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Breathing looks simple from the outside — but inside a modern ICU ventilator, there’s a carefully controlled sequence of gas delivery, sensing, and regulation happening every second. In this video, we go inside the PB980 ventilator to clearly explain how medical gases actually flow from the wall supply to the patient, and why each stage of that journey matters in critical care. You’ll learn how oxygen and air are sourced, mixed, regulated, and delivered within the PB980, including how flow, pressure, and volume are controlled before a single breath reaches the patient. We’ll walk through the internal gas pathway step by step, linking engineering design choices to real clinical outcomes. This is designed for biomedical engineers, students, ICU staff, and anyone curious about how life-support devices truly work — without marketing gloss or unnecessary jargon. By the end, you’ll have a solid mental model of how a critical care ventilator manages airflow safely and reliably in real hospital environments. If you found this breakdown useful, consider subscribing for more practical explanations of medical devices and hospital engineering. A like helps the video reach others who want to understand the technology behind patient care, and feel free to comment with questions or topics you’d like covered next. Sharing the video with a colleague or student who’s learning ventilators is always appreciated. Follow me on LinkedIn: www.linkedin.com/in/iperez22 Follow MedDeviceEngineerX on LinkedIn: / 109820089 For my engineering background, experience, and portfolio: https://isiahperez325.wixsite.com/isi... This channel exists to demystify medical devices and engineering — helping engineers, clinicians, and learners understand the systems that quietly support patients every day. #PB980 #Ventilator #MedicalDevices #BiomedicalEngineering #CriticalCare #ICUEngineering #VentilatorBasics #MedicalTechnology #MedTech #EngineeringExplained #HealthcareTechnology PB980 ventilator, ventilator gas flow, ICU ventilator, medical ventilator explanation, biomedical engineering, how ventilators work, critical care engineering, hospital medical devices, PB980 airflow, ventilator basics