Unit 1: PN Junction - Subjective Questions

ECE226 — Analog Electronic Devices And Circuits • Practice Questions with Detailed Answers

20 questions

1

Define the depletion region in a PN junction. Explain how it is formed and the factors affecting its width.

2

Explain junction capacitance of a PN junction diode. Distinguish between transition capacitance and diffusion capacitance.

3

Derive the diode current equation (Shockley equation) and explain each term.

4

Explain the effect of temperature on the reverse saturation current of a PN junction diode.

5

Describe the construction and working of a PN junction diode.

6

Draw and explain the V-I characteristics of a PN junction diode in forward and reverse bias.

7

What is a junction diode rectifier? Explain the need for rectification.

8

Explain the working of a half-wave rectifier with a circuit diagram and waveforms. Derive its efficiency.

9

Explain the working of a full-wave center-tapped rectifier with circuit diagram and waveforms.

10

Explain the working of a bridge rectifier. State its advantages over the center-tapped full-wave rectifier.

11

Compare half-wave, full-wave center-tapped, and bridge rectifiers based on key performance parameters.

12

Define ripple factor and rectifier efficiency. Derive the ripple factor for a full-wave rectifier.

13

Explain the construction and working of a Zener diode. How does it differ from an ordinary diode?

14

Explain how a Zener diode acts as a voltage regulator with a circuit diagram.

15

Distinguish between Zener breakdown and Avalanche breakdown mechanisms.

16

A half-wave rectifier has a peak current mA. Calculate , , and the DC output power if k.

17

Define Peak Inverse Voltage (PIV). State and explain the PIV for half-wave, center-tapped full-wave, and bridge rectifiers.

18

Explain static and dynamic resistance of a PN junction diode. Derive the expression for dynamic resistance.

19

Describe the effect of forward and reverse bias on the depletion region width and barrier potential of a PN junction.

20

Derive expressions for DC output voltage, RMS voltage, and efficiency of a full-wave rectifier.