2. Construct the circuit shown in Figure 2, determine the value of Boc at the given Q-point. 1M0 10 k (HA Vcc = 12 V $1k0 mA 2N3904

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Question
2. Construct the circuit shown in Figure 2, determine the value of Boxe at the given Q-point.
1 ΜΩ
10 ΚΩ
НА
Vcc = 12 V
오
1 kn
mA
2N3904
Figure 2
3. Based on Boc obtained in Step 2, calculate the values of R₁, R₂, Re and Re using your
derived equations in Step 1.
4.
Construct the circuit in Figure 1, by using the values you obtained in Step 3.
Transcribed Image Text:2. Construct the circuit shown in Figure 2, determine the value of Boxe at the given Q-point. 1 ΜΩ 10 ΚΩ НА Vcc = 12 V 오 1 kn mA 2N3904 Figure 2 3. Based on Boc obtained in Step 2, calculate the values of R₁, R₂, Re and Re using your derived equations in Step 1. 4. Construct the circuit in Figure 1, by using the values you obtained in Step 3.
INTRODUCTION
Input transducer such as microphone or audio signal, pressure sensor, and humidity sensor
produces small electrical signals. For reliable processing, any small signal needs to be amplified.
The circuit used for boosting electrical signals in a prescribed manner is termed amplifier.
PURPOSE
1. To apply the basic laws, theorem and methods of analysis to design amplifier circuit.
2. To design a BJT amplifier to meet certain design specifications.
4. To draw a frequency response on a semilog graph paper.
Part A: BJT Amplifier DC Biasing
1
VCE = VCC
VBE (ON) = 0.65 V
VE = 0.1 Vcc
R₁
VB
Ip2.
R₂
Vcc
IBQ
+
Ical Ro
Vc
VBE
Figure 1
VCE
RE
IR2 = 10 IBQ
= 2 mA
IcQ
Vcc = 12 V
Transcribed Image Text:INTRODUCTION Input transducer such as microphone or audio signal, pressure sensor, and humidity sensor produces small electrical signals. For reliable processing, any small signal needs to be amplified. The circuit used for boosting electrical signals in a prescribed manner is termed amplifier. PURPOSE 1. To apply the basic laws, theorem and methods of analysis to design amplifier circuit. 2. To design a BJT amplifier to meet certain design specifications. 4. To draw a frequency response on a semilog graph paper. Part A: BJT Amplifier DC Biasing 1 VCE = VCC VBE (ON) = 0.65 V VE = 0.1 Vcc R₁ VB Ip2. R₂ Vcc IBQ + Ical Ro Vc VBE Figure 1 VCE RE IR2 = 10 IBQ = 2 mA IcQ Vcc = 12 V
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