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Aplikasi Sensor Gesture Untuk Kendali Lampu Dengan NODEMCU ESP8266 Tony Wungkana; Sukandar Sawidin; Nikita Sajangbati; Toban T Pairunan; Benny A.P Loegimin
Prosiding Seminar Nasional Produk Terapan Unggulan Vokasi Vol 1 No 2 (2022): Prosiding Seminar Nasional Produk Terapan Unggulan Vokasi Politeknik Negeri Manad
Publisher : Pusat Penelitian dan Pengabdian Kepada Masyarakat Politeknik Negeri Manado

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (409.855 KB)

Abstract

To turn on the indoor lighting is still done manually by pressing the light switch. Switch is an electric tool to turn on or turn off the lights. There are lots of innovations that can be done to make human work easier. One of them is using a gesture.sensor which is applied to replace a manual switch. Gesture.sensor is a non-verbal communication that communicates certain messages by detecting hand movements. This research is to utilize the gesture sensor which functions as a control for disconnecting and connecting electricity without physical contact between the user and the device being made, to turn on the lights in the room, the gesture sensor detects hand movements up, down, to the left and to the right side. If there is a movement of the hand as a gesture signal (gesture.sensor) as input and processed by the NodeMCU ESP8266 microcontroller which is used as input to the relay module to turn on or turn off the lights
Panel Installation Work Tony Wungkana; Doostenreyk Niala Kantohe; Exsel Kindangen; Revano Timporok; Brenden P Loho; Felita A Gosal
Jurnal Syntax Admiration Vol. 6 No. 2 (2025): Jurnal Syntax Admiration
Publisher : Syntax Corporation Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.46799/jsa.v6i2.2136

Abstract

Energy is the ability to do work. Energy is power that can be used to carry out various activity processes including mechanical energy, heat, etc. Therefore, almost all disputes in this world stem from the struggle for energy sources.  This research also aims to explain the utilization of solar energy as an alternative source of electricity through the photovoltaic process, as well as identify the effectiveness of electrical energy storage in batteries controlled by regulators and power conversion from DC to AC through inverters. The findings indicate that precise planning, skilled labor, and compliance with safety regulations are essential for successful panel installation. Common challenges identified include improper load calculations, inadequate circuit protection, and wiring faults, which can lead to inefficiencies and system failures. Recommendations for enhancing installation practices include the adoption of smart panels, automated monitoring systems, and rigorous safety training for electricians. In conclusion, efficient panel installation requires a combination of technical expertise, regulatory adherence, and modern technology integration. By implementing best practices, panel installations can be optimized for safety, efficiency, and long-term reliability, contributing to a more stable and sustainable electrical infrastructure.