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DESA CERDAS DI ERA DIGITAL : TRANSFORMASI UMKM MELALUI LEGALITAS, PEMASARAN DIGITAL DAN PENGELOLAAN KEUANGAN Robby Maududy; Memey Meina; Sely Sri Mulyani; Dea Asri; Silmi Tazkiah; Nurul Aulia Nisa; Winarningsih Julianti
Jurnal Pengabdian Kolaborasi dan Inovasi IPTEKS Vol. 3 No. 6 (2025): Desember
Publisher : CV. Alina

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.59407/jpki2.v3i6.3235

Abstract

Pengabdian ini bertujuan untuk meningkatkan kapasitas UMKM di Desa Karangresik melalui transformasi digital dengan fokus pada legalitas usaha, pemasaran digital, dan pengelolaan keuangan sederhana. Metode pengabdian yang digunakan berbasis partisipatif dengan tahapan asesmen kebutuhan, pendampingan legalitas, pelatihan pemasaran digital, serta pelatihan pengelolaan keuangan, disertai monitoring dan evaluasi partisipatif terhadap peserta. Hasil pengabdian menunjukkan bahwa 21 UMKM telah memperoleh Nomor Induk Berusaha (NIB) dan beberapa sertifikat halal, kemampuan pemanfaatan media sosial, marketplace, dan konten promosi meningkat, serta peserta mampu melakukan pencatatan transaksi harian, penyusunan arus kas, dan laporan keuangan sederhana. Simpulan pengabdian ini menunjukkan bahwa integrasi legalitas, pemasaran digital, dan tata kelola keuangan secara signifikan meningkatkan daya saing, keberlanjutan, serta profesionalisme UMKM, sekaligus menciptakan model Desa Cerdas yang dapat direplikasi.  
IoT-Integrated Computerized Maintenance Management System (CMMS) for Optimizing Maintenance Efficiency in Smart Manufacturing Robby Maududy; Alam, Alam; Wuslah Raia Maulidiyah; R Reza El Akbar
Scientific Journal of Informatics Vol. 13 No. 1: February 2026
Publisher : Universitas Negeri Semarang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.15294/sji.v13i1.36306

Abstract

Purpose: The manufacturing industry continues to face persistent challenges in maintaining equipment reliability and maintenance efficiency, particularly in scheduling, spare parts control, and real-time monitoring of machine conditions. This study aims to develop an Internet of Things (IoT)-based Computerized Maintenance Management System (CMMS) to improve maintenance effectiveness, minimize equipment downtime, and support the realization of smart manufacturing in the automotive sector. Methods: The system was developed using the ADDIE model, consisting of analysis, design, development, Implementation, and Evaluation. and was integrated with IoT sensors to acquire real-time machine temperature and operational status data. and integrated with IoT sensors to collect real-time data on machine temperature and operational status. The collected data were processed in a centralized database and presented through a web-based CMMS application comprising work order management, preventive and corrective maintenance, inventory control, and analytical reporting modules. System functionality was validated using black-box testing, while performance evaluation was conducted by comparing Mean Time Between Failures (MTBF), Mean Time to Repair (MTTR), and maintenance efficiency before and after system implementation. Result: The results indicate that all evaluated equipment experienced performance improvements following CMMS implementation, characterized by increased MTBF and reduced MTTR. On average, overall maintenance efficiency increased by approximately 368%, demonstrating significant reductions in downtime and improvements in maintenance responsiveness supported by real-time condition data. Novelty: The novelty of this study lies in the integration of IoT technology into CMMS that emphasizes the utilization of real-time machine condition data not only for monitoring purposes but also to support maintenance planning, work order management, and data-driven decision-making within a single application. The findings provide empirical evidence that effective data utilization strategies within CMMS implementations can significantly enhance maintenance efficiency and support smart maintenance practices aligned with Industry 4.0 principles.