Voltage Divider Circuit Us + VI V₂ www R₁ V₂ R₂ Based on (KCL/ KVL), Vs = V₁ + V₂ The total current is I, the current is the same at R₁ and R₂, because they are in (series / parallel). Based on Ohm's Law, V₁ = V₂ = Total current I = Vs / Rot 1 Rtot = R₁ + R₂ When the I is replaced with V/(R₁ + R₂), V₁ = Practice 1. Find the relationship between R₁ and R₂, when V₁ = 30V, V₂= 10v Practice 2. Find V₂, when R₁-30 and R₂=10 201 + Ri 2DV R₂ _N₂ Practice 3. When the Load resistor is connected to the circuit divider resistor, what is V₁ ? + R₂ N₂ B₁ $30-2 [102 SRL NL 105_

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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1. Voltage Divider Circuit
Us
V₂ =
Based on (KCL/ KVL), Vs = V₁ + V₂,
The total current is I, the current is the same at
R₁ and R₂, because they are in (series / parallel).
Based on Ohm's Law,
V₁ =
V₂ =
Total current I = V₁ / Rot
Rtot R₁ + R₂
When the I is replaced with V₂/(R₁ + R₂),
V₁ =
Vs
V₁ ≤ R₁
Ri
+ 5
Practice 1. Find the relationship between R₁ and
R₂, when V₁ = 30V, V₂= 10v
Re
V₂ R₂
Practice 2. Find V₂,
when R₁-30 and R₂=10
201
t
R₁
2D V
R₂
Practice 3. When the Load resistor is connected
to the circuit divider resistor, what is V₁ ?
+
__N₁
+
N₂
R₂
ві ззол
d
[1022
SRL
+
NL
10-
Transcribed Image Text:1. Voltage Divider Circuit Us V₂ = Based on (KCL/ KVL), Vs = V₁ + V₂, The total current is I, the current is the same at R₁ and R₂, because they are in (series / parallel). Based on Ohm's Law, V₁ = V₂ = Total current I = V₁ / Rot Rtot R₁ + R₂ When the I is replaced with V₂/(R₁ + R₂), V₁ = Vs V₁ ≤ R₁ Ri + 5 Practice 1. Find the relationship between R₁ and R₂, when V₁ = 30V, V₂= 10v Re V₂ R₂ Practice 2. Find V₂, when R₁-30 and R₂=10 201 t R₁ 2D V R₂ Practice 3. When the Load resistor is connected to the circuit divider resistor, what is V₁ ? + __N₁ + N₂ R₂ ві ззол d [1022 SRL + NL 10-
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