1. For the diode circuit shown in Figure C1, assume the Turn-On voltage of LED1 is 2.0V and LED2 is 1.4V. Calculate current I, that flows through Resistor R2 i. If the switch S1 is closed and S2 is open [2] ii. If the switch S2 is closed and S1 is open [2] iii. If both the switches are closed [1] Vss 18V S1 S2 ALED1 D1 Si D3 Si DA D2 Ge ALED2 Ge R1 5000 R2 2.5kQ V1 =3.5 V

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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1.
For the diode circuit shown in Figure C1, assume the Turn-On voltage of LED1 is 2.0V
and LED2 is 1.4V. Calculate current I, that flows through Resistor R
[2]
i. If the switch S1 is closed and S2 is open
[2]
ii. If the switch S2 is closed and S1 is
open
[1]
iii. If both the switches are closed
Vss
18V
S2
LED,
D1
Si
D3
Si
DA
D2
ALED2
Ge
Ge
R1
500Q
R2
I $2.5kQ
V1
=3.5 V
Transcribed Image Text:1. For the diode circuit shown in Figure C1, assume the Turn-On voltage of LED1 is 2.0V and LED2 is 1.4V. Calculate current I, that flows through Resistor R [2] i. If the switch S1 is closed and S2 is open [2] ii. If the switch S2 is closed and S1 is open [1] iii. If both the switches are closed Vss 18V S2 LED, D1 Si D3 Si DA D2 ALED2 Ge Ge R1 500Q R2 I $2.5kQ V1 =3.5 V
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