pblem Expand the circuit in Figure 6-25 to a 16-bit comparator.
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- Design a combinational circuit that uses 4-bit adders and 2-to-1 MUXes. Given two 8-input signed 2s-complement numbers A and B and a binary input signal M, your circuit should produce an 8-bit signed 2s-complement result R, as follows: if (M == 0) R = A + 7; else R = B + 15;Design a circuit that uses 4-bit full adders and AND gates. Given two 8-bit signed 2s-complement numbers A and B and a binary input signal M, your circuit should produce an 8-bit signed 2s-complement result R, as follows: if (M == 0) R = A; else R = A + B + 1;4 bit 2’s Complement Multiplier INPUT A: 4 bit 2’s Complement numberINPUT B: 4 bit 2’s Complement numberOUTPUT: the product of A x B represented as a 8 bit 2’s Complement number Do this:Build a 4 Bit UNSIGNED Multiplier as a subcircuit named UnsignedMultiplier use AND gate ,full and half adders for the circuit
- 4 bit 2’s Complement Multiplier INPUT A: 4 bit 2’s Complement number INPUT B: 4 bit 2’s Complement number OUTPUT: the product of A x B represented as a 8 bit 2’s Complement number PART 3: Build a 4 Bit UNSIGNED Multiplier as a subcircuit named UnsignedMultiplier use AND gate ,full and half adders for the circuitCreate a circuit that converts NBCD code into 5311 code. If the input is not part of the NBCD code, the output is all 1. -Input should be 4-bit NBCD code, output should be 4-bits 5311 code -Create a Karnaugh map for each output bits.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.
- Given that X and Y are 4-bit numbers, implement the function S = X + Y by using full-adders as blocks. Demonstrate how your circuit works with the inputs X = 1010 and Y = 1011, and write the result of this operation.Design a 2-bit binary full-adder circuit using a true-output decoder. Assume carry input of the 2-bit binaryfull-adder is zero.Circuit adds two 2-bit binary numbers A, consisting of bits A1, A0, and B, consisting of bits B1, B0. Thesum that is produced by the adder circuit consists of two sum bits S1, S0 and a carry out bit C0.Provide:i. Boolean equations for S1, S0 and C0.ii. Completely labelled logic diagram of decoder that implements the required operation.(You can represent the decoder in form of block diagram)Design a combinational circuit that compares two 2-bit binary numbers, A = a1a0 and B = b1b0. The circuit will result in 1 if A≤ B, 0 otherwise.
- It is desired to design a circuit to multiply the signed 3-bit number A with the signed 3-bit number B. How many bits should be the output of this circuit to be designed?using a msi circuit construct a binary parallel Adder to add two 16 bit binary numbers label all carries between the MSi circuitsConvert M into eight bits and draw the circuit diagram with full adders to show the additionof 00010011 and 18.