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PERANCANGAN ALAT TIMBANG UNTUK REKAPITULASI PEMAKAIAN ZAT PEWARNA KAIN DI PT. INDO-RAMA SYNTHETIC TBK. MENGGUNAKAN ARDUINO WEMOS LOLIN S2 MINI DENGAN MODUL LOAD CELL HX711 Kurniawan, Andrea; Astriany Rizky, Ardelia
INFOKOM (Informatika & Komputer) Vol 12 No 1 (2024): JURNAL INFOKOM JUNI 2024
Publisher : POLITEKNIK PIKSI GANESHA

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Abstract

This research aims to design a weighing tool that can record the use of fabric dyes in the dyeing department of PT. Indo-Rama Synthetic Tbk. The author uses a case study research method which includes observation and interviews with staff. This weighing tool was built using hardware in the form of an Arduino WEMOS LOLIN S2 MINI as the controlling brain, a Load Cell with an HX711 module as a weight sensor, a 4x4 keypad used to provide instructions from the user and a 20x4 LCD display to display weighing results. Then PHP, HTML and CSS software to build website-based interface applications and the XAMPP application which functions as database management and PHP services. By using this weighing tool, dye consumption reports, which were previously done manually, can now be done automatically during the weighing process.
INTEGRASI SOLAR CELL DAN BATERAI VRLA UNTUK SUMBER ENERGI LISTRIK BERBASIS IoT PADA RUANG FRONT OFFICE KAMPUS POLITEKNIK PIKSI GANESHA Pebrianti Pramanik, Istitoa; Astriany Rizky, Ardelia; Wirahadi, Umar
INFOKOM (Informatika & Komputer) Vol 12 No 2 (2024): JURNAL INFOKOM DESEMBER 2024
Publisher : POLITEKNIK PIKSI GANESHA

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.56689/infokom.v12i2.1587

Abstract

This research presents the implementation of an Internet of Things (IoT) based intelligent system that integrates solar cells and Valve-Regulated Lead-Acid (VRLA) batteries as sources of electrical energy for the front office space at Politeknik PIKSI Ganesha. This system is designed to provide an efficient and environmentally friendly renewable energy solution, while ensuring reliable energy availability. The solar cells function as the main energy collector, while the VRLA batteries act as backup energy storage when sunlight is insufficient. The integration of these two components is managed by a microcontroller connected to the IoT network, enabling remote monitoring and control of the system. This research evaluates the performance and efficiency of the system, as well as explores the potential for its application in other campus environments to support energy-saving efforts and environmental sustainability.