Getinge · Model Servo-Air
Context-based guidance Servo-air provides informative guidance for everything from pre-use check to initial parameter setting and throughout the entire treatment. Safety Scale parameters The system Safety Scale tool makes parameter changes quick and intuitive, while dynamic images illustrate how those changes may affect ventilation. Choose your view Basic, Advanced and Loops Distance and Family Servo Compass Alarm management The frame lights up when an alarm is triggered, and this visual signal is easy to see from any viewpoint. On-screen checklists help you to manage each active alarm and avoid undesired alarms. Fast and reliable CO2 monitoring To measure carbon dioxide levels in real time during expiration (capnography), Servo-air comes with an easy-to-use CO2 monitoring option. It helps you to improve the ventilation quality and efficiency for your patients. In other words, yet another tool on Servo-air to help you personalize your treatments. Interchangeable expiratory cassette Servo-air features a one-piece cleanable expiratory cassette, so the system can be ready for the next patient almost instantly. These can be used for both invasive and non-invasive ventilation. Similar serviceability across ventilation fleet The Servo-air and the advanced Servo-u® have similar user-friendly interfaces. They also share many components, have the same interchangeable patient cassettes, and come with the same easy-access service structure.
Failure patterns typical of this equipment class - general BMET reference, not verified against this exact unit's own service history unless flagged. Severity is a category-level estimate.
Symptoms: Unable to reach set pressure, low-flow alarm, loud noise.
Root cause: Worn bearings or failed blower motor.
Symptoms: Unexpected shutdown, persistent low-battery alarm.
Root cause: Aged internal battery or failed PSU.
Symptoms: Leak alarm, low circuit pressure, volume loss.
Root cause: Disconnected or punctured patient circuit / humidifier.
Symptoms: FiO2 out of range, oxygen alarm.
Root cause: Failed solenoid or proportional valve in blender.
The parts a BMET typically services on this class of equipment. Service class and relative cost are general engineering estimates for the category, not figures from this unit's documentation. Part numbers appear only when pulled from this unit's own service manual. Always confirm intervals and pricing against the manufacturer.
Most-replaced wearable part; stock spares.
Consumable, replace per PM schedule.
| Part | Service class | Relative cost | R&R difficulty |
|---|---|---|---|
| O2 sensor (galvanic/paramagnetic) | Frequent wear item | $$ | Fairly easy |
| Exhalation valve assembly Most-replaced wearable part; stock spares. | Frequent wear item | $$ | Fairly easy |
| Flow / differential pressure sensor | Periodic replacement | $$$ | Moderate |
| Bacterial / HEPA filter Consumable, replace per PM schedule. | Consumable | $ | Easy |
Relative cost: $ lowest · $$$$ highest service-part cost for this equipment class. Not a price.
Preventive-maintenance tasks typical of this equipment class. Perform to the manufacturer's procedure and your facility's policy - this is general reference, not a schedule for this specific unit.
A structured starting point derived from the failure modes above. Follow the manufacturer's service documentation for the actual procedure.
Where this class of equipment is typically deployed - general reference, not this unit's own placement record.
Describe a symptom or error code. Bio answers from this device's own documented error codes, failure modes, parts, and guides.
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