Transformer Charger Design based on 12V CT Equipped Overcharge Protection

Haninda Tria Valentina, Arif Nur Afandi

Abstract


The need for electrical energy continues to increase and more and more equipment requires electrical energy as its main supply. The fulfillment of electrical energy can be generated by the battery. In the battery, there is a process of discharging and charging. The duration of discharging and charging the battery is affected by the capacity of the battery. Therefore, a charging device is needed for the battery charging process. The 12 V charger uses a CT transformer as a voltage reducer, then rectifies it using a diode. In the charging process, overcharge protection is provided that utilizes TL431 as a comparator that will detect when the battery is full so that no overcharge can cause overheating and damage to the battery. The test results obtained that the longer the charging time the battery voltage increases with a maximum current of 13.5 V. The current will automatically cut off due to the overcharge protection system. Based on the test, it was found that the efficiency of the tool was 61.0835%.


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References


H. Prayogo and A. Wibowo, “Prototipe Charger Baterai Menggunakan Sumber Energi Matahari, Listrik, dan Mekanik,” Widya Tek., vol. 9, no. 1, pp. 33–44, 2017, [Online]. Available: http://journal.wima.ac.id/index.php/teknik/article/view/1295.

A. F. Farizy, “DESAIN SISTEM MONITORING STATE OF CHARGE BATERAI PADA CHARGING STATION MOBIL LISTRIK BERBASIS FUZZY LOGIC DENGAN MEMPERTIMBANGKAN TEMPERATURE,” 2016.

A. Mustafid and D. Wulandari, “Rancang Bangun Alat Charger Otomatis Baterai 12 V 35 AH,” Jrm, vol. 05, pp. 127–132, 2018.

P. Simanjuntak, “EFISIENSI CHARGER BATERAI DARI SUMBER PANEL SURYA DENGAN METODE PULSE WIDTH MODULATION,” Anal. Kesadahan Total dan Alkalinitas pada Air Bersih Sumur Bor dengan Metod. Titrim. di PT Sucofindo Drh. Provinsi Sumatera Utara, vol. 2, pp. 44–48, 2018.

D. Dwinata, “Analisis Kerja Rangkaian Rectifier Signal Amplifier,” Tugas Akhir, vol. 4, pp. 9–15, 2017.

J. Oliver, “Rancang Bangun Sistem Pengisi Baterai Mobil Listrik Berbasis Mikrokontroller Atmega16,” Hilos Tensados, vol. 1, no., pp. 1–476, 2019, [Online]. Available: http://repository.potensi-utama.ac.id/jspui/bitstream/123456789/2990/6/BAB II.pdf.




DOI: http://dx.doi.org/10.17977/um049v3i2p39-45

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