For the series resonant circuit given below, calculate the value of the quality factor ? L = 5mH C = 0.02 μF m R = 500 VIN-10 VO
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- A parallel resonant circuit has R = 100 kohm &, L= 20 mH, and C = 5 nF. Calculate w0, and Q,.Answer the following questions: 6. Describe the current and impedance in a series RLC circuit at resonance.7. Describe the current and impedance in a parallel RLC circuit at resonance.What would be the resonant frequency of a series resonant circuit comprising of a resistor of resistance 500 ohm, inductance of 200 mH and capacitance of 5 micro Farad?
- For the circuit of the following figure, sketch the totalhigh frequencyresponse on a Bode plot showing: (a) The critical frequencies (b) The roll-off rates 12 V Cx = 12 pF 40 pF C= 8 pF 5.6 kn 68 kn 0.47 µF B = 120 0.47 µF 3.3 k2 10 kQ 1.0 k 20 uFb) Determine the value of the capacitor and inductor of a series resonance circuit exhibiting the following specifications: BW = 200 Hz fres = 2000 Hz You can assume any suitable resistor value.A parallel RLC resonant ckt R=8kOhm, L=40mH and C=0.25 µF Determine quality factor?
- 1. Find the indicated values for this series resonant circuit. fs Qs BW fi f2 Is Polar VR Polar V. Polar Ve Polar P Watts. A resonant circuit has a peak output voltage of 4.5 mV. What is the voltage output at the upper and lower cutoff frequencies?A Lead-lag circuit has a resonant frequency of 3.5kHz. What is the rms output voltage if an input signal with a frequency equal to fr and with an rms value of 2.2V is applied to the input?
- What is the expected frequency at resonance fs if v = 50, R = 2.2k ohms, XL = 1.0k ohms, XC = 1.0k ohms and frequency is 60Hz.In a series RLC circuit, the applied voltage is 108V. At resonance, the frequency is 200rad/sec, and the circuit current is 8.38 A. What is the resistance of the circuit (in Ohms)?QUESTION 3 (a) Figure Q3(a) shows an approximate and actual Bode Plot for magnitude and phase. From the given Bode Plot, extract all the information that you might think valuable to the user as a control engineer. You can choose either to use the approximate Bode Plot or actual Bode Plot in this analysis. Magnitude Plot 40 Approimate -Actual 20 -80 -100 To Freg rad's) Phase Plot Approainate -100 Actual -120 -140 6-160 E -200 -220 - -240 -260 Freg radis) Figure Q3(a)