Question: Implement them with a single PROM. Implement them separately with a single 16:1 Multiplexer for each. For the same functions, we have available as many

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Implement them with a single PROM.
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Implement them separately with a single 16:1 Multiplexer for each.
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For the same functions, we have available as many of the decoders described below
as we need plus 2 eight-input OR gates. Show a block diagram for this implementation. All inputs are available both uncomplemented and complemented.
Problem 7: (8 pts) We have found a minimum sum of products expression for each of two functions, F and G, minimizing them individually: Implement them with a single PROM Implement them separately with a single 16:1 Multiplexer for each For the same functions, we have available as many of the decoders described below as we need plus 2 eight-input OR gates. Show a block diagram for this implementation. All inputs are available both uncomplemented and complemented. iii. EN1EN2 ABO123 XIX|0|0|0|0 A 0 0 0 0 0 0 0 1000 0 101 0 0 10 0 0 0 110 00 1 ENT EN2 Problem 7: (8 pts) We have found a minimum sum of products expression for each of two functions, F and G, minimizing them individually: Implement them with a single PROM Implement them separately with a single 16:1 Multiplexer for each For the same functions, we have available as many of the decoders described below as we need plus 2 eight-input OR gates. Show a block diagram for this implementation. All inputs are available both uncomplemented and complemented. iii. EN1EN2 ABO123 XIX|0|0|0|0 A 0 0 0 0 0 0 0 1000 0 101 0 0 10 0 0 0 110 00 1 ENT EN2
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