6.29. Design a logic circuit for a simple automobile door and seat belt buzer system. Assume that sensors are available to provide digital signals representing the door and seat belt states. Signal A is from the door, where high implies the door is closed; (сontinued)

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Chapter17: Commercial And Industrial Air-conditioning Control Systems
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6.29. Design a logic circuit for a simple automobile door and seat belt buzzer system.
Assume that sensors are available to provide digital signals representing the door
and seat belt states. Signal A is from the door, where high implies the door is closed;
(сontinued)
Transcribed Image Text:6.29. Design a logic circuit for a simple automobile door and seat belt buzzer system. Assume that sensors are available to provide digital signals representing the door and seat belt states. Signal A is from the door, where high implies the door is closed; (сontinued)
signal B is from the seat belt, where high implies the seat belt is fastened; and sig-
nal C indicates whether the ignition switch is turned on. Your circuit should output
a signal X that can be used to turn a buzzer on or off, where high implies on. The
buzzer should be on if the ignition is on and if the door is open or the seat belt is not
fastened. Write out your Boolean expression, draw the logic circuit, construct a truth
table, and draw a timing diagram illustrating all functionality.
Transcribed Image Text:signal B is from the seat belt, where high implies the seat belt is fastened; and sig- nal C indicates whether the ignition switch is turned on. Your circuit should output a signal X that can be used to turn a buzzer on or off, where high implies on. The buzzer should be on if the ignition is on and if the door is open or the seat belt is not fastened. Write out your Boolean expression, draw the logic circuit, construct a truth table, and draw a timing diagram illustrating all functionality.
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