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PERANCANGAN ARSITEKTUR ENTERPRISE PADA LEMBAGA MI PUTRI PONDOK PESANTREN SALAFIYAH SYAFI’IYAH MENGGUNAKAN METODE TOGAF ADM Fatimah Isa Auliya; Septi Camelia Ulfa; Akhlis Munazilin
Jurnal Riset Sistem Informasi Vol. 3 No. 1 (2026): Januari : Jurnal Riset Sistem Informasi
Publisher : CV. Denasya Smart Publisher

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.69714/pwd95v58

Abstract

The rapid development of information technology necessitates that educational institutions have integrated and efficient data management systems. At MI Putri Pondok Pesantren Salafiyah Syafi’iyah, many administrative and academic activities are still conducted manually or through separate applications, resulting in data duplication and a slow information flow. This study designs an enterprise architecture using the TOGAF ADM framework as a blueprint for developing an integrated information system. Data were collected through observation, interviews, and document analysis to understand current conditions and needs. The design includes business, data, application, and technology architectures, supported by SWOT analysis and an implementation roadmap. The results indicate that MI Putri requires a centralized system to integrate key processes, including admissions, attendance, assessments, and administration. The proposed architecture provides clear guidance for building an efficient, adaptive, and sustainable information system that improves service quality and strengthens information management.
RANCANG BANGUN DAN SIMULASI GERBANG TOL OTOMATIS BERBASIS ARDUINO UNO DENGAN SENSOR HC-SR04 MENGGUNAKAN PLATFORM WOKWI Akhlis Munazilin; Nur Ayu Wahyuningyati; Nurani Nurani; Putri Ilma
Jurnal Riset Sistem Informasi Vol. 3 No. 3 (2026): Juli : Jurnal Riset Sistem Informasi
Publisher : CV. Denasya Smart Publisher

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.69714/rz0k2x13

Abstract

The increasing demand for efficient traffic management at toll gates has encouraged the adoption of automation technologies to reduce vehicle congestion and improve operational performance. This study aims to design and simulate an automatic toll gate system based on an Arduino Uno using the Wokwi simulation platform. The proposed system utilizes an HC-SR04 ultrasonic sensor to detect the presence of vehicles, a servo motor to control the movement of the gate barrier, and LEDs as visual indicators of the gate status. The research method consists of system design, programming, simulation, and functional testing. Simulation results indicate that the toll gate operates automatically by opening when a vehicle is detected within a distance threshold of ≤ 10 cm and closing automatically when the object is no longer within the detection range. All system components performed according to the designed operational scenarios. The findings demonstrate that the Wokwi platform is an effective tool for developing and testing microcontroller-based automation systems and can serve as a practical learning medium for automation and embedded systems education.
Prancangan Enterprise Arsitektur Sistem Informasi Pada SD Ibrahimy Sukorejo Mengguakan Togaf Architecture Development Method (ADM) Akhlis Munazilin; Muhammad Zaini; Mohamad Najieb NS; Muh Ikrom
Akiratech Vol. 2 No. 2 (2025)
Publisher : CV. Akira Java Bulu

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.63935/akiratech.v2i2.173

Abstract

Perkembangan teknologi informasi mendorong institusi pendidikan untuk menggunakan sistem informasi yang unggul dari segi integrasi, kesinambungan, dan efektivitas. Sebagai institusi pendidikan dasar, SD Ibrahimy Sukorejo membutuhkan rancangan arsitektur enterprise sistem informasi yang memadai dan menunjang seluruh jajaran kegiatan inti, seperti proses penerimaan siswa baru, proses pembelajaran-mengajar, ujian/evaluasi, pengelolaan kelulusan, dan kegiatan administrasi yang dari tata usaha, kesiswaan, pengelolaan sarpras, serta keuangan. Dalam penelitian ini bertujuan untuk perancangan arsitektur enterprise pada sistem informasi di SD Ibrahimy Sukorejo dengan mengimplementasikan kerangka kerja TOGAF ADM . TOGAF dipilih karena orientasi TOGAF adalah sebuah acuan yang sistematis dan terstruktur untuk merumuskan arsitektur organisasi. Dalam penelitian TOGAF ADM melibatkan lima fase awal, yaitu Preliminary Phase, Architecture Vision, Business Architecture, Application Architecture, Opportunities and Solutions. Berdasarkan hasil analisis dan perancangan, TOGAF ADM dapat memetakan proses bisnis sekolah secara komprehensif dengan diagram value chain dan kebutuhan sistem informasi. Desain sistem ini terdiri dari sejumlah modul inti dan penunjang yang terdiri atas modul PPDB, pembelajaran, ujian, kelulusan, serta modul administrasi dan keuangan. Penelitian ini diharapkan dapat membantu memulai pengembangan arsitektur enterprise sistem informasi berbasis sekolah SD yang terarah dan sistematis.
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..