5. Consider the following description of a finite-state machine. The single external input is X; the single output is Y. Design the sequential circuit using J-K flip-flops. Input Present State Next State Output X Q1 Qo Q₁* Qo+ Y 0 00 1 0 0 0 0 1 0 1 0 0 1 0 1 1 0 0 1 1 1 0 1 1 0 0 1 0 1 0 1 0 0 0 1 1 0 00 0 1 1 1 0 1 1
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- Using D flip-flops, design a logic circuit for the finite-state machine described by the state assigned table in Figure P9.6. Present Next State Output State x=0 x=1 Y2V1 Y2Y1 Y2Y1 Z 00 00 01 01 10 88 00 11 00 00 10 0 11 00 10 1 I need a step by step solutionDesign 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).1digtal
- 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 RDigital design4Using D flip-flops, design a logic circuit for the finite-state machine described by the state assigned table in Figure Present Next State State Output x=0 x=1 y2y1 Y2Y1 Y2Y1 Z 28 00 00 01 0 01 00 10 0 10 00 10 1 11 00 10 1 I need a step by step solution
- Perform floating point binary addition to the following: A: 1 10000011 10110111010000000000000 B: 0 10000000 10010011000100101000000 The result of A+B must be in be in 32-bit floating point. You can also check the answer in decimal.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.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.