Sakura · Model Cyto-Tek
Place acceleration, automatically controlled: • Paced acceleration is “Always On”, eliminating operator bias in assessing cell fragility. • Accommodates fragile cells requiring delicate handling. • Speed adjusts from 500 to 2,500 rpm in 100-rpm increments. • Programmable times range from 1 to 60 minutes in 1 minute increments. Digital controls: • Speed and time settings are retained in memory with a battery backup. • Streamlined touch pad and 2 digital displays control and monitor all functions. • Easy to use, easy to train. Forced airflow control: • Unique design, no rotor cover to sterilize • Eliminates aerosol for greater operator safety. Reliable: • Manufactured with the same quality care as all other Tissue-Tek® instruments. • Enjoy years of trouble-free operation with virtually no maintenance required. Efficiently silent: • Even at maximum speed, the Cyto-Tek runs smoothly and quietly. Superior clinical performance: • A consistently high rate of cellular recovery is extremely important for accurate morphological evaluation of cerebrospinal fluid. • Well-defined rectangular target area for optimal results. • Better preservation of cellular structure. • With a G force of up to 735, the Cyto-Tek can handle low molecular weight organisms such as microbacteria and viruses. • Operates on 115 VAC, 60 Hz. Cyto-Tek® Centrifuge Funnel Chamber • Enhance your cell recovery up to 100% • Highly polished specimen chamber that minimizes cell attachment. 33% thicker clamp wall (for greater claming tension) that provides paced fluid absorption. • Window ledge to help secure filter and keep cells in target area. • “V” cutout to add rigidity helping to hold funnel chamber in place.
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: Vibration, loud noise, stop error.
Root cause: Worn bearing or unbalanced rotor.
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.
Consumable - replace proactively.
| Part | Service class | Relative cost | R&R difficulty |
|---|---|---|---|
| Incubator heater / fan | Periodic replacement | $$ | Moderate |
| Sample aspiration probe Frequent R&R on high-throughput analyzers. | Periodic replacement | $$$ | Moderate |
| Peristaltic pump tubing Consumable - replace proactively. | Frequent wear item | $ | Easy |
| Xenon / LED light source | 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.
No documents available for this device yet.
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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