For the function F(A,B,C) = (1,2,3) A. Write the truth table. B. Find the simple/simplest version by using K-Map considering the POS. C. Draw the circuit diagram by using JUST NOR GATES (you can use
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For the function F(A,B,C) = (1,2,3)
A. Write the truth table.
B. Find the simple/simplest version by using K-Map considering
the POS.
C. Draw the circuit diagram by using JUST NOR GATES (you can use
NOT itself.
D. Define the input variables by considering that MSB’s frequency
is 2 Hz.
E. Simulate the circuit you found in C. Explain the results.
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- 3-) Analyze the circuits below and write the Boolean equation for each Part. Simplify the equation using Boolean algebra and determine if they function as an XOR, XNOR or neither. A): Dor B): XD XD . DDesign 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.Task 2:For the function F(A,B,C) = (1,2,3)A. Write the truth table.B. Find the simple/simplest version by using K-Map consideringthe POS.C. Draw the circuit diagram by using JUST NOR GATES (you can useNOT itself.D. Define the input variables by considering that MSB’s frequencyis 2 Hz.E. Simulate the circuit you found in C. Explain the results.
- Ⓒ 1. Create the truth table for the following function. From the truth table you obtained. Using the Karnaugh method, according to the minterms (to SOP according to) create a new function and write this function. Do not use any other simplification method other than the Carnaugl method in this question. Write the function you have obtained with the Karnaugh method with the state you have obtained. Make sure that our articles and the accuracy table are readable and clear. Q=[(A+B+C+D). (A+B+C+D). (A+B+C+D). (A+B+C+D)]USE DIGITAL LOGIC AND DESIGN Part 1: In Figure_4; we have 4-bit Comparator using 2-bit Comparators block. You have to satisfy given condition by applying all data on figure 4. At the end, given condition should produce HIGH output and other two should be LOW. A3 A2 A1 A0 = 1101 and B3 B2 B1 B0 = 1110 Figure_4 Part 2: The serial data-input waveform (Data in) and data-select inputs (S0 and S1) are shown in Figure_5. Determine the data-output waveforms from D0 through D3. Figure_5 Part 3: Decoder can be useful when we have to decode some specific numbers from their equivalent code. Figure 6 has a concept of 3 to 8 line decoder from which you have to generate output waveform from D0 to D7 with proper relationship to input. Figure_6 Part 4: The data-input and…(c) Figure Q3(c)(i) shows a register and Figure Q3(c)(ii) shows the input waveforms (CLOCK and Data in) to the circuit. A1 A9 A10 A2 Function generator A3 A11 A12 AS A13 A6 A14 A7 A15 Data in Bop.7) ip.r 82p.7) Logic analyser U1 U2 U3 U4 UO 6. 1. 6 1 6 INVERTER 3 CLK 3 CLK oCLK CLK 5 K K 5 K K 4027 Clock Function generator Figure Q3(c)(i) (i) Determine the type of register as shown in Figure Q3(c)(i).
- - The proportional distribution of A, B, C, D signals is given in the table as a percentage. It “logic 1” when the signals are accepted as active, “logic 0” when they are accepted as passive. takes. - When the proportional sum of active signals is over 50%, its output is "logic1", When we accept "logic 0" when it is below 50%, the output in the table Find the values. - Create an X function based on the logic values you find. Simplify the created X function. - Design the simplified function with NAND and NOR gates. - Set up the circuits you designed with NAND and NOR gates and observe the outputs. Show the output values by drawing a table, applying all possibilities to the input values.- The proportional distribution of A, B, C, D signals is given in the table as a percentage. It “logic 1” when the signals are accepted as active, “logic 0” when they are accepted as passive. takes. - When the proportional sum of active signals is over 50%, its output is "logic1", When we accept "logic 0" when it is below 50%, the output in the table Find the values. - Create an X function based on the logic values you find. Simplify the created X function. - Design the simplified function with NAND and NOR gates.Question 4: For the number display below, we would like to identify Boolean expression for LEDS (outputs a through g2) that indicate numbers 11, 14, and 15. a. Please write the Boolean expressions for the two LEDS (outputs a through g2) based on the input signals So to S3. You do not need to simplify the Boolean expressions. b. Please draw the logit circuit for outputs a through g2 a2 Logic circuit 2. 88 5,5,5,50
- ii) For the circuit shown in Figure B9, a. Find logic functions for Y and Z. b. Simplify function Z using Boolean algebra. Y Figure B9 ABFor the circuit shown, a closed switch is represented by a logic 1, and an open switch by a logic 0. If v = 5 V across the resistor Ris represented by a logic 1, and v = 0 V by a logic 0, then what Boolean expression of the state of the swritches best describes the voltage across the resistor? W wX. 5 V OR=W (X+Y) OR= W +XY OR=WXY OR= W Home PriScnIn the electrical circuit given below, the state of the LED's illumination is logic 1. Since the state of pressing the A, B, C and D switches is logic 1, answer the requests. a) Obtain the output expression of the circuit in terms of minterms in its simplest form using the horn map method. b) Write the output function in terms of maxima. c) Obtain the output function obtained with Minterim only with AND NOT gates.