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Contact Name
Dedy Triawan Suprayogi
Contact Email
dedy.ts@untirta.ac.id
Phone
+62254-376712
Journal Mail Official
timer@untirta.ac.id
Editorial Address
Jl. Jenderal Sudirman Km 03, Cilegon, Banten 42435, Indonesia
Location
Kab. serang,
Banten
INDONESIA
Trends in Mechanical Engineering Research
ISSN : 30254299     EISSN : 30256801     DOI : http://dx.doi.org/10.62870/timer.v1i2
Core Subject : Engineering,
TiMER: Trends in Mechanical Engineering Research is a blind-peer-review journal. TiMER mainly focuses on Mechanical Engineering fields. Detailed scopes of articles accepted for submission to TiMER are Renewable Energy, Sustainability, and Environmen; Fuel Technology; Material Mechanics; Biomaterial; Materials Science and Nanotechnology; Metals and metal alloys; Ceramics and Composites; Polymers and Plastics; Manufacturing; Control and Systems Engineering; Safety, Risk, Reliability, and Quality; Automotive Engineering; Computational Mechanics; and Mechanical engineering design.
Articles 1 Documents
Search results for , issue "2026: article in press" : 1 Documents clear
DESIGN OF AN INTERNET OF THINGS (IoT) ON A SINGLE SLOPE SOLAR STILL MONITORING SYSTEM USING A FINITE STATE MACHINE (FSM) Dea Nurul Khumairoh; Eko Budiraharjo; Sunardi Sunardi; Agus Wibowo; Irfan Santosa
Trends in Mechanical Engineering Research 2026: ARTICLE IN PRESS
Publisher : Department of Mechanical Engineering, Universitas Sultan Ageng Tirtayasa

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.62870/timer.v4i2.41949

Abstract

In addition to distilled water productivity, the single-slope solar still (S4) faces issues with temperature and solar intensity measurement devices, which are relatively expensive. Therefore, this study aims to design and implement an Internet of Things (IoT)-based S4 monitoring system using an ESP32 microcontroller so that distillation parameters can be monitored automatically and in real time. Sensor data is displayed on an LCD and transmitted to the Blynk app for real-time monitoring. The Finite State Machine (FSM) method is used to control the LCD, while non-blocking scheduling is applied for periodic data acquisition. Test results show that the system functions properly and that the DS18B20 sensor provides accurate measurements. The developed system serves as an effective solution for real-time monitoring of temperature and solar intensity parameters in the S4 Still.

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