Claim Missing Document
Check
Articles

Found 35 Documents
Search

PROTOTIPE PENGONTROLAN SUHU OTOMATIS PADA INKUBATOR PENETAS TELUR MENGGUNAKAN ARDUINO UNO Candra, Joni Eka; Syafrianto , Hendra
Jurnal Desain Dan Analisis Teknologi Vol. 1 No. 1 (2022): Juli
Publisher : Aptikom Kepri

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (765.835 KB) | DOI: 10.58520/jddat.v1i1.20

Abstract

Kontrol suhu pada inkubator untuk penetasan sangat penting agar suhu inkubator tetap stabil, suhu normal penetasan telur antara 37oC - 39oC jika suhu di bawah 37 C atau di atas 39 C embrio tidak dapat berkembang dengan baik atau embrio bisa mati. Kontrol suhu dibuat secara otomatis menggunakan Arduino Uno sebagai pengontrol utama, sensor suhu DHT21 untuk membaca suhu ruang inkubator, modul sim800l v2 untuk mengirim pesan ke pengguna jika suhu tidak dalam suhu normal penetasan telur, motor servo digunakan untuk menggeser rak telur, dan menggunakan tiga LED. Untuk menaikkan suhu ruangan ke suhu normal, digunakan tiga buah lampu pijar 5 watt dan satu kipas angin untuk menurunkan suhu inkubator saat suhu naik. Dari hasil pengujian semua rangkaian berjalan dengan baik, untuk mencapai suhu normal dibutuhkan waktu 12 menit dalam pagi, 5 menit siang, 8 menit malam. Pengujian suhu ruangan dengan membandingkan sensor suhu 21 dengan hygrometer buatan pabrik. Persentase error 1,51% pada pagi hari, 0,45% pada siang hari, dan 1,05% pada malam hari.
Pemanfaatan Sensor Fingerprint Untuk Kendali dan Keamanan Sepeda Motor Berbasis Arduino Candra, Joni Eka Candra; Prasetyo, Moch. Farid Eko
Jurnal Desain Dan Analisis Teknologi Vol. 2 No. 1 (2023): Januari
Publisher : Aptikom Kepri

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (1136.511 KB) | DOI: 10.58520/jddat.v2i1.22

Abstract

Perancangan dan pembuatan alat pengendali sistem keamanan sepeda motor menggunakan sidik jari, mempunyai tujuan untuk meningkatkan sistem keamanan sepeda motor dari tindakan kriminal pencurian, berdasarkan tujuan dan permasalahan dari penelitian ini maka dibuatlah sistem pengendali dan sistem keamanan mengunakan sensor fingerprint digunakan sebagai alat masukan pengganti kunci kontak untuk menyalakan dan mematikan kendaraan bermotor. Sensor fingerprint yang digunakan adalah ZFM60, Arduino Uno sebagai minimum sistem pengelola informasi masukan dari sensor fingerprint, motor servo sebagai sebagai aktuator pengunci dan pembuka kunci keamanan sepeda motor, sedangkan relay sebagai saklar kontak dan starter motor. Dari hasil pembuatan dan pengujian alat dapat disimpulkan Sistem akses ini berfungsi sebagai sistem kontrol yang lebih efisien, karena pengguna sepeda motor tidak perlu membawa kunci konvensional, ia hanya perlu mengaktifkannya dengan sidik jari yang terdaftar, Sistem akses ini juga mengaktifkan sistem keamanan, pengguna yang memiliki akses ke sensor sidik jari yang dapat mengaktifkan sepeda motor.
Rancang Bangun Solar Panel Tracker Dual Axis Berbasis Internet Of Things Beda, Nadjamudin; Joni Eka Candra; Muhammad Jufri
JURNAL QUANCOM: QUANTUM COMPUTER JURNAL Vol. 2 No. 1 (2024): Juni 2024
Publisher : LPPM-ITEBA

