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I need help on the part of "Implement the minimized SOP expression using NAND gates." What would my circuit diagram look like, what gates will I need to use?
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- Design an adder for excess-3 decimal digits using a ROM. Add two excess-3 digits and give the excess-3 sum and a carry. For example, 1010 + 1001 = 0110 with a carry of 1 (7 + 6 = 13). Draw a block diagram showing the required ROM inputs and outputs. What size ROM is required? Indicate how the truth table for the ROM would be specified by giving some typical rows.Create the logic for a ene bit addition circuit. Inputs are X, Y, Cio, Xand Y are the bits being added. Çigis carry input to be added to sum of X, Y. Outputs are Sum (sum af XX, Çip) and Caut (carry from the whole addition). Write an expression for each output using ginter natation. i Ue a truth table to mag all pobie combinations of tte inputs to the outputs. Create SDP apreuions from thetruth table. Tou may u eiter algetraic ar qvnstatian. If you un ntow the order of the wariaa Sum (X, v, bol = EmtI was able to fill out the truth table for part A. I ONLY need help for PART B. B) Implement the logic function (z) using the multiplexer 74HC151 shows in the picture.
- A logic function is expressed by the equation = 0.1.8.9.4. Plot the the values on the K-map below Note: w is the msb (most significant bit) 3 x 10 0- - W X 1 00 01 Write the simplified Sum of Products (SOP) expression. Use yz WIM or "" for NOT; 11 10 for AND; "+" for OR (without the quotation marks.DECODER 03 04 Os 06 07. 08. 09 GND 74LS42D The above figure is a 74LS42D decoder, we can implement a Boolean expression from above figure by: Which of the following? O Get the maxterms of Boolean expression, then each maxterms is combined using AND gates. O Get the mintermof Boolean expression and each minterm is combined using AND gates. O Get the maxterm of Boolean expression and each maxterm is combined using OR gates. O Get the minterms of Boolean expression, then each minterms is combined usingCreate a truth table with four inputs A, B, C and D and one output, Y. The output is FALSE only when A B and C=D. Otherwise the output is TRUE. Draw the Kamaugh map. write the simplified SOP expression and sketch the gate-level schematic.
- dont use others answers show your work step by step short answer Suppose we are given the following subset of binary words, created for a 7-bit memory word with one parity bit: 11100110, 00001000, 10101011, and 11111110. Does this code use even or odd parity? Explain in 1-2 sentences.Given the truth table in Table 1, answer the following questions: a. Find the minimum SOP expression. b. Find the minimum POS expression. c. Create a logic circuit diagram using only OR family gates. Table 1 A B C F 0 0 0 0 0 0 1 0 0 1 0 1 0 1 1 1 1 0 0 0 1 0 1 1 1 1 0 1 1 1 1 12. The Boolean Algebra expression is given as Q = Ā(BC + BC + BC) + ABC a. Convert this logical equation into an equivalent SOP term. b. Use a truth table to show all the possible combinations of input conditions that will produce the output Q. c. Draw a logic gate diagram for the expression. d. Simplify the expression Q using Boolean Algebra. e. Draw the logic gate diagram of the simplified output Q.
- 9. Use 4-bit binary addition to perform 2 + 3. You must first convert the decimal numbers into 4-bit binary numbers. Convert you answer back to decimal and check if it is correct. 10. Use 4-bit binary addition to perform 6 + 11. You must first convert the decimal number into 4-bit binary numbers. Convert your answer back to decimal and check if it is correct. Can the answer be represented in binary with just 4 bits?Task One: Air conditioning (AC) control system Design a simple AC control system that receives a signal from a digital thermometer sensor. Depending on the room temperature, the signal will control the air conditioner to operate in Heating, Ventilation, or Cooling modes. The digital thermometer signal produces a 4-bit binary number proportional to temperature, where 0000 represents 0 degrees and 1111 represents 48 degrees (so each binary number represents a multiple of 3 degrees). Consider the following specifications in your combinational logic circuit design: Whenever the temperature is less than T₁, the AC should operate in Heating. Whenever the temperature is greater than T2, the AC should operate in Cooling. Whenever the temperature is between T₁ and T2, the AC should operate in Ventilation. Where: T₁ = 14 + (your last digit of your university ID) mod 4 degrees T₂ = 17+ (your last digit of your university ID) mod 4 degrees1. Derive a Boolean expression for the following digital circuit and sketch the true table. A B X C