Implement using a multiplexer: F (A,B,C,D) = ∑(0,2,3,4,7,8,10,13,15) -Include truth table and multiplexer implementation.
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1.Implement using a multiplexer:
F (A,B,C,D) = ∑(0,2,3,4,7,8,10,13,15)
-Include truth table and multiplexer implementation.
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- Design a combinational circuit with the four inputs A,B.C, and D, and three outputs X, Y, and Z. When the binary input is odd number, the binary output is one lesser than the input. When the binary input is even number the binary output is one greate than the input. Implement the function using multiplexers with minimal input and select line.Design the interfacing circuit shown below and write a program to display single digit (between 0 and 9) prime numbers followed by even numbers, the next odd numbers and repeats in 7-segment displays and its equivalent 8-bit binary value in LEDS. a) When displaying Prime numbers, the first 7-segment display must show "P" and the second 7-segment display must show prime numbers one by one b) When displaying Even numbers, the first 7-segment display must show "E" and the second 7-segment display must show even numbers one by one c) When displaying Odd numbers, the first 7-segment display must show "O" and the second 7-segment display must show even numbers one by oneTo implement a Full Subtracter, Using TWO 8:1 Multiplexers (ONE for Sum output and ONE for Cout output). Assign (or Connect) X, Y,and Bin variables to the Select Inputs of Multiplexers and connect 1 or 0 to each Data Input.
- Let A = ajao and B = b¡bo be two-bit binary numbers. A and B can take on values from 0 to 3 (for example, A = 2 when a1ao = 10. Let C be a two bit binary number whose value equals the magnitude of the difference A – B. We have C = c1c0 = |A – B|. (This means that if B is larger than A then you consider B-A.) You are to design a circuit which accepts A and B (i.e., a¡ aob¡bo) as inputs and outputs the result C = c¡c0. The circuit thus has four inputs and two outputs. For example, the circuit should output c1co = 10 when ajao = 01 and bibo = 11 (C = 2 when A = 1 and B = 3). - Your pre-lab needs to include all items requested in the following steps (plus those requested in the pre-lab handout): 1. After reading through the complete lab, write a description of the expected behavior of the system you will design. 2. Draw a truth table describing the behavior of the circuit. The truth table should show the inputs: aj aobibo (in this order) and the outputs: c1Co · 3. Write the canonical SOP…Implement the function F(A, B, C) Em(0.1.3.5.6.7) using a 4-way multiplexer Select one: 1B) Design 3-bit odd parity checker. (using Boolean algebra)
- Binary 4-bit Asynchronous down Counter and explain how it functions, find real life applications3) Make a 4-to-1 line multiplexer and derive a Boolean expression from its table.Question Implement the Function 'Y = ACB + BC + E' using a 4-Input, 2-Address Bit Multiplexer.What are the Equations for the Multiplexer Data Inputs (D3 - D0)?
- Q2) Design the following function: F (w, x, y, z) E(0,3, 4,9, 11, 12, 14, 15) using multiplexer IC. Q3) Answer A or B A. Build a 4-bit comparator circuit using 1-bit comparator block.Implement the following Boolean function using a 4 to 1 multiplexer and 8 to 1 multiplexer. F, (A, B,C) =(0.3.6) %3!The binary string 11010111100101 is a floating-point number expressed using the 14-bit simple model given in your text. What is its decimal equivalent? Note: in the 14-bit simple model, the left-most bit is the sign, followed by 5 bits for the exponent, followed by 8 bits for the mantissa (There are no implied bits). The exponent is in Excess 15 notation.