A comparator logic circuit with four inputs and four outputs will be designed. A1, A, B1 and B, inputs of the circuit; Y3 = F (A1, A, B1, B,), Y2 = F (A1, A., B1, B.), Y1 = F (A1, A, B1, Bo) and Yo = F (A1, A, B1, Bo) are the outputs of the circuit. A = (A1A) 2 and B = (B.Boz represent 2-bit numbers in base 2. When A> B, Yz is output, when A is B, Yz is output, when A
A comparator logic circuit with four inputs and four outputs will be designed. A1, A, B1 and B, inputs of the circuit; Y3 = F (A1, A, B1, B,), Y2 = F (A1, A., B1, B.), Y1 = F (A1, A, B1, Bo) and Yo = F (A1, A, B1, Bo) are the outputs of the circuit. A = (A1A) 2 and B = (B.Boz represent 2-bit numbers in base 2. When A> B, Yz is output, when A is B, Yz is output, when A
Introductory Circuit Analysis (13th Edition)
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A comparator logic circuit with four inputs and four outputs will be designed. A1, A, B1 and B, inputs of the circuit; Y3 = F (A1, A, B1, B,), Y2 = F (A1, A., B1, B.), Y1 = F (A1, A, B1, Bo) and Yo = F (A1, A, B1, Bo) are the outputs of the circuit. A = (A1A) 2 and B = (B.Boz represent 2-bit numbers in base 2.
When A> B, Yz is output, when A is B, Yz is output, when A <B is Y1 output, when A is SB, Yo output is Logic 1.
a) Create the truth table of the logic circuit.
b) Design the Yz output of the comparator with two layer NOR-OR (Or Not-Or) gates and plot the output Y2.
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