IOT-BASED TEMPERATURE-CONTROLLED FAN SPEED SYSTEM FOR LAUNDRY ROOM
DOI:
https://doi.org/10.54554/jet.2026.17.1.007Keywords:
Energy-efficient, Fan control, Laundry room, Micro-controller system, Temperature sensingAbstract
The growing demand for energy-efficient and intelligent temperature control systems has led to advancements in various sectors, including laundry facilities. This project presents an innovative solution that integrates a temperature-controlled fan system with Internet of Things (IoT) monitoring, specifically designed for laundry rooms. The system employs an ESP8266 module microcontroller, a DS18B20 temperature sensor, a 16x2 LCD display, and an IRF540N MOSFET to regulate a 12V DC fan. Powered by a 12V DC adapter and controlled by a 7805 Voltage Regulator IC, the system ensures precise fan speed control based on temperature fluctuations. Unlike traditional laundry room temperature control systems, which often require manual intervention and result in energy inefficiency, this system operates autonomously, adjusting fan speed in real-time to optimize energy use. The IoT functionality further enhances usability by allowing remote monitoring and control through an online platform, making it an ideal solution for laundry facilities. The methodology involves creating a simple IoT interface, programming the microcontroller for temperature sensing and fan control, and designing an electronic circuit tailored for the laundry room environment. Rigorous testing validates the system's effectiveness, and comprehensive documentation is provided to support the development and management of the project. This solution addresses the unique temperature control needs of modern laundry facilities.
Downloads
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2026 Journal of Engineering and Technology (JET)

This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.
Thank you for your interest in submitting your manuscript to the Journal of Engineering and Technology (JET).
JET publishes only original works. Manuscripts must not be previously published or under consideration by any other publications. Papers published in JET may not be published again in whole or in part without permission. Please review these guidelines for researching, writing, formatting and submitting your manuscript. Authors retain copyright and grant the journal right of first publication with the work simultaneously licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International (CC BY-NC-ND 4.0).
Those submitting manuscripts should be carefully checked to ensure that all works contributed to the manuscript are acknowledged. The list of authors should include all those who can legitimately claim authorship. Manuscript should only be submitted for consideration once consent is given by all contributing authors using Transfer of Copyright form.


