A signal m¡ (1) is band-limited to 3.6 kHz, and the three other signals m2(t), m3(t), and m4(t) are band-limited to 1.2 kHz each. These signals are sampled at the Nyquist rate and binary coded using 512 levels (L = 512). Suggest a suitable bit-by-bit multiplexing arrangement (as in Fig. 6.12). What is the commutator frequency (in rotations per second), and what is the output bit rate?

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A signal m (t) is band-limited to 3.6 kHz, and the three other signals m2(t), m3(t), and m4(t) are
band-limited to 1.2 kHz each. These signals are sampled at the Nyquist rate and binary coded using
512 levels (L = 512). Suggest a suitable bit-by-bit multiplexing arrangement (as in Fig. 6.12).
What is the commutator frequency (in rotations per second), and what is the output bit rate?
Transcribed Image Text:A signal m (t) is band-limited to 3.6 kHz, and the three other signals m2(t), m3(t), and m4(t) are band-limited to 1.2 kHz each. These signals are sampled at the Nyquist rate and binary coded using 512 levels (L = 512). Suggest a suitable bit-by-bit multiplexing arrangement (as in Fig. 6.12). What is the commutator frequency (in rotations per second), and what is the output bit rate?
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