3. Determine the truth table for the following Boolean equation. (Note, this is NOT the Boolean expression for a NAND gate) X = A • B А X 1 1 1 1
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Look at picture
3. Determine the truth table for the following Boolean equation. (Note, this is NOT the Boolean expression for a NAND gate)
A B X
0 0
0 1
1 0
1 1
3) given Boolean equation : X = A' • B'
To complete the truth table
Step by step
Solved in 2 steps with 1 images
- Design counter that counts from 00 to 59, using the IC 74LS90 ripple counter and use two 7 segment display to display the result count. You can also use 7447 binary to 7-segment Display Decoder in logicworks.i) Use an XOR gate and an AND gate to build a half adder and complete the truth table below. Take a picture/snapshot of your circuit and attach it here: ii) Join two half adders in part i) together to form a full adder and complete the truth table below. Take a picture/snapshot of your circuit and attach it here: iii) Join 4 full adders together to form a 4-bit ripple adder and perform the following operation. Provide screen shots of your circuits showing the corresponding binary inputs and outputs. iiii) Now, try implementing the full adder in Part ii) a) Provide screen shots of your circuits showing clearly the corresponding binary inputs and outputs for 1+1 in binary. State in this report clearly which are the inputs and outputs on the circuit board b) join two full adders together so that it can perform 2-bit addition and substraction. Provide screen shots of your circuits showing clearly the corresponding binary inputs and outputs for 01 + 11 and 10 – 01 in binary. State in this…In this problem we'll explore the fact that all logical circuits can be implemented using just NAND gates. The figure below shows you the symbol for a NAND gate and its truth table. We then show you how NAND gates can be wired together to perform the equivalent of a NOT gate, an AND gate, and an OR gate. NAND gate AB Output 1 01 1 Inputa Inputg Output 10 1 11 NOT A- AND D B. A. OR B. 2 i. Let's denote p NAND q as pīq. Write a logical expression for the thrce circuits corresponding to AND, OR, and NOT. ii. Validate your three logical expressions with three truth tables. For clarity and full credit, show cach variable and distinct sub-clause in a separate column, culminating in your final formula. 3. 2.
- The numbers from 0-9 and a no characters is the Basic 1 digit seven segment display * .can show False True In a (CA) method of 7 segments, the anodes of all the LED segments are * "connected to the logic "O False True Some times may run out of pins on your Arduino board and need to not extend it * .with shift registers True FalseT: Answer thne f. questions: 1) The hexadecimal number ´Al' has the decimal value equivalent to (A) 80 (B) 161 (C) 100 (D) 101 2) The output of a logic gate is 0 when all its inputs are logic 1. The logic is either (A) a NAND or an EX-OR (B) an OR or an EX-NOR (C) an AND or an EX-OR (D) an NOR or an EX-NOR 3) The Gray code of the Binary number 1100111 is (A) 1011011 (B) 1010100 (C) 1001001 (D) 101101 4) When simplified with Boollean Algebra (a+b)(a+c) simplifies to (A) a (B) a+a(b+c) (C) a(1+bc) (D) a+bc 5) -31 is represented as a sign Binary number ( using Sign-magnitude form ) equal to (A) 00011111 (B) 10101001 (C) 01110010 (D) 00101101 6) The Binary number 110111 is equivalent to decimal number (A) 25 (B) 55 (C) 26 (D) 34 7) With 4 bit, what the range of decimal values if the number is 2's complement signed number. (A) -32 to +31 (B) -2 to +1 (C) -8 to +7 (D) None of these1. Derive a Boolean expression for the following digital circuit and sketch the true table. A B X C
- Redesign the following combinational logic circuit using no more than 5 NAND gates. T5 B T6If a fault occurs in connections C5 (stuck-at-1) for the following logic circuit, the appropriate fault-test by using Boolean difference technique .......... C1 X1 Cs C2 X2 Cs C6 C10 C9 C7 t0 t2 t3 t1 Ois it possible to connect the outputs of a comparator to a logic gate (connected to an led)? The led connected to the logic gate lights up if the inputs of the comparator both satisfy a condition, for example, the voltage of both inputs are less than the reference voltages.
- Design counter that counts from 00 to 59, using the IC 74LS90 ripple counter and use two 7 segment display to display the result count. You can also use 7447 binary to 7-segment Display Decoder. i need the diagram of itQ1: Design and implement an asynchronous counter that counts from 0000 up to 1100 (modulus 13). Use OR gate, and show in the drawing how the OR gate is connected to truncate the state 1101.The input to a combinational logic circuit is 4-bit binary number (A, B, C, D). Design the circuit strictly using NAND gate with two outputs (Y1 and Y2) for the following conditions: Output Y1 is low when the input binary number is less than or equal to 7. Output Y2 is high when the input binary number is less than or equal to 7.