Q1. A station started broadcasting on the commercial AM system with the frequency 600 kHz, while a second station is broadcasting at 650 kHz. Knowing that the first station is transmitting the signal m, while the second station is broadcasting m, Given that m-2 cos (10,000 nt)+cos (30,000 xt). mcos (20,000 x) + 2 cos (30,000 xt). If the receiver uses high side tuning and an RF filter with 180 kHz bandwidth: Calculate the image frequency of each station. i Propose IF filter characteristics (center frequency and bandwidth) to ensure no interference When listening to the first station, draw the spectrum before and after the IF filter.

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Q1. A station started broadcasting on the commercial AM system with the frequency 600 kHz,
while a second station is broadcasting at 650 kHz. Knowing that the first station is transmitting
the signal me, while the second station is broadcasting m, Given that
mt-2 cos (10,000 nt) + cos (30,000 zt).
mcos (20,000 xt) + 2 cos (30,000 xt).
If the receiver uses high side tuning and an RF filter with 180 kHz bandwidth:
&
Calculate the image frequency of each station.
ii
Propose IF filter characteristics (center frequency and bandwidth) to ensure no
interference
When listening to the first station, draw the spectrum before and after the IF filter.
Hi
Transcribed Image Text:Q1. A station started broadcasting on the commercial AM system with the frequency 600 kHz, while a second station is broadcasting at 650 kHz. Knowing that the first station is transmitting the signal me, while the second station is broadcasting m, Given that mt-2 cos (10,000 nt) + cos (30,000 zt). mcos (20,000 xt) + 2 cos (30,000 xt). If the receiver uses high side tuning and an RF filter with 180 kHz bandwidth: & Calculate the image frequency of each station. ii Propose IF filter characteristics (center frequency and bandwidth) to ensure no interference When listening to the first station, draw the spectrum before and after the IF filter. Hi
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