Integrated solar powered fan and lighting system

Mohd Nafis, Nur Nylam Balqis and Omar, Mastura and Muhd Farid, Muhammad Mursyid Akma (2025) Integrated solar powered fan and lighting system. In: E-proceedings of international tinker innovation & entrepreneurship challenge (i-TIEC 2025). International Tinker Innovation & Entrepreneurship Challenge (2nd). Universiti Teknologi MARA Cawangan Johor Kampus Pasir Gudang, Universiti Teknologi MARA, Johor, pp. 392-397. ISBN 978-967-0033-34-1

Abstract

Integrated Solar-Powered Fan and Lightning System is an innovative solution designed to address the challenges of unstable power supply by utilizing solar energy to ensure uninterrupted operation. This multipurpose device features a fan and LED lamp powered by a rechargeable battery charged via a solar panel. Its smart features include an LDR that turns the LED lamp on in the dark and off in bright environments, ultrasonic sensors to activate the fan when humans are detected, and a DHT22 temperature sensor that adjusts the fan speed based on the surrounding temperature. Additionally, the ESP32 module with Wi-Fi connectivity enables users to control lamp brightness and monitor real-time temperature and humidity data through the Blynk IoT app. By combining renewable energy, sensor automation, and IoT technology, this device promotes eco-friendly practices and provides a sustainable solution for both indoor and outdoor use.

Metadata

Item Type: Book Section
Creators:
Creators
Email / ID Num.
Mohd Nafis, Nur Nylam Balqis
UNSPECIFIED
Omar, Mastura
UNSPECIFIED
Muhd Farid, Muhammad Mursyid Akma
UNSPECIFIED
Contributors:
Contribution
Name
Email / ID Num.
Advisor
Zainodin @ Zainuddin, Aznilinda
314217
Subjects: T Technology > TK Electrical engineering. Electronics. Nuclear engineering > Production of electric energy or power > Production from solar energy
T Technology > TK Electrical engineering. Electronics. Nuclear engineering > Electric lighting
T Technology > TK Electrical engineering. Electronics. Nuclear engineering > Electronics > Detectors. Sensors. Sensor networks
Divisions: Universiti Teknologi MARA, Johor > Pasir Gudang Campus > College of Engineering
Series Name: International Tinker Innovation & Entrepreneurship Challenge
Number: 2nd
Page Range: pp. 392-397
Keywords: ESP32 Microcontroller, Light dependent resistor (LDR), Ultrasonic sensor, Renewable energy, Blynk IoT, Sustainability
Date: 2025
URI: https://ir.uitm.edu.my/id/eprint/120567
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