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KEMANDIRIAN ENERGI WISATA ALAM DAN EDUKASI “TAMAN SUKO” PASCA PANDEMI Paradito, Axel Caesar; Setiawan, Agung; Aprillio, Deary Nanda; Pambudi, Fery; Luha, Agusto Frendy; Rianu, Bagas Martinus; Kako, Yolinvianus Paulus; Odja, Maria Nirmala; Chandra, Gabriel Andika; Meiliyan, Hizkia; Sufiyanto, Sufiyanto
Conference on Innovation and Application of Science and Technology (CIASTECH) CIASTECH 2021 "Kesiapan Indonesia Dalam Menghadapi Krisis Energi Global"
Publisher : Universitas Widyagama Malang

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Abstract

Pokdarwis Sukowilangun Berseri adalah komunitas yang mengembangkan Taman Suko di Sukowilangun, Kalipare, Kabupaten Malang. Namun kemampuan masyarakat setempat dalam mengembangkan Taman Suko sebagai destinasi wisata belum mampu menarik lebih banyak wisatawan, oleh karena itu melalui program holistik pembinaan dan pemberdayaan desa ini bertujuan untuk meningkatkan pendapatan dan bantuan dalam upaya pengembangan potensi pariwisata serta peningkatan kualitas SDM. Metode pemberdayaan masyarakat yang dilaksanakan dalam bentuk pendampingan dan pelatihan secara langsung. Hasil kegiatan pengabdian ini adalah implementasi tandon air dengan sistem PLTS dan pengembangan kedai kopi, serta mempromosikan Taman Suko melalui media sosial. Dengan hasil yang dicapai dapat memberikan disversifikasi usaha bagi mitra Pokdarwis Sukowilangun Berseri, pengembangan wisata alam Taman Suko dengan edukasi sistem pembangkit listrik tenaga surya, dan pemanfaatan sistem PLTS dapat mengurangi penggunaan listrik PLN.
INTEGRASI SISTEM CONVENYOR DAN LENGAN ROBOT BERBASIS PLC DAN ARDUINO DALAM PROSES PEMINDAHAN BARANG Luha, Agusto Frendy
Jurnal Qua Teknika Vol 14 No 02 (2024): September 2024
Publisher : Universitas Islam Balitar Blitar

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.35457/quateknika.v14i02.3091

Abstract

Automation systems play a central role in modern industries. The presence of automation within industries holds significant importance in enhancing efficiency throughout production stages. The rapid development of automation technology aims to alleviate human tasks, monitor operational processes, and regulate system performance optimally. In addressing the challenges of complex material handling, automation solutions have been implemented through the utilization of conveyor systems and robotic arms. Conveyors serve as material transport mechanisms, although they possess specific effectiveness, they also encounter operational limitations. On the other hand, robots as automated systems can be controlled through microcontrollers and possess physical capabilities for specific tasks. Within this context, the research involves the design of electronic systems employing PLCs for conveyor control and Arduinos for robotic arm control. Through the integration of conveyors and robotic arms, this prototype development demonstrates significant potential in meeting the demands of industrial automation. Comprehensive test results concerning load lifting capabilities reveal that the robotic arm can efficiently handle loads with a maximum weight of 17 grams. However, factors such as the suboptimal nature of the robotic arm material and limitations in equipment size also contribute to these outcomes.