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Pelatihan Virtual Lab Khusus Pembelajaran Bidang Teknik Untuk Guru SMK Negeri 1 Simpang Katis Guna Mendukung Program Pemerintah Menekan Penularan Covid – 19 Fahri Setiawan; Muhammad Yonggi Puriza; Welly Yandi; Rudy Kurniawan
Dharma Pengabdian Perguruan Tinggi (DEPATI) Vol 2 No 1 (2022): May 2022
Publisher : Fakultas Teknik, Universitas Bangka Belitung

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (944.7 KB) | DOI: 10.33019/depati.v2i1.2860

Abstract

Community service activities carried out was non-research-based community services. The service activity was motivated by Covid-19 pandemic in Indonesia and whole the world. During the Covid-19 pandemic, Minister of Education and Culture Nadiem Anwar Makarim published an online learning policy and forbiden face-to-face meetings and applies to all levels of education. To support limited face-to-face learning and online learning, the Service Team of the Department of Electrical Engineering, University of Bangka Belitung planned to a Virtual Lab Training Special for Engineering Learning for Teachers of SMK Negeri 1 Simpangkatis to Support the Government's Program to Suppress the Transmission of Covid-19. This service has several stages which must be followed starting from collaborating with partners and willingness to become partners, making proposals for community service activities so that they can be funded, conducting training activities and guiding partners in developing Virtual Lab-based technical learning, evaluating and making final reports and targeting one of them to be able to publish in National Journal of Community Service. In the future, with the implementation of this activity, it is hoped that it can become a pilot for the implementation of virtual labs for other SMKs in Central Bangka Regency in particular and the Province of the Bangka Belitung Islands in general.
RANCANG BANGUN ALAT PENGERING BAJU MENGGUNAKAN UDARA PANAS Kadriadi Kadriadi; Kadex Widhy Wirakusuma; Angga Bahri Pratama; Jeri Ariksa; Welly Yandi
Machine : Jurnal Teknik Mesin Vol 9 No 1 (2023): Machine : Jurnal Teknik Mesin
Publisher : Jurusan Teknik Mesin Fakultas Teknik Universitas Bangka Belitung

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33019/jm.v9i1.3950

Abstract

Drying is a process of transferring heat and water vapor simultaneously which requires heat energy to evaporate the water content. This heat energy can usually be obtained from sunlight. However, during the rainy season, this condition inhibits the drying process that utilizes sunlight, so the drying process takes a long time. Therefore we need a tool that can dry clothes without depending on the heat source from the sun's rays. The clothes dryer is a tool used to dry clothes with artificial heat energy, one of the artificial heat producers is a heating element or what is often called a heater. The artificial heating element used in this research is Electric Heater. This Electric Heater is equipped with a fan that can produce an indoor temperature of up to ± 52.3º C so that the heat generated by the Electric Heater can convert the water contained in the clothes into water vapor which will then be released into the environment with the help of a fan. Based on the results of calculations and testing, the ability of this tool is able to evaporate an average mass of water of 535.8 grams/hour and this machine reaches its optimum point for the number of drying clothes that can be dried as many as 6 clothes.
PROTOTIPE DATA LOGGING MONITORING SYSTEM UNTUK KONVERSI ENERGI PANEL SURYA POLYCRYSTALLINE 100 WP BERBASIS ARDUINO UNO Welly Yandi
Jurnal Ecotipe (Electronic, Control, Telecommunication, Information, and Power Engineering) Vol 7 No 1 (2020): Jurnal Ecotipe, April 2020
Publisher : Jurusan Teknik Elektro, Universitas Bangka Belitung

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33019/ecotipe.v7i1.1486

Abstract

Data logging monitoring system merupakan sebuah alat yang berfungsi untuk memantau hasil keluaran panel surya berupa tegangan dan arus berdasarkan waktu dan suhu. Alat ini menggunakan Arduino Uno sebagai mikrokontroler untuk memantau atau memproses data yang dihasilkan panel surya. Sensor yang digunakan adalah sensor tegangan, sensor arus dan sensor suhu. Data yang dihasikan akan secara otomatis tersimpan pada SD Card. Data yang dihasilkan dan disimpan pada SD Card akan diubah menggunakan aplikasi PLX-DAQ agar dapat dibaca dan ditampilkan dalam bentuk tabel dan grafik. Sementara, Panel surya yang digunakan dalam penelitian ini memiliki kapasitas sebesar 100 Wp. Agar diperoleh arus maksimal maka digunakan beban sebesar 6 Watt. Sedangkan, kapasitas aki yang digunakan adalah 5 Ah. Waktu yang dihasilkan selama proses pengecasan aki dibandingkan dengan daya yang dihasilkan oleh panel surya adalah 4,43 jam. Hasilnya, dalam keadaan aki penuh dapat menyuplai energi listrik selama 10 jam dengan beban 6 Watt.