Rancang Bangun Sistem Monitoring dan Notifikasi Drybox Kamera dan Lensa Berbasis Internet of Things
DOI:
https://doi.org/10.54423/jtk.v7i1.132Keywords:
Drybox, Internet of Things (IoT), ESP32, DHT22 Sensor, Blynk, Humidity MonitoringAbstract
High humidity levels in tropical climates often cause fungal growth on camera lenses and sensors, which can damage the protective coating and reduce the quality of photos as well as the resale value of the equipment. The use of manual dryboxes with silica gel requires regular inspection because silica gel has a saturation limit. On the other hand, commercial electric dry cabinets are relatively expensive and lack internet integration for remote monitoring. This study aims to design and build a real-time Internet of Things-based humidity and temperature monitoring and notification system for camera and lens dryboxes. The Prototyping development method was applied. The outcome of this research is expected to provide an efficient, responsive, and affordable solution for photographers and videographers to maintain micro-environmental conditions in camera storage, thereby preventing humidity-induced damage.
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Al Farisi, R., Topan, P. A., Andriani, T., & Hidayatullah, M. (2023). Implementasi Mikrokontroler Esp32 Pada Alat Penyinaran Screen Sablon Pcb Otomatis Berbasis Iot. Journal Altron; Journal of Electronics, Science & Energy Systems, 2(01), 28–36. https://doi.org/10.51401/altron.v2i01.1741
Dwianti Westari, & Syaeful Ilman. (2024). Sistem Penyiraman Tanaman Otomatis Berbasis IoT Menggunakan ESP32, Moisture Sensor, DHT22 Sensor dan Blynk. Jurnal Teknik Mesin, Industri, Elektro Dan Informatika, 3(4), 314–321. https://doi.org/10.55606/jtmei.v3i4.4941
Kahfi, M. F., Faisal, M., Universitas, K., & Hasbullah, K. A. W. (2026). Implementasi Internet of Things Berbasis ESP32 dan Blynk untuk Monitoring Mikroklimat Ruang Hunian. Jurnal Sains Student Research, 4(1), 616–621. https://doi.org/10.61722/jssr.v4i1.8349
Maulana, R. F., Ramadhan, M. A., Maharani, W., & Maulana, M. I. (2023). Rancang Bangun Sistem Monitoring Suhu dan Kelembapan Berbasis IOT Studi Kasus Ruang Server ITTelkom Surabaya. Indonesian Journal of Multidisciplinary on Social and Technology, 1(3), 224–231. https://doi.org/10.31004/ijmst.v1i3.169
Mi’rajtania, S., Yuana, H., & Puspitasari, W. D. (n.d.). Prototipe Sistem Monitoring Suhu Dan Kelembaban Untuk Pengendalian Lingkungan Mikro Berbasis Iot Pada Ruang Koleksi Berisiko Di Fasilitas Publik Prototype Of An Iot-Based Temperature And Humidity Monitoring System For Microenvironmental Control In High-Risk Collection Spaces Within Public Facilities.
Naaziat, A., Yuliatmojo, P., & Bintoro, J. (2022). Design and Construction of a Web-Based Stock Counting Tool Using a Microcontroller. JURNAL PENDIDIKAN VOKASIONAL TEKNIK ELEKTRONIKA (JVoTE), 6(1), 20–26. https://doi.org/10.21009/jvote.v6i1.39435
Pangestu, J., Yusro, M., & Djatmiko, W. (2020). Pembuatan Dry Box Pengatur Kelembaban Otomatis Sebagai Penyimpanan Kamera Dslr Dengan Rfid Berbasis Arduino At Mega 2560. JURNAL PENDIDIKAN VOKASIONAL TEKNIK ELEKTRONIKA (JVoTE), 3(2), 35–44. https://doi.org/10.21009/jvote.v3i2.20050
Penelitian dan Pengkajian Elektro, J., Ikrar Yamin, M., & Pakpahan, F. (n.d.). Rancang Bangun Sistem Monitoring Dan Akuisisi Data Kondisi Ruangan Laboratorium Kalibrasi Berbasis IoT Dengan ESP32. https://doi.org/10.37277/s.v27i2.2605
Supriyanto supriyanto, & Nuris Dwi Setiawan. (2025). Rancang Bangun Sistem Real-Time Monitoring Suhu dan Kelembaban Menggunakan ESP32. Elkom: Jurnal Elektronika Dan Komputer, 18(1), 447–457. https://doi.org/10.51903/elkom.v18i1.3064
Tri Meri Wulandari, Nur Azizah, & Firman Jaya. (2026). Sistem Monitoring Suhu Dan Kelembapan Berlebih Di Ruangan Laboratorium Komputer Berbasis Iot Menggunakan ESP32 dan DHT22. Rabit?: Jurnal Teknologi Dan Sistem Informasi Univrab, 11(1), 1977–1987. https://doi.org/10.36341/rabit.v11i1.7585
Yamin, M. I., Pakpahan, F., Studi, P., Elektro, T., Sains, I., & Teknologi, D. (2025). Rancang Bangun Sistem Monitoring Dan Akuisisi Data Kondisi Ruangan Laboratorium Kalibrasi Berbasis IoT Dengan ESP32. 2, 29–39.
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