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inspire award winning project - rain detector working model without sensor | automatic | howtofunda
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rain detector working model without sensor to save clothes from rain - inspire award project and real time and useful to every one - diy - automatic cloth collector project | howtofunda
#raindetector #workingmodel #workingproject #inspireaward #inspireawardproject #sciencefairproject #rain #withoutsensor #automatic #clothcollector
Introduction to Rain Detector Cum Automatic Cloth Collect Working Model
This Rain Detector cum Automatic Cloth Collect working model is an innovative and practical solution for protecting clothes drying outside a house from unexpected rain.
The model operates without sensors and relies on a simple mechanical setup that includes two blades, a 9V battery, and a DC motor.
This system automatically detects rain and moves the drying clothes to a sheltered area, ensuring they stay dry.
Components of the Model:
Base Structure: The model is built on a sturdy base, typically made of cardboard or wood, which supports the entire mechanism.
Cloth Drying Rack: A small-scale cloth drying rack or line is set up outside a model house, where the clothes are hung to dry.
Two Blades (Rain Detection Mechanism): The two blades are positioned in a way that they respond to the presence of rain. When rainwater touches the blades, they trigger the mechanism to start the cloth collection process.
DC Motor: A DC motor is connected to the system, which drives the movement of the drying rack or clothesline. The motor is powered by a 9V battery.
9V Battery: The battery provides the necessary power to run the DC motor and move the clothes inside when rain is detected.
Pulley or Lever System: A simple pulley or lever system is used to translate the motor's rotation into linear motion, moving the clothes from the outdoor drying area to a sheltered position under the house's roof.
This working model serves as a practical demonstration of mechanical automation and the application of simple circuits in real-world scenarios. It teaches students about basic electrical circuits, mechanical systems, and the importance of protecting everyday items from environmental factors like rain.
By using a mechanical rain detection system instead of electronic sensors, the model highlights the ingenuity of simple solutions in problem-solving.
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Materials Used :
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#raindetector #workingmodel #workingproject #inspireaward #inspireawardproject #sciencefairproject #rain #withoutsensor #automatic #clothcollector
Introduction to Rain Detector Cum Automatic Cloth Collect Working Model
This Rain Detector cum Automatic Cloth Collect working model is an innovative and practical solution for protecting clothes drying outside a house from unexpected rain.
The model operates without sensors and relies on a simple mechanical setup that includes two blades, a 9V battery, and a DC motor.
This system automatically detects rain and moves the drying clothes to a sheltered area, ensuring they stay dry.
Components of the Model:
Base Structure: The model is built on a sturdy base, typically made of cardboard or wood, which supports the entire mechanism.
Cloth Drying Rack: A small-scale cloth drying rack or line is set up outside a model house, where the clothes are hung to dry.
Two Blades (Rain Detection Mechanism): The two blades are positioned in a way that they respond to the presence of rain. When rainwater touches the blades, they trigger the mechanism to start the cloth collection process.
DC Motor: A DC motor is connected to the system, which drives the movement of the drying rack or clothesline. The motor is powered by a 9V battery.
9V Battery: The battery provides the necessary power to run the DC motor and move the clothes inside when rain is detected.
Pulley or Lever System: A simple pulley or lever system is used to translate the motor's rotation into linear motion, moving the clothes from the outdoor drying area to a sheltered position under the house's roof.
This working model serves as a practical demonstration of mechanical automation and the application of simple circuits in real-world scenarios. It teaches students about basic electrical circuits, mechanical systems, and the importance of protecting everyday items from environmental factors like rain.
By using a mechanical rain detection system instead of electronic sensors, the model highlights the ingenuity of simple solutions in problem-solving.
====================
Materials Used :
=================================
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