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IoT-Based Barcode Scanning System for Production and Warehouse Management Ivan De Nerol; Riyo Putra Syam Satria; Rafi Rasyid Parmana; Nanda Octavia; Muhammad Danang Mukti Darmawan; Mohamad Mohamad Alvin Renaldi; Firdayanti; Fiqri Nurfadillah; Fiona Kharismatunnisaa; Ester Angeline; Dhafa Kamil; Yourdan Saputra
Journal of Applied Science, Technology & Humanities | JASTH Vol. 1 No. 1 (2024): January 2024
Publisher : Batrisya Education

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.62535/0zv1h756

Abstract

This project aims to develop an IoT-based barcode scanning system using an ESP32 microcontroller and a GM-65 barcode reader for efficient production and warehouse management. The system facilitates automated and accurate barcode scanning, with the collected data transmitted to a web-based platform in real-time. The web interface provides users with comprehensive insights into production quantities and warehouse status, generating a detailed journal for traceability and accountability. This innovative solution offers businesses a streamlined approach to monitor and record production activities, ultimately optimizing the overall efficiency of production and warehouse management processes.
Implementing a Mineral Water Gallon Counter Device Based on a Website Using Infrared Sensors Dhafa Kamil; Ester Angeline; Ivan De Nerol; Rafi Rasyid Parmana
Journal of Applied Science, Technology & Humanities | JASTH Vol. 1 No. 2 (2024): March 2024
Publisher : Batrisya Education

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.62535/4ytea377

Abstract

This research discusses the development of a mineral water gallon counter system using infrared sensors integrated into a website interface to increase the efficiency of distribution management in the company. This system uses infrared sensor technology to automatically detect the movement of gallons of mineral water at entry and exit points. The detection data is processed and presented via a web interface that can be accessed in real time, providing accurate information on the number of gallons entering and leaving. The research methodology involves the development of hardware and software and the results show that this system can increase the company's operational efficiency and provide easy online monitoring of mineral water distribution. The implications of this research are expected to make a positive contribution to the optimisation of the distribution process and the management of mineral water stocks in companies.