Oximeter and BPM on Smartwatch Device Using Mit-App Android with Abnormality Alarm

Monitoring is an activity that is carried out continuously. Healthy condition is a parameter that is needed in life, one of the important parameters is the measurement of oxygen saturation in the blood and heart rate. The purpose of this research is to develop a Smartwatch SpO2 device and BPM sensor...

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Main Authors: Bedjo Utomo, Syaifudin Syaifudin, Endang Dian Setioningsih, Torib Hamzah, Parameswaran Parameswaran
Format: Article
Language:English
Published: Poltekkes Kemenkes Surabaya 2021-07-01
Series:Journal of Electronics, Electromedical Engineering, and Medical Informatics
Subjects:
Online Access:http://jeeemi.org/index.php/jeeemi/article/view/116
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spelling doaj-348cfb9bfc8d45958d58fbc3623fc1a42021-07-19T13:32:39ZengPoltekkes Kemenkes SurabayaJournal of Electronics, Electromedical Engineering, and Medical Informatics2656-86322656-86322021-07-0132859210.35882/jeeemi.v3i2.4116Oximeter and BPM on Smartwatch Device Using Mit-App Android with Abnormality AlarmBedjo Utomo0Syaifudin Syaifudin1Endang Dian Setioningsih2Torib Hamzah3Parameswaran Parameswaran4Poltekkes Kemenkes SurabayaDepartment of Electromedical Engineering, Poltekkes Kemenkes SurabayaDepartment of Electromedical Engineering, Poltekkes Kemenkes SurabayaDepartment of Electromedical Engineering, Poltekkes Kemenkes SurabayaAnna University, Tirunelveli, Tamilnadu, IndiaMonitoring is an activity that is carried out continuously. Healthy condition is a parameter that is needed in life, one of the important parameters is the measurement of oxygen saturation in the blood and heart rate. The purpose of this research is to develop a Smartwatch SpO2 device and BPM sensor that is connected to WIFI using the Android Platform instead of using an LCD for parameter reading. This module design method uses the MAX30100 sensor to display the SpO2 and BPM values ​​displayed on the OLED. Data processing is carried out using ATMEGA 328P programming and then displayed in the Android-based Mit-app application. The results show the average error for the SPO2 value is 0.868 % and the standard deviation is 0.170 %, while the BPM value has an average error of 0.56 % and a standard deviation of 0.30%. From the results of the comparison data analysis, the largest error was 1.03% and the smallest was 0.62% for Spo2 ml/hour with an accuracy of 0.05 (0.57%) with a precision value of 0.08 at the selection speed of 50 ml/hour. From the results above, it can be concluded that the data can be displayed on OLED using the Mit-app Android application with an error rate accuracy of 0.57%.  From the results of this research design, it is hoped that it can facilitate the diagnosis of the condition of patients and health nurseshttp://jeeemi.org/index.php/jeeemi/article/view/116spo2, bpm, at mega328p android
collection DOAJ
language English
format Article
sources DOAJ
author Bedjo Utomo
Syaifudin Syaifudin
Endang Dian Setioningsih
Torib Hamzah
Parameswaran Parameswaran
spellingShingle Bedjo Utomo
Syaifudin Syaifudin
Endang Dian Setioningsih
Torib Hamzah
Parameswaran Parameswaran
Oximeter and BPM on Smartwatch Device Using Mit-App Android with Abnormality Alarm
Journal of Electronics, Electromedical Engineering, and Medical Informatics
spo2, bpm, at mega328p android
author_facet Bedjo Utomo
Syaifudin Syaifudin
Endang Dian Setioningsih
Torib Hamzah
Parameswaran Parameswaran
author_sort Bedjo Utomo
title Oximeter and BPM on Smartwatch Device Using Mit-App Android with Abnormality Alarm
title_short Oximeter and BPM on Smartwatch Device Using Mit-App Android with Abnormality Alarm
title_full Oximeter and BPM on Smartwatch Device Using Mit-App Android with Abnormality Alarm
title_fullStr Oximeter and BPM on Smartwatch Device Using Mit-App Android with Abnormality Alarm
title_full_unstemmed Oximeter and BPM on Smartwatch Device Using Mit-App Android with Abnormality Alarm
title_sort oximeter and bpm on smartwatch device using mit-app android with abnormality alarm
publisher Poltekkes Kemenkes Surabaya
series Journal of Electronics, Electromedical Engineering, and Medical Informatics
issn 2656-8632
2656-8632
publishDate 2021-07-01
description Monitoring is an activity that is carried out continuously. Healthy condition is a parameter that is needed in life, one of the important parameters is the measurement of oxygen saturation in the blood and heart rate. The purpose of this research is to develop a Smartwatch SpO2 device and BPM sensor that is connected to WIFI using the Android Platform instead of using an LCD for parameter reading. This module design method uses the MAX30100 sensor to display the SpO2 and BPM values ​​displayed on the OLED. Data processing is carried out using ATMEGA 328P programming and then displayed in the Android-based Mit-app application. The results show the average error for the SPO2 value is 0.868 % and the standard deviation is 0.170 %, while the BPM value has an average error of 0.56 % and a standard deviation of 0.30%. From the results of the comparison data analysis, the largest error was 1.03% and the smallest was 0.62% for Spo2 ml/hour with an accuracy of 0.05 (0.57%) with a precision value of 0.08 at the selection speed of 50 ml/hour. From the results above, it can be concluded that the data can be displayed on OLED using the Mit-app Android application with an error rate accuracy of 0.57%.  From the results of this research design, it is hoped that it can facilitate the diagnosis of the condition of patients and health nurses
topic spo2, bpm, at mega328p android
url http://jeeemi.org/index.php/jeeemi/article/view/116
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