Passive filters A frequency selective circuit, or filter, enables signals at certain frequencies to...

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Passive filters A frequency selective circuit, or filter, enables signals at certain frequencies to reach the output, and it attenuates (weaken or lessen the effect of) signals at other frequencies to prevent them from reaching the output. The transfer function is

Transcript of Passive filters A frequency selective circuit, or filter, enables signals at certain frequencies to...

Page 1: Passive filters A frequency selective circuit, or filter, enables signals at certain frequencies to reach the output, and it attenuates (weaken or lessen.

Passive filters

A frequency selective circuit, or filter, enables signals at certain frequencies to reach the output, and it attenuates (weaken or lessen the effect of) signals at other frequencies to prevent them from reaching the output. The transfer function is

Page 2: Passive filters A frequency selective circuit, or filter, enables signals at certain frequencies to reach the output, and it attenuates (weaken or lessen.

Ideal frequency response plots of the four types of filter circuits

Page 3: Passive filters A frequency selective circuit, or filter, enables signals at certain frequencies to reach the output, and it attenuates (weaken or lessen.

Low-Pass Filters

Page 4: Passive filters A frequency selective circuit, or filter, enables signals at certain frequencies to reach the output, and it attenuates (weaken or lessen.

General form for the transfer functions of these two lowpass filters:

Page 5: Passive filters A frequency selective circuit, or filter, enables signals at certain frequencies to reach the output, and it attenuates (weaken or lessen.

Example:

Solution

Page 6: Passive filters A frequency selective circuit, or filter, enables signals at certain frequencies to reach the output, and it attenuates (weaken or lessen.
Page 7: Passive filters A frequency selective circuit, or filter, enables signals at certain frequencies to reach the output, and it attenuates (weaken or lessen.

Problem :

Page 8: Passive filters A frequency selective circuit, or filter, enables signals at certain frequencies to reach the output, and it attenuates (weaken or lessen.

High Pass Filters

Page 9: Passive filters A frequency selective circuit, or filter, enables signals at certain frequencies to reach the output, and it attenuates (weaken or lessen.

Example

Page 10: Passive filters A frequency selective circuit, or filter, enables signals at certain frequencies to reach the output, and it attenuates (weaken or lessen.
Page 11: Passive filters A frequency selective circuit, or filter, enables signals at certain frequencies to reach the output, and it attenuates (weaken or lessen.
Page 12: Passive filters A frequency selective circuit, or filter, enables signals at certain frequencies to reach the output, and it attenuates (weaken or lessen.

Band pass Filters

Page 13: Passive filters A frequency selective circuit, or filter, enables signals at certain frequencies to reach the output, and it attenuates (weaken or lessen.
Page 14: Passive filters A frequency selective circuit, or filter, enables signals at certain frequencies to reach the output, and it attenuates (weaken or lessen.
Page 15: Passive filters A frequency selective circuit, or filter, enables signals at certain frequencies to reach the output, and it attenuates (weaken or lessen.
Page 16: Passive filters A frequency selective circuit, or filter, enables signals at certain frequencies to reach the output, and it attenuates (weaken or lessen.

Band pass filter – Quantitative analysis

Page 17: Passive filters A frequency selective circuit, or filter, enables signals at certain frequencies to reach the output, and it attenuates (weaken or lessen.
Page 18: Passive filters A frequency selective circuit, or filter, enables signals at certain frequencies to reach the output, and it attenuates (weaken or lessen.

The bandwidth of a bandpass filter is defined as the difference between the two cutoff frequencies.

Page 19: Passive filters A frequency selective circuit, or filter, enables signals at certain frequencies to reach the output, and it attenuates (weaken or lessen.

• The quality factor Q, is defined as the ratio of center frequency to bandwidth

We can also rewrite the equations for the cutoff frequencies in terms of the center frequency and

the bandwidth or the quality factor

Page 20: Passive filters A frequency selective circuit, or filter, enables signals at certain frequencies to reach the output, and it attenuates (weaken or lessen.

Example :A graphic equalizer is an audio amplifier that allows you to select different levels of amplification within different frequency regions. Using the series RLC circuit in, choose values for R, L,and C that yield a bandpass circuit able to select inputs within the 1-10 kHz frequency band. Such a circuit might be used in a graphic equalizer to select this frequency band from the larger audio band (generally 0-20 kHz) prior to amplification. Choose C = 1 microFarad.Solution : We compute the center frequency as the geometricmean of the cutoff frequencies: Convert the center frequency to radians per second to calculate L,

To check whether these component values produce the bandpass filter we will, substitute theminto

Page 21: Passive filters A frequency selective circuit, or filter, enables signals at certain frequencies to reach the output, and it attenuates (weaken or lessen.

Bandreject FiltersA bandreject filter attenuates voltages at frequencies within the stopband, which is between wc1 and wc2. It passes frequencies outside of the stopband

Page 22: Passive filters A frequency selective circuit, or filter, enables signals at certain frequencies to reach the output, and it attenuates (weaken or lessen.
Page 23: Passive filters A frequency selective circuit, or filter, enables signals at certain frequencies to reach the output, and it attenuates (weaken or lessen.

………………………………………………………Formulae for both filters