SISTEM MONITORING SUHU KOTAK SMARTPHONE CHARGER TENAGA SURYA MENGGUNAKAN NODEMCU ESP8266
DOI:
https://doi.org/10.31328/jasee.v6i2.03Keywords:
solar energy, NodeMCU ESP8266, DHT22, Internet of Things (IoT) , Blynk, monitoring systemAbstract
Growing energy demand and the depletion of fossil fuel resources have increased the need for sustainable alternative energy sources. Solar energy is suitable for tropical regions and can be applied to small-scale charging systems. This study designs and implements a temperature monitoring and control system for a solar-powered mobile phone charging box to maintain internal temperature stability and support battery charging performance. The system uses a NodeMCU ESP8266 microcontroller, DHT22 sensor, cooling fan, lighting load, Wi-Fi communication, and Blynk Internet of Things platform for real-time smartphone monitoring. Temperature and humidity data are collected inside the box and transmitted to Blynk, while the fan is activated automatically when the temperature exceeds the predefined threshold. Test results show that the system detected changes in operating conditions. When the fan was off and the lamp was on, the temperature was 28°C with 68.40% humidity. When the fan was on and the lamp was off, the temperature reached 30°C with 78.50% humidity. Solar panel output varied from 19.9 V, 0.393 A, and 7.834 W in the morning to 16.02 V, 0.16 A, and 2.563 W in the afternoon. These findings indicate that the proposed system can support real-time monitoring and automatic thermal control.
References
W. Latifah et al., “Rancang Bangun Kontrol Charger Station Dengan Panel Surya Berbasis Mikrokontroler.,” J. Print. J. Pengemb. Rekayasa Inform. dan Komput. /, vol. 2, no. 1, 2024.
F. E. Maulana et al., “Pemanfaatan PLTS Sebagai Sumber Energi Pengendalian Suhu Ruangan Berbasis Arduino,” J. iIlu Ekon. Pendidik. Dan Tek., vol. 02, 2025.
A. Alan Maulana, I. Ade, and H. Setyo, “Rancang Bangun Pengisi Daya Baterai Handphone Berbasis Panel Surya Dan Teknologi Iot Di Lapangan Perwira Dirgantara,” ejournal.poltekbangsby.ac.id, vol. Vol 01, pp. 1–15, 2025.
M. Pardawantara, F. A. S.T., M.Kom, and R. M.Kom, “Perancangan Sistem Solar Tacking Dual Axis Untuk Optimasi Panel Surya Menggunakan Sensor LDR Dan Gyroscope Berbasis Internet Of Things (IoT),” J. Intell. Networks IoT Glob., vol. Vol.1 No.1, p. 98, 2023.
W. Sriyanto and S. Setiawidayat, “JASEE Journal of Application and Science on Electrical Engineering,” JASEE J. Appl. Sci. Electr. Eng., vol. 3, no. 2, pp. 27–37, 2022.
R. Lastry Rajagukguk, D. Damaris Br Bangun, D. Agave Manurung, D. Kurniawan, and J. Agustina Purba, “SINERGI Polmed : Jurnal Ilmiah Teknik Mesin Kajian Inverter Pure Sine Wave Terhadap Beban Pada Pembangkit Listrik Tenaga Surya Kapasitas 100 Wp I N F O A R T I K E L,” vol. 04, no. 02, pp. 70–78, 2023.
M. H. Basri, “Perancangan Kontrol Sistem Fertigasi Pada Green House Berbasis IoT,” AKIRATECH J. Comput. Electr. Eng., vol. 1, no. 1, pp. 1–11, 2024.
K. Hamamni, M. Mukhsim, and D. Siswanto, “Prototipe Sistem Monitoring Biaya Penggunaan Listrik Pada Rumah Kos Berbasis IoT,” JASEE J. Appl. Sci. Electr. Eng., vol. 1, no. 02, pp. 35–46, 2021, doi: 10.31328/jasee.v1i02.12.
R. Bangun, P. Detektor, and S. Surya, “Rancang Bangun Prototipe Detektor Suhu, Kelembaban dan Kualitas Udara menggunakan Sensor, Mikrokontroler, Sel Surya dan IoT. Cogito Smart Journal | VOL. 9 - NO.2, 2023.,” Cogito Smart J., vol. 9, no. 2, pp. 411–421, 2023.
J. Wang, T. Deng, and W. Shang, “Temperature effect and thermal impact in lithium-ion batteries: A review,” J. homepage www.elsevier.com/locate/pnsmi, pp. 653–666, 2018, doi: https://doi.org/10.1016/j.pnsc.2018.11.002.
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2025 JASEE Journal of Application and Science on Electrical Engineering

This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.



