t 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?
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A: 18 in binary 00010010 Sum 00010011 + 00010010= 00100101 Decimal value: 19 + 18= 37
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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?
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- It is desired to design a circuit to multiply the unsigned 3-bit number A with the unsigned 3-bit number B. How many bits should be the output of this circuit to be designed?Expert Q&A Done Design a combinational logic circuit that converts a 4-bit binary number into its corresponding 2's complement representation. For example, if the 4-bit number is "1111", the outputs should be "0001". Similarly, if the 4-bit number is "0000", the outputs should be "0000" Please complete the following truth table. Input 4-bit number 2's complement of the input number B s1 S2 S3 S4 ill out the following K-maps and then write down an optimized equation for S1, S2, S3, and S4, respectively. Hint: the equation of S4 can be immediately determined by inspecting the truth table. S1 52 53Design a circuit that allows you to obtain the odd parity bit for a group of 7 bits.
- Q6: - binary number (e.g., 101 → 100. Also, 000 → 111): a) Show the truth table. b) Show the Boolean expressions for the outputs in SoP. c) Design an efficient circuit using NAND gates only. Design a 3-bit DECrementor, that is, the cicuit generates the previous number of the inputSuppose that we want to determine how many of the bits in a three-bit unsigned numberare equal to 1. Design the simplest circuit that can accomplish this task. Please show all the steps (truth table, function, drawing the final ciruit, etc.)Use contraction beginning with a 4-bit adder-subtractor without carry out to design a 4-bit circuit that increments 0110 for S=0 and decrement 0110 for S=1. Show in your implementation the sum and the carry for every bit
- Given two 8-bit unsigned numbers, A and B:Using MSI components (comparators, multiplexers) design a circuit whose output X is as follows: X IF A <=B 2B IF A >B 2ADesign practical circuit that counts up to the first two digits of your university ID(ex. counts to 20 for 44150220) then display it to seven segmentDesign a 1-bit subtraction circuit. This circuit takes three inputs-two binary digits a and b and a borrow digit from the previous column. The circuit has two outputs-the difference (a – b), including the borrow, and a new borrow digit that propagates to the next column. Create the truth table and build the circuit. This circuit can be used to build N-bit subtraction circuits.
- design a 7 bit sequence detector that can detect the binary equivalent of the given 9 digit number (111916035). draw the state diagram and synthesize the circuit manually.Suppose that we want to determine how many of the bits in a three-bit unsigned number are equal to 1. Design the simplest circuit that can accomplish this task.Using a multiplexer, design a combinatorial circuit that calculates the even parity of a 4-bit number.