a. Determine the inductor and capacitor values for a "pi" (n) configured constant-K, band-stop filter with cut-off frequencies of 101.1 and 101.7 MHz and surge impedance 10 kQ b. Sketch the equivalent "T" network Bandpass Design Equations Bandstop Design Equations L₁ = Zo (f₂-f1) (f1-f2)Zo L₁ = πf1f2 (f2-f1)Z0 Zo L2 4nf1f2 L₂ = 4π(f₂-f1) f2-f1 C1 4πf1f2Z0 1 C₂ = π(f₂-f1)Z0 1 4(f2-f1)Zo C₂ = (f2-f1) πZofifz

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a. Determine the inductor and capacitor values for a "pi" (n)
configured constant-K, band-stop filter with cut-off frequencies of
101.1 and 101.7 MHz and surge impedance 10 kQ
b. Sketch the equivalent "T" network
Bandpass Design Equations
Bandstop Design Equations
L₁ =
Zo
(f₂-f1)
(f1-f2)Zo
L₁ =
πf1f2
(f2-f1)Z0
Zo
L2
4nf1f2
L₂ =
4π(f₂-f1)
f2-f1
C1
4πf1f2Z0
1
C₂ =
π(f₂-f1)Z0
1
4(f2-f1)Zo
C₂ =
(f2-f1)
πZofifz
Transcribed Image Text:a. Determine the inductor and capacitor values for a "pi" (n) configured constant-K, band-stop filter with cut-off frequencies of 101.1 and 101.7 MHz and surge impedance 10 kQ b. Sketch the equivalent "T" network Bandpass Design Equations Bandstop Design Equations L₁ = Zo (f₂-f1) (f1-f2)Zo L₁ = πf1f2 (f2-f1)Z0 Zo L2 4nf1f2 L₂ = 4π(f₂-f1) f2-f1 C1 4πf1f2Z0 1 C₂ = π(f₂-f1)Z0 1 4(f2-f1)Zo C₂ = (f2-f1) πZofifz
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