Implementation of a Cup Availability Monitoring System in the Microcontroller-Based Automatic Milk Pasteurization Production Process at Luru Barokah MSMEs
DOI:
https://doi.org/10.55927/fjst.v5i8.141Keywords:
Monitoring System, Arduino Microcontroller, Ultrasonic Sensor.Abstract
Implementation of a Microcontroller-Based Cup Availability Monitoring System for the Automated Milk Pasteurization Production Process at MSME Luru Barokah. This research aims to design, build, and implement a microcontroller-based monitoring system to automate this process. The methodology includes observation, interviews, literature review, and documentation, with system development following the Research and Development (R&D) model encompassing analysis, design, development, evaluation, and implementation phases. The developed prototype utilizes an Arduino Uno R3 and an HC-SR04 ultrasonic sensor to continuously detect cup distance, using a calibrated threshold of 16 cm. The system also features a buzzer for audible alerts and red and green LEDs as visual indicators of cup availability status. Implementation results demonstrate 100% detection accuracy and a rapid response time of under one second, effectively assisting operators by eliminating the need for manual checks. This implementation is expected to enhance operational efficiency, minimize the risk of human error, and support the smooth operation and sustainability of milk pasteurization production at UMKM Luru Barokah
References
A. Maulana, D. Lestari, and F. Ardiansyah, “Rancang Bangun Alat Ukur Jarak Digital Menggunakan Sensor Ultrasonik HC-SR04 Berbasis Arduino Uno,” J. Tek. Elektro Indones., vol. 5, no. 1, pp. 45–52, 2024.
A. Syaputra and T. Sutabri, “Perancangan Sistem Monitoring Barang Logistik Berbasis Iot,” J. Sains Dan Teknol. Inf., vol. 2, no. 2, pp. 11–20, 2024.
Ade Rahayu, “Metode Penelitian dan Pengembangan (R&D) : Pengertian, Jenis dan Tahapan,” DIAJAR J. Pendidik. dan Pembelajaran, vol. 4, no. 3, pp. 459–470, 2025, doi: 10.54259/diajar.v4i3.5092.
D. A. Prasetya, A. P. Sari, and I. A. Putri, Mikrokontroler dan Arduino untuk IoT. 2024.
E. Widiarto, A. Adiwismono, T. Triyono, S. Setiyoko, and E. Triyani, “Pengaruh Fluktuasi Tegangan Terhadap Intensitas Cahaya Pada Lampu Led ( Light Emitti Diode ) Dari Berbagai Merek,” 2022, doi: 10.32497/orbith.v18i1.3563.
F. K. Konstantinidis et al., “Automating dairy production lines with the yoghurt cups recognition and detection process in the Industry 4.0 era,” Procedia Comput. Sci., vol. 217, pp. 918–927, 2022, doi: 10.1016/j.procs.2022.12.289.
H. Nathasya, “Sistem: Pengertian Dan Karakteristik Dr.,” Edu Res. Indones. Inst. Corp. Learn. Stud., vol. 5, no. 1, pp. 70–80, 2024.
M. Batara and V. S. Yosephine, “Alat Pendeteksi Stok Barang Berbasis IoT untuk UMKM dengan Sensor Ultrasonik dan Inframerah,” J. Integr. Syst., vol. 7, no. 1, pp. 63–74, 2024, doi: 10.28932/jis.v7i1.8525.
M. Nasir, Aswandi, Safriadi, N. Saputri, and N. Dwina, Internet Of Things: Aplikasi dan Penerapan Mikrokontroler Arduino. 2024.
Perumal, Snthilkumar2, G. S3, G. V4, and S. K. NY, “Gas leakage detection and Auto Off,” J. Eng. Ext. Technol. Researc, vol. 8, no. 2, pp. 4714–4721, 2026. [Online]. Available: http://www.kitsguru.com/gas-leakage-detection-auto-off
R. M. N. Muslikhan, H. Widiyanto, and I. Harjanto, “Perbandingan Karakteristik Linearitas Antara Sensor Ultrasonik Hc-Sr04 Dan Srf05,” 2024.
R. Mutaqin and L. A. Yoziarde, Pemrograman Arduino. 2025.
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