SOLAR PHOTOVOLTAIC DAN PENERAPANNYA MENJADI POWER BANK 10000 MAH

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Goklas Miracle Siahaan
Lathifa Putri Afisna
Fransisco Dino Permadi
Oktavirnanda Oktavirnanda P

Abstract

Consumers of mobile devices expect manufacturers to produce devices that will be an efficient source of electrical energy. The battery currently used in the smartphone allows the device to operate for several hours. PowerBank  extends the operating time of the device without the need to charge it through a charger that is connected to the mains and the most important feature that determines the quality of a power bank is its capacity. This paper first analyzes the effect of the number of solar cells on the application of a 10000 mAh PowerBank. It has been shown in this study that the capacity of the 10000 mAh PowerBank can charge a series of 2, 4, and 8 solar cells. What has also been investigated is Then testing it for several types of mobile devices. The results show that using a 2, 4, and 8 solar cell circuit type can only charge handheld cell phones with a battery capacity of 2000 mAh.

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Author Biographies

Goklas Miracle Siahaan, Institut Teknologi Sumatera

Junior Year in Mechanical Engineering, Institut Teknologi Sumatera

Lathifa Putri Afisna

 

 

Fransisco Dino Permadi

 

 

Oktavirnanda Oktavirnanda P

 

 

References

S. Yuliananda and G. Satya, 2015, "Pengaruh Perubahan Intensitas Matahari Terhadap Daya Keluaran Panel Surya," Pengabdian LPPM Untag Surabaya, p. 193–202.

d. rani lestari saragi, 2022, "analisis prototype pembangkit listrik tenaga surya untuk penerangan lampu jalan," sinergi polmed, vol. 03, no. 01, p. 68, Politeknik Negeri Medan.

S. Haryadi and G. Rusydi Furqon S, 2017, "PEMANFAATAN PANEL SURYA SEBAGAI CHARGER," Teknik Mesin UNISKA, vol. 02, p. 4, Universitas Islam Kalimantan Muhammad Arsyad Al Banjari Banjarmasin.

A. Zainuri, 2011, Elemen, Jurusan Teknik Mesin Fakultas, Mataram.

y. s. wibowo, 2018, "pengisi daya power bank pengganti baterai dari onggok dan limbah kulit pisang," jurnal teknik elektro, fakultas teknologi informasi dan elektro, universitas teknologi yogyakarta, p. 3, Yogyakarta.

d. nabil huwaida k, 2020, "pemanfaatan solar cell sebagai sumber energi listrik hydroponic drip system," electrices, vol. 2, no. 2, p. 50, Politeknik Negeri Jakarta.

A. Paul M, 1992, Prinsip-Pninsip Elektronika, Erlangga, Jakarta.

C. Hu and W. Richard M, 1983, Solar Cells, USA

a. z. f. tyas kartika, 2017, "sistem pendukung keputusan untuk pemilihan powerbank sesuai budged menggunakan metode simple additive weighting," link, vol. 26, no. 2, pp. 6-32, Universitas Narotama Surabaya.

S. Hidayat, 2015, "Pengisi Baterai Portable Dengan Menggunakan Sel Surya," Energi & Kelistrikan, vol. 7, Institut Teknologi PLN.