Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN: 9780133923605
Author: Robert L. Boylestad
Publisher: PEARSON
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- Design the pass-band filter based on series resonance with the frequency response presented in Figure 1. The filter implementation presented in Figure 2. Given R=2202, R=24 02, fi-5000 Hz, f2=5500 Hz, Vin=1V. 0.707V V₁ = IV 20° BW Figure 1. Required PBF frequency response a) Determine value of inductor L in mH (millihenry) b) Determine value of capacitor C in μF (microfarad) c) Find the magnitude of Vo in volt at frequency f = f. Note: suppose that your inductor has the quality factor Q, >10. R₁ C Figure 2. Filter network C = R All answers L = V. = wwwarrow_forwardA passive RL filter circuit is given below. L. ll + V, in out a. Determine an expression for the voltage transfer function, Vu/Vm Also, determine our In' expressions for the magnitude and the phase angle of that transfer function. b. Classify the filter as LP, HP, BP or BS, and explain your reasoning.arrow_forwardC R₁ M Rf www + Vo For the op-amp filter circuit shown above, assume C₁ = 10nF, R₁ = Find the corner frequency, wc, of the circuit. 1k, and Rf = 5kQ. Wc secarrow_forward
- Please help with parts i, ii, iii, vi, v. I would really appreciate it.arrow_forwardParameter Value Gain, AV 30 dB Resistor, R1 1.5 kΩ Capacitor, C 3.35 uF 1. Figure depicts a first order low pass filter and Table tabulates parameters ultised to construct the filter. In the design, R1||R2. Calculate the bandwith of the filter. 2. Describe the condition of unity gain in an amplifier and determine voltage output, VO,if voltage input, V1, is 2V for a non-inverting amplifier 3. Construct an equation relating the input (Vin) and output (Vout) of an inverting amplifier.The conditioning circuit has input range between 10 mV to 110 mV which resultingoutput between 0V to 5V.arrow_forwardHow did they get c) d) e) f) g)?arrow_forward
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