Pall MPATHBRXPS0P0 iCELLis Nano Single-Use Fixed Bed Bioreactor w/ Controller
Pall
Details
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CategoryBioreactor / Fermenter
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Dimension22.0in x 9.0in x 18.0in
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SerialMP190258
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Shipping TypeFedEx Ground
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Manufacturing2019-01-01
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Voltage / Hertz240V / 50Hz/60Hz
Description
The Pall iCELLis Nano Single-Use Fixed Bed Bioreactor with mPath Controller, Model MPATHBRXPS0P0, is designed for efficient cell growth of adherent cells. Manufactured in 2019, this pre-owned but exceptionally maintained system offers an automated, fixed-bed bioreactor that simplifies cell culture processes. Featuring a unique waterfall system for optimal oxygenation and CO2 stripping, it integrates a high-cell-density, compact bioreactor that increases volumetric productivity compared to traditional methods. The iCELLis system provides predictable scalability from research and development to manufacturing, minimizing operational costs and capital investments. The integrated design includes proprietary macrocarriers with a surface area equivalent to 3,000 roller bottles, supporting low-density inoculation. The built-in magnetic drive impeller ensures low shear stress for high cell viability, making it a valuable addition to any lab focusing on cell culture manufacturing processes.
Key Features
- Single-use, fixed-bed bioreactor
- Automated cell culture process
- Unique waterfall oxygenation system
- Compact and high-density fixed bed
- Predictable scalability
- Cost and space-efficient design
Specifications
- Brand: Pall
- Model: MPATHBRXPS0P0
- Year of Manufacture: 2019
- Condition: E (Excellent) - near new condition
- Weight: 18.14 kg
- Dimensions: 55.88 cm x 22.86 cm x 45.72 cm
- Voltage: 240V
- Hertz: 50Hz/60Hz
- No software included
Weight
Imperial: 48.0 Pounds
Metric: 21.77 Kilograms
Shipping Dimensions
Imperial: 26.4 lb x 10.8 lb x 21.6 lb
Metric: 67.06 cm x 27.43 cm x 54.86 cm
Harmonized Code
841989
Harmonized Code Details
841989 - Machinery, plant or laboratory equipment for the treatment of materials by a process involving a change of temperature, n.e.s. Justified based on its primary use for cell culture and bioprocessing.
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