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PEMBUATAN DAN INSTALASI INVERTER OTOMATIS SEBAGAI LISTRIK CADANGAN UNTUK MUSHOLLA AL HUDA Budi Darmawan; , Cahyo Mustiko Okta Muvianto; Suthami Ariessaputra; Syafaruddin Ch
Jurnal Bakti Nusa Vol. 4 No. 2 (2023): Jurnal Bakti Nusa
Publisher : Jurusan Teknik Elektro Universitas Mataram

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.29303/baktinusa.v4i2.69

Abstract

Mushalla Al-Huda di Dusun Kapek Atas, Desa Gunungsari, Kecamatan Gunungsari, Kabupaten Lombok Barat menawarkan berbagai kegiatan seperti pengajian rutin, membaca dan menghafal Al-Quran dan masih banyak kegiatan sosial lainnya yang membutuhkan listrik untuk mendukung operasionalnya. Mushalla Al-Huda hanya menggunakan listrik dari jaringan PLN dan belum memiliki sistem listrik cadangan. Artinya, jika aliran listrik dari jaringan PLN padam, maka kegiatan diliburkan. Untuk mengatasi kondisi tersebut, pada kegiatan pengabdian ini dilakukan instalasi inverter otomatis sebagai sumber listrik cadangan. Kegiatan pengabdian ini diawali dengan pemasangan inverter otomatis yang telah selesai dilaksanakan pada 27 September 2018. Selanjutnya pada 13 November 2018, dilaksanakan pelatihan penggunaan inverter yang diikuti oleh jamaah di mushalla Al-Huda. Inverter yang telah dipasang berfungsi dengan baik seperti yang diharapkan. Dengan terpasangnya inverter pada mushalla al-huda maka kegiatan rutin mushalla seperti pengajian, baca Al Quran dan hafalan yang biasanya diselenggarakan pada malam hari, dapat tetap berjalan dengan lancar walaupun terjadi pemadaman listrik PLN.
Rancang Bangun Sistem Pengaman dan Monitoring Kendaraan Bermotor Hoti Atabia; Syafaruddin Ch; Budi Darmawan; Paniran
JEITECH (JOURNAL OF ELECTRICAL ENGINEERING AND INFORMATION TECHNOLOGY) Vol. 1 No. 1 (2023): JUNI 2023
Publisher : Depertment of Electrical Engineering University of Mataram

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Abstract

Motorcycle security is still manual and without double safety. One solution is to install guards and trackers on motorcycles. In designing this system using Arduino uno as a controller, SIM800L GSM module as a communication medium via SMS and the U-Blox Neo 6MV2 GPS Module. When a motorcycle is stolen, the security system in the form of an alarm will sound and provide a notification of theft warning in the form of an SMS to the user. This tool can also turn off motorbikes remotely and is equipped with a motorcycle location tracking system via Google Maps. The results of testing the motorcycle tracking system obtained that the average response time of the system providing a reciprocal SMS link location when the user requests the location of the motorcycle is 19.55 seconds. Then the average error distance difference between the position of the actual coordinate point on Google Maps and the position of the coordinate point measured on GPS is 2.111602 meters.
Prototype Smart Home Dengan Konsep Internet Of Things Menggunakan Arduino Erlan Bahtiar; Budi Darmawan; Syafaruddin Ch; Sabar Nababan
JEITECH (JOURNAL OF ELECTRICAL ENGINEERING AND INFORMATION TECHNOLOGY) Vol. 1 No. 1 (2023): JUNI 2023
Publisher : Depertment of Electrical Engineering University of Mataram

