Q2 A series RLC bandreject filter is used to reject a 200 Hz sinusoid while passing other frequencies, calculate the values of L and C. Take R=150 2 and the bandwidth as 100 Hz.
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- A parallel R-L-C circuit is fed by a constant current source of variable frequency. The circuit resonates at 100 kHz and the Q-factor measured at this frequency is 5. Find the frequencies at which the amplitude of the voltage across the circuit falls to (a) 70.7% (b) 50% of the resonant frequency amplitude.Given the series RLC circuit. If R=-10 ohm, find the values of L and C such that the network will have a center frequency of 100 kHz and a bandwidth of 1kHz. The output of the circuit is taken across series LC. Select one: O a. 1.59 mH and 1.59 nF O b. 1.59 mH and 1.59 uF Oc 1.59 uH and 1.59 uF O d. 1.59 H and 1.59 nFDesign a series RLC bandpass filter as shown in the figure with lower cut-off frequency f = 400 Hz and bandwidth B = 9600 Hz %3D a) Determine the higher cut-off frequency f# b) Determine the center or resonant frequency fo in Hz and wo in rad/s and calculate the quality factor Q c) Choose C = 2 nF and find the values of R and L to meet the design specifications C No V: O
- An RC low-pass filter is shown in the figure. Its purpose is to attenuate higher frequencies while allowing lower frequencies to pass through. A 960-Hz sine-wave signal with rms amplitude of Vrms = 1.9 V is fed into the filter. The values of the components are R = 120 Ω and C = 0.64 μF and Vout-rms = 1.724 V. By what angle, in degrees, does the output voltage lag the input voltage?H.W: A resistor of resistance R-1000 2 is maintained at 17 °C and it shunted by 100 uH inductor. Determine the rms noise voltage across the inductor over a frequency bandwidth of: i) 15.9 kHz Ans: 182 x109 volt ii) iii) Ans: 9.22 x10-8 volt Ans: 2.34 x10-6 volt 159 kHz 1590 kHzEill in the blank with corect answers B Frequency Series Resonance - Impedance vs. Frequency. The graph of impedance against frequency for an RLC series resonance circuit is shown in the picture. At which point the current will be maximum At point A At point C At point B At point D The inner most layer of an optical fhotI Is cantu Impedance
- The circuit shown in the given figure is an active filter. Assume C=120 pF. Ro-184 kohm. R₁33 kohm, and R2 = 60 kohm. NOTE: This is a multi-part question. Once an answer is submitted, you will be unable to return to this part. 4-5 www 14 www R₂ 2 ww 644 Determine the cutoff frequencies. The cutoff frequencies w₁ and 2 are 896 106 rad/s and 5.55-105 red/s, respectively. HE -We will use magnitude comparator and a Quad 2-to-1 MUX. How ?30. Realize the imego phase fiteo with tue impulse desponse - hon) = son) + Scn-+) - son2) + scna)+SCny) %3D
- 2. A bandpass filter has an upper cutoff frequency of 84.7 kHz and a bandwidth of 12.3 kHz. What is the lower cutoff frequency. Design the ideal waveform using the given frequencies.3. Show how a series RLC filter, its type depends on the output voltage terminal as follows: Low pass filter the output voltage across ... High pass filter the output voltage across . Band pass filter the output voltage across Band reject filter the output voltage across ...... ......... ........Design a series RLC bandpass filter as shown in the figure with lower cut-off frequency f = 400 Hz and bandwidth B = 9600 Hz a) Determine the higher cut-off frequency fH b) Determine the center or resonant frequency fo in Hz and wo in rad/s and calculate the quality factor Q c) Choose C = 2 nF and find the values of R and L to meet the design specifications C R No