Q2. A sequential circuit has two D flip-flops, two inputs x and y, and one output z. the flip-flop input equations and the circuit output are as follows: D₁ = xy + xA, DB=B+xA, z = B a. Draw the logic diagram of the circuit b.Tabulate the state table
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- 2. Sequential circuit shown below has two flip-flops A and B and one input x. It consists of a combinatorial logic connected to the flip-flops, as shown in Figure below. Analyze the circuit: a. Derive the next state and output equations. b. The state table of the circuit. c. Draw the state diagram. A K. 2-t0-1 MUX Y B' CLK2. Sequential circuit shown below has two flip-flops A and B and one input x. It consists of a combinatorial logic connected to the flip-flops, as shown in Figure below. Analyze the circuit: a. Derive the next state and output equations. b. The state table of the circuit. c. Draw the state diagram. A K B 2-t0-1 MUX B' K CLKSequential circuit shown below has two flip-flops A and B and one input x. It consists of a combinatorial logic connected to the flip-flops, as shown in Figure below. Analyze the circuit: a. Derive the next state and output equations. b. The state table of the circuit. c. Draw the state diagram. A A' K 2to-1 , MUX Y B B' CLK lo
- 4 7) For the following sequential circuit: a) Tabulate the state table. b) Derive the state and output equations. c) Re-design the circuit using T flip-flops. Q1 Q -y K, K QP Jo Qo Q Ko K Q clock. please solve it as soon as possible1. 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?Consider the circuit below. The switches are controlled by logic variables such that, if A is high, switch A is closed, and if A is low, switch A is open. Conversely, if B is high, the switch labeled is open, and if B is low, the switch labeled is closed. The output variable is high if the output voltage is 5V, and the output variable is low if the output voltage is zero. a. Write a logic expression for the output variable. b. Construct the truth table for the circuit. A Logic 1 5V(+ B C Logic 0 R
- Below is the case for a sequential circuit with 3 states, 1 input and 1 output diagram is given. Draw the state chart and make it one-hot with D flip flops. Design the circuit using coding.A sequential circuit has two JK flip-flops A and B, two inputs x and y, and one output z. The flip-flop input equations and circuit output equation are attached below: a) Draw the logic diagram of the circuit. b) Derive the state equations for A and B c) Tabulate the state table. d) Draw the state diagram for the circuit and describe the function of circuit.Design a combinational logic circuit with four inputs (a,b,c,d) and one output F. It has the following specifications: The output is low if b = c = d = 0 or a=c=d=1, the output is high if a=0 and c=1 provided that d=0 or b=0. The output is don't care for the other combinations of the input variables. Determine the simplified expression of the output F. a. ac b. a b cd c. none of the choices d. a cd
- Design the following combinational logic circuit with a four-bit input and a three-bit output. The input represents two unsigned 2-bit numbers: A1 A0 and B1 B0. The output C2 C1.C0 is the result of the integer binary division A1 A0/B1 B0 rounded down to three bits. The 3-bit output has a 2-bit unsigned whole part C2 C1 and a fraction part CO. The weight of the fraction bit CO is 21. Note the quotient should be rounded down, i.e. the division 01/11 should give the outputs 00.0 (1/3 rounded down to 0) not 00.1 (1/3 rounded up to 0.5). A result of infinity should be represented as 11.1. A minimal logic implementation is not required. (Hint: start by producing a truth table of your design).Draw the logic circuit for F=A.(B+C) .question from DIGITAL LOGIC DESIGN book Sequential Logic :2. Perform Analysis Procedure on the following Circuit. Finally, do not forget to comment on the behaviorof the circuit. Perform all necessary analysis steps.and aslo perform each step.