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Pengembangan Deteksi Suhu dan Kelembaban Laboratorium Elektronika Dengan Menggunakan Metode Fuzzy Logic Bahrun Niam; Rony Darpono; Martselani Adias Sabara
CIRCUIT: Jurnal Ilmiah Pendidikan Teknik Elektro Vol 6, No 1 (2022)
Publisher : PTE FTK UIN Ar-Raniry

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.22373/crc.v6i1.10498

Abstract

The electronics laboratory is an important place to run the practical activities, especially among electronics students. It is important to protect laboratory equipment and components from the temperature and humidity factors. Whether, the temperature is too cold and the humidity is too high, it caused the corrosion of all electronic components. Thus, it also caused minor until severe damage of the components. Arduino is an open source electronics kit which specially designed to make easier for researcher to develop electronic devices regarding to various sensors and controllers. The laboratory room temperature detection system was carried out by using an Arduino device, which aims to determine the temperature conditions in the laboratory. The method used in this research is the fuzzy logic method. The software used is Arduiono and Matlab, while the hardware is power supply, D1 Mini microcontroller, DHT11 sensor and LCD. The results showed that the temperature data obtained from the DHT11 sensor will be displayed on the LCD. The temperature data obtained is 27 degrees Celsius – 29 degrees Celsius. The system is able to provide information when the temperature and humidity conditions are abnormal and the LED lights up according to room conditions.
RANCANG BANGUN ALAT PRES CETAK RENGGINANG OTOMATIS BERBASIS ARDUIN UNO Muchamad Sobri Sungkar; Martselani Adias Sabara
Power Elektronik : Jurnal Orang Elektro Vol 10, No 1 (2021): POWER ELEKTRONIK
Publisher : Politeknik Harapan Bersama Tegal

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30591/polektro.v10i1.2376

Abstract

Teknologi dapat membantu  pekerjaan manusia menjadi lebih mudah, efektif dan efisien. Alat pres cetak rengginang digunakan secara otomatis sehingga tidak memerlukan tenaga manusia dalam membuat hasil cekungan pada rengginang. Alat pres cetak rengginang berfungsi untuk menekan dan memberikan cekungan untuk membentuk rengginang, dengan mengoprasionalkan alat ini semua pekerja dapat melakukakannya walaupuun pekerja belum ahli membuat rengginang. Hal ini sangat berbeda dengan proses pembuatan rengginang secara manual yang hanya dapat di kerjakan oleh pekerja yang tergolong ahli dan trampil. Untuk membuat hasil cetakannya ketan yang telah dikukus diisikan pada cetakan dan alat pres ini bekerja ketika arduino hidup dan apabila sensor infrared bekerja mendeteksi adanya objek/ cetakan rengginang maka relay bekerja dan menggerakkan motoran maka alat pres bekerja mengepres rengginang.Pada dasarnya alat untuk pembuatan rengginang otomatis ini menggunakan arduino uno dengan motoran dc untuk menggerakkan alat pres dengan delay pada relay dan pembacaan objek menggunakan sensor infrared. Kata Kunci : Alat pres, Arduino.
Aplikasi Android Sebagai Kontrol Mobile Robot Menggunakan App Inventor di SMK Bhakti Praja Dukuhwaru Rony Darpono; Much Sobri Sungkar; Bahrun Niam; Ulil Albab; Martselani Adias Sabara; Ratri Wikaningtyas; Qirom Qirom; Dani Sucipto; Wiyantii Wiyantii
Jurnal Pengabdian Masyarakat Kesosi Vol. 8 No. 2 (2025): Juli: Jurnal Abdimas KESOSI
Publisher : Sekolah Tinggi Ilmu Kesehatan Kesetiakawanan Sosial Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.57213/abdimas.v8i2.358

Abstract

The suboptimal utilization of Android applications in microcontroller courses at SMK Bhakti Praja Dukuhwaru was the primary motivation for this community service activity. Previously, students had not been fully guided in developing Android applications for effective device control, particularly mobile robots. This situation limited students' knowledge and skills in integrating Android programming technology with microcontroller systems. Therefore, this activity was designed with the primary goal of improving students' knowledge and skills in creating Android applications for mobile robot control using MIT App Inventor. This training activity also included an introduction to the basic concepts of Arduino programming on the ESP8266 microcontroller, which has the ability to connect to Android applications via Bluetooth. The training method was practical and step-by-step, starting with an introduction to the App Inventor interface and features, creating a simple application design, and then proceeding to the programming process for controlling the mobile robot. In addition to controlling the robot, the application was also designed to be applicable to controlling other microcontroller-based electronic devices. The training participants were engineering students at SMK Bhakti Praja Dukuhwaru, who actively participated in the hands-on practice sessions. With a project-based learning approach, students gain not only theoretical knowledge but also hands-on experience designing and testing Android applications connected to microcontroller devices. The expected outcome of this activity is improved student skills in developing Android applications integrated with microcontrollers, as well as a growing interest in robotics technology. Therefore, this activity is expected to make a real contribution to supporting technology-based learning in schools and preparing students for the development of automation and the Internet of Things (IoT)-based industries.