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.62375/jqc.v2i1.188

Abstract

The aim of this research is to develop a monitoring system for an IoT-based dual axis solar tracking system, with the aim of increasing the efficiency of light absorption by solar panels and monitoring the power produced by IoT-based solar panels. A tracking system is a method that is able to move solar panels according to changes in the direction of the light source, ensuring that the solar panels receive maximum light to achieve maximum power. The research method applied involves a series of tests to monitor the solar tracking system. Measurements involve the variable tilt of the solar panel, voltage, current and light intensity using a designed device, the results of which are then compared with standard measuring instruments. The system that has been developed successfully moves the solar panels according to the direction of the light source. The monitoring system uses Arduino and Esp8266 as microcontrollers, DinamoDC as the driving motor. After that, the percentage error for each measurement is calculated. The research results show that the light insensitivity values from solar panel test data were taken from 07.00 to 17.00. Based on several measurements that have been carried out, it can be concluded that the solar panels are functioning well, this is proven by the results of solar panel measurements with an average measured voltage of 18.45 volts – 20.38 volts.
Sistem Monitoring Daya Listrik Berbasis Internet of Things Menggunakan Aplikasi Blynk Rifa; Risky Sandiari; Joni Eka Candra; Zainul Munir
JURNAL QUANCOM: QUANTUM COMPUTER JURNAL Vol. 2 No. 1 (2024): Juni 2024
Publisher : LPPM-ITEBA

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.62375/jqc.v2i1.329

Abstract

This research aims to design and implement a monitoring system that allows the measurement of voltage, current, and power using electronic devices, particularly NodeMCU and PZEM004T current sensor, along with the Blynk application as the user interface. The development method used is the waterfall method, involving stages of analysis, design, implementation, testing, and evaluation.This monitoring system is designed to measure voltage, current, and power for various electronic devices at home or in the surrounding environment. However, the measurement results obtained show errors, especially in current measurement. The current measurement results have a significant error rate, which can affect the accuracy of power calculations. The error testing results for the voltage sensor are 3W lamp (0.171%), 10W lamp (0.343%), and the overall average voltage sensor error is 0.410%, the average errors for the current sensor are (92%), power (1.57%), and the total cost of electricity that will be paid for a month is (Rp.89,232)..
PELATIHAN DASAR ROBOTIKA UNTUK SISWA SMAN 26 BATAM Candra, Joni Eka Candra; Jufri, Mohammad; Aranski, Alvendo Wahyu; Abrar, Mohammad Masril; Noviardi, Refli; Nasution, Nadia Widari; Burhan, Rifatul Mahmudah
JUPADAI : Jurnal Pengabdian Kepada Masyarakat Vol. 3 No. 1 (2024): Volume 3 Nomor 1 2024
Publisher : Asosiasi Dosen Akutansi Indonesia, KEPRI

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.64795/jupadai.v3i1.123

Abstract

Batam 26 High School or known as Smandanam is a superior school which aims to produce a generation with knowledge and superior character. whose address is at the Botania 1 Complex, Botania Garden Batam Center Batam City, where currently SMAN 26 Batam is led by Mr. Midiyanto, S.PD., M.M as Principal of the School. At SMAN 26 Batam, currently there are two main focus areas: the Department of Natural Sciences (IPA) and the Department of Social Sciences (IPS). Given the importance of digital technology and automation in both domestic and industrial settings, it is important to include robotics curricula from elementary to high school, even though they are currently offered as extracurricular activities. The most important aspect of the Community Service program is the potential for sustainability. This program can be continued with a mentoring program in the development of extracurricular curriculum at SMAN 26 Batam, namely by assisting in making different types of mobile robots. The method that will be used is the method of providing mobile robot materials and will briefly present the steps for assembling a mobile robot. Furthermore, participants will try out the assembled results in the field or object work line. On this occasion the PengMas team will help provide training on assembling mobile robots. This robotics training activity provides an opportunity for students and teachers to become more familiar with basic computer programming and furthermore, participants will have the skills to assemble robots.
Rancang Bangun Alat Penetralisir Asap Rokok pada Ruang Tamu Berbasis Internet of Things Dika, Andika Zahrah Ramadhanti; Luki Hernando; Joni Eka Candra
JURNAL QUANCOM: QUANTUM COMPUTER JURNAL Vol. 2 No. 2 (2024): Desember 2024
Publisher : LPPM-ITEBA