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Abstract

Smart Home is a residence or dwelling where electrical appliances are connected to a communication network for control, monitoring, or remote access. One of the technologies used in creating a smart home is the Internet of Things (IoT). In this research, a prototype of a smart home was designed using the DHT11 Sensor and RFID (Radio Frequency Identification) Sensor. The controlled appliances include lights, fans, and a door lock. In the design of this IoT-based smart home, the results showed that the Internet of Things system functions optimally on the controlled hardware. The switching relay works well, where when the status in the application is ON, the lights will turn on, while when the status is OFF, the lights will turn off. In the automation of the DHT11 Sensor, when the room temperature exceeds 30°C, the fan will turn on, whereas if the room temperature is below 30°C, the fan will turn off. And in the automation of the RFID-RC522 Sensor, when a registered tag card is placed on the RFID reader, the door lock will open, but if an unregistered tag card is placed on the RFID reader, the door lock will remain locked.
Rancang Bangun Sistem Penyiraman Tanaman Tomat Menggunakan Modul SIM 800L Berbasis Arduino Uno Sahrul; syafaruddin Ch; Budi Darmawan
JEITECH (JOURNAL OF ELECTRICAL ENGINEERING AND INFORMATION TECHNOLOGY) Vol. 1 No. 2 (2023): Edisi Oktober 2023
Publisher : Depertment of Electrical Engineering University of Mataram

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Abstract

Monitoring and watering tomato plants is still done manually. Which can damage and disrupt the growth of tomato plants. Therefore created an automated system and method for monitoring moisture request tomato plants. Arduino microcontroller-based automated system uno operated via SMS usingSIM800L as pngirim information tothe owner of the plant.To know the value of high humidity and water use Soil Moisture sensors and sensor YL-69 HC-SR04.The design is done in two stages: (1) the design of the hardware that makes the system monitoring soil moisture and water level in the tank (2) design software by making programs arduino on software integrated development environment (IDE) for the delivery of information automatically and with a method request , Based on the test results are inconclusive, the automatic monitoring system and mode request and watering can work well. The system can send information about soil moisture automatically tomato plants when soil moisture conditions are less than 50%. And the system can send information about the condition of the water levelin the tank when the <4 cm or> 4 cm. To turn on the pump can be done via SMS when soil moisture <50% and the water level in the tank> 4 cm. pumps be turned off automatically when the humidity> 80%.
Analisis Perubahan Kecepatan dan Waktu Tempuh Sistem Robot Line Follower pada Lintasan yang Berbeda syafaruddin Ch; Suthami Ariessaputra; Budi Darmawan; Paniran; Cahyo Mustiko Okta Muvianto
JEITECH (JOURNAL OF ELECTRICAL ENGINEERING AND INFORMATION TECHNOLOGY) Vol. 1 No. 2 (2023): Edisi Oktober 2023
Publisher : Depertment of Electrical Engineering University of Mataram

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Abstract

A line follower robot is a robot that works along a line. This robot is a very simple type of robot, so it is often used as training material for students who are new to robots. One of the indicators for assessing the performance of a line follower robot is the travel time achieved by the line follower robot in covering various trajectories correctly. The average speed of the robot at 90% and 75% PWM settings is almost the same with a value of around 41 cm/second, while at 50% PWM settings it is much reduced to 35.63 cm/second. At the 90% PWM setting, it can be seen that the path length ratio is 4.32: 2.06: 1, while the travel time ratio is 4.44: 2.66: 1. At the 75% PWM setting, it can be seen that the path length ratio is 4.32: 2.06 : 1. while the travel time ratio is 4.38 : 2.41 : 1. At 50% PWM setting, it can be seen that the path length ratio is 4.32 : 2.06 : 1. while the travel time ratio is 4.09 : 2.09 : 1
Rancang Bangun Modul Percobaan Seven Segment Dan Shift Register Di Laboratorium Elektronika Dan Digital Fakultas Teknik Universitas Mataram Ilvina Sya'rani; Budi Darmawan; Syafaruddin Ch
JEITECH (JOURNAL OF ELECTRICAL ENGINEERING AND INFORMATION TECHNOLOGY) Vol. 2 No. 1 (2024): Edisi Maret 2024
Publisher : Depertment of Electrical Engineering University of Mataram

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Abstract

Design of the seven segment and shift register experimental module. The aim of designing this tool is to make it easier for Electrical Engineering students at Mataram University to retrieve data during practicum. Previously, students needed a long time to collect data, 20-30 minutes, after the existence of this tool, students only needed 10-15 minutes to collec data. In the data seven-segment experiment, the output displayed a seven segment display, while in the shift register experiment the output is shown by an LED indicator, including several subs such as the right shift register, left shift register, and circular shift register. This design uses IC MC14495, 7476, 7432, 7404 and 7408 equipped with several other components... so that output results are obtained that match the input provided.