Jurnal Inovasi Teknologi Terapan
About the Journal Jurnal Inovasi Teknologi Terapan (JITT) dikelola oleh Politeknik Manufaktur Negeri Bangka Belitung sebagai wadah rutin bagi sivitas akademika dan praktisi dalam berbagi pengetahuan, temuan, dan pengalaman dalam hal inovasi teknologi terapan yang berkelanjutan. JITT ini merupakan ajang publikasi ilmiah mengundang para sivitas akademika dan praktisi untuk ikut serta sebagai penulis dalam mempublikasikan hasil-hasil penelitian dan pengembangan ilmu. Topik JITT (tidak terbatas pada): Elektronika, Kontrol, Otomasi, Robotika, Mekanik, Mesin, Material, Manufaktur, Perawatan Mesin, Information Technology, Programming, Energi Terbarukan, Kecerdasan Buatan, Computer Network, Kontrol Otomatis, Teknologi Pertanian dan Perikanan, Desain dan Rekayasa Mekanik. Jurnal Inovasi Teknologi Terapan (JITT) is managed by Politeknik Manufaktur Negeri Bangka Belitung as a regular forum for academics and practitioners to share knowledge, findings, and experiences in terms of sustainable applied technological innovation. JITT is a scientific publication event inviting academics and practitioners to participate as writers in publishing the results of research and development of science. JITT Topics (not limited to): Electronics, Control, Automation, Robotics, Mechanics, Machinery, Materials, Manufacturing, Machine Maintenance, Information Technology, Programming, Renewable Energy, Artificial Intelligence, Computer Networks, Automatic Control, Agricultural Technology and Fisheries, Design and Mechanical Engineering.
Articles
204 Documents
Perencanaan Sistem PLTS Off-Grid Untuk Kebutuhan Energi Listrik Pada Perkebunan Kelapa Sawit
Peprizal, Peprizal;
Maulana, Ade Putra;
Jasman Duli, Sirlus Andreanto;
Faristasari, Evvin;
Hero Istoto, Enggar
Jurnal Inovasi Teknologi Terapan Vol. 3 No. 2 (2025): Jurnal Inovasi Teknologi Terapan
Publisher : Politeknik Manufaktur Negeri Bangka Belitung
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DOI: 10.33504/jitt.v3i2.346
Palm oil plantations are one of the important sectors in the growth of the economy in Indonesia. One of the palm oil plantation areas in the Pasaman Barat Regency is being developed with an estimated land area of 100 hectares. However, due to the location of the land being far from settlements, there is currently no electricity supply that can be used for the operational needs of the land. This research provides a solution for the planning of an Off-Grid solar power plant (PLTS). The method used is a descriptive method with a quantitative research type. Based on the calculations, the number of PV panels obtained was 14 units and produces a total power of 2.397,89 W, SCC capacity calculation obtained 35 A, Battery capacity 12V/100Ah 2 units, and inverter 3 kW to produce AC voltage. The calculation of the Bill of Quantities (BoQ) for material needs amounts to Rp. 21.986.000. This result indicates that the planning of the solar power system is feasible for the long-term operational needs of the plantation, which only requires initial construction capital.
Simulasi Pendeteksi Kebakaran Dini Menggunakan Cisco Packet Tracer
Cornelia, Noni;
Apriliansyah, Muhammad
Jurnal Inovasi Teknologi Terapan Vol. 3 No. 2 (2025): Jurnal Inovasi Teknologi Terapan
Publisher : Politeknik Manufaktur Negeri Bangka Belitung
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DOI: 10.33504/jitt.v3i2.347
This study aims to simulate an early fire detection system based on the Internet of Things (IoT) using Cisco Packet Tracer software. The system is designed by integrating a smoke detector, automatic sprinkler, and siren, all connected through a Home Gateway and monitored via a laptop. When the smoke sensor detects smoke, the system automatically activates the sprinkler and siren, and sends a notification to the monitoring center. Several simulation scenarios were conducted to evaluate the system's reliability and response time. The results indicate that the system operates automatically and responsively according to the implemented programming logic. The use of Cisco Packet Tracer allows system development and testing without the need for physical hardware, thus supporting IoT-based learning and research effectively.
Modifikasi Mesin Pembelah Bambu Dengan Menambah Fungsi Menjadi Mesin Pengirat Dan Perajang Bambu
Vitrio Sendika, Lukas;
Saparin, Saparin;
Sari Wijianti, Eka;
Setiawan, Yudi;
Rodiiawan, Rodiawan
Jurnal Inovasi Teknologi Terapan Vol. 3 No. 2 (2025): Jurnal Inovasi Teknologi Terapan
Publisher : Politeknik Manufaktur Negeri Bangka Belitung
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DOI: 10.33504/jitt.v3i2.348
Bamboo processing is one of the activities in the home industry in many rural areas. Currently, bamboo craftsmen in Indonesia still slice and chop bamboo manually. The process of slicing and chopping bamboo manually often faces problems, including poor production quality. Modifying the bamboo splitting machine by adding slicing and chopping functions aims to increase the production efficiency of bamboo processing for skewer production and make the machine more optimal and multifunctional. The modification of the bamboo splitting machine with additional functions as a slicing and chopping machine uses two blades, namely a slicing blade designed to thin the bamboo to 3-4 mm and a chopping blade to chop or split the bamboo into several small sticks with a square profile of 3-4 mm, and an input hopper that adjusts to the average width of the test material. The results of bamboo slicing using the machine obtained 2 to 3 slices that meet the desired size, and the rest are residual slices that do not meet the desired size from one bamboo split. The results of bamboo chopping using the machine obtained 3 to 4 chopped bamboo that meet the desired size, and a few residual chopped bamboo that do not meet the size and defective chopped bamboo due to the bamboo entering the input hopper in a tilted position. The production capacity of the bamboo slicer is 1,816 slices/hour, and the production capacity of the bamboo chopper is 7,513 sticks/hour.
Evaluasi Partikel Cangkang Buah Maja Sebagai Filler Pada Komposit Kampas Rem Organik
Yuda Permana, Ananto;
Ula, Shofiatul;
Listijorini, Erny;
Saefuloh, Iman;
Sudrajad, Agung;
Sunardi, Sunardi
Jurnal Inovasi Teknologi Terapan Vol. 3 No. 2 (2025): Jurnal Inovasi Teknologi Terapan
Publisher : Politeknik Manufaktur Negeri Bangka Belitung
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DOI: 10.33504/jitt.v3i2.349
The exploration of natural resources as materials for engineering applications is increasingly important, as organic materials offer greater environmental benefits. The Maja fruit, a typical Indonesian plant, has not been fully utilized for engineering purposes, particularly its shells. The goal of utilizing this material is to contribute to sustainable development. In this study, Maja fruit particles were used as a filler in combination with rice husk ash. The particle compositions of Maja fruit were set at 20%, 30%, and 40%, respectively. The composite fabrication process was conducted under cold conditions at a pressure of 30 MPa. The results indicated that an increase in the composition of Maja fruit shell particles led to higher compressive strength in the composite, although this caused a decrease in surface hardness. The optimal composite performance was achieved with a composition of 40% Maja fruit shell particles and 60% epoxy resin, as determined by a weighting method. It was also observed that while the inclusion of rice husk ash tended to reduce compressive strength, it contributed to enhancing the hardness of the composite.