Design and Construction of a Ceramic Quantity Detection Tool Before the Packaging Process as Supervision in Ceramic Packing Production
Rancang Bangun Alat Pendeteksi Jumlah Keramik Sebelum Proses Kemasan Sebagai Pengawasan dalam Produksi Packing Keramik
DOI:
https://doi.org/10.21070/ups.8923Keywords:
ESP32, Photoelectric Sensor,, Quantity Detection, Automatic System, Ceramic IndustryAbstract
This research aims to design and build a ceramic quantity detector before the packaging process to improve production efficiency in the ceramic industry. The main problem faced is the mismatch in the number of ceramics in the packaging which can hamper the production process. This system uses two E18-D80NK photoelectric sensors connected to an ESP32 microcontroller to detect the number of ceramics. If the number is less than six, the buzzer and LED will light up as a warning indicator. Tests were carried out on sensor sensitivity, duty cycle settings on the DC motor through the L298N module. This system is expected to help supervision in the packing process so that production time becomes more efficient and accurate.
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References
Putri Kurniawati, “Analisis Strategi Pengendalian Persediaan Bahan Baku Pada PT. DPG Dengan Mempertimbangkan Ketidakpastian Permintaan,” Univ. Nusant. PGRI Kediri, vol. 01, pp. 1–7, 2017.
Putri Kurniawati, “Penelitian: Keramik Seni sebagai Lampu Lembaga Penelitian Institut Seni Indonesia Yogyakarta,” Univ. Nusant. PGRI Kediri, vol. 01, pp. 1–7, 2017.
P. Yustana, Laporan Penelitian Keramik Bayat (Estetika, Bentuk Dan Fungsi). 2013.
S. F. Yeni, “Analisis Limbah Keramik sebagai Substitusi Aggregat Kaar Terhadap Kuat Tekan Beton,” Fish. Res., vol. 140, no. 1, p. 6, 2021.
F. Setiawan, L. Arifani, M. A$. Yulianto, and M. P. Aji, “Analisis Porositas dan Kuat Tekan Campuran Tanah Liat Kaolin dan Kuarsa sebagai Keramik,” J. MIPA, vol. 40, no. 1, pp. 24–27, 2017.
A. S. Fatimah, “Pengaruh Penambahan Cangkang Telur Dan Abu Sekam Padi Dengan Variasi Suhu Sinter Terhadap Densitas Dan Kekerasan Pada Keramik,” pp. i–xvi, 1–59, 2018.
B. BAWONO, A. T. YUNIARTO, and W. ANGGORO, “Perancangan dan Pembuatan Alat Uji Modulus Patah untuk Pengujian Produk Keramik,” Univ. Atma Jaya Yogyakarta, 2011.
Abdul Rochman Habib, “Larateristik Keramik Produksi Nurat Kriasta Kasihan, Bantul, Yogyakarta,” Univ. Negeri Yogyakarta, pp. 139–141, 2016.
A. Nurholiq, O. Saryono, and I. Setiawan, “Analisis Pengendalian Kualitas (Quality Control) Dalam Meningkatkan Kualitas Produk,” J. Ekonologi, vol. 6, no. 2, pp. 393–399, 2019.
A. Nugroho and L. H. Kusumah, “Analisis Pelaksanaan Quality Control$ untuk Mengurangi Defect Produk di Perusahaan Pengolahan Daging Sapi Wagyu dengan Pendekatan Six Sigma,” J. Manaj. Teknol., vol. 20, no. 1, pp. 56–78, 2021.
A. Suryadi, P. F. Ardiansyah, and Y. Ngatilah, “Quality Analysis of Ceramic Tent Product with Six Sigma Method in PT$. Mas Keramik KIA,” J. Phys. Conf. Ser., vol. 953, no. 1, 2018.
A. Prahas Putri, H. Rachmat, and D. S. Eka Atmaja, “Design of Automation System for Ceramic Surface Quality Control Using Fuzzy Logic Method at Balai Besar Keramik (BBK),” MATEC Web Conf., vol. 135, pp. 1–17, 2017.
M. A. P. Mahendra, “Alat penghitung barang otomatis berbasis arduino dengan sensor jarak inframerah publikasi ilmiah,” Univ. Muhammadiyah Surakarta, 2022.
S. Parningotan and T. Mulyanto, “Rancang Bangun Prototipe Alat Penghitung Produk Secara Otomatis Dengan Konsep Internet of Thing (Iot) Berbasis Mikrokontroller (Arduino Uno),” Electro Luceat, vol. 6, no. 1, pp. 74–81, 2020.
K. Anjani and L. Muliati, “Penerapan Seven Tools Pemeliharaan Pada Mesin Press Keramik pada PT Dharma Perkasa Gemilang,” J. Mhs. Bina Insa., vol. 1, pp. 50–61, 2016.
E.-G. M. Central, “E18-D80NK-datasheet.pdf.” pp. 1–3, 2016.
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