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Q.The frequencies of two side bands in an amplitude modulated wave are 640 kHz and 660 kHz respectively. Find the frequencies of the carrier and the modulating signals. Also obtain the value of the bandwidth required in amplitude modulation.

(OR)
A sinusoidal carrier voltage is amplitude modulated by a sinusoidal voltage of 10 kHz with modulation index 0·3. If the carrier frequency is 10 MHz and its amplitude is 40 V, calculate the frequency and amplitude of the two sidebands.
CBSECBSE Class XII Board 2019Subjective· 2mImportance★★★★★
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(a) Carrier =650=650 kHz, modulating signal =10=10 kHz, bandwidth =20=20 kHz.

(b) Sidebands at 10.0110.01 MHz and 9.999.99 MHz, each amplitude 66 V.

Amplitude modulation of a carrier fcf_c by a signal fmf_m produces three components — the carrier at fcf_c and two sidebands at fc+fmf_c+f_m (USB) and fc−fmf_c-f_m (LSB), symmetric about the carrier. The transmission bandwidth is 2fm2f_m, and each sideband has amplitude mAc2\frac{mA_c}{2}.

Part (a)

Given sidebands 640 kHz and 660 kHz, so fLSB=640f_{LSB}=640, fUSB=660f_{USB}=660 kHz.

Carrier (midway between the sidebands):

fc=fLSB+fUSB2=640+6602=650 kHz.f_c=\frac{f_{LSB}+f_{USB}}{2}=\frac{640+660}{2}=650\ \text{kHz}.

Modulating frequency:

fm=fUSB−fc=660−650=10 kHz.f_m=f_{USB}-f_c=660-650=10\ \text{kHz}.

Bandwidth: …

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