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Bipolar Junction Transistor (BJT)

Total questions: 15

Worksheet time: 8mins

Name
Class
Date
1.

What is the operation region of NPN Bipolar Junction Transistor (BJT) if the voltage values of VBE is 0.3V and VBC is 0.7V?

a)

Saturation region

b)

Cut-off region

c)

Active region

d)

In-active region

2.

What is the operation region of NPN Bipolar Junction Transistor (BJT) if the voltage values of VBE is 0.7V and VBC is 0.7V?

a)

Saturation region

b)

Cut-off region

c)

Active region

d)

In-active region

3.

The circuit shown is the Bipolar Junction Transistor that works in an active region. What happen to the collector current, Ic when the value of base resistor RB is increased?

a)

The Ic will remain the same.

b)

The Ic will be 0.

c)

The Ic will increase.

d)

The Ic will decrease.

4.

Determine the configuration this BJT circuit.

a)

Common Emitter

b)

Common Base

c)

Common Collector

d)

Common Ground

5.

What is the value of VBE?

Given Vcc = +22 V, Vth = 2V, Rth = 3.55 Ω, Rc = 10 kΩ and RE = 1.5 kΩ.

a)

1.978 V

b)

13.5 V

c)

0.7 V

d)

1.275 V

6.

What is the formula of Rth to simplify the BJT voltage divider bias circuit shown in the figure?

a)

(R1 + R1)/ (R2 x R2)

b)

(R1 x R1) / (R2 + R2)

c)

(R1 x R2)/ (R1 + R2)

d)

(R1 + R2)/ (R1 x R2)

7.

The figure shown the fixed bias circuit of BJT. What is the CORRECT formula to calculate the value of base current, IB?

a)

VCC - IcRc − VCE - VBE - IBRB = 0

b)

VCC + IBRB − VBE = 0

c)

VCC - IBRB − VBE = 0

d)

VCC + IcRc − VCE - VBE - IBRB = 0

8.

BJT is a device controlled by (a)  

9.

The figure shown the fixed bias circuit of BJT. What is value of base current, IB?

a)

20.28 μA

b)

- 20.28 mA

c)

20.28 mA

d)

- 20.28 μA

10.

To solve the BJT voltage divider bias AC circuit analysis, identify which statement is incorrect?

a)

Locate capacitors and replace them with an open circuit

b)

Locate resistors and replace them with an open circuit

c)

Simplified circuit using Thevenin Theorem

d)

Locate 2 main loops which is BE loop and CE loop

11.

What is the degree of phase shift between input and output of common emitter BJT bias circuit?

a)

45º

b)

90º

c)

180º

d)

270º

12.

State the suitable application for BJT that works in (i) active and (ii) saturation

regions.

a)

Active – Amplifier

Saturation – Switch

b)

Active – Switch

Saturation –Amplifier

c)

Active – Switch

Saturation – Switch

d)

Active – Amplifier

Saturation –Amplifier

13.

Parameters that determine the voltage gain of the transistor of a small

signal amplifier except

a)

Input impedance

b)

Output impedance

c)

Transconductance

d)

Resistance

14.

Which is (are) TRUE about the operating point (Q-point) of a BJT small-signal amplifier circuit?

a)

It is kept fixed at the centre of the active region so that input signal is well amplified

b)

The positive half cycle gets clipped off if the Q-point is kept fixed at saturation region

c)

The negative half cycle gets clipped off if the Q-point is kept fixed at cut-off region

d)

All

15.

The Q – point is best located in the active region. What is the behaviour of the collector current, IC and VCE when the BJT is operating in the active region?

a)

VCE increase IC no changes

b)

VCE increase IC increase

c)

VCE increase IC zero

d)

VCE and IC zero