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Assembly and Installation of SDP Lighting Panels: Assembly dan Instalasi Panel SDP Lighting Rohman, Rizky Habibur; Anshory, Izza
Procedia of Engineering and Life Science Vol. 5 (2024): Proceedings of the 7th Seminar Nasional Sains 2024
Publisher : Universitas Muhammadiyah Sidoarjo

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.21070/pels.v7i0.1447

Abstract

Electrical panels have an important role in distributing electrical energy and securing it. One type of electrical panel that is often used is the SDP Panel (Sub Distribution Panel), especially in the context of lighting. This article discusses the assembly and installation process of SDP Lighting Panels, which have a crucial role in maintaining the availability, efficiency and safety of lighting systems. The SDP Panel assembly process involves preparing components such as MCB (Miniature Circuit Breaker), MCCB (Moulded Case Circuit Breaker), Fuse , ELCB (Earth Leakage Circuit Breaker), and other components. After that, these components are carefully assembled according to the previously prepared design. Next, SDP Panel installation involves installing the panels to a location according to the plan and connecting them to the building's main power system. Accurate wiring and thorough testing are necessary to ensure that the panels function properly. It is important to understand that SDP Lighting Panel installations must comply with applicable electrical safety regulations and standards to avoid the risk of fire, electrical disturbances or injury. Errors in the installation or assembly process can have a negative impact on the lighting system and safety. Therefore, a good understanding of the SDP Lighting Panel assembly and installation process is very important to ensure a reliable, efficient and safe lighting system
Implementasi Program Pendidikan bagi Anak-Anak WNI di ICC Ladang Kosma Malaysia Rohman, Rizky Habibur; Prastyo, Dwi; Hidayat, Ahmad Iqbal; Mahmud, Randy Saputra; Syahrorini, Syamsudduha; Rahmaniati, Rita; Zannah, Fathul
Jurnal Keilmuan dan Keislaman Vol. 2, No. 4, Desember 2023
Publisher : Universitas Muhammadiyah Surakarta

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.23917/jkk.v2i4.163

Abstract

Program pendidikan formal memainkan peran penting dalam memberikan akses pendidikan yang adil bagi anak-anak migran, terutama mereka yang tinggal di Malaysia. Namun, masih terdapat banyak hambatan dalam memastikan akses pendidikan yang memadai bagi anak-anak Pekerja Migran Indonesia (PMI) di Malaysia, terutama di sektor perkebunan kelapa sawit dan menggambarkan implementasi program pendidikan bagi anak-anak WNI di perkebunan kelapa sawit Ladang Kosma Malaysia, yang bertujuan untuk mengatasi ketidaksetaraan pendidikan. KKN-KI PTMA ini melibatkan kegiatan pembelajaran seperti kelas membaca, berhitung, keterampilan, dan aktivitas sosial, serta dukungan psikososial untuk anak-anak. KKN-KI PTMA ini menunjukkan bahwa program pendidikan yang dilakukan oleh tim pengabdian berhasil memfasilitasi akses belajar bagi anak-anak migran di ICC Ladang Kosma. Keanekaragaman peserta didik mempengaruhi pembagian kelas berdasarkan rentang usia, dan pembelajaran disesuaikan dengan tingkat kemampuan dan kebutuhan masing-masing kelas. Kolaborasi antara pemerintah Indonesia, perusahaan perkebunan kelapa sawit, KBRI, dan masyarakat setempat juga penting dalam meningkatkan efektivitas dan keberlanjutan program pendidikan ini. Pengabdian ini menyimpulkan bahwa implementasi program pendidikan bagi anak-anak WNI di perkebunan kelapa sawit merupakan langkah penting dalam mengatasi ketidaksetaraan pendidikan dan memberikan mereka kesempatan untuk belajar dan berkembang, sehingga meningkatkan peluang mereka untuk masa depan yang lebih baik.
IoT-based Epever Tracer 1210 MPPT Monitoring System Using Modbus Communication Protocol Rohman, Rizky Habibur; Sulistiyowati, Indah; Anshory, Izza; Saputra, Dwi Hadidjaja Rasjid
Jurnal Edukasi Elektro Vol. 8 No. 2 (2024): Jurnal Edukasi Elektro Volume 8, No. 2, November 2024
Publisher : DPTE FT UNY

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.21831/jee.v8i2.78488

Abstract

This research examines the integration of Maximum Power Point Tracking (MPPT) technology with Internet of Things (IoT) and Modbus communication protocols in solar energy systems, with the main objective of increasing efficiency and enabling real-time performance monitoring. The research method used is experimental. The Epever Tracer 1210 MPPT is used to optimize energy absorption from solar panels, while IoT devices are connected via ESP32 using Modbus protocol. Data such as current, voltage, power, and energy generated are collected and analyzed in real-time using the Blynk app. Tests were conducted at three time periods (morning, afternoon, evening) to measure the accuracy and consistency of the data, and the results show that the IoT-based monitoring system provides accurate data, with minimal difference between the data from the MPPT, measuring instruments, and Blynk application. In addition, the integration of Modbus RTU with the IoT platform improves communication efficiency and security. IoT-connected MPPT technology has proven effective in improving operational efficiency and power conversion in solar energy systems, enabling optimal energy absorption in various weather conditions, thereby maximizing energy production. IoT integration also strengthens the real-time remote monitoring system, which is essential for early detection of faults or performance degradation.