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Скачать или смотреть Band Stop Filter | Band Reject Filter Explained | Analysis | Simulation

  • Circuit Simulations
  • 2022-12-25
  • 6155
Band Stop Filter | Band Reject Filter Explained | Analysis | Simulation
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Описание к видео Band Stop Filter | Band Reject Filter Explained | Analysis | Simulation

🔥🔥Band Stop Filter / Band Reject Filter Analysis and Simulation in LTSpice🔥🔥

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🏆The combination of the RC low pass filter and RC high pass filter can form a simple band pass filter that will pass a range of frequencies on either side of two cut-off frequency points. Similarly, we can combine these low-pass filters and high-pass filters to realize another type of RC filter network called a Band Stop Filter which can block or greatly attenuate a band of frequencies inside these two cut-off frequency points.

🏆The Band Stop Filter, (BSF) is another type of frequency selective circuit that functions in exactly the opposite way to the Band Pass Filter we analyze and looked at before. The band stop filter, also known as a Band Reject Filter, passes all frequencies with the exception of those within a specified stop band which are intensely attenuated. The bandpass filter and band reject filter are opposite of each other. The bandpass and bandstop filters have the same formulas but their circuit configuration is opposite. The Band Stop Filter is unlike the narrow-band rejection filter called the notch filter.

🏆The Band Stop Filter is a second-order (two-pole) filter having two cut-off frequencies, commonly known as the -3dB or half-power points producing a wide stop band bandwidth between these two -3dB points. The spice simulation and AC sweep analysis performed on 2nd order band-stop filter or active band reject filter shows the attenuation of signal inside the stopband. As per the frequency response analysis done in simulation, the function of a Band Reject Filter is to pass all those frequencies from zero (DC) up to its first (lower) cut-off frequency point, and pass all those frequencies above its second (upper) cut-off frequency, but a block or reject all those frequencies in-between. So as per monte Carlo simulation and analysis for a wide-band band stop filter, the filter's actual stop band lies between its lower and upper -3dB points as it attenuates, or rejects any frequency between these two cut-off frequencies.

🆗Main Key Points To be Covered in this video:
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1. Band stop filter
2. Band reject filter
3. Analysis
4. Simulation
5. Notch filter,
6. Low pass filter,
7. Wideband reject filter,
8. Bandpass filter,
9. High pass filter,
10. Band stop filter circuit,
11. Analog filter
12. Opamp filters,
13. gain of filter
14. filter design
15. band stop filter/ band elimination filter
16. passive filter,
17. Attenuation

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