Derive the truth table for a 2-bit greater-than circuit and obtain the logic expression in the sum-of-products format. Based on the expression, derive the VHDL code using only logical operators. Hints: - Is (X1 X0) greater than (Y1 Y0): - If X1 is greater than Y1, then X is greater than Y . If X1 equals Y1, then check if X0 is greater than Y0, if yes then X is greater than Y. . For all other cases X is less than Y - If X1=Y1 and X0=Y0 then X=Y .

Electric Motor Control
10th Edition
ISBN:9781133702818
Author:Herman
Publisher:Herman
Chapter22: Sequence Control
Section: Chapter Questions
Problem 6SQ: Draw a symbol for a solid-state logic element AND.
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Derive the truth table for a 2-bit greater-than circuit and obtain the logic
expression in the sum-of-products format. Based on the expression, derive
the VHDL code using only logical operators.
Hints: -
Is (X1 X0) greater than (Y1 Y0): -
If X1 is greater than Y1, then X is greater than Y .
If X1 equals Y1, then check if X0 is greater than Y0, if yes then X is greater than Y. .
For all other cases X is less than Y -
If X1=Y1 and X0=Y0 then X=Y .
Transcribed Image Text:Derive the truth table for a 2-bit greater-than circuit and obtain the logic expression in the sum-of-products format. Based on the expression, derive the VHDL code using only logical operators. Hints: - Is (X1 X0) greater than (Y1 Y0): - If X1 is greater than Y1, then X is greater than Y . If X1 equals Y1, then check if X0 is greater than Y0, if yes then X is greater than Y. . For all other cases X is less than Y - If X1=Y1 and X0=Y0 then X=Y .
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