SIMPLE INFANT WARMER CIRCUIT DESIGN BASED ON ARDUINO UNO USING WOKWI SIMULATION

SIMPLE INFANT WARMER CIRCUIT DESIGN BASED ON ARDUINO UNO USING WOKWI SIMULATION

Authors

  • M.Rifqi Muwaffaq Politeknik Bina Trada Semarang

DOI:

https://doi.org/10.59485/jtemp.v5i1.42

Keywords:

Infant Warmer, Arduino, DHT22, Wokwi Simulation

Abstract

Adjusting the temperature of a newborn baby to room temperature is a problem that often occurs, 34 to 37°C is the baby's temperature while in the womb. For this problem, a tool was created, namely an infant warmer. An infant warmer is a medical device specifically designed for comfort and warmth for newly born babies. And it is equipped with several features, such as a temperature sensor and automatic temperature control. This tool makes it easier for medical professionals to observe the baby's condition. And it can reduce the risk of hepotemia (low body temperature) in babies, which has a bad impact on the baby's health. In this infant warmer series, we use an Arduino Uno controller to display on an I2C Liquid Crystal Display (LCD) with 2x16 characters, using a relay as a replacement for the infant warmer heater, DHT22 is used for the room temperature sensor, and LED as a marker for maximum and minimum temperature limits. From the Wokwi simulation it can be simulated smoothly according to the design and expected events.

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References

E. M. Mccall, F. Alderdice, H. L. Halliday, S. Vohra, and L. Johnston, “Interventions to prevent hypothermia at birth in preterm and/or low birth weight infants,” Cochrane Database Syst. Rev., vol. 2018, no. 2, 2018.

A. Kadir, Pemrograman Arduino dan Processing. Jakarta: Gramedia, 2017.

Gorman, “INFANT WARMERS HAVING INTEGRAL BACKUP WARMING BLANKET,” no. 12, 2018.

B. R. Kanastriloka and A. Kholiq, “Infant warmer dilengkapi dengan fototerapi,” 2012.

K. Pid, S. Ruang, S. Skin, A. D. Pratiwi, E. Yulianto, and A. Kholiq, “Infant Incubator Berbasis Proportional Integral dan Derivative (PID) Dilengkapi Dengan Mode Kanguru,” vol. 12, no. 1, pp. 33–38, 2019.

W. I. Property, I. Bureau, I. P. Date, and I. P. Number, “I (10),” NEWBORN Respir. Monit. Syst. METHOD, no. 12, 2017.

Haris Kuspranoto A, Ulin Nuha Aba M. Hemoglobin Meter Non Infasif Berbasis Arduino Design And Development Of Non Invasive Hemoglobin Meter Levels Measuring System Based On Arduino Mega. 2021;2(1).

Kuspranoto AH, Nuha ABA MU. Perbaikan Pada Ventilator Merek Philips V200 dan Hamilton C2. Semarang; 2023. 72p.

C. Y. Y. T. J. Z. P. Tiecheng, “CN106994075A.pdf.” 2016.

A. PARTNERS, LP, “INFANT WARMING DEVICE WITH IN BED PATIENT SUPPORT POWER, SIGNAL. CONTROL, DATA, AND COMMUNICATIONS,” vol. 1, 2018.

Kuspranoto AH, Sinaga FO. Monitoring Suhu Tubuh dengan Output Suara Berbasis ESP-32CAM. Medika Teknika 2021;3. https://doi.org/10.18196/mt.v3i1.11980.

Z. S. A. Rahman and F. S. A. Hussain, “Smart Incubator Based on PID Controller Smart Incubator Based on PID Controller,” no. September, 2018.

N. Yulita et al., “Kendali suhu inkubator bayi menggunakan pid,” vol. 7, no. 2, pp. 489–494, 2016.

Kuspranoto AH. Operasi Dasar-Dasar Pemrograman. Researchgate.Net. Semarang: Amerta Media; 2021. 149 p.

Kuspranoto AH, Aba MUN. Rancang Bangun Elektrostimulator dengan Output Tiga Gelombang Berbasis Arduino Mega Pro Mini 2560. Medika Teknika 2024;5:91–103. https://doi.org/10.18196/mt.v5i2.15867.

Published

2024-06-30

How to Cite

Muwaffaq, M. (2024). SIMPLE INFANT WARMER CIRCUIT DESIGN BASED ON ARDUINO UNO USING WOKWI SIMULATION. MEDIKA TRADA : Jurnal Teknik Elektromedik Polbitrada, 5(1), 1–4. https://doi.org/10.59485/jtemp.v5i1.42
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