Why do we use the band pass filter for the production of amplitude modulated wave? (ωm and ωc are the angular frequency of the modulating signal and the carrier wave respectively)

  1. To reject dc signals
  2. To reject sinusoids of frequencies ωm, 2ωm and 2ωc only
  3. To reject dc signals and sinusoids of frequencies ωm, 2ωm and 2ωc
  4. None of these

Answer (Detailed Solution Below)

Option 3 : To reject dc signals and sinusoids of frequencies ωm, 2ωm and 2ωc
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CUET General Awareness (Ancient Indian History - I)
10 Qs. 50 Marks 12 Mins

Detailed Solution

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CONCEPT:

Production of amplitude modulated wave:

  • Amplitude modulation can be produced by a variety of methods.
  • A conceptually simple method is shown in the block diagram given below,

  • Here the modulating signal is added to the carrier signal to produce the signal x(t).
  • After that this signal x(t) is passed through a square-law device which is a non-linear device that produces an output,

⇒ y(t) = Bx(t) + Cx2(t)

Where B and C are constants

  • After that, the output of the square-law device is passed through a bandpass filter.
  • The bandpass filter rejects dc and the sinusoids of frequencies ωm, 2ωm, and 2ωc and retains the frequency ωc, (ωc - ωm) and (ωc + ωm).
  •  The output of the bandpass filter is an amplitude modulated wave.
  • It is to be mentioned that the modulated signal cannot be transmitted as such.
  • The modulator is to be followed by a power amplifier which provides the necessary power and then the modulated signal is fed to an antenna of an appropriate size.

EXPLANATION:

  • From the above, it is clear that the bandpass filter rejects dc and the sinusoids of frequencies ωm, 2ωm, and 2ωc and retains the frequency ωc, (ωc - ωm) and (ωc + ωm). Hence, option 3 is correct.

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