2) Parts and Equipment a) Resistors R1 = 20k2, Rc = 1kN and RE = 2002 b) A Variable resistor R2 c) A DC voltage source, Vcc 30V d) A BJT transistor with Bpc = 100 and VBE = 0.75V e) Ammeters and Voltmeters f) Multisim online simulation software.

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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4) Results and Discussion
a) DC quantities measurements
Table 1: DC quantities measurements
R2 (2) IB (A) Ic (A) IE (A) | 2 (A)
Ic/ IB
Ic/ IE
VE
VRC
VCE
VE +VRC
(V)
(V)
(V)
(V)
500
1k
2k
3k
4k
5k
6k
7k
10k
Transcribed Image Text:4) Results and Discussion a) DC quantities measurements Table 1: DC quantities measurements R2 (2) IB (A) Ic (A) IE (A) | 2 (A) Ic/ IB Ic/ IE VE VRC VCE VE +VRC (V) (V) (V) (V) 500 1k 2k 3k 4k 5k 6k 7k 10k
Part A: Potential Divider Biasing Circuit and DC Analysis
1) Objectives
a) To draw DC load line based on potential divider biasing cireuit.
b) To select a suitable Q-point for the BJT circuit based on the DC load line.
c) To perform DC analysis for the given biasing circuit.
2) Parts and Equipment
a) Resistors R1 = 20k2, Rc = 1k2 and RE = 2002
b) A Variable resistor R2
c) A DC voltage source, Vcc = 30V
d) A BJT transistor with Bpc = 100 and VBE = 0.75V
e) Ammeters and Voltmeters
f) Multisim online simulation software.
+Vcc
Rc
R2
RE
Figure 1
Transcribed Image Text:Part A: Potential Divider Biasing Circuit and DC Analysis 1) Objectives a) To draw DC load line based on potential divider biasing cireuit. b) To select a suitable Q-point for the BJT circuit based on the DC load line. c) To perform DC analysis for the given biasing circuit. 2) Parts and Equipment a) Resistors R1 = 20k2, Rc = 1k2 and RE = 2002 b) A Variable resistor R2 c) A DC voltage source, Vcc = 30V d) A BJT transistor with Bpc = 100 and VBE = 0.75V e) Ammeters and Voltmeters f) Multisim online simulation software. +Vcc Rc R2 RE Figure 1
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