For the logic circuit below, if the output F(A,B,C,D)=A'C+D' , the * :inputs are 8*1 Mux DO D1 D2 D3 F D4 D5 D6 D7 S2 S1 SO ABC
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- Consider the multiplexer based logic circuit shown in the figure MUX MUX 1 Select one: a. W S1' S2' O b. W + S2 + S1 c. WS1 + WS2 + S1 S2 O d. WeS1es2A three input logic functipn will provide a logic high output only when twp (and two only) of the inputs are logic highs. For all other input possibilities, a logic zero is provided on the output. What is the logic expression? A. Y=A'B'C+A'BC'+AB'C' B. Y=AB'C+A'BC+ABC' C. Y=AB'C+ABC+A'B'C' D. Y=ABC'+AB'C+A'B'C'Simplify the following expression using Karnaugh map and implement. Draw simplified logic diagram as well. Implement on Multisim software. (a) Y=A.B.C'.D+A.B'.C'.D+A'.B'.C'.D+A'.B.C'.D+A'.B'.C'.D'+A'.B.C'.D'+A'.B.C.D'+A'.B.C.D+A'.B'.C.D
- Q2/A. Design a logic circuit that perform the following Boolean function, use 4-to-1 multiplexer and other logic gates you may need in the design. Use Shannor expansion 21 18 31 f(A, B, C, D, E) = ABCDE + ABCDE + ABCDE + ABCDE %3D l68421 B. Design 8-bit Adder/Subtracter using 4-bit Adder and 2-to-1 multiplexers other logic gates you may need in the design.INSTRUCTIONS • Create a project, create a VI and Design the logic circuits below. You can create all the circuits in one VI. When done, use the save all function to save the project and the VI. Zip (not RAR) and save the files under your ID and name e.g. 10448989_Matthew_Fiifi_Hayford.zip. 1. F(X, Y, Z) = X + YZ Design the logic diagram below and simulate. Ensure that you get the output as shown in the truth table. X Y Z X+YZ or F 000 001 010 011 100 101 11 111 1 Y 1 1 1 > N(a) A logic circuit shown in Figure Q.3 has a 4-bit input A and B, three 4-bit wide 2:1 muxes, a 4-bit adder, a 4-bit output F, and a carry flag C. For the given Table Q.3, fill in the value of output F and carry flag C for the given value of A, B, S0, S1 and S2. 51 52 1001 Flag C 0011 Figure Q.3 Table Q.3 A So S1 S2 F Flag C 0001 1000 0010 1001 1 1 0011 1101 0100 1101 1110 0111 1
- 1. Consider the following two logic circuits. VDD A-6 B-d6 A-6 B-6 -6 -6 F VDD F t t A Circuit A Circuit B a. Do these two circuits implement the same logic function? If yes, what is that logic function? If no, give Boolean expressions for both circuits. b. Will these two circuits' output resistances always be equal to each other? c. Will these two circuits' rise and fall times always be equal to each other? Why or why not?8688388台 825 Quiz 13-1-2022 entals of Logic Circuits( X 1FAlpQLSdMDtMq7nUPYhVea-B3aXsGRjrUDgfSOq91R3h2eTqLypfdkg/formResponse According to the circuit in below, find-out the function describes correctly * the circuit output (F) B. 2. 60 DI2 O D. (F)is non of these functions () F3D(A xnorC) 71°F Cloudy 7 ES 近。answere fast please question from DIGITAL LOGIC DESIGN TOPIC : Designing Combinational Logic You are designing a water level circuit using 74ALS151 (8 to 1 Multiplexer IC)* When input is 0000 that means tank is empty.* When input is 1111 that means tank is full.* When input is below 5, that means water level is low.* So, make a circuit using 74ALS151 Multiplexer IC that shows a "low water" indicator light(by setting an output L to 1) when the water level drops below level 5.
- Analyze the logic function of the circuit A₁ B₁ CH D -S₁Simplify the following Boolean expressions using Karnaugh Map and draw the logic circuits. f = wxyz + wxyz + wxyż + wxỹz + wxyz + wxyz + wxỹz + wãyzSUBJECT: DIGITAL DESIGN AND LOGIC CIRCUITS FOR COMPUTER ENGINEERS TOPIC: LOGIC DESIGN USING DECODER AND MUTLIPLEXER NOTE: I need full complete solution and correct. Thanks you so much. Please help me!! 1. Implement the logic function F(A, B, C) = AB' + BC + A'C' using 3x8 Decoder. 2. Implement the logic function F(A, B, C) = AB' + BC + A'C' using multiplexer. 3. Design a combinational circuit with three inputs, x, y, and z, and three outputs, A, B, and C. When the binary input is 0, 1, 2, or 3, the binary output is one greater than the input. When the binary input is 4, 5, 6, or 7, the binary output is two less than the input. Implement your design using multiplexer.