refers to a figure in the original PDF.

Q14.30Very short answer

A Zener of power rating 1 W is to be used as a voltage D1 regulator. If zener has a breakdown of 5V and it has to A V0 regulate voltage which fluctuated between 3V and 7V, what should be the value of Rs for safe operation (Fig.14.12)? B D2 Fig. 14.11 Unregulated Regulated voltage voltage Fig. 14.12 A I4 125 LA C I3 125 I2 125

This question refers to a figure in the original PDF.

Q14.31Very short answer

If each diode in Fig. 14.13 has a forward bias resistance of E F 25Ω and infinite resistance in reverse bias, what will be the I1 values of the current I1, I2, I3 and I4? G H 5V

This question refers to a figure in the original PDF.

Q14.32Very short answer

In the circuit shown in Fig.14.14, when the input voltage of the Fig. 14.13 base resistance is 10V, Vbe is zero and Vce is also zero. Find the values of Ib, Ic and β. 10V 3k Fig. 14.14

This question refers to a figure in the original PDF.

Q14.33Very short answer

Draw the output signals C1 and C 2 in the given combination of gates (Fig. 14.15). A A 0 2 3 4 5 t (s) C1 1 2 3 4 5 t (s) A C2 Fig. 14.15

This question refers to a figure in the original PDF.

Q14.34Multiple choice

Consider the circuit arrangement shown in Fig 14.16

This question refers to a figure in the original PDF.

  • (a)for study- ing input and output characteristics of npn transistor in CE con- figuration. RC IC VCE (mA) B Q 4mA IB = 30 A RB E VCC 8V VCE (Volts) Fig. 14.16 (a) Fig. 14.16
  • (b)Select the values of R B and RC for a transistor whose VBE = 0.7 V, so that the transistor is operating at point Q as shown in the characteristics shown in Fig. 14.16 (b). Given that the input impedance of the transistor is very small and VCC = VBB = 16 V, also find the voltage gain and power gain of circuit making appropriate assumptions.
Q14.35Very short answer

Assuming the ideal diode, draw the output waveform for the circuit given in Fig. 14.17. Explain the waveform. 20 sin wt ~ 5V Fig. 14.17

This question refers to a figure in the original PDF.

Q14.36Multiple choice

Suppose a ‘n’-type wafer is created by doping Si crystal having 5 × 1028 atoms/m3 with 1ppm concentration of As. On the surface 200 ppm Boron is added to create ‘P’ region in this wafer. Considering n i = 1.5 × 1016 m–3,

  • (i)Calculate the densities of the charge carriers in the n & p regions.
  • (ii)Comment which charge carriers would contribute largely for the reverse saturation current when diode is reverse biased. Semiconductor Electronics: Materials Devices and Simple Circuits
Q14.37Very short answer

An X-OR gate has following truth table: A B Y 0 0 0 0 1 1 1 0 1 1 1 0 It is represented by following logic relation Y =A.B+ A.B Build this gate using AND, OR and NOT gates.

Q14.38Multiple choice

Consider a box with three terminals on top of it as shown in Fig.14.18 (a): Fig. 14.18 (a) Three components namely, two germanium diodes and one resistor are connected across these three terminals in some arrangement. A student performs an experiment in which any two of these three terminals are connected in the circuit shown in Fig. 14.18 (b). + – Box Terminals Fig. 14.18 (b) The student obtains graphs of current-voltage characteristics for unknown combination of components between the two terminals connected in the circuit. The graphs are

This question refers to a figure in the original PDF.

  • (i)when A is positive and B is negative Fig. 14.18 (c)
  • (ii)when A is negative and B is positive 1000 V slope 0.7V Fig. 14.18 (d)
  • (iii)When B is negative and C is positive 0.7V Fig. 14.18 (e)
  • (iv)When B is positive and C is negative Fig. 14.18 (f) Semiconductor Electronics: Materials Devices and Simple Circuits (v) When A is positive and C is negative Fig. 14.18 (g) (vi) When A is negative and C is positive 1.4V Fig. 14.18 (h) VCC = 12V From these graphs of current – voltage charac- teristic shown in Fig. 14.18 (c) to (h), determine RB RC = 7.8K A the arrangement of components between A, B VC and C.
Q14.39Very short answer

For the transistor circuit shown in Fig.14.19, evaluate VE, RB, R E given IC = 1 mA, VCE = 3V, VBE = 0.5 V and VCC = 12 V, 20K RE β = 100.

This question refers to a figure in the original PDF.

Q14.40Very short answer

In the circuit shown in Fig.14.20, find the value of R C. 12V Fig. 14.19 100K RC A β = 100 VBE = 0.5 V 20K VCE = 3 V Fig. 14.20

This question refers to a figure in the original PDF.