Design a four-bit combinational circuit 2's complementor. (The output generates the 2's complement of the input binary number.) - Show that the circuit can be constructed with exclusive - OR gates. - Can you predict what the output functions are for a five- bit 2's complementor?
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- Create a complete analysis table for the circuit by finding the logic leveis present at each gate output for each of the 16 possible input combinations.Construct the logic for 4-bit binary adder-subtractor using 4-bit parallel adder and XOR gates, draw the logic diagram, construct the circuit on hardware and complete the truth tableWrite the Boolean expression for the 4-input OR gate
- 1. Gray code to Binary converter: Gray code is one of the codes used in digital systems. It has the advantage over binary numbers that only one bit in the code word changes when going from one number to the next. (See Table 1). Design a combinational circuit with 4 inputs and 4 outputs that converts a four- bit gray code number into an equivalent four-bit Binary number. Use Karnaugh map technique for simplification. Use LogicWorks for pre-lab demonstrations. Select the library "7400dev.clf* in the Parts Palette and then select the XOR chip 74-86. This would give you a set of 4 XOR's as shown in Fig. 1, just like the hardware chip 74-86. You could use as many as needed from these XOR gates in your design. Get back to ALL LIBRARIES and select switches for the inputs and Binary Probes as indicators of the outputs. Verify your design in the pre-Lab. During the Lab construct the circuit and verify its operations.4. a. Design a Combinational circuit with three inputs, (A, B, and C) and four outputs, (U, V, W, and X) with the 2- i/p NOR gate only for the following logic. When the decimal value of the input is 4, 5, 6, or 7 the binary output is one less than the input (input-1). When the decimal value of input is 0, 1, 2, or 3, the output is two greater than (input +2) the input. b. A majority circuit is a combinational circuit whose output is equal to 1 if the input variables have more no. of 1's than 0's. The output is 0 otherwise. Design Using Boolean laws, three input Majority circuits with P, Q, and R as input, output Function T and its complement, Prove.need help with digital logic
- a) For the given logic circuit diagram write the program by using the gate level modeling. b) For the given truth table write the program by using the data flow Modelling. c) Write the test bench of the given logic circuit with all possibilities Y1 Y2 Y3 Y4 Y5 Y6 Y7 A2 A1 A09 Part 1 of 2 Mc Graw Hill Required information Consider the logic gate circuit shown in the given figure. A (S1)-0- B (S2)-0 C (S3)-0- AB B BC B+C What is the Boolean equation for the given figure? ***************** The Boolean equation for the given figure is (Click to select) Note: This is a multi-part question. Once an answer is submitted, you will be unable to return to this part.Q1. (a) Express the following logic function as a sum of minterms and as a product of maxterms, using shorthand format: F = AB+A'C'D'+ABD'+A'B'(C'+D') +A'CD' 30% (b) Simplify the above function using a Karnaugh map, and implement it using two-level logic with a minimum number of AND, OR, and NOT gates. Give the simplified logic function and draw the logic diagram. 40%
- Required information A fan is to run only when all of the following conditions are met: • Input A is OFF. • Input B is ON or input C is ON, or both B and Care ON. Inputs D and E are both ON. . One or more of inputs F, G, or H are ON. Note: This is a multi-part question. Once an answer is submitted, you will be unable to return to this part. Identify the correct gate logic diagram for the given control system. Multiple Choice KA. One way to think of the basic logic gate types (all but the EXOR and EXNOR) is to consider what single input state guarantees a certain output state. For example, we could describe the function of an OR gate as such: “Any high input guarantees a high output.” Identify what type of gate is represented by each of the following phrases: a) Any high input guarantees a low output. b) Any low input guarantees a high output. c) Any low input guarantees a low output.(b) Using a synchronous binary counter as shown in Figure Q2(b), design and draw a counter to generate the following repeating sequences 2 to 14 repeatedly for a free running clock. If the circuit happens to enter any of the states 15 or 0 or 1, what are the next states of your circuit? A A Syn. Binary Counter Q3 Q2 Q₁ Qo →Asyn. clear Syn. load CLK D3 D₂ D₁ Do ↑↑↑↑