Design a circuit that compares two 3-bit numbers A and B to check if they are equal and less than. The circuit has two outputs X and Y, So that X=1 if A==B and X=0 if A!=B and Y=1 if AB
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- Design a circuit that compares two 3-bit numbers A and B to check if they are equal and less than. The circuit has two outputs X and Y, So that X=1 if A==B and X=0 if A!=B and Y=1 if A<B and Y=0 if A>BDesign the simplest circuit that has three inputs, a, b, and c, which returns an output value of 1 whenever g and b are complements of each other or b and c are complements of each other, otherwise the output is 0. Realize the circuit using 4input , 3output PALDesign a combinational circuit that accepts a 4-bit number and generates a 3-bitbinary number output that approximates the square root of the number. Round off the result. Forexample, if the square root of 2 is 1.4, give a result of 1 = 001. If the square root of 3 is 1.7, give a result of 2 = 010. Let ABCD as inputs and xyz as outputs.
- Design a combinational circuit with three inputs x, y, and z, and three outputs, A, B, and C. When the binary input is 0, 1, 2, or 3, the binary output is one greater than the input. For example, if the inputs are 000, the outputs are 001. When the binary input is 4, 5, 6, or 7, the binary output is two less than the input. For example, when inputs are100, the outputs are 010. Show the truth table for the inputs and outputs. please show all steps , dont just explainDesign a combinational circuit that accepts a 4-bit number and generates abinary number output that approximates the square root of the number. Forexample, if the square root is 3.5 or larger, give a result of 4. If the squareroot is <3.5 and >= 2.5, give a result of 3. Use K-maps to simplify the circuit.Draw the circuit.design an odd-parity circuit. This is a circuit that has three inputs and one output. The circuit outputs a 1 if and only if even number (0 or 2) of its inputs are a 1. Otherwise, the circuit outputs a 0. Thus, the sum of the number of 1 bits in the input and the output is always an odd number.
- Implement a combinational circuit with three inputs x, y, and z and three outputs A, B, and C.When the binary input is equal to 0, 1, 2 or 3, then the output is equal to the input + 1.When the binary input is 4, 5, 6 or 7 then the binary output is equal to the input – 2.Design a combinational circuit with three inputs x, y, z, and three outputs a, b, and c. When the binary input is 0, 1,2, or 3 , the binary output is 1 greater than the input. When the binary input is 4, 5, 6, or 7, the binary output is one less than the input.Design a combinational circuit with three inputs x, y, and z and three outputs A, B, and C. When the binary input is 0, 1, 2, or 3, the binary output is one greater than the input. When the binary input is 4, 5, 6, or 7, the binary output is two less than the input.
- Design a circuit using a Multiplexer, (((USING A MULTIPLEXER NOT A DECODER))) that has two inputs X, and S, where X represents an 8-bit BCD number,S is a sign bit. The circuit has one output Y, which is the Binary representation of thesigned-magnitude BCD number. A negative output is represented in the Binary 2’scomplement form.Design a combinational circuit with three inputs, x , y , and z , and three outputs, A, B, and C . When the binary input is 0, 1, 2, or 3, the binary output is two greater than the input. When the binary input is 4, 5, 6, or 7, the binary output is two less than the input.Consider two four bit numbers A and B, where either both the numbers are even or both of them are odd. Construct a combinational circuit which will perform the following operations: If A and B are both even, calculate A+B, else calculate A-B