Design of Manifold with Pressure Controller for Automatic Exchange of Oxygen Gas Cylinders in Hospital

The regulation and supply of oxygen as one of the medical gases in the hospital is important to ensure the availability of these gases for the survival of patients. The regulation of oxygen gas in hospitals usually uses a piping system with manifolds. The manifold will monitor the oxygen gas pressur...

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Main Authors: Atika Hendryani, Vita Nurdinawati, Nashrul Dharma
Format: Article
Language:English
Published: Diponegoro University 2021-05-01
Series:Teknik
Subjects:
Online Access:https://ejournal.undip.ac.id/index.php/teknik/article/view/33127
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spelling doaj-3e4038e6decb41da8d3f8da10c9a5b8e2021-06-21T08:55:38ZengDiponegoro UniversityTeknik0852-16972460-99192021-05-01421455110.14710/teknik.v42i1.3312718474Design of Manifold with Pressure Controller for Automatic Exchange of Oxygen Gas Cylinders in HospitalAtika Hendryani0https://orcid.org/0000-0002-3658-4947Vita Nurdinawati1Nashrul Dharma2Jurusan Teknik Elektromedik, Politeknik Kesehatan Kementerian Kesehatan Jakarta II,, IndonesiaJurusan Teknik Elektromedik, Politeknik Kesehatan Kementerian Kesehatan Jakarta II,, IndonesiaJurusan Teknik Elektromedik, Politeknik Kesehatan Kementerian Kesehatan Jakarta II,, IndonesiaThe regulation and supply of oxygen as one of the medical gases in the hospital is important to ensure the availability of these gases for the survival of patients. The regulation of oxygen gas in hospitals usually uses a piping system with manifolds. The manifold will monitor the oxygen gas pressure on each tube. Manifold systems that are widely used in general can only monitor pressure but cannot perform an automatic exchange on gas cylinders if the pressure is under the permissible conditions. The manifold system design developed is equipped with pressure monitoring for automatic exchange of oxygen gas cylinders using pressure sensors and microprocessors.  The test results of the system using regulator and barometer comparisons showed the percentage value of sensor pressure accuracy of 96.92 percent and 97.16 percent. At pressure below the limit of 285 KPa manifold can perform the exchange of active gas cylinders automatically. These results show the manifold design built can work quite well.https://ejournal.undip.ac.id/index.php/teknik/article/view/33127gas medisoksigenmanifoldtekanan gaspertukaran otomatis
collection DOAJ
language English
format Article
sources DOAJ
author Atika Hendryani
Vita Nurdinawati
Nashrul Dharma
spellingShingle Atika Hendryani
Vita Nurdinawati
Nashrul Dharma
Design of Manifold with Pressure Controller for Automatic Exchange of Oxygen Gas Cylinders in Hospital
Teknik
gas medis
oksigen
manifold
tekanan gas
pertukaran otomatis
author_facet Atika Hendryani
Vita Nurdinawati
Nashrul Dharma
author_sort Atika Hendryani
title Design of Manifold with Pressure Controller for Automatic Exchange of Oxygen Gas Cylinders in Hospital
title_short Design of Manifold with Pressure Controller for Automatic Exchange of Oxygen Gas Cylinders in Hospital
title_full Design of Manifold with Pressure Controller for Automatic Exchange of Oxygen Gas Cylinders in Hospital
title_fullStr Design of Manifold with Pressure Controller for Automatic Exchange of Oxygen Gas Cylinders in Hospital
title_full_unstemmed Design of Manifold with Pressure Controller for Automatic Exchange of Oxygen Gas Cylinders in Hospital
title_sort design of manifold with pressure controller for automatic exchange of oxygen gas cylinders in hospital
publisher Diponegoro University
series Teknik
issn 0852-1697
2460-9919
publishDate 2021-05-01
description The regulation and supply of oxygen as one of the medical gases in the hospital is important to ensure the availability of these gases for the survival of patients. The regulation of oxygen gas in hospitals usually uses a piping system with manifolds. The manifold will monitor the oxygen gas pressure on each tube. Manifold systems that are widely used in general can only monitor pressure but cannot perform an automatic exchange on gas cylinders if the pressure is under the permissible conditions. The manifold system design developed is equipped with pressure monitoring for automatic exchange of oxygen gas cylinders using pressure sensors and microprocessors.  The test results of the system using regulator and barometer comparisons showed the percentage value of sensor pressure accuracy of 96.92 percent and 97.16 percent. At pressure below the limit of 285 KPa manifold can perform the exchange of active gas cylinders automatically. These results show the manifold design built can work quite well.
topic gas medis
oksigen
manifold
tekanan gas
pertukaran otomatis
url https://ejournal.undip.ac.id/index.php/teknik/article/view/33127
work_keys_str_mv AT atikahendryani designofmanifoldwithpressurecontrollerforautomaticexchangeofoxygengascylindersinhospital
AT vitanurdinawati designofmanifoldwithpressurecontrollerforautomaticexchangeofoxygengascylindersinhospital
AT nashruldharma designofmanifoldwithpressurecontrollerforautomaticexchangeofoxygengascylindersinhospital
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