scholarly journals Rancang Bangun Sistem Pengukuran Volume Air Otomatis dalam Gelas menggunakan Konveyor Berbasis Mikrokontroler Atmega 2560

2021 ◽  
Vol 16 (2) ◽  
pp. 30-38
Author(s):  
Karya Suhada ◽  
Yudiana Yudiana ◽  
David Alfa
Keyword(s):  

Penelitian ini bertujuan untuk merancang dan merealisasikan sebuah alat dispenser yang dapat memudahkan pemakainya dalam pengambilan air minum. Dispenser otomatis dirancang dengan dua tahap yaitu, perancangan hardware dan perancangan software. Alat ini menggunakan sensor ultrasonic, sensor infrared sebagai pendeteksi gelas, motor servo yang dapat memudahkan pemakai dalam membuka dan menutup keran dispenser sehingga kecil kemungkinan adanya tumpahan air dan konveyor agar mempermudah pemakai sehingga tidak lagi memegang gelas. Hasil dari penelitian ini menunjukkan bahwa seluruh komponen dan sensor yang digunakan pada alat dispenser ini akan bekerja sesuai perintah yang telah diprogram dalam Mikrokontroler ATMega 2560. Pengujian alat dilakukan dengan 5 kali percobaan, yaitu dengan mengisi gelas dengan air panas dan air hangat, hasil pengujian menunjukkan bahwa dispenser tersebut mampu bekerja sesuai dengan yang diharapkan.

2020 ◽  
Vol 6 (2) ◽  
pp. 147-153
Author(s):  
Muhamad Yusup ◽  
Po. Abas Sunarya ◽  
Krisandi Aprilyanto

System The process of counting and storing in a manual water reservoir analysis has a high percentage of error rate compared to an automated system. In a company industry, especially in the WWT (Waste Water Treatment) section, it has several reservoir tanks as stock which are still counted manually. The ultrasonic sensor is placed at the top of the WWT tank in a hanging position. Basically, to measure the volume in a tank only variable height is always changing. So by utilizing the function of the ultrasonic sensor and also the tube volume formula, the stored AIR volume can be monitored in real time based on IoT using the Blynk application. From the sensor, height data is obtained which then the formula is processed by Arduino Wemos and then information is sent to the MySQL database server via the WIFI network.


2015 ◽  
Vol 135 (5) ◽  
pp. 145-151 ◽  
Author(s):  
Tsunehisa Tanaka ◽  
Shuichi Murakami ◽  
Mayumi Uno ◽  
Kaoru Yamashita
Keyword(s):  

2018 ◽  
Vol 138 (9) ◽  
pp. 441-447
Author(s):  
Kensuke Kageyama ◽  
Takeru Orikasa ◽  
Ahmad Zarif Afiq Bin Jamaludin ◽  
Takenobu Sakai
Keyword(s):  

Author(s):  
Varun Kumar ◽  
Lakshya Gaur ◽  
Arvind Rehalia

In this paper the authors have explained the development of robotic vehicle prepared by them, which operates autonomously and is not controlled by the users, except for selection of modes. The different modes of the automated vehicle are line following, object following and object avoidance with alternate trajectory determination. The complete robotic assembly is mounted on a chassis comprising of Arduino Uno, Servo motors, HC-SRO4 (Ultrasonic sensor), DC motors (Geared), L293D Motor Driver, IR proximity sensors, Voltage Regulator along with castor wheel and two normal wheels.


Author(s):  
Muhammad Apriliyanto ◽  
Miftachul Ulum ◽  
Koko Joni

<em>The process of folding clothes is one of the activities carried out in the laundry business or household. The activity is fairly easy but many people are still lazy to do it. As a result, clothes that have been washed will fall apart in certain rooms, thereby reducing the aesthetic value of a home. Semi Automatic T-Shirt Folding Machine is the right solution to make folding clothes easier and more time efficient. This tool is equipped with a servo motor that moves the folding board that has been designed in such a way that the user only needs to manghandle the shirt just once and simply push one button then the shirt will fold itself and will be neatly arranged through the clothes stacker board. The PID method is applied to DC motors that move under the clothes folder so that the buildup of clothes underneath will not be pressured upward when the clothes are piled up when they are folded. Ultrasonic sensor will measure the right height between the clothes with the door opening the stacking clothes with kp = 1, ki = 0.1, kd = 0.5 for thin clothes and kp = 5, ki = 1, kd = 2.5 for thick clothes so that the movement of the motor can adjust its speed . This tool can fold one shirt in 16.83 seconds 11 seconds faster than folding clothes manually</em>


2010 ◽  
Vol 7 ◽  
pp. 109-117
Author(s):  
O.V. Darintsev ◽  
A.B. Migranov ◽  
B.S. Yudintsev

The article deals with the development of a high-speed sensor system for a mobile robot, used in conjunction with an intelligent method of planning trajectories in conditions of high dynamism of the working space.


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