Thermo Fisher Scientific · Model MaxQ 5000
Easily accommodate six 4L flasks, four 6L flasks or six 2800mL Fernbach flasks Wide temperature range: 10°C above ambient to 60°C on incubated models, 15°C below ambient to 60°C on refrigerated models Monitor and control chamber temperature range with ±0.1°C accuracy at 37°C Overtemperature safety feature with independent thermostat provides additional backup by controlling heat if main temperature controller fails Triple eccentric drive handles heavy loads, uniform agitation and continuous 24 hr. operation, even at high speeds Drip pan built into the chamber floor under the platform contains spills Clear, scratch-resistant lid for sample viewing With foot pedal for hands-free operation and retractable casters for portability Access ports provided through the side of cabinet wall for probes, thermocouples or sensors
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: Chamber out of set-point range, alarm.
Root cause: Heater element or sensor drift.
Symptoms: Gas concentration alarm, contamination risk.
Root cause: Gas sensor or solenoid valve wear.
Symptoms: Humidity drift, condensation.
Root cause: Aged door gasket.
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.
| Part | Service class | Relative cost | R&R difficulty |
|---|---|---|---|
| Door gasket / seal | Periodic replacement | $ | Fairly easy |
| Temperature sensor | Periodic replacement | $$ | Moderate |
| CO2 sensor | Periodic replacement | $$$ | Moderate |
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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