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Hello, guys hope you are doing safe and well. I am stuck how to make this, circuit using tinker card. OBJECTIVES: . To become familiar

Hello, guys hope you are doing safe and well. I am stuck how to make this, circuit using tinker card.

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OBJECTIVES: . To become familiar with NAND, NOR, XOR, and XNOR gates. . To gain experience in using IC logic chips to implement logic circuits. MATERIALS: [1] DC Power Supply and a Breadboard with two LED boards (provided) [1] 74LS86 XOR Gate IC [1] 74LSOO NAND Gate IC [1] 74LS02 NOR Gate IC [1] 74LS04 NOT Gate IC [2] Slide switch INFORMATION: In this lab, we will study the behavior of four additional logic gates, namely, NAND, NOR, XOR, and XNOR gates. Make sure you refer to the pin configuration of the ICs to write the pin number of each pin on the schematic diagram before you start constructing the circuit.1. Copy the breadboard with two LED boards by using the following link: {A} NAND gate 2. Refer to the pin configuration of 74LSOO It to shown below. 3. Construct the circuit consists of a 27input NAND gate by using a 74LSOO quad NAND gate IC. Refer to the pin numbers on the schematic diagram to connect two slide switches to supply inputs and an LED on the LED boards to observe the output. Truth Table for NAND 2input NAND gate I 4. Start a simulation run to complete the truth table for the NAND gate by supplying each input combination in the truth table and observing the corresponding output. . When complete, stop the simulation run. 5. Write the Boolean expression for the NAND gate: X = (B) NOR gate 6. Refer to the pin configuration of 74L502 lC to shown on the next page. 7. Construct the circuit consists of a 2input NOR gate by replacing the 74LSOO with a 74L502 quad NOR gate IC. Refer to the pin numbers on the schematic diagram to connect two slide switches to supply inputs and an LED on the LED boards to observe the output. Truth Table for NOR 2-input NOR gate 8. Start a simulation run to complete the truth table for the NOR gate by supplying each input combination in the truth table and observing the corresponding output. . When complete, stop the simulation run. 9. Write the Boolean expression for the NOR gate: X = (C) XOR gate 10. Refer to the pin configuration of 74L886 IC to shown below. 11. Construct the circuit consists ofa 2input XOR gate by replacing the 74L802 with a 74L586 quad XOR gate IC. Refer to the pin numbers on the schematic diagram to connect two slide switches to supply inputs and an LED on the LED boards to observe the output. Truth Table for XOR 2input XOR gate 12. Start a simulation run to complete the truth table for the XOR gate by supplying each input combination in the truth table and observing the corresponding output. . When complete, stop the simulation run. 13. Write the Boolean expression for the XOR gate: X = (D) XNOR gate 14. Instead of using a 74L5266 quad XNOR gate ICI. we will use an XOR gate and a NOT gate to study the behavior of an XNOR gate. Construct a circuit consists of a 2-in ut XOR ate and a NOT ate. Since 74L586 quad XOR gate IC is already plugged into the breadboard, you simply need to mount a 74L504 hex NOT gate IC. Make sure you refer to the pin configuration of 74L886 IC and that of 74LSO1 IC to shown below before you start wiring. Truth Table for )(NOR XOR gate constructed by using an XOR gate and 3 NOT gate 15. Start a simulation run to complete the truth table for the XNOR gate by supplying each input combination in the truth table and observing the corresponding output. . When complete, stop the simulation run. 16. Write the Boolean expression for the XNOR gate: X = 15. Start a simulation run to complete the truth table for the XNOR gate by supplying each input combination in the truth table and observing the corresponding output. . When complete, stop the simulation run. 16. Write the Boolean expression for the XNOR gate: X = ASSIGNMENT 1. If we wish to use a logic gate to turn on an LED only when all the inputs are low, which gate would you use? 2. Which of the logic gates above would be used to detect if both inputs are the same (both low or both high)? 3. Which of the above logic gates would detect if the inputs are different? M": Paste all screenshots here. Then, save the complete lab sheets in pdf format to submit it

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