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.62375/jqc.v2i2.398

Abstract

Cigarette smoke is one type of air pollutant that can cause various health problems, such as coughing, cancer and other health problems, especially when accumulated in the house, especially in the living room which is often used for gathering. This research aims to design and build an Internet of Things (IoT)-based cigarette smoke neutralization device that utilizes MQ-2 and MQ-135 sensors to detect the presence of smoke and harmful substances. The method used in this research is the waterfall method, which includes requirements analysis, design, implementation, testing, and maintenance. The development process of this tool is carried out systematically. This tool is equipped with a bot telegram notification system that provides real-time information to users regarding the air quality in the living room. When the sensor detects pollution levels exceeding the threshold, the device will activate the fan to increase air circulation and utilize the exhaust fan to neutralize smoke. In addition, the sound output from the speaker provides information about the air quality and notifies that the room has been successfully neutralized. Based on the test results, this prototype tool is able to detect air quality and takes ±1 minute to neutralize a room contaminated with smoke > 10 ppm while for smoke levels > 50 ppm, it takes ±2 minutes to create a healthy environment for the occupants. This research is expected to provide an innovative solution to the problem of smoke pollution and the implementation of indoor smoking bans.
Pendekatan Inovatif Dalam Pencegahan Kematian Bayi Melalui Pemberian Inkubator Bayi Bertenaga Surya Bora, M. Ansyar; Eka Candra, Joni; Dwiputri Permatasari, Ririt; Septiana, Reski; Shilah, Nur; Roland, Roland; Rianoktawanto, Rianoktawanto
Jurnal SOLMA Vol. 13 No. 3 (2024)
Publisher : Universitas Muhammadiyah Prof. DR. Hamka (UHAMKA Press)

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.22236/solma.v13i3.16640

Abstract

Background: Puskesmas Bulang sebagai salah satu penyedia fasilitas kesehatan (Faskes) terluar di Pulau Batam merupakan puskesmas satelit yang sifatnya vital karena operasionalnya mencakup Pulau Buluh dan beberapa pulau kecil disekitarnya dengan sarana dan prasarana alat kesehatan (alkes) yang belum memadai. Walaupun Puskesmas Bulang dapat menerima persalinan bayi namun apabila calon ibu bayi terindikasi akan memiliki bayi premature, maka persalinan dialihkan ke Rumah Sakit faskes lanjutan terdekat di Pulau Batam yang berjarak sekitar 10km. Maka, solusinya yaitu pemberian inkubator bayi yang terintegrasi dengan solar panel. Tujuan kegiatan pengabdian secara jangka panjang adalah mendukung program pemerintah untuk mengurangi angka kematian bayi baru lahir (neonatal) hingga 12 kematian per 1000 kelahiran selagi memberikan kesempatan bagi dosen dan mahasiswa berkegiatan di luar kampus. Metode: Pelaksanaan kegiatan dibagi tiga tahap yaitu persiapan, pelaksanaan, dan evaluasi. Setiap tahapan melibatkan mitra. Hasil: Hasil riset yang akan diterapkan pada kegiatan ini yaitu pemanfaatan energi terbarukan solar panel yang terintegrasi dengan alkes inkubator bayi. Kesimpulan: Teknologi telah diuji coba dan di implementasikan di puskesmas pulau bulang dan dapat menjadi solusi untuk pengingkatan layanan kesehatan masyarakat disekitar Puskesmas Bulang.
TUMBUHKAN KREATIVITAS ANAK SEKOLAH DASAR ISLAM TERPADU MUTIARA INSANI MELALUI PENGGUNAAN APLIKASI PICTOBLOK PADA ROBOT MOBILE Candra, Joni Eka Candra; Aranski, Alvendo Wahyu; Nasution, Nadia Widari; Kremer, Hendri
JUPADAI : Jurnal Pengabdian Kepada Masyarakat Vol. 3 No. 2 (2024): Volume 3 Nomor 2 2024
Publisher : Asosiasi Dosen Akutansi Indonesia, KEPRI

