The Radio Receiver
The Radio Receiver
Receiver Block Diagrams
In the block diagram of the receiver shown, the "RF amplifier"
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In the block diagram of the receiver shown, the "mixer"
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In the block diagram of the receiver shown, the output frequency of the "oscillator" is
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In the block diagram of the receiver shown, the "filter" rejects
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In the block diagram of the receiver shown, the "IF amplifier" is an
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In the block diagram of the receiver shown, the "product detector"
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In the block diagram of the receiver shown, the "AF amplifier"
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In the block diagram of the receiver shown, the "BFO" stands for
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In the block diagram of the receiver shown, most of the receiver gain is in the
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In the block diagram of the receiver shown, the "RF amplifier"
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In the block diagram of the receiver shown, the "mixer"
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In the receiver shown, when receiving a signal, the output frequency of the "oscillator" is
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In the block diagram of the receiver shown, the "limiter"
The demodulator will usually be a "discriminator" and may even be of a "phase-lock-loop" variety. There will be a "limiter" before the descriminator to remove noise peaks and amplitude-changes before detection of the FM signal
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In the block diagram of the receiver shown, the "frequency demodulator" could be implemented with a
The demodulator will usually be a "discriminator" and may even be of a "phase-lock-loop" variety.
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In the block diagram of the receiver shown, the "AF amplifier"
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In this receiver, an audio frequency gain control would be associated with the block labelled
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In the block diagram of the receiver shown, the selectivity would be set by the
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In the FM communications receiver shown in the block diagram, the "filter" bandwidth is typically
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In the block diagram of the receiver shown, an automatic gain control (AGC) circuit would be associated with the
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In the block diagram of the receiver shown, the waveform produced by the "oscillator" would ideally be a
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