Determine the transfer function of the following Bode magnitude plot. |G(s)| 20 dB 2 -40 dB/dec I 800 W
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- semi-log facsimile and draw asymptotic Bode plots (magnitude & phase).Draw the Bode Plots and calculate the gain margin and the phase margin for the following transfer functions:7. The bode plot of a certain transfer function is given below. From the plot determine; Bode Diagram Magnitude (dB) Phase (deg) 40 20 -20 -60 -80 -100 0 -45 -90 -135 -180 -225 -270 10-2 10-1 10⁰ 10¹ Frequency (rad/s) a) Phase cross over frequency b) Gain cross over frequency c) Phase margin d) Gain margin e) Based on the bode plot the system is f) Number of poles g) Number of zeros a) Stable 10² 10³ b) unstable
- A parallel resonant circuit has a resistance of 2 k2 and half-power frequencies of 86 kHz and 90 kHz. Determine: (a) the capacitance (in nF) (b) the inductance (in uH) (c) the resonant frequency (in krad/s) (d) the bandwidth (in krad/s) (e) the quality factorIn a series RLC circuit, which element would you adjust and by how much to (a) (b)- (c) Double the bandwidth without changing the center frequency? Double the center frequency without changing the bandwidth? Repeat parts (a) and (b) for a parallel RLC circuit.Determine the transfer function that produced the following Bode plot. (Note: the values here were chosen so that this transfer function could be determined exactly): 120 Bode Diagram 100 80 60 40 20 45 -90 -135 -180 100 10 102 10 Frequency (radis) 10 (ge) pronbep (Bop) oe
- Find the transfer function (Vo(w)/Vi(w)) and draw the bode plot of both magnitude and phase of the transfer function. Please identify what type of filter is.Given the following transfer function, use the Bode plot paper and draw the asymptotic amplitude/magnitude Bode plot, as well as phase plot. Show all values on sketchesIn a series RLC circuit, the applied voltage is 120V. At resonance, the frequency is 200rad/sec, and the circuit current is 6.26 A. What is the resistance of the circuit (in Ohms)? (Use 2 decimal places. Unit is not required.)
- Q11. The Bode plot of Lead lag compensator will be as follows Bode Diagram 10 Frequency (rad/s) Discuss the arrow behavior (what happen at these regions) to compensate the unwanted specifications (gp) apraube (Bap) aseudQ3] Obtain the Transfer Function Vo (s)/Vi(s) of the circuit in Figure below and draw the Bode plot of its Transfer Function. 200 0.3H 1/10 F 426 - Amplitude ratio of the output sinusoidal to the input sinusoidal is called .. O A) Root locus O B) Magnitude of the sinusoidal transfer function C) Phase angle of the sinusoidal transfer function O D) Magnitude of the Bode plot O E) Bode plot