H. Fajrin, Tuhfatun Nu’Man Rosyadiy, Djoko Sukwono
{"title":"Perancangan Oxygen Analyzer Dilengkapi Penyimpanan Data Eksternal Berbasis Arduino Uno","authors":"H. Fajrin, Tuhfatun Nu’Man Rosyadiy, Djoko Sukwono","doi":"10.26760/elkomika.v7i3.559","DOIUrl":null,"url":null,"abstract":"ABSTRAKOxygen analyzer sebelumnya hanya dilengkapi dengan penyimpanan data internal dengan maksimal penyimpanan 10 data. Berdasarkan permasalahan tersebut, dibuatlah oxygen analyzer untuk mengukur kadar oksigen pada output gas medis dengan parameter kadar oksigen (%) dilengkapi dengan penyimpanan data eksternal yang bisa menyimpan banyak data untuk keperluan kalibrasi peralatan dan pengecekan kevalidan dari kadar oksigen yang diberikan ke pasien sehingga data perlu disimpan dengan baik tanpa dicatat satu persatu tapi otomatis tersimpan pada memori eksternal yang bisa dipindah ke komputer. Untuk mengukur kadar oksigen pada output gas medis digunakan sensor oksigen tipe KE-50, dan mikrokontroler Arduino Uno. Setelah pengujian data, nilai error yang didapatkan berada di bawah 1% dan penyimpanan data eksternal berfungsi dengan baik.Kata kunci: Oksigen, Sensor Oksigen, Gas Medis, penyimpanan data, arduino ABSTRACTThe previous study designed an oxygen analyzer that was only equipped with internal data storage with a maximum of 10 data storage. Therefore a tool was made to measure oxygen levels at the output of medical gas with oxygen level parameters (%) equipped with external data storage that can store a lot of data for the purposes of equipment calibration and checking the validity of the oxygen level given to the patient so that the data needs to be stored neatly without needing to be recorded one by one but automatically stored in external memory that can be moved to the computer. To measure oxygen levels at the output of medical gas used the KE-50 type of oxygen sensor, and the Arduino Uno microcontroller. After testing the data, the error values obtained are below 1% and external data storage works properly.Keywords: Oxygen, Oxygen sensor, Medical gas, data storage, arduino","PeriodicalId":344430,"journal":{"name":"ELKOMIKA: Jurnal Teknik Energi Elektrik, Teknik Telekomunikasi, & Teknik Elektronika","volume":"28 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2019-09-30","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"1","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"ELKOMIKA: Jurnal Teknik Energi Elektrik, Teknik Telekomunikasi, & Teknik Elektronika","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.26760/elkomika.v7i3.559","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 1
Abstract
ABSTRAKOxygen analyzer sebelumnya hanya dilengkapi dengan penyimpanan data internal dengan maksimal penyimpanan 10 data. Berdasarkan permasalahan tersebut, dibuatlah oxygen analyzer untuk mengukur kadar oksigen pada output gas medis dengan parameter kadar oksigen (%) dilengkapi dengan penyimpanan data eksternal yang bisa menyimpan banyak data untuk keperluan kalibrasi peralatan dan pengecekan kevalidan dari kadar oksigen yang diberikan ke pasien sehingga data perlu disimpan dengan baik tanpa dicatat satu persatu tapi otomatis tersimpan pada memori eksternal yang bisa dipindah ke komputer. Untuk mengukur kadar oksigen pada output gas medis digunakan sensor oksigen tipe KE-50, dan mikrokontroler Arduino Uno. Setelah pengujian data, nilai error yang didapatkan berada di bawah 1% dan penyimpanan data eksternal berfungsi dengan baik.Kata kunci: Oksigen, Sensor Oksigen, Gas Medis, penyimpanan data, arduino ABSTRACTThe previous study designed an oxygen analyzer that was only equipped with internal data storage with a maximum of 10 data storage. Therefore a tool was made to measure oxygen levels at the output of medical gas with oxygen level parameters (%) equipped with external data storage that can store a lot of data for the purposes of equipment calibration and checking the validity of the oxygen level given to the patient so that the data needs to be stored neatly without needing to be recorded one by one but automatically stored in external memory that can be moved to the computer. To measure oxygen levels at the output of medical gas used the KE-50 type of oxygen sensor, and the Arduino Uno microcontroller. After testing the data, the error values obtained are below 1% and external data storage works properly.Keywords: Oxygen, Oxygen sensor, Medical gas, data storage, arduino
之前的abstrak氧分析仪只配备内部数据存储,最多10个数据存储。根据这些问题,氧分析仪测量氧气的医疗气体输出参数的氧气含量(%)配备了可以保留很多的外部数据用于存储设备的校准和等待检查的数据交给病人的氧气水平,以至于需要储存好地一个接一个地记载但自动保存在记忆可以被转移到电脑的外部。为了测量医学气体输出的氧气水平,使用第50种类型的氧气传感器和微量控制器Arduino Uno。在数据测试之后,它所获得的值低于1%,外部数据存储正常。关键字:氧、氧传感器、医学气体、数据存储、arduino abstract为研究编写了一种只有内文数据存储的氧气分析仪。这就是一个工具就是被逼到所拘束的氧气水平在《医疗用氧气体输出parameters(%)做好with external级存储,以至于可以store a很多数据for the purposes of设备calibration and validity》登记的氧气水平给《数据需要病人所以那to be stored无国界neatly needing to be recorded一号由一号,但自动stored in external记忆,以至于可以搬到电脑。在医用气体输出中调节的氧水平使用了50种传感器,Arduino Uno微控制器。在测试了数据之后,错误值附加在1%和外部数据存储设施下。氧,氧传感器,医学,数据存储,arduino