Research Article

, 16 Dec 2025 | 10.62346/ijbsip_q3_v12_no3_25_04
Year : 2025 | Volume: 12 | Issue: 3 | Pages : 1-5

Solar Battery Charger Using Comparator

Dr. R. Samson Daniel 1 *, Gokila M, Dhan0usree V, Brindhavarshini M, Munaaf M
  • 1Anna University Chennai, Associate Professor, Department of ECE, K. Ramakrishnan college of engineering, Tamilnadu, IN
Solar-powered battery charging involves regulated control to avoid overcharging, deep discharging, and voltage stress on the battery. The different analog approaches-using LM324 op-amp comparators, MOSFET/Transistor switching, diode protection, and voltage reference circuits-have been elaborated in the four project papers referenced here to achieve safe charging of lead-acid batteries. Put together, these point out that the charging process is initiated with a photovoltaic panel supplying DC power; this is usually conditioned through the use of protection diodes such as 1N4007 against reverse current flow. A solar charge controller monitors the battery voltage via a resistor-divider sensing network and compares it with reference thresholds developed using Zener diodes or voltage regulators. Comparator ICs like LM324/LM358 serve to detect when the battery voltage reaches a preset high or low limit. When the battery is full, the comparator output acts to switch on a switching device, which could be BC548 transistor, power MOSFET, or relay to disconnect or bypass the charge path to prevent overcharge. In turn, when the voltage falls below a certain minimum, the comparator's output allows re- activation of the charging. Again, these papers point out that additional devices may be used, including optocouplers for isolation, LEDs to indicate charging on or off conditions, and dummy-load diversion circuits to dissipate excessive input solar power safely.

References

[1]    D. Borkar, Y. Umare, and B. Shikkewal, β€œDesign of Charge Controller for Photovoltaic System Using OP-AMP Comparator,” International Journal of Scientific Research in Science, Engineering and Technology, vol. 5, no. 2, pp. 01–05, 2018.

[2]     P. Patil, R. Shinde, and S. Ingole, β€œDesign and Implementation of Solar Charge Controller Using LM317,” International Journal of Emerging Technology and Advanced Engineering, vol. 6, no. 2, pp. 312–317, 2016.

[3]     S. Kamble and S. Khot, β€œSolar Panel Based Battery Charging System Using Comparator Circuit,” International Journal of Research in Engineering and Technology, vol. 3, no. 2, pp. 421–425, 2014.

[4]    R. Sridhar, P. Ramesh, and K. Vijay, β€œDesign of Solar Charge Controller Using LM324,” International Journal of Engineering Development and Research, vol. 5, no. 2, pp. 145–150, 2017.

[5]   R. Hariharan, S. Kumar, and M. Devi, β€œSolar Powered Battery Charging System with Automatic Cut-Off,” International Journal of Scientific and Engineering Research, vol. 7, no. 5, pp. 582–587, 2016.

[6]     S. Maremanda, β€œDesign of an Automatic Battery Charger Using Operational Amplifier,” International Journal of Innovative Research in Electrical, Electronics, Instrumentation and Control Engineering, vol. 3, no. 7, pp. 34–38, 2015.


Keywords: Deep discharge prevention, Eco-friendly charging, Energy storage system, Switching circuit

Citation: Dr. R. Samson Daniel*, Dr. R. Samson Daniel ( 2025), Solar Battery Charger Using Comparator. , 12(3): 1-5

Received: 25/09/2025; Accepted: 30/10/2025;
Published: 16/12/2025

Edited by:

Mr.ERES JOURNALS

Reviewed by:

Copyright: @eres journals.

*Correspondence: Dr. R. Samson Daniel , samson.rapheal@gmail.com


Copyright Β© 2013-2026 ERES Publications