Problem 1 V₂(s) V₁(s) (a) Design a circuit using resistors, capacitors, and one op amp with realizable component values to implement H (s). The transfer function for a circuit is Problem 1 (continued) H(s) = (c) Complete the table below. (b) Find the circuit's (i) step response and (ii) impulse response. = 40 H(s) = 40 x 106 120 8 +40 = V₂(8) V₁(s) w (rads¹) H(jw)|| LH (jw) (degrees) 0 120 s + 40

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Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Problem 1
The transfer function for a circuit is
V₂(s)
120
Vi(s)
8 + 40
(a) Design a circuit using resistors, capacitors, and one op amp with realizable component values to implement H(s).
Problem 1 (continued)
H(s) =
(b) Find the circuit's (i) step response and (ii) impulse response.
(c) Complete the table below.
0
H(s) =
40
=
w (rads¹) |H(jw)|| LH(jw) (degrees)
40 x 106
V₂(8) 120
V₁(s) s+40
(d) Make labelled sketches of H(jw) and LH (jw) versus frequency on a linear scale for 0 ≤ ≤ 80 rads-¹.
Transcribed Image Text:Problem 1 The transfer function for a circuit is V₂(s) 120 Vi(s) 8 + 40 (a) Design a circuit using resistors, capacitors, and one op amp with realizable component values to implement H(s). Problem 1 (continued) H(s) = (b) Find the circuit's (i) step response and (ii) impulse response. (c) Complete the table below. 0 H(s) = 40 = w (rads¹) |H(jw)|| LH(jw) (degrees) 40 x 106 V₂(8) 120 V₁(s) s+40 (d) Make labelled sketches of H(jw) and LH (jw) versus frequency on a linear scale for 0 ≤ ≤ 80 rads-¹.
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