Si E- 5V 2.2 kn V Figu

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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E+ 5V
2.2 kn
Figure 3.
2. (a) Using the characteristics of Fig. 2, determine lo and Vo for the circuit of Fig. 3.
(b) Repeat part (a) with R = 0.47 ko.
(c) Repeat part (a) with R = 0.18 ko.
(d) Is the level of Vo relatively close to 0.7 V in each case?
How do the resulting levels of l, compare? Comment accordingly.
3. Determine the value of R for the circuit of Fig. 3 that will result in a diode current of 10 mA if E =7 V. Use
the characteristics of Fig. 2 for the diode.
Transcribed Image Text:E+ 5V 2.2 kn Figure 3. 2. (a) Using the characteristics of Fig. 2, determine lo and Vo for the circuit of Fig. 3. (b) Repeat part (a) with R = 0.47 ko. (c) Repeat part (a) with R = 0.18 ko. (d) Is the level of Vo relatively close to 0.7 V in each case? How do the resulting levels of l, compare? Comment accordingly. 3. Determine the value of R for the circuit of Fig. 3 that will result in a diode current of 10 mA if E =7 V. Use the characteristics of Fig. 2 for the diode.
tlo tmA
ELECTRONICS LABORATORY, EXPERIMENT 3.
Load-line Analysis
1. (a) Using the characteristics of Fig. 2., determine Ip, Vp, and VR for the circuit of Fig. 1.
(b) Repeat part (a) using the approximate model for the diode and compare results.
(c) Repeat part (a) using the ideal model for the diode and compare results.
+ 8 V
0.33 kn V
10
V(V)
07 V
Figure 1.
Figure 2.
Transcribed Image Text:tlo tmA ELECTRONICS LABORATORY, EXPERIMENT 3. Load-line Analysis 1. (a) Using the characteristics of Fig. 2., determine Ip, Vp, and VR for the circuit of Fig. 1. (b) Repeat part (a) using the approximate model for the diode and compare results. (c) Repeat part (a) using the ideal model for the diode and compare results. + 8 V 0.33 kn V 10 V(V) 07 V Figure 1. Figure 2.
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