Consider the three-op-amp circuit in Fig. P5.6. Writing equations at nodes a, b, and c, determine the transfer function T = V₂/V₁. Show that when R₂ = R3, the filter becomes a notch filter, while when R₂ =-2R3, the filter is an allpass one. Show that design can be accomplished by the choices C₁ = C₂ = 1, R₁ = 1/Q, and R₂ = Q.

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5.6 Consider the three-op-amp circuit in Fig. P5.6. Writing equations at nodes a, b, and c,
determine the transfer function T= V₂/V₁. Show that when R₂ = R₁, the filter becomes a
notch filter, while when R₂ = 2R3, the filter is an allpass one. Show that design can be
accomplished by the choices C₁ = C₂ = 1, R₁ = 1/Q, and R₂ = Q.
6+1=1
R.
R₁
R
C₂
Rz
R ₂
WORKERS
b
R3
€₂
FIGURE P5.6
V₁
R3
FERRACIAL
R₂
+6
Transcribed Image Text:5.6 Consider the three-op-amp circuit in Fig. P5.6. Writing equations at nodes a, b, and c, determine the transfer function T= V₂/V₁. Show that when R₂ = R₁, the filter becomes a notch filter, while when R₂ = 2R3, the filter is an allpass one. Show that design can be accomplished by the choices C₁ = C₂ = 1, R₁ = 1/Q, and R₂ = Q. 6+1=1 R. R₁ R C₂ Rz R ₂ WORKERS b R3 €₂ FIGURE P5.6 V₁ R3 FERRACIAL R₂ +6
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