Two water tanks each have a sensor indicating whether the tank is empty. The sensor has an output of 5V when the tank is empty. To simulate this we use a switch where a connection to VCC means that the tank is empty. 5V VCC Key=A 5V VCC Key-B 102 104 101 102 103 104 104 tank_control1 2.5 V 2.5 V Figure 2: Water tanks Build the circuit shown in Figure 2 and create the logic inside the tank_control1 block, using TTL gates. If it is correctly done a yellow light should shine when one water tank is empty and a red light when both tanks are empty. The yellow light should be off when both tanks are empty. • Describe the logic inside the tank_control1 block using Boolean algebra and make the truth table. Build the circuit shown in Figure 2 and create the logic inside the tank control1 block, using TTL gates. If you are happy with a Pass mark for this task, you may use any gates you like, if you want a higher mark you should use NAND and NOR gates only. Make screenshots of the circuit during simulation with the switches in all possible combinations. Also make a screenshot of the circuit inside the tank control block.

Electricity for Refrigeration, Heating, and Air Conditioning (MindTap Course List)
10th Edition
ISBN:9781337399128
Author:Russell E. Smith
Publisher:Russell E. Smith
Chapter17: Commercial And Industrial Air-conditioning Control Systems
Section: Chapter Questions
Problem 22RQ
icon
Related questions
Question
100%
Really need it please anyone solve for me huhuhu
Two water tanks each have a sensor indicating whether the tank is empty. The sensor has an output
of 5V when the tank is empty. To simulate this we use a switch where a connection to VCC means
that the tank is empty.
5V
VCC
Key=A
5V
VCC
Key-B
102
104
101
102
103
104
104
tank_control1
2.5 V
2.5 V
Figure 2: Water tanks
Build the circuit shown in Figure 2 and create the logic inside the tank_control1 block, using TTL
gates. If it is correctly done a yellow light should shine when one water tank is empty and a red light
when both tanks are empty. The yellow light should be off when both tanks are empty.
• Describe the logic inside the tank_control1 block using Boolean algebra and make the truth table.
Build the circuit shown in Figure 2 and create the logic inside the tank control1 block, using TTL
gates. If you are happy with a Pass mark for this task, you may use any gates you like, if you want
a higher mark you should use NAND and NOR gates only.
Make screenshots of the circuit during simulation with the switches in all possible combinations.
Also make a screenshot of the circuit inside the tank control block.
Transcribed Image Text:Two water tanks each have a sensor indicating whether the tank is empty. The sensor has an output of 5V when the tank is empty. To simulate this we use a switch where a connection to VCC means that the tank is empty. 5V VCC Key=A 5V VCC Key-B 102 104 101 102 103 104 104 tank_control1 2.5 V 2.5 V Figure 2: Water tanks Build the circuit shown in Figure 2 and create the logic inside the tank_control1 block, using TTL gates. If it is correctly done a yellow light should shine when one water tank is empty and a red light when both tanks are empty. The yellow light should be off when both tanks are empty. • Describe the logic inside the tank_control1 block using Boolean algebra and make the truth table. Build the circuit shown in Figure 2 and create the logic inside the tank control1 block, using TTL gates. If you are happy with a Pass mark for this task, you may use any gates you like, if you want a higher mark you should use NAND and NOR gates only. Make screenshots of the circuit during simulation with the switches in all possible combinations. Also make a screenshot of the circuit inside the tank control block.
Expert Solution
steps

Step by step

Solved in 2 steps with 8 images

Blurred answer
Similar questions
  • SEE MORE QUESTIONS
Recommended textbooks for you
Electricity for Refrigeration, Heating, and Air C…
Electricity for Refrigeration, Heating, and Air C…
Mechanical Engineering
ISBN:
9781337399128
Author:
Russell E. Smith
Publisher:
Cengage Learning