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.64795/jupadai.v3i2.143

Abstract

Integrated Islamic Elementary School (SDIT) Mutiara Insani is an educational institution located in Batam City. As a school with an integrated concept, SDIT Mutiara Insani combines general education with Islamic religious education, aiming to shape students who are not only excellent in knowledge but also possess noble character. SDIT Mutiara Insani offers adequate educational facilities, including comfortable classrooms, a library, a computer lab, and a prayer room. However, in this rapidly advancing digital era, the need for modern educational technology tools has become increasingly urgent. Access to devices such as computers and the internet is available, but the use of interactive technology like mobile robots and innovative learning applications is still limited. Early childhood education, especially at the elementary school level, requires an innovative and engaging approach to enhance cognitive skills and creativity. One effective method is through the use of interactive technology, such as mobile robots equipped with the Pictoblox application. This PKM activity has generally succeeded in fostering the creativity of SDIT Mutiara Insani students through robotic programming using PictoBlox. However, challenges such as limited devices and time indicate the need for further support in the form of additional facilities and increased time allocation.
Penerapan Panel Surya Cerdas untuk Peningkatan Infrastruktur Listrik Di Pulau Putri Candra, Joni Eka; Dermawan, Aulia Agung; Putera, Dimas Akmarul; Roland, Roland; Steve, Jorvick
Jurnal SOLMA Vol. 14 No. 1 (2025)
Publisher : Universitas Muhammadiyah Prof. DR. Hamka (UHAMKA Press)

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.22236/solma.v14i1.17532

Abstract

Pendahuluan: Keterbatasan infrastruktur listrik membuat masyarakat Pulau Putri bergantung pada sumber energi konvensional yang tidak efisien dan mahal. Oleh karena itu, proyek "Penerapan Panel Surya Cerdas untuk Peningkatan Infrastruktur Listrik di Pulau Putri" dilaksanakan sebagai solusi inovatif untuk mengatasi masalah tersebut. Studi ini bertujuan untuk memasang sistem panel surya cerdas yang memanfaatkan teknologi Internet of Things (IoT) untuk memantau dan mengoptimalkan kinerja sistem secara real-time. Metode: Studi awal, survei lokasi, perencanaan, desain sistem, sosialisasi, pelatihan masyarakat, instalasi, implementasi, monitoring, dan evaluasi. Hasil: Berhasilnya pemasangan sistem panel surya 400Wp di Pulau Putri, teknologi IoT, efisiensi energi dan pengurangan biaya bahan bakar fosil.  Kesimpulan: Kegiatan ini bermanfaat bagi masyarakat karena dapat mengurangi emisi karbon dan menghemat biaya operasional.
Desain System Smart Clothesline Berbasis Arduino Dengan Metode Logika Fuzzy Joni Eka Candra; Very Karnadi
Prosiding Vol 1 (2018): SNISTEK
Publisher : LPPM Universitas Putera Batam

Show Abstract | Download Original | Original Source | Check in Google Scholar

Abstract

Drying clothes is one activity that moften done in household life. Batam islands almost rainfall throughout the year and the people of Batam City are working in the industrial and government sectors indirectly often outside the house so that the activities of drying clothes left abandoned or working, so become it rains or when the night come can not lift clothesline. Based on these problems the researcher wishes to design and build a system that can work automatically by using arduino uno R3 as control system and fuzzy logic method mamdani as logic control system and utilizing water sensors and LDR sensors as input data from the outside environment in case of change. Based on the result of testing of smart clothesline system based on Arduino using fuzzy logic method can be concluded that the system has been in accordance with the rule base created using fuzzy mamdani logic approach. That servo motors can move from angle 0˚ to angle 90˚, which means to move close when the water sensor exposed to water (rain) and LDR sensor when not exposed to light (night), and servo motors can move from corner 90˚ to corner 0 ˚ which means moving open when the dry water sensor (Heat) and the LDR sensor are exposed to light (Daylight).