Unit 2: Bipolar Junction Transistor (BJT) - Subjective Questions

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

20 questions

1

Explain the construction and working of PNP and NPN transistors. How do they differ in terms of majority carriers and biasing?

2

Describe the different current components in a BJT. Derive the relationship between emitter, base, and collector currents.

3

Define and of a transistor and derive the relationship between them.

4

Explain the input and output static characteristics of a BJT in the Common Base (CB) configuration with neat sketches.

5

Explain the input and output static characteristics of a BJT in the Common Emitter (CE) configuration.

6

What is the Early Effect (base-width modulation) in a BJT? Explain its causes and consequences.

7

Compare the CB, CC, and CE configurations of a BJT in terms of input/output resistance, current gain, voltage gain, and applications.

8

Describe the three operating regions of a BJT: cut-off, active, and saturation. State the biasing conditions for each.

9

Represent the CE configuration as a two-port network and define the h-parameters for this configuration.

10

Draw and explain the h-parameter equivalent circuit of a transistor in CE configuration. Derive expressions for current gain and input impedance.

11

What is meant by DC load line and Q-point (operating point)? Explain how to draw the DC load line for a CE amplifier.

12

Explain the need for biasing a transistor. What is meant by stability factor and why is stabilization required?

13

Derive the stability factor for the fixed bias (base bias) circuit and comment on its stability.

14

Explain the voltage-divider bias (self-bias) circuit. Why is it the most widely used biasing method?

15

Distinguish between DC load line and AC load line. Explain their significance in amplifier design.

16

A transistor has and . If the base current , calculate , , and .

17

Explain the phenomenon of thermal runaway in a BJT. How can it be prevented?

18

Explain the important parameters and ratings found in a BJT datasheet. Why are these important for circuit design?

19

Derive the expression for the DC current gain and analyze the collector-to-base bias (feedback bias) circuit for its stability factor.

20

Explain why the Common Collector (CC) configuration is called an emitter follower and describe its characteristics and applications.