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MACSQuant<sup>®</sup> Analyzer 10 Flow Cytometer
Flow CytometerPharmaceutical Lab Equipment

MACSQuant<sup>®</sup> Analyzer 10 Flow Cytometer

Manufacturer: Miltenyi Biotec

SKU: 130-196-434

Description

The MACSQuant Analyzer 10 is a compact flow cytometer designed to provide automated, hands-free operation for a variety of research applications. It is built with three excitation lasers at 405 nm (violet), 488 nm (blue), and 640 nm (red) wavelengths, and is capable of detecting eight fluorescence channels in addition to forward and side scatter. A central feature is its automation suite, which includes routines for instrument startup, cleaning, shutdown, and automated compensation. The system also supports automated sample tube labeling and can integrate with magnetic cell enrichment protocols. Automated calibration and quality control procedures help maintain consistent performance. Pre-configured assay protocols within the accompanying software are available for specific applications, such as in-process monitoring during cellular therapy manufacturing, toxicology studies, and the analysis of small particles like extracellular vesicles. The instrument has a compact footprint, with dimensions of 669 mm wide, 400 mm deep, and an adjustable height between 394 and 553.5 mm. A software option is offered to facilitate compliance with 21 CFR Part 11 requirements.

Specifications

ItemMACSQuant® Analyzer 10 Flow Cytometer
CompanyMiltenyi Biotec
Catalog Number130-196-434
QuantityEA
Dimensions(W x D x H* *adjustable touch screen) 669 x 400 x 394-553.5 mm
ApplicationsFlow Cytometry
Excitation Wavelength405 nm (violet), 488 nm (blue), 640 nm (red)
Detection SystemFSC, SSC, 8 fluorescence channels
Regulatory StatusFor research use only
Sample Type1.5/2.0/5.0/15/50 mL tubes or 24/48/96-well plates
Flow Rate25, 50, or 100 µL/min or automate flow rate to maintain 500, 1000, or 2000 events/second
Speed<25 minutes per 96-well plate (5 µL measurement volume per well) Referred value indicates the average of multiple experiments and can differ for individual sample materials. The measurement speed is determined by measuring the time between the movement of the robotic arm into the first measured well, and its movement out of the last measured well. The measurements were carried out at high flow rate in fast mode
Operating SystemEmbedded operating system
SoftwareMACSQuantify (integrated acquisition and analysis software)
ThroughputUp to 15,000 events per second