Question

Part B Using C = 26 nF capacitors, design an active broadband first-order bandreject filter with a lower cutoff frequency of

0 0
Add a comment Improve this question Transcribed image text
Answer #1

* Bond stop filter /Band resect filler / Band elimination filler * BPF, BSF are Combination of HPF a LPF Tale Can design fillHommeil DLvo Vo = re. E lo +Von] Io = -RF Tali - DisRac] RI L IHSRLC HSRHC I do = Rf r ibilt SRHC Vi Ri L HSOLL ITSRACT f. =2o log Wo. o do Rf Il+25RHC +5 RHPLC) Ri Liits RLC) (x+524 C) Jw=0 i to HOSRHC+3² RH & LC² / Vi = (1+SPC) (145RHC) part B: RA

Op amp are widely used fir analog applications because there versatility and flexible specifications

Add a comment
Know the answer?
Add Answer to:
Part B Using C = 26 nF capacitors, design an active broadband first-order bandreject filter with...
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for? Ask your own homework help question. Our experts will answer your question WITHIN MINUTES for Free.
Similar Homework Help Questions
  • R1 = 49.7 Ohms, C1 = 1.60 uF Using the circuit shown in (Figure 1), design a narrow band bandreject filter having a center frequency of 4 kHz and a quality factor of 10. Base the design on igure 1 of...

    R1 = 49.7 Ohms, C1 = 1.60 uF Using the circuit shown in (Figure 1), design a narrow band bandreject filter having a center frequency of 4 kHz and a quality factor of 10. Base the design on igure 1 of 2 (> (1-o)R Figure 2 of 2 l6 RI R3 RC 2 Rs Part C Determine the resistance R2 in the filter Express your answer to three significant figures and include the appropriate units R2Value Units Submit Request Answer...

  • Problem 15 15 of 21 > A Review Constants Using 2.7 K resistors and ideal op...

    Problem 15 15 of 21 > A Review Constants Using 2.7 K resistors and ideal op amps, design a circuit that will implement the low-pass Butterworth filter having a cutoll frequency of 600 Hz and the gain of no more than-32 dB at 2500 Hz. The gain in the passband is one Part A Determine the order of the low-pass Butterworth filter with given filter specifications. Express your answer as an integer. IVO AX t ? 11 = Submit Request...

  • Homework #2 Problem 14.38 PSpice Multisim Part A Consider the bandreject filter shown in (Figure 1)....

    Homework #2 Problem 14.38 PSpice Multisim Part A Consider the bandreject filter shown in (Figure 1). Suppose that R-4 k2,L-3.5 mH, C-62.5 nF Calculate the center frequency wo. Express your answer using three significant figures vec krad/s Figure 1 of 1 Submit Request Answen Part B Calculate the center frequency f, in kilohertz. Express your answer using three significant figures vec kHz Problem 14.38 PSpice Multisim Part C Consider the bandreject filter shown in (Figure 1). Suppose that R-4 k2,L-3.5...

  • Problem 2 a) Using 5 nF capacitors, design an active broad- band first-order bandreject filter with...

    Problem 2 a) Using 5 nF capacitors, design an active broad- band first-order bandreject filter with a lower cutoff frequency of 1000 Hz, an upper cut-off frequency of 5000 Hz, and a pass band gain of 10dB. b) Draw the schematic diagram of the filter. c) Write the transfer function to find H(jωo), where ωo is the center frequency of the filter. d) What is the gain (in decibels) of the filer at the center frequency? e) Using Matlab make...

  • Learning Goal: To analyze and design a passive, first-order low- pass filter using a series RL...

    Learning Goal: To analyze and design a passive, first-order low- pass filter using a series RL circuit. The analysis and design will be repeated for a series RC circuit. An electrocardiogram needs to detect periodic signals of approximately 1 Hz (since the resting heart rate of a healthy adult is between 55 and 70 beats per minute). The instrument operates in an electrical environment that is very noisy with a frequency of 60 Hz. It is desirable to have a...

  • Learning Goal: To analyze and design a passive, first-order low-pass filter using a series RL circuit....

    Learning Goal: To analyze and design a passive, first-order low-pass filter using a series RL circuit. The analysis and design will be repeated for a series RC circuit. An electrocardiogram needs to detect periodic signals of approximately 1 Hz (since the resting heart rate of a healthy adult is between 55 and 70 beats per minute). The instrument operates in an electrical environment that is very noisy with a frequency of 60 Hz. It is desirable to have a low-pass...

  • Part A Review| Constants Using 3 k2 resistors and ideal op amps, design a circuit that...

    Part A Review| Constants Using 3 k2 resistors and ideal op amps, design a circuit that will implement the low-pass Butterworth filter that has a cutoff frequency of 2160 Hz. The gain in the passband is one. Determine R' in the first-order circuit Express your answer using three significant figures Submit Request Answer Part B Determine C in the first-order circuit Express your answer using three significant figures nF Part C Determine R' in the second-order circuit. Express your answer...

  • Part B - Designing and analyzing a series RC high-pass filter Using the available 3.2 uF...

    Part B - Designing and analyzing a series RC high-pass filter Using the available 3.2 uF capacitor, what is the value of the resistor needed to make a high-pass filter with a cutoff frequency of 2800 Hz? Express your answer to three significant figures and include appropriate units. View Available Hint(s) НА ? R = Value Units Submit Part C - Measuring the effectiveness of the series RC high-pass filter To measure the effectiveness of the design, find the magnitude...

  • Scale the bandpass filter in (Figure 1) so that the center frequency is 180 kHz and...

    Scale the bandpass filter in (Figure 1) so that the center frequency is 180 kHz and the quality factor is 8, using a 2.5 nF capacitor. Figure < 1 of 1 > 8k 310 mH 10 nF Part A Determine the value of the resistor of the scaled filter Express your answer to three significant figures and include the appropriate units. R = Value Units Submit Request Answer Part B Determine the value of the inductor of the scaled filter...

  • Design a bandpass filter, using a cascade connection, to give a center frequency of 600 Hz,...

    Design a bandpass filter, using a cascade connection, to give a center frequency of 600 Hz, a bandwidth of 2 kHz, and a passband gain of 4. Use 250 nF capacitors. Part A Specify fal Express your answer to three significant figures and include the appropriate units. Part B Specify f2. Express your answer to three significant figures and include the appropriate units. Part C Specify RL Express your answer to three significant figures and include the appropriate units. Part...

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT