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Open Access
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nThis is an unedited manuscript accepted for publication and provided as an Article in Press for early access at the author’s request. The article will undergo copyediting, typesetting, and galley proof review before final publication. Please be aware that errors may be identified during production that could affect the content. All legal disclaimers of the journal apply.n
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Pranali P. Pisal, Pratik P. Pisal, Suraj P. Bagal, B.B.Godbole,
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- Student, Student, Student, Professor, Department of Electronics and Telecommunication Engineering, SKN Sinhgad College of Engineering, Korti, Pandharpur, Department of Electronics and Telecommunication Engineering, SKN Sinhgad College of Engineering, Korti, Pandharpur, Department of Electronics and Telecommunication Engineering, SKN Sinhgad College of Engineering, Korti, Pandharpur, Department of Electronics and Telecommunication Engineering, SKN Sinhgad College of Engineering, Korti, Pandharpur, Maharashtra, Maharashtra, Maharashtra, Maharashtra, India, India, India, India
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Abstract
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nThis paper presents the design and development of a smart office automation system that can be controlled in multiple ways: using the Arduino IoT Cloud or a web browser, an IR remote and on/off switches. The system allows users to control office devices such as lights, fans, and other electric appliances. . In this system six relay module are used to operate the six electric appliances, from those six appliances four appliances are operate through dashboard which is created in Arduino IoT Cloud mobile app and also monitoring the temperature sensor data is shown on dashboard, this four appliances also operate using IR remote and manual switches. Remaining two appliances are operating through the use of remote and manual switches. A temperature sensor is included to provide real-time office temperature readings. The system can be operated from anywhere via the internet using a mobile app or, if the mobile app is not available, it can also be accessed and controlled through a web browser. Additionally, users can control the system offline using the IR remote effective up to 8 meters or direct switches operated manually, making it versatile and internet- independent when needed. The system features fast response times: about 400 ms -1 sec for cloud or web control, and 200 ms-300 ms for IR remote and manual switches. An Arduino board manages all inputs and devices to ensure smooth and effective functioning. This project offers an easy, fast, flexible, and affordable solution for automating precious workplace environments.nn
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Keywords: Multi-Control, Office Automation, Node MCU ESP32, IR remote, Arduino IoT Cloud app, Web browser, Relay module, DHT22 sensor, TSOP receiver, ON/OFF Switches.
n[if 424 equals=”Regular Issue”][This article belongs to Journal of Microcontroller Engineering and Applications ]
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nPranali P. Pisal, Pratik P. Pisal, Suraj P. Bagal, B.B.Godbole. [if 2584 equals=”][226 wpautop=0 striphtml=1][else]Multi-Control Smart Office Automation System: Arduino IoT Cloud App, Web Browser, IR Remote and Manual Switches[/if 2584]. Journal of Microcontroller Engineering and Applications. 06/10/2025; 12(03):-.
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nPranali P. Pisal, Pratik P. Pisal, Suraj P. Bagal, B.B.Godbole. [if 2584 equals=”][226 striphtml=1][else]Multi-Control Smart Office Automation System: Arduino IoT Cloud App, Web Browser, IR Remote and Manual Switches[/if 2584]. Journal of Microcontroller Engineering and Applications. 06/10/2025; 12(03):-. Available from: https://journals.stmjournals.com/jomea/article=06/10/2025/view=0
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Journal of Microcontroller Engineering and Applications
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| Volume | 12 | |
| [if 424 equals=”Regular Issue”]Issue[/if 424][if 424 equals=”Special Issue”]Special Issue[/if 424] [if 424 equals=”Conference”][/if 424] | 03 | |
| Received | 14/06/2025 | |
| Accepted | 10/07/2025 | |
| Published | 06/10/2025 | |
| Retracted | ||
| Publication Time | 114 Days |
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