Thermo EC · Model Micromax RF
• More Separating Power - The Micromax produces forces up to 21,000 xg at speeds of 15,000 rpm on 24 (1.5-2.0 ml) samples or 48 (0.5 ml) microtubes, providing full application flexibility. • More Control - Features like g-force run control, gentle and fast acceleration/braking rates, audible end of run signals, and momentary spin and hold timers give you more control and consistency over your centrifugation. • More Convenience - A “glove friendly” membrane control panel with digital display makes the Micromax easy to clean and operate. Repeat runs are as simple as touching a single membrane switch. The unique 851 rotor spins both 24 x 2.0 ml plus 24 x 0.5 ml in the same rotor, reducing cost and saving time. • More Peace of Mind - Polypropylene rotors, including a sealed rotor for aerosol containment, can be autoclaved or decontaminated using bleach and agents such as Count-Off® without fear of corrosion. • Less Noise - The Micromax operates at a low noise level on your bench so that you can work without distraction. • Less Space - Precious benchspace is conserved with the compact Micromax. The refrigerated unit extends to the rear of your bench to conserve width. • Less Time - The Micromax accelerates to full speed rapidly, in less than 15 seconds, minimizing your wait time. • Less Maintenance - The Micromax’s brushless motor is designed for longevity and requires no maintenance, which saves you time and money. In addition, all controls are microprocessor-based for added reliability.
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: Aspiration error, short sample, carryover.
Root cause: Clot/crystal obstruction.
Symptoms: Clogs, high blank, QC fail.
Root cause: Pump tube wear, air in line.
Symptoms: Incubator out of range.
Root cause: Failed heater/fan or sensor.
Symptoms: Low signal, wavelength drift.
Root cause: Lamp/LED or monochromator aging.
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.
Frequent R&R on high-throughput analyzers.
| Part | Service class | Relative cost | R&R difficulty |
|---|---|---|---|
| Xenon / LED light source | Periodic replacement | $$$ | Moderate |
| Centrifuge rotor & bearings | Major service part | $$$ | Difficult |
| Incubator heater / fan | Periodic replacement | $$ | Moderate |
| Sample aspiration probe Frequent R&R on high-throughput analyzers. | Periodic replacement | $$$ | 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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