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Erinda Anasia Agustin
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INDONESIA
Jurnal Riset Teknik Komputer
ISSN : 30473233     EISSN : 30479819     DOI : 10.69714
Jurnal Riset Teknik Komputer (JURTIKOM), E-ISSN:3047-9819 (Online) dan P-ISSN: 3047-3233 (Cetak). Jurnal JURTIKOM diterbitkan Denasya Smart Publisher, terbit setahun Empat kali (Maret, Juni, September dan Desember) menerapkan proses peer-review dalam memilih artikel berkualitas berdasarkan penelitian ilmiah dan teoritis. JURTIKOM diterbitkan untuk mengembangkan dan memperkaya diskusi ilmiah bagi para sarjana dan penulis yang menaruh minat pada isu-isu Teknologi dan penerapannya. Redaksi menerima artikel berbasis teori dan penelitian. Cakupan keilmuan Jurnal ini mengenai penelitian Ilmu Komputer, Teknik Komputer, Teknik elektro, Teknik Mesin, Teknik Industri, Teknik Sipil, Rekayasa Sistem, Teknik Informatika, Teknologi Informasi, Manajemen Informatika, Sistem Komputer dan Sistem Informasi.
Articles 123 Documents
PERANCANGAN E - JURNAL KELAS MA NU ISLAMIYAH BERBASIS WEBSITE Arika Zehrotul Fitriyah; Moh. Raihan Mostofa; Nor Dina Kamilia; Wulidatul Nursa'bani; Abd. Samad
Jurnal Riset Teknik Komputer Vol. 3 No. 2 (2026): Juni : Jurnal Riset Teknik Komputer (JURTIKOM)
Publisher : CV. Denasya Smart Publisher

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.69714/vf437k58

Abstract

Advancements in information technology are driving educational institutions to digitize academic administration to enhance the effectiveness and efficiency of data management. At MA NU Islamiyah Asembagus, the class journal remains an aspect of academic administration handled manually. Recording entries in a physical journal book complicates data retrieval and report compilation, while also posing risks of document loss or damage. This study aims to design a web-based Class E-Journal system prototype capable of supporting more effective and integrated instructional administration management. The research methodology employed includes observation, interviews, documentation review, and a literature study. System development utilized the prototyping method, comprising stages for requirements analysis, system design, prototype creation, prototype evaluation, implementation, and system testing. The system design incorporates Context Diagrams, Data Flow Diagrams (DFD), and Entity-Relationship Diagrams (ERD). Research results indicate that the Class E-Journal system prototype facilitates the integrated management of class schedules, teaching journal entries, and report compilation. User evaluations confirm that the system design aligns with the school's instructional administration needs. The system is expected to support digital transformation and improve the effectiveness of academic administration management at MA NU Islamiyah Asembagus.
SISTEM INFORMASI KERJA PRAKTIK PADA DINAS PENDIDIKAN KOTA PALEMBANG MENGGUNAKAN METODE RAPID APPLICATION DEVELOPMENT Diki Diki; Gina Agiyani
Jurnal Riset Teknik Komputer Vol. 3 No. 2 (2026): Juni : Jurnal Riset Teknik Komputer (JURTIKOM)
Publisher : CV. Denasya Smart Publisher

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.69714/qy2j0z93

Abstract

The internship administration process at the Department of Education of Palembang City is is still carried out manually, including registration, document verification, activity monitoring, and report submission. This condition causes document accumulation, difficulties in data retrieval, duplication of records, and inefficiencies in monitoring internship participants. This study aims to design and develop accordingly an Internship Information System to support a more structured, efficient, and integrated administrative process. The system was developed using the Rapid Application Development (RAD) method, which consists of three main phases: requirements planning, design workshop, and implementation. Data were collected through observation, informal interviews, and literature study. The result of this research is a web-based Internship Information System that provides features such as online registration, status tracking, attendance management, task management, final report submission, grading, and certificate generation. The implementation of this system improves data management efficiency, accelerates verification processes, and enhances service quality for both administrators and students. The system also supports digital transformation efforts within the Department of Education of Palembang City.
PROTOTIPE SISTEM PENDETEKSI HUJAN BERBASIS ARDUINO UNO MENGGUNAKAN SENSOR RAIN YL-83 Akhlis Munazilin; Islamiyatul Addewiyah; Fitra Lia Shofiah
Jurnal Riset Teknik Komputer Vol. 3 No. 2 (2026): Juni : Jurnal Riset Teknik Komputer (JURTIKOM)
Publisher : CV. Denasya Smart Publisher

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.69714/54rfkd66

Abstract

Rain detection systems are essential in tropical countries such as Indonesia, where sudden rainfall can occur and cause significant losses including wet laundry, localized flooding, and disruptions to outdoor activities. This research aims to design and implement an Arduino UNO-based rain detection prototype utilizing the YL-83 Rain Sensor module. The system employs an ATmega328P microcontroller to process analog signals from the rain sensor through its 10-bit Analog-to-Digital Converter (ADC). When the sensor's ADC reading is less than or equal to 400, indicating the presence of rainwater on the sensor surface, the system activates a buzzer alarm and illuminates a red LED indicator. Conversely, when the ADC value exceeds 400, indicating dry conditions, the buzzer is deactivated and a green LED is illuminated. The circuit was assembled on a breadboard following a Fritzing schematic, with the sensor's AO pin connected to Arduino's A0 analog input, buzzer to digital pin 7, red LED to pin 9, and green LED to pin 8, each LED using a 220-ohm current-limiting resistor. Testing across 15 data points demonstrated 100% detection accuracy in distinguishing rain from non-rain conditions, with ADC values ranging from 230–400 for rain conditions and 501–1023 for dry conditions. The system demonstrates reliable, low-cost performance as a rain detection alert mechanism and offers a strong foundation for future IoT-enabled enhancements such as wireless notification via ESP8266/ESP32 integration..

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