Design a digital circuit to detect even parity numbers in the group of numbers (0 to 15). Draw the simplest logic diagram and write the final Boolean equation.
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- Simplify the following function and draw a logic circuit using,Design a gating circuit which lights up a bulb, when its 4-bit binary number inputs detected the presence of a number divisible by 2.a. Show the truth table for this logic circuitb. State and simplify the Boolean expression using Karnaugh Mapc. Draw the logic circuit.Determine the simplified Sum of Product expression of Q1 and Q2 from the table using a K-Map, then draw the simplified logic diagram. SHOW KMAP WITH THE FINAL EXPRESSION & LOGIC DIAGRAM
- 8) Draw a logic circuit to implement the Boolean function F and with only NOR gates (AC+AB+BC).Provide a detailed report on the combinational logic circuits below. 1. Magnitude Comparators a. What are magnitude comparators? b. How does it work? c. Applications of magnitude comparators.Design a mechatronic logic circuit that has three inputs, X, Y, and Z, and whose output (Q) willbe HIGH [1] only, when majority {2 or more} of the inputs are HIGH. (Derive output equationfrom given statement, simplify output equation and make pseudo logic circuit forimplementation)
- Design a Combinational circuit with a Decoder to accept 3-bit number and generate the output binary number equal to the Square of the input number.a) Derive the truth table.b) Find simplified output function in Product of Sum(POS).c) Draw the logic diagram in logisim Simulator.Design a 2-bit comparator using a single Logic gate?Assume that a parity bit is transmitted for everynibble of data. Design two logic circuits that check anibble of data and its parity bit to determine if there may have been a data transmission error. Assume firstan even-parity system, then an odd-parity system.
- A circuit which takes a binary-coded decimal (BCD) number as input s to be designed such that the single output Q is true if the input is a prime number (remerber that 0 and 1 count as prime numbers). (a)Draw a truth table that specifies the above circuit (b)Using the truth table you have constructed and the Karnaugh map method find the minimised Boolean expression for the output Q. (c)Implement the digital circuit using the minimum number of 2-input logic AND, OR gates and inverters (NOT.Write a Boolean expression for the output of each of the logic circuits shown in Figure P7.27.Draw the logic diagram of the following Boolean expression after simplifying it: A+CD+(A+D’)(C’+D)