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Desain Perancangan Buck Converter Berbasis IC LM2596 Raka Dian Mahardi; Lilo Sunuharjo; Danang Hendrawan; Muhammad ‘Atiq; Rizal Agri Wahyuadi; Sigit Prakosa Adhi Nugraha
Jurnal Sains dan Ilmu Terapan Vol. 7 No. 2 (2024): Jurnal Sains dan Ilmu Terapan
Publisher : Politeknik Kampar

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.59061/jsit.v7i2.909

Abstract

A buck converter is a circuit that functions to reduce DC-DC voltage which is often used in various electronic applications. The aim of this research is to design and implement a buck converter circuit that utilizes the LM2596 IC. The research methodology includes circuit design and practical testing. The research results show that circuit testing was carried out with input voltage variations of 10V, 15V, and 20V, which produced stable output voltages of 6.68V, 6.71V, and 6.78V respectively. 
Sistem Pompa Air Otomatis Berbasis Arduino Uno Untuk Optimalisasi Penyiraman Tanaman Menggunakan Sensor Soil Moisture Sigit Prakosa Adhi Nugraha; Yohanes Tri Novia Putra; Rizal Agri Wahyuadi; Raka Dian Mahardi; Muhammad ‘Atiq; Danang Hendrawan
Jurnal Sains dan Ilmu Terapan Vol. 7 No. 2 (2024): Jurnal Sains dan Ilmu Terapan
Publisher : Politeknik Kampar

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.59061/jsit.v7i2.910

Abstract

An automatic plant watering system employing the Arduino Uno was developed to optimize water usage in agriculture. This system utilizes a soil moisture sensor to assess soil moisture levels and regulate the water pump automatically via a relay.The objective of this research is to devise a system that is efficient, reduces superfluous water usage, and ensures adequate moisture for plants. The experimental results demonstrate the system's capacity to adjust the watering schedule of plants in accordance with soil moisture conditions, exhibiting a rapid response time and minimal energy consumption.
Peningkatan Sistem Penerangan Jalan dan Pengelolaan Sanggar Waringin di Desa Soneyan, Kabupaten Pati Muhammad Atiq; Danang Hendrawan; Rizal Agri Wahyuadi; Raka Dian Mahardi; Sigit Prakosa AN
Panggung Kebaikan : Jurnal Pengabdian Sosial Vol. 2 No. 3 (2025): Agustus: Panggung Kebaikan : Jurnal Pengabdian Sosial
Publisher : Lembaga Pengembangan Kinerja Dosen

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.62951/panggungkebaikan.v2i3.1976

Abstract

This community service project aims to improve the quality of street lighting around the Waringin Tunggal Studio, located in Soneyan Village, Pati Regency. As part of efforts to improve community comfort and safety, this project focuses on addressing the issue of inadequate lighting that can impact community activities, particularly at night. Inadequate lighting around the studio creates discomfort and reduces the sense of security for both studio users and the local community. The project began with a thorough inspection of the lighting conditions around the studio. The next step was to design technical solutions to improve the existing lighting system, including increasing the number of lamps and using more efficient types of lamps in terms of energy consumption and light distribution. Furthermore, good collaboration with village officials and other relevant parties was crucial for the smooth implementation of this project. The improvement process was carried out with a focus on energy efficiency and durability, ensuring long-term benefits. The results of this project showed a significant improvement in the quality and coverage of lighting around the Waringin Tunggal Studio. This improvement not only increased comfort but also increased the sense of security for studio visitors and the surrounding community. Access to the studio at night has become easier and safer, positively impacting the arts and cultural activities held there. A post-event evaluation showed increased community participation in the studio's evening events. This success demonstrates that improved lighting can encourage community participation in community activities. Going forward, it is hoped that this activity can be enhanced by utilizing renewable energy, such as solar power, to ensure optimal lighting even during power outages, thus ensuring the desirability of this activity in the future.
Sistem Monitoring Energi Listrik Menggunakan Sensor Hlw8012 Dan Mikrokontroler Aziz Yulianto Pratama; Iwan Setiawan; Danang Hendrawan; Wahyu Yanuar Rizky
Journal Scientific of Mandalika (JSM) e-ISSN 2745-5955 | p-ISSN 2809-0543 Vol. 6 No. 3 (2025)
Publisher : Institut Penelitian dan Pengembangan Mandalika Indonesia (IP2MI)

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.36312/10.36312/vol6iss3pp552-557

Abstract

Electronic equipment created today is synonymous with the use of electricity as an energy source. This will lead to an increase in the use and demand for electric energy for the use of electrical equipment every day. In addition, the availability of electrical energy is currently limited. These conditions require to economize on the use of electricity. Savings can be made when someone knows how much energy is used every day. To overcome this problem, a measuring instrument was designed in the form of a Wattmeter which has a real-time measurement system that can monitor the use of electric power every day through this tool and measurement data can also be accessed via a smartphone. This wattmeter uses an all in one sensor, namely the Hlw 8012 energy meter to measure RMS current, RMS voltage, and VA RMS equipped with Clock and PWM. From the results of these data will be uploaded to a cloud and then monitored through the blink application which has been designed to display data in the form of numbers and graphics according to the results on the tool. The results of measurement and monitoring of the tool that has been made using the Hlw 8012 sensor by obtaining 2 sensor data values ​​(current and voltage) are obtained for very good voltage values ​​between 0 - 2%, while for current values ​​reaching 5-10%. Error error in the current value due to the pulse output from the HLW8012 IC, thus causing an error in the power value, as well as the tolerance value of the HLW8012 IC of ± 5%.