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Consider the audio signal with spectral components limited ...

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Consider an audio signal with spectral components limited ...

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    Consider an audio signal with spectral components limited to the frequency band of 300 to 3300 Hz. A PCM signal is generated with a sampling rate of 8000 samples/s. The required output signal-to-quantizing-noise ratio is 30 dB. (i) What is the minimum number of uniform quantizing levels needed, and what is the minimum number of bits per sample needed?

Solved Consider an audio signal with spectral …

    https://www.chegg.com/homework-help/questions-and-answers/consider-audio-signal-spectral-components-limited-frequency-band-300-3300-hz-pcm-signal-ge-q77024857
    Consider an audio signal with spectral components limited to the frequency band of 300 to 3300 Hz. A PCM signal is generated with a sampling rate of 8000 samples/s. The required output signal-to quantizing-noise ratio is 30 dB.

Solved Consider an audio signal with spectral …

    https://www.chegg.com/homework-help/questions-and-answers/consider-audio-signal-spectral-components-limited-frequency-band-300-3300hz-assume-samplin-q28504823
    Electrical Engineering. Electrical Engineering questions and answers. Consider an audio signal with spectral components limited to the frequency band 300 to 3300Hz. Assume that a sampling rate of 8000 samples/sec will be used to generate a PCM signal. Assume that the ratio of peak signal power to average quantization noise power to average quantization noise power at the …

Consider an audio signal with spectral components in the ...

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    5) Consider an audio signal with spectral components in the range 300 to 3400 Hz. Assume that a sampling rate of 8 kHz is used to generate a PCM signal with 256 quantizing levels. What data rate is required for the digital information? What frequency band is required assuming a signal to noise ratio of 30dB? I am describing PCM above.

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