Beckman Coulter · Model ProteomeLab XL-A/XL-I
• Multiple Detection Systems - The ProteomeLab XL-A is configured with a scanning UV/Vis detection system that provides sensitivity for low-concentration work and selectivity for optimizing detection based on the sample's maximum absorbance. The addition of Rayleigh Interference Optics provides the capability to measure the change in refractive index resulting from changes in sample concentration. This delivers increased accuracy and the ability to examine a greater concentration range with a wider selection of samples. The XL-I can collect data from both detection systems sequentially, to provide the broadest spectrum of data for protein characterization in solution. • Easy Sample Preparation - For easy sample preparation, inject as little as 15µL to 120µL of sample and reference solutions into opposing positions in the cell assembly, and place the assembly into the system. Up to 28 different sample/reference pairs can be studied in a single run, with each having a different set of solute/solvent conditions (pH, ionic strength, concentration). This provides data for accurate analysis in as little as three hours. Your sample can be retrieved for additional analysis. • Flow-Through Centerpiece Assembly - A pre-assembled cell features a flow-through centerpiece that saves you time. Sample and reference solutions can be directly injected in the cell and retrieved for additional analysis without assembling or disassembling the cell. A second hole above each channel allows the cell to be cleaned and rinsed (with tubing and syringe) and ready for the next run.
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: 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: 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 |
|---|---|---|---|
| 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 | $$$ | Moderate |
| Peristaltic pump tubing Consumable - replace proactively. | Frequent wear item | $ | Easy |
Relative cost: $ lowest · $$$$ 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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