Perbandingan Performa Sensor DHT11, DHT22, dan 808H5V5 terhadap Pengukuran Kelembapan Udara Berbasis Internet Of Things

Authors

DOI:

https://doi.org/10.29408/jit.v9i1.33069

Keywords:

IoT, ESP8266, DHT11, DHT22, 808H5V5, web server, humidity monitoring

Abstract

This study aims to compare the performance of three air humidity sensors—DHT11, DHT22, and 808H5V5—integrated with an ESP8266 microcontroller based on the Internet of Things (IoT). The system was designed to monitor air humidity in real-time through a web server that displays measurement data from the three sensors along with a hygrometer as a reference. Data collection was conducted every hour from 08:00 to 17:00 under stable environmental conditions. The results show that the DHT22 sensor achieved the highest accuracy, with an average deviation of 0.3% compared to the hygrometer. The 808H5V5 sensor demonstrated the fastest response with an average deviation of 0.6%, while the DHT11 sensor had an average deviation of 1.1% and slower response time. All three sensors successfully transmitted real-time data through an accessible web server. Based on these findings, the DHT22 is recommended as the most accurate sensor for IoT-based humidity monitoring systems, while the DHT11 and 808H5V5 remain suitable for simpler applications requiring moderate precision and lower cost.

References

[1] Budianto H, Sumanto B. Sistem Pendeteksi Kualitas Udara Dalam Ruangan Berbasis Internet of Things (IoT). Listrik, Instrumentasi dan Elektronika Terapan. 2024;5(1):9–17.

[2] Alamsyah M, Darsana MP, Amalia D, Komalasari Y. Faktor- Faktor Yang Mempengaruhi Monitoring Real-Time Pm2.5 Dan Co2 Di Area Terminal Bandar Udara: Low-Cost Sensor, Internet Of Things (Iot) Dan Pengukuran Polutan Udara. Jurnal Penelitian Politeknik Penerbangan Surabaya. 2024;9(4):320–42.

[3] Roihan A, Mardiansyah A, Pratama A, Pangestu AA. Simulasi Pendeteksi Kelembaban Pada Tanah Menggunakan Sensor Dht22 Dengan Proteus. Jurnal METHODIKA. 2021;7(1):25–30.

[4] Nugroho A, Wibowo A, Triraharjo B. Pendeteksi Suhu dan Kelembaban Ruangan Menggunakan Sensor DHT11 Berbasis Web Server. Sienna. 2024;5.

[5] Pratifi VK, Sasongko AT, Afandi D. Integrasi Sensor DHT11 dan PIR dalam Sistem Otomatisasi Suhu dan Deteksi Gerakan dalam Ruangan Menggunakan Mikrokontroler Arduino Nano. MALCOM: Indonesian Journal of Machine Learning and Computer Science. 2024;4(3):1148–59.

[6] Gunawan I, Wasil M. Penerapan Internet Of Things ( IoT ) Pada Sistem Monitoring Penggunaan Air PDAM Rumah Tangga Air merupakan sumber kehidupan yang sangat diperlukan oleh makhluk hidup . Namun semakin bertambahnya penduduk maka semakin meningkat pula kebutuhan air yang haru. Infotek : Jurnal Informatika dan Teknologi. 2023;6(1):115–26.

[7] Hadi S, Labib RPMD, Widayaka PD. Perbandingan Akurasi Pengukuran Sensor LM35 dan Sensor DHT11 untuk Monitoring Suhu Berbasis Internet of Things. STRING (Satuan Tulisan Riset dan Inovasi Teknologi). 2022;6(3):269.

[8] Baehaqi M, Rosyid A, Siswanto A, Subiyanta E. Performance Testing of DHT11 and DS18B20 Sensors as Server Room Temperature Sensors. Mestro Jurnal Ilmiah. 2023;2(02):6–11.

