Problem : Design a circuit that takes a 3-bit number and increments it by two using a minimum number of 4x1 Mux's and a minimum number of logic gates the output is four bits. Show your work and label all inputs/outputs appropriately.
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Detailed Solution please
Detailed Solution please
Detailed Solution please
Problem : Design a circuit that takes a 3-bit number and increments it by two using a minimum number of 4x1 Mux's and a minimum number of logic gates the output is four bits. Show your work and label all inputs/outputs appropriately.
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- You want to design an arithmetic comparison combined logic circuit. (a) List the steps that you will apply in the design approach. Design a 4-bit comparison (large-equal-small) circuit. Explain each step. With AND, OR, NOT gatesmake it happen. (b)By comparing the numbers 9 and 1 in the circuit you designed, the resultdiscuss.You want to design an arithmetic comparison combined logic circuit. (a) List the steps that you will apply in the design approach. Design a 4-bit comparison (greater-equal-small) circuit. Explain each step. With AND, OR, NOT gates implement. b) measure the two numbers you designed in the cercuit then talk about the result.Given the expression F( A,B,C,D) = ( ( B + D ) ( B’ + D’ ) )’. a. Generate the truth table b. Find the minterm expansion in Σ – form. c. Find the maxterm expansion in Π – form. d. Create a logic circuit diagram using minimum number of gates u
- Design a logic circuit to give an output: x = ( A'B' + A'C) • ( A'C' + C') with clear steps and explaination pleaseA logic function f(A,B,C) implemented with 4x1 MUX circuit. Implement the same function with using only one 4x1 MUX. (B and C are selection inputs B=S1; C=S0)Act 1 problem solving this is a logic circuits and design laboratory subject please help me with this and screenshot all the solution and answers 2. What is the largest binary number that can be expressed with 16 bits? What are the equivalent decimal and hexadecimal numbers? Answer: 16 bits = ________= _______10 = ______16 3. Represent the decimal number 6,248 in: (a) BCD = (b) excess‐3 code = (c) 2421 code =
- 5) You want to design an arithmetic comparison combined logic circuit.a. Write your design purpose of the 4-bit comparison (big-equal-small) circuit.b. List the process steps that you will apply in the design approach. Design a 4-bit comparison (large-equal-small) circuit. Explain each step. Realize with AND, OR, NOT gates.c. Compare the decimal numbers in the last two digits of your student number in the circuit you designed and discuss the result. last two digits of student number : 0 4 . Not : I want the solution to contain tables and equations, and the electrical circuit resulting from tables and equations, as in the picture that I attached,And if possible, Because it is normal when solving a question to have tables and equations. I want an integrated solution, please look at the question carefully before starting the solution because I have sent a question a lotDesign a combinational logic circuit that converts a three-bit binary number from code A to code B, according to the table on the right. Answer the following questions: Code A Code B 000 000 100 001 110 010 010 011 011 100 001 101 101 110 111 111 Implement your circuit using two 2-by-4 decoders (with enables) only. Explain your implementation. You can use as many ‘OR’ gates and inverters as you need. Implement your circuit using 4-by-1 multiplexers and the fewest number of additional logic gates (if needed). Provide the complete implementation.Design the logic circuit (must have at least 4 inputs), which can be used in daily life (home, school, workplace, etc.) and will realize as a digital electronic, according to the following requirements.• Problem undefined (Problem must be original and to be filled in by you)• Define the input-output scope of your problem.• Create the logic function of your problem.• Simplify your logic function• Simplification processBoolean algebra,o Karnough map,Mc Cluskey tablemethods are mandatory.• Designing the logic circuit with logic gate elements for your logic function.
- A circuit has four inputs (A, B, C, D) and two outputs (X, Y). The output X is logically high if the decimal equivalent in input binary combination is odd number. The output Y is logically high if the decimal equivalent in input binary combination is divisible by 3. Find the minimum expression for the two outputs and draw the logic diagram?The 4221 code is a base 10–oriented code thatassigns the weights 4221 to each of 4 bits in a nibble ofdata. Design a logic circuit that takes a BCD nibble asinput and converts it to its 4221 equivalent. The logiccircuit should also report an error in the BCD input ifits value exceeds 1001.For the logic circuit shown below complete the following three steps: 1. Write out the Boolean equation of the circuit. 2. Using the rules and laws of Boolean Algebra simplify the equation to it's simplest form. You must show all steps of your simplification to receive credit for your answer. 3. Draw the simplified logic circuit