Optimalisasi Mesin Hand Sanitizer Otomatis berbasis Mikrokontroler dengan Sensor Inframerah

Authors

  • Subhiyanto Subhiyanto STMIK Antar Bangsa
  • Ista Rahma Nissa STMIK Antar Bangsa

DOI:

https://doi.org/10.26905/jasiek.v7i1.11568

Keywords:

COVID-19, Mesin Hand Sanitizer, SDLC Otomatis, Sensor Inframerah

Abstract

In 2020, the world was hit by the coronavirus pandemic, including Indonesia. According to WHO, millions were infected and thousands died. The Indonesian government responded with several policies, including learning from home. As vaccination programs progressed, some regions began entering the new normal era. Schools resumed limited face-to-face learning by following protocols set by the Joint Decree of Four Ministries (SKB 4 Kementerian). This study, based on analysis and literature review, uses the System Development Life Cycle (SDLC) method to develop an innovative solution involving infrared sensors, commonly used in automation projects. These sensors are proven to be precise, effective, and efficient in implementing automatic hand sanitizer machines. The machine supports COVID-19 health protocols by reducing physical contact and helping prevent virus transmission.

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References

[1] H. Kartika Nurwigati Sumartiningtyas, “Awal Virus Corona Beredar si China Tanpa Terdeteksi dari Oktober 2019, Studi Jelaskan,” Kompas.com, 2021. https://www.kompas.com/sains/read/2021/03/29/090100723/awal-virus-corona-beredar-di-china-tanpa-terdeteksi-dari-oktober-2019?newnavbar=1&page=all (accessed Aug. 11, 2021).

[2] A. Widyastuti, Optimalisasi Pembelajaran Jarak Jauh (PJJ), Daring Luring, BdR, 1st ed. Jakarta: PT Elex Media Komputindo, 2021.

[3] “Program Vaksinasi COVID-19 Mulai Dilakukan, Presiden Orang Pertama Penerima Suntikan Vaksin COVID-19,” http://p2p.kemkes.go.id, 2021. http://p2p.kemkes.go.id/program-vaksinasi-covid-19-mulai-dilakukan-presiden-orang-pertama-penerima-suntikan-vaksin-covid-19/ (accessed Jun. 24, 2022).

[4] “Penerapan Protokol Kesehatan dalam Pembelajaran Tatap Muka Terbatas,” https://ditpsd.kemdikbud.go.id,2021.

https://ditpsd.kemdikbud.go.id/artikel/detail/penerapan-protokol-kesehatan-dalam-pembelajaran-tatap-muka-terbatas (accessed Jun. 27, 2022).

[5] “Keputusan Bersama 4 Menteri Tentang Panduan Penyelenggaraan Pembelajaran di Masa Pandemi COVID-19,” https://www.kemdikbud.go.id, 2021. https://www.kemdikbud.go.id/main/blog/2021/12/keputusan-bersama-4-menteri-tentang-panduan-penyelenggaraan-pembelajaran-di-masa-pandemi-covid19 (accessed Jun. 27, 2022).

[6] D. Surani, “Studi Literatur : Peran Teknolog Pendidikan Dalam Pendidikan 4.0,” Pros. Semin. Nas. Pendidik. FKIP, vol. 2, no. 1, pp. 456–469, 2019, [Online]. Available: https://jurnal.untirta.ac.id/index.php/psnp/article/view/5797.

[7] Adityarini, E. (2022). Penerapan Sistem Informasi Geografis pada Peta Sebaran Toko Makanan Khas Bogor. Jurnal Teknik Informatika, 8(2), 67-73.

[8] D. Das, “Interfacing IR Sensor Module with Arduino,” https://circuitdigest.com, 2022. https://circuitdigest.com/microcontroller-projects/interfacing-ir-sensor-module-with-arduino#:~:text=Arduino IR Sensor Interfacing,can only measure infrared radiation (accessed Jun. 30, 2022).

[9] T. Neal, Arduino An A-to-Z Introduction to Arduino for Complete Newbies. Tony Neal, 2022.

[10] H. Andrianto and A. Darmawan, Arduino Belajar Cepat dan Pemrograman. Bandung: Informatika Bandung, 2017.

[11] I. Nugrahanto, “Pembuatan Water Level Sebagai Pengendali Water Pump Otomatis Berbasis Transistor,” J. Ilmu-ilmu Tek., vol. 13, no. 1, pp. 59–60.

[12] Mappa, Alimuddin. "Sistem Pengendalian Kadar PH, Suhu, dan Level Air pada Model Miniatur Tambak Udang." Electro Luceat, vol. 1, no. 1, 5 Jul. 2015.

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Published

2025-06-25

How to Cite

[1]
S. Subhiyanto and I. R. Nissa, “Optimalisasi Mesin Hand Sanitizer Otomatis berbasis Mikrokontroler dengan Sensor Inframerah”, JASIEK, vol. 7, no. 1, pp. 107–115, Jun. 2025.

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Articles