Second Order Systems - Simple Series RLC + v₁ (t) M R VIN (t) Yin (s) = 2 wo = i₁(t) - L с The circuit above has component values R = 1 N, L = H, and C = F. (1) Provide an equation for the input admittance (as seen by the voltage source). 4s S + 4s + 40 + vc(t) Hm = Is this is a minimum ('min') or maximum ('max')? min (2) Based on second-order characteristic equation, provide the following bandpass characteristics. B

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Second Order Systems - Simple Series RLC
+ v₁ (t)
M
R
VIN (t)
Yin (s) = 2
wo =
i₁(t)
-
L
с
The circuit above has component values R = 1 N, L = H, and C = F.
(1) Provide an equation for the input admittance (as seen by the voltage source).
4s
S + 4s + 40
+
vc(t)
Hm =
Is this is a minimum ('min') or maximum ('max')? min
(2) Based on second-order characteristic equation, provide the following bandpass characteristics.
B
Transcribed Image Text:Second Order Systems - Simple Series RLC + v₁ (t) M R VIN (t) Yin (s) = 2 wo = i₁(t) - L с The circuit above has component values R = 1 N, L = H, and C = F. (1) Provide an equation for the input admittance (as seen by the voltage source). 4s S + 4s + 40 + vc(t) Hm = Is this is a minimum ('min') or maximum ('max')? min (2) Based on second-order characteristic equation, provide the following bandpass characteristics. B
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