A sinusoidal baseband signal with a frequency of 5kHz is transmitted using DSB-LC. The received signal is R = 1011 +0.2 cos(2m5000r)] cos(2r10°r) Volts. The shown system is used as a receiver. The BPF is ideal and its center frequency is 1.002MHz and bandwidth 7kHz. The demodulator has input-output characteristics (V₂ = 4V/). The LPF is ideal with an adjustable cutoff frequency. Determine the output signal waveform of this system. You need to specify the cutoff frequency of the LPF to obtain the original message back at Y. R BPF Demodulator (B-4A²) LPF DC removal

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Author:Robert L. Boylestad
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A sinusoidal baseband signal with a frequency of 5kHz is transmitted using DSB-LC.
The received signal is R = 10[1+0.2 cos(25000r)] cos(2r10°r) Volts. The shown
system is used as a receiver. The BPF is ideal and its center frequency is 1.002MHz and
bandwidth 7kHz. The demodulator has input-output characteristics (V₂ = 4V/). The
LPF is ideal with an adjustable cutoff frequency. Determine the output signal
waveform of this system. You need to specify the cutoff frequency of the LPF to obtain
the original message back at Y.
R
BPF
Demodulator
(B-4A²)
LPF
DC
removal
Transcribed Image Text:A sinusoidal baseband signal with a frequency of 5kHz is transmitted using DSB-LC. The received signal is R = 10[1+0.2 cos(25000r)] cos(2r10°r) Volts. The shown system is used as a receiver. The BPF is ideal and its center frequency is 1.002MHz and bandwidth 7kHz. The demodulator has input-output characteristics (V₂ = 4V/). The LPF is ideal with an adjustable cutoff frequency. Determine the output signal waveform of this system. You need to specify the cutoff frequency of the LPF to obtain the original message back at Y. R BPF Demodulator (B-4A²) LPF DC removal
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