Automatic Feeder Machine with Water Filter System Untuk Budidaya Ikan Nila

  • Golden R. Modok(1)
    Program Studi Teknik Mesin, Fakultas Sains dan Teknik Universitas Nusa Cendana
  • Ishak S. Limbong(2*)
    Program Studi Teknik Mesin, Fakultas Sains dan Teknik Universitas Nusa Cendana
  • Verdy A. Koehuan(3)
    Program Studi Teknik Mesin, Fakultas Sains dan Teknik Universitas Nusa Cendana
  • Murni Pallawagau(4)
    SMK Negeri 7 Kupang, Dinas Pendidikan Propinsi Nusa Tenggara Timur
  • (*) Corresponding Author

Abstract

The fisheries sector is one of the key drivers of the Indonesian economy. One type of fish that is widely cultivated is tilapia. The market demand for tilapia is increasing annually. However, in general, tilapia farmers still employ conventional methods in fish farming, such as feeding fish and maintaining pond cleanliness. Of course, this method is more tiring and requires a lot of time. The purpose of this study is to design an automatic feeder equipped with a filter system to control fish feeding, in conjunction with a water purification system for fish ponds. The study was conducted by building an automatic feeder machine for automatic feeding and an automatic filter to control the quality of water clarity in the pond. From the test results, the amount of feed dispensed by the automatic feeder in 30 seconds, 40 seconds, 50 seconds, and 60 seconds was 142.2 g, 189.9 g, 231.8 g, and 269.2 g, respectively. The throwing distance and distribution of feed were 3 m and 70 °. The proximity sensor is used to control the availability of feed in the storage tube, providing a warning if the amount of feed is less than the minimum limit. The filter system automatically operates when the water turbidity exceeds 40 NTU

Downloads

Download data is not yet available.

References

[1]. Y. Andriani, BUDIDAYA IKAN NILA. Yogyakarta, 2018.
[2]. Statistik-kkp, “Produksi Perikanan,” 2023. https://statistik.kkp.go.id/home.php?m=total&i=2#panel-footer.
[3]. K. Setyadjit and A. Ridho, “Penerapan Teknologi Tepat Guna pada Kolam Terpal Ikan Nila Intensif dengan Pengontrol Suhu dan PH Air di,” J. Pengabdi. dan Pemberdaya. Masy., vol. 2, no. 1, pp. 82–88, 2021.
[4]. E. Raza, L. O. Sabaruddin, and A. L. Komala, “Manfaat dan Dampak Digitalisasi Logistik di Era Industri 4.0,” J. Logistik Indones., vol. 4, no. 1, pp. 49–63, 2020, doi: 10.31334/logistik.v4i1.873.
[5]. L. Anggriani et al., “‘ SMART FISH POND ’ Kolam Ikan Pintar Berbasis Mikrokontroler ATmega8535 Sebagai Solusi Kegagalan Budidaya Ikan Lele,” pp. 1–8, 2021.
[6]. A. R. Nasution, I. Tanajung, and R. S. Harahap, “Rancang Bangun Alat Ukur pH Dan Ketinggian Air Berbasis Smartphone Guna Meningkatkan Produktifitas Budidaya Ikan Nila,” vol. 2, no. 2, 2021.
[7]. R. Pramana and A. P. Simanjuntak, “Pengontrolan Suhu Air Pada Kolam Pendederan,” J. Sustain., vol. 4, no. 1, 2013.
[8]. S. Pradhana, H. Fitriyah, M. Hannats, and H. Ichsan, “Sistem Kendali Kualitas Air Kolam Ikan Nila dengan metode Jaringan Syaraf Tiruan berdasarkan PH dan Turbidity berbasis Arduino Uno,” vol. 5, no. 10, 2021.

PlumX Metrics

Published
2025-10-30
How to Cite
Modok, G., Limbong, I., Koehuan, V., & Pallawagau, M. (2025). Automatic Feeder Machine with Water Filter System Untuk Budidaya Ikan Nila. LONTAR Jurnal Teknik Mesin Undana, 12(02), 30-34. https://doi.org/10.35508/ljtmu.v12i02.27057

Most read articles by the same author(s)

Obs.: This plugin requires at least one statistics/report plugin to be enabled. If your statistics plugins provide more than one metric then please also select a main metric on the admin's site settings page and/or on the journal manager's settings pages.