This data needs to be sent to the data storage area. ![]() The data that has been acquired from the DHT11 sensor has two labels, temperature and humidity. The thing that needs to be changed is the SSID and Password of the wifi that will be used. This process is quite easy to do because there is already a sample code that can be used in the library provided by Wiznet (or you can check to this github link). The selected serial is serial communication 3. The connection process between WizFi360-EVB-Mini and Arduino Mega is done using serial communication. The next process is the trial of connecting Arduino Mega with wifi via WizFi360-EVB-Mini. Develop a monitoring website using WeeblyĪfter the process of testing the WizFi360-EVB-Mini connection using AT-Command, then we can continue the next process.Design 3D prototype incubator using Solid Works. ![]() Make Arduino-WizFi360 PCB shield using Eagle.The incubator prototyping process will also be explained in this project. This data will be displayed on the monitoring website so that users can continue to update the condition of their incubator from anywhere and anytime directly.Īs a note, the incubator used is in the form of a prototype to make the design process easier and less expensive, but if it is applied to an incubator it will actually work well. The data sent is in the form of temperature and humidity parameters which will be sent every 30 seconds. WizFi360-EVB-Mini will send data via wifi to the ThingSpeak data store. The temperature setting is done by controlling the heating element and the humidity setting is done by the fan.Īrduinos that don't have cloud communication features will use the WizFi360-EVB-Mini. Using the data obtained from DHT 11, Arduino will do the necessary to set and lower the temperature. ![]() SENKU is built to see the temperature and humidity in the incubator and sends the data to the Arduino Mega 2560.
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