[9] Setiawati AY, Haryanti M. Akurasi Aplikasi Sensor pada Ruangan Penyimpanan. JTEUS: Jurnal Teknik Elektro. 2025;1(2):1–14.

[10] Yonatan YK, Mukti AT, Firmansyah RN. Analisa Penerapan Sensor Suhu Menggunakan Arduino Uno di dalam Sistem Pertanian GreenHouse : Sensor DHT22. Journal of Engineering Environment Energy and Science. 2025;4(1):39–46.

[11] Li C, Wang J, Wang S, Zhang Y. Neurocomputing A review of IoT applications in healthcare. Neurocomputing [Internet]. 2024;565(November 2023):127017. Available from: https://doi.org/10.1016/j.neucom.2023.127017

[12] Gunawan I, Ahmadi H. Sistem Monitoring Dan Pengkabutan Otomatis Berbasis Internet Of Things (IoT) Pada Budidaya Jamur Tiram Menggunakan NodeMCU dan Blynk. Infotek : Jurnal Informatika dan Teknologi. 2021;4(1):79–86.

[13] Widiastono A, Arifin S, Hidayati R, Paenrongi DI, Yahya K, Atho I, et al. Solusi Pintar untuk Dunia Modern. 2024.

[14] Gunawan I, Ahmadi H. Kajian Dan Rancang Bangun Alat Pakan Ikan Otomatis (Smart Feeder) Pada Kolam Budidaya Ikan Berbasis Internet Of Things. Infotek: Jurnal Informatika dan Teknologi. 2024;7(1):40–51.

[15] Widodo A. Things ( IoT ) untuk Peningkatan Efisiensi dan Produktifitas Pertanian Modern. Jurnal Sistem Komputer dan Kecerdasan Buatan. 2025;VIII:259–68.

[16] Juri K, Lase D, Bima A, Wijaya M, Setyawan GC. Sistem Controlling Suhu dan Kelembapan Solar Dryer Berbasis Internet of Things Menggunakan Fuzzy Logic. Ijccs [Internet]. 2025;x, No.x:1–5. Available from: https://www.instructables.com/id/DHT22-Humidity-Sensor

[17] Saputra DI. Perancangan Sistem Pemantau Kebisingan, Getaran, Suhu, Dan Kelembaban Ruang Coating Berbasis Iot. Journal of Energy and Electrical Engineering. 2021;3(1):34–8.

[18] Anggie Maulia, Naif Baihaqi, Nur Fajri Faiz, Muhammad Rizki, Didik Aribowo. Simulasi Pengukuran Suhu dan Kelembaban Ruangan Menggunakan Arduino Uno dan DHT22 pada Wokwi. Jurnal Teknik Mesin, Industri, Elektro dan Informatika. 2024;3(4):200–13.

[19] Baskaran B, Mukramin M, Sulaeman B. Rancang Bangun Sistem Pengering Sepatu Otomatis Menggunakan Sensor Kelembaban Suhu Berbasis Arduino. Jurnal Informatika dan Teknik Elektro Terapan. 2024;12(3S1).

[20] A. Sudianto, B. A. C. Permana, Muhammad Wasil, and Harianto, “Penerapan Sistem Payment Gateway Pada E-Commerce Sebagai Upaya Peningkatan Penjualan”, INFOTEK, vol. 8, no. 1, pp. 271–279, Jan. 2025. doi: 10.29408/jit.v8i1.28323

Downloads

Published

20-01-2026

How to Cite

Jumawal, Harianto, Mahpuz, & Muhammad Wasil. (2026). Perbandingan Performa Sensor DHT11, DHT22, dan 808H5V5 terhadap Pengukuran Kelembapan Udara Berbasis Internet Of Things. Infotek: Jurnal Informatika Dan Teknologi, 9(1), 152–162. https://doi.org/10.29408/jit.v9i1.33069

Most read articles by the same author(s)

Similar Articles

<< < 6 7 8 9 10 11 12 > >> 

You may also start an advanced similarity search for this article.