ANALISIS PENERAPAN RANCANGAN TESLA COIL PADA LAMPU DI KAPAL

Authors

  • Putri Isrok Wanda Oktavia Poltekpel Surabaya
  • Agus Dwi Santoso Poltekpel Surabaya
  • Henna Nurdiansari Poltekpel Surabaya
  • Akhmad Kasan Gupron Poltekpel Surabaya

DOI:

https://doi.org/10.61722/jinu.v1i5.2610

Keywords:

Tesla coil , Transistor,resistor,capasitor, lilitan primer and sekunder

Abstract

Electrical energy is distributed using copper cables as an intermediary, from high to low voltage systems, until it is ready for use. Copper cables were chosen to transfer electrical energy because the material is able to conduct electrons that can move freely. In this research the author used a research methodology type of method. This research used the ADDIE type Research and Development (R&D) method. Addie consists of Analysis, Design, Development, Implementation and Evaluation. Several test subjects were carried out on light bulbs, 18 W and 36 W AC TL lamps, 60 W AC incandescent lamps, and 8 W AC LED lamps. It was obtained that lamps that could emit light efficiently were TL lamps because TL lamps can operate at high frequencies. Generated by Tesla Coil. From the calculation of the ship's generator fuel, if all the lights use Tesla coils in MT. Long ship, fuel cost savings to Rp. 3,528,263 which should be Rp. 16,691,589 to Rp. 13,163,325. The research results stated that it had not reached the expected value because the ones that could work efficiently were TL lamps because the Tesla coil was only able to work on lamps that had winding components.

 

References

Anarwati, A., & Setiono, I. (2017). Rancang Bangun Alat Pemantauan Pengaturan Kecepatan Putar Motor Dc Power Windows Berbasis Plc Panasonic Menggunakan Human Machine Interface (Hmi). Gema Teknologi, 19(3), 32. https://doi.org/10.14710/gt.v19i3.21883. Diakses 08 Agustus 2023

Cables, W. (2022, Juni 15). 7 Alasan Kenapa Tembaga Sering Digunakan Sebagai Kabel Listrik. Diambil kembali dari Wilson Cables: https://www.wilsoncables.com/id/news/7-alasan-kenapa-tembaga-digunakan- untuk-kabel-listrik. Diakses 01 November 2023

Cakrawala96. (2022, Oktober 06). Mengenal Baterai Nikel Kadmium (Ni-Cd). Retrieved from Gesainstech: https://www.gesainstech.com/2022/10/baterai- nikel-kadmium-nicd-nickel-cadmium-pengertian-kelebihan-kekurangan.html. Diakses 19 Desember 2023

Caramesin. (2022, November 09).Transistor,NPN,dan PNP. Retrieved from Caramesin.com: https://caramesin.com/transistor-npn-dan-pnp/

Chumaidy, A. (2017). Analisa Perbandingan Penggunaan Lampu Tl, Cfl dan Lampu Led (Studi Kasus pada Apartemen X). Sinusoida, XIX(1), 1–8. Diakses 19 Agustus 2023

Cakrawala96. (2022, Oktober 06). Mengenal Baterai Nikel Kadmium (Ni-Cd). Retrieved from Gesainstech: https://www.gesainstech.com/2022/10/baterai- nikel-kadmium-nicd-nickel-cadmium-pengertian-kelebihan-kekurangan.html. Diakses 19 Desember 2023

Dunia. (2023, Mei 25). 7 Hasil Penemuan Nikola Tesla Yang Masih Digunakan Sekarang. Retrieved from Bangun Pendidikan: https://bangunpendidikan.com/penemuan-nikola-tesla. Diakses 01 Januari 2024

Harianto, B. B., & Dwi santoso, A. (2023). Design of half circular wideband antenna for ship radar. Technium: Romanian Journal of Applied Sciences and Technology, 15, 87–96. https://doi.org/10.47577/technium.v15i.9725. Diakses 23 Januari 2024

Indonesia, B. (2022, April 22). Jenis Transistor. Diambil kembali dari Builder.Id: https://www.builder.id/jenis-transistor/. Diakses 03 Februari 2024

Masyruhan, M., Pratiwi, U., & Al Hakim, Y. (2020). Perancangan Alat Peraga Hukum Hooke Berbasis Mikrokontroler Arduino Sebagai Media Pembelajaran Fisika. SPEKTRA: Jurnal Kajian Pendidikan Sains, 6(2), 134. https://doi.org/10.32699/spektra.v6i2.145. Diakses 03 Februari 2024

Nine-volt battery. (2023, November 7). Diambil kembali dari Wikipedia: https://en.wikipedia.org/wiki/Nine-volt_battery. Diakses 03 Februari 2024

Prameswari, G. (2021). Baterai. britannica: Kompas. Retrieved from https://www.kompas.com/skola/read/2021/09/06/124328469/baterai definisi- jenis-fungsi-dan-prinsipnya. Diakses 19 Desember 2023

Purnamasari, A., & Rochmawati. (2015). Dan Komunikasi Dengan Wondershare Quiz Creator Materi Sistem Penilaian Persediaan. Jurnal Pendidikan, 3(1), 1–10. Diakses 19 Desember 2023

Putu, I. (2021). Rancang Bangun Tesla Coil Gun Pemancar Kabel Daya Listrik Tegangan Tinggi Nirkabel Dengan Beban Lampu. Spektrum, 19. Diakses 19 Desember 2023

Prameswari, G. (2021). Baterai. britannica: Kompas. Retrieved from https://www.kompas.com/skola/read/2021/09/06/124328469/baterai definisi- jenis-fungsi-dan-prinsipnya. Diakses 19 Desember 2023

Rakhman, A. (2022, September 19). Tesla Coil . Diambil kembali dari Rakhman.net: https://rakhman.net/electrical-id/tesla-coil/ Diakses 19 Desember 2023

Setiawan. (2023, November 29). 5 Perbedaan Transistor NPN dan PNP. Diambil kembali dari Caramesin.com: https://caramesin.com/transistor-npn-dan-pnp/ Surabaya, P. P., Gn, J., Lor, A., Anyar, G., & Timur, J. (2008). COMPARATIVE ANALYSIS OF TESLA COIL LIGHTS ON SHIPS ON GENERATOR FUEL EFFICIENCY. Diakses 01 November 2023

Uli, i. (2022). Simulasi Mini Tesla Coil (Wireless Electric) Bagi Siswa Pusat Kegiatan Belajar Masyarakat Di Kembangan Utara Jakarta Barat. Pengabdian masyarakat, 310. Diakses 01 November 2023

Utama, S., Mulyanto, A., Arif Fauzi, M., & Utami Putri, N. (2018). Implementasi Sensor Light Dependent Resistor (LDR) Dan LM35 Pada Prototipe Atap Otomatis Berbasis Arduino. CIRCUIT: Jurnal Ilmiah Pendidikan Teknik Elektro, 2(2), 83– 89. https://doi.org/10.22373/crc.v2i2.3706. Diakses 01 November 2023

Wikielektronika. (2023, November 09). Transistor. Diambil kembali dari Wikielektronika.com: https://wikielektronika.com/transistor/(Anarwati & Setiono, 2017; Chumaidy, 2017; Harianto & Dwi santoso, 2023; Surabaya et al., 2008; Utama et al., 2018). Diakses 04 Maret 2024.

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Published

2024-09-25