Design an Occlusion Calibrator using XGZP6887 and Servo Motor MG966R as a Simulator
A foreign fluid that enters the patient can cause some bodily reactions including infection, air embolism and blood clot. Side effects given will be fatal to the body, one of which occurs the blockage of the capillary vessels in the heart that can cause heart attack to stroke. The purpose of this re...
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Format: | Article |
Language: | English |
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Jurusan Teknik Elektromedik Politeknik Kesehatan Kemenkes Surabaya
2021-02-01
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Series: | Indonesian Journal of Electronics, Electromedical Engineering, and Medical Informatics |
Subjects: | |
Online Access: | http://ijeeemi.poltekkesdepkes-sby.ac.id/index.php/ijeeemi/article/view/66 |
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author | Rizki Auliya Syaifudin Syaifudin Liliek Soetjiatie |
author_facet | Rizki Auliya Syaifudin Syaifudin Liliek Soetjiatie |
author_sort | Rizki Auliya |
collection | DOAJ |
description | A foreign fluid that enters the patient can cause some bodily reactions including infection, air embolism and blood clot. Side effects given will be fatal to the body, one of which occurs the blockage of the capillary vessels in the heart that can cause heart attack to stroke. The purpose of this research is to design a tool that can be used to measure maximum pressure as a form of the calibration of the syringe pump and infusion pump. The contribution of this research is that the system can simulate the presence of blockages in fluid flow and detect large pressure values detected by the Under Test Unit (UUT) with a motor peerround system that opens/closes fluid flow. Servo Motor MG966R simulate the presence of blockage with constant motor degree until the alarm UUT reads, then Sensor XGZP6887 detects the pressure generated by the blockage and processed by the microcontroller and displayed on the LCD display of the character. This study resulted in a maximum pressure average value of 7.12 Psi. The results showed that data retrieval had an error value of -0.12. This research can be implemented to perform pressure measurements on the syringe pump or infusion pump. |
first_indexed | 2024-03-13T01:11:15Z |
format | Article |
id | doaj.art-f8b5987dd29244f0a4b62d5b0e55ee51 |
institution | Directory Open Access Journal |
issn | 2656-8624 |
language | English |
last_indexed | 2024-03-13T01:11:15Z |
publishDate | 2021-02-01 |
publisher | Jurusan Teknik Elektromedik Politeknik Kesehatan Kemenkes Surabaya |
record_format | Article |
series | Indonesian Journal of Electronics, Electromedical Engineering, and Medical Informatics |
spelling | doaj.art-f8b5987dd29244f0a4b62d5b0e55ee512023-07-05T22:14:31ZengJurusan Teknik Elektromedik Politeknik Kesehatan Kemenkes SurabayaIndonesian Journal of Electronics, Electromedical Engineering, and Medical Informatics2656-86242021-02-0131293310.35882/ijeeemi.v3i1.566Design an Occlusion Calibrator using XGZP6887 and Servo Motor MG966R as a SimulatorRizki Auliya0Syaifudin Syaifudin1Liliek Soetjiatie2Department of Medical Electronics Engineering TechnologyDepartment of Medical Electronics Engineering TechnologyDepartment of Medical Electronics Engineering TechnologyA foreign fluid that enters the patient can cause some bodily reactions including infection, air embolism and blood clot. Side effects given will be fatal to the body, one of which occurs the blockage of the capillary vessels in the heart that can cause heart attack to stroke. The purpose of this research is to design a tool that can be used to measure maximum pressure as a form of the calibration of the syringe pump and infusion pump. The contribution of this research is that the system can simulate the presence of blockages in fluid flow and detect large pressure values detected by the Under Test Unit (UUT) with a motor peerround system that opens/closes fluid flow. Servo Motor MG966R simulate the presence of blockage with constant motor degree until the alarm UUT reads, then Sensor XGZP6887 detects the pressure generated by the blockage and processed by the microcontroller and displayed on the LCD display of the character. This study resulted in a maximum pressure average value of 7.12 Psi. The results showed that data retrieval had an error value of -0.12. This research can be implemented to perform pressure measurements on the syringe pump or infusion pump.http://ijeeemi.poltekkesdepkes-sby.ac.id/index.php/ijeeemi/article/view/66pressure, xgzp6887, servo motor |
spellingShingle | Rizki Auliya Syaifudin Syaifudin Liliek Soetjiatie Design an Occlusion Calibrator using XGZP6887 and Servo Motor MG966R as a Simulator Indonesian Journal of Electronics, Electromedical Engineering, and Medical Informatics pressure, xgzp6887, servo motor |
title | Design an Occlusion Calibrator using XGZP6887 and Servo Motor MG966R as a Simulator |
title_full | Design an Occlusion Calibrator using XGZP6887 and Servo Motor MG966R as a Simulator |
title_fullStr | Design an Occlusion Calibrator using XGZP6887 and Servo Motor MG966R as a Simulator |
title_full_unstemmed | Design an Occlusion Calibrator using XGZP6887 and Servo Motor MG966R as a Simulator |
title_short | Design an Occlusion Calibrator using XGZP6887 and Servo Motor MG966R as a Simulator |
title_sort | design an occlusion calibrator using xgzp6887 and servo motor mg966r as a simulator |
topic | pressure, xgzp6887, servo motor |
url | http://ijeeemi.poltekkesdepkes-sby.ac.id/index.php/ijeeemi/article/view/66 |
work_keys_str_mv | AT rizkiauliya designanocclusioncalibratorusingxgzp6887andservomotormg966rasasimulator AT syaifudinsyaifudin designanocclusioncalibratorusingxgzp6887andservomotormg966rasasimulator AT lilieksoetjiatie designanocclusioncalibratorusingxgzp6887andservomotormg966rasasimulator |