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Analisis Hasil Pengukuran Flowmeter Oksigen Bayi Produk Dalam Negeri Dan Produk Luar Negeri Dengan Metode Uncertainty Dan Uji Mann-Whitney
Rustiana Rustiana
; Eka Nuryanto Budisusila
Jurnal Elektronika dan Komputer
Vol 18
, No 2
(2025)
Oxygen is vital therapy where delivery accuracy is crucial, especially for infant patients, to ensure treatment effectiveness and prevent the risks of hypoxia or toxicity. With the implementation of the mandatory Domestic Product Utilization Policy (TKDN+BMP ≥ 40%), evaluating the quality of local products has become an urgent necessity. This study aims to test and analyze the quality and accuracy of domestically produced infant oxygen flowmeters compared to an imported product. The method used...
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Analysis of Accuracy flowrate and Uncertainty of Domestic Syringe Pump Products Using the ISO GUM Method
AFIFUDIN, MUHAMMAD
; Eka Nuryanto Budisusila
MEDIKA TRADA : Jurnal Teknik Elektomedik Polbitrada
Vol 6
, No 2
(2025)
This study evaluates the accuracy of locally manufactured syringe pumps used in Karanganyar District Hospital and analyzes their measurement uncertainty based on the ISO GUM method. Five Indonesian brands (Endo, Esa Tech, Inmedik, KalTech, and Krisma) were tested using an Infusion Device Analyzer at three flow-rate set-points (10, 50, and 100 ml/h) and an occlusion test at 100 ml/h. All devices met the standard tolerance limits (±10% and <20 psi). The expanded uncertainty ranged from ±0.09 to...
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Analysis of Infusion Pump Accuracy with Domestic Component Level Using Uncertainty Method
Dedy Iskandar
; Eka Nuryanto Budisusila
MEDIKA TRADA : Jurnal Teknik Elektomedik Polbitrada
Vol 6
, No 2
(2025)
Component-Level Domestic Content Policy (TKDN) encourages the utilization of domestically produced medical devices; however, their accuracy and safety must be proven. This study aims to analyze the accuracy of domestic infusion pumps using the uncertainty measurement method. A total of four units from four brands (Endo, ESA Tech, Inmedik, and Krisma Care) were tested on the flow rate parameter with variations of 10, 50, 100, 200, and 300 mL/hour. Each test point was measured six times using a ca...
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