Avanti J-26S Series

The Avanti® J-26S centrifuge series combines high performance, complete BioSafety systems, and long-term durability, making it an incredibly capable choice for any lab environment. Experience simplified high-throughput sample processing and more control with powerful features including:

  • Automatic rotor identification
  • Low heat output
  • Imbalance tolerance
  • Quiet performance
  • Ergonomic design features

Features

For simplified high-throughput sample processing and more control; key features include imbalance tolerance, quiet performance and low heat output

Application Versatility

  • Process six liters of fermentor output in less than 10 minutes
  • Deliver a subcellular fraction at 82,000 x g
  • Run 24 microplates at a time
  • Separate live cell populations with elutriation

Enhanced Safety

  • Multi-level biocontainment systems that prevent leakage of biohazardous samples
  • Impact-resistant lid
  • Full containment barrier

Sample Protection

  • Automatically detect which rotor is installed
  • Prevent rotors from running above maximum-rated speeds while maintaining the run

Optimize Cell Separation

  • Utilize the Avanti J-26S for elutriation
  • Separate and/or concentrate monodisperse suspensions of single cells or particles via elutriation rotor

Explore Avanti J-26S Series Models

Product Specifications

BioSafe No
Acceleration Maximum or Slow
Deceleration Maximum, slow, or off
Timed Run 1 minute-3 hours; Continuous Hold
Max Capacity Volume Range 1 - 6 L
Temperature Control ± 2 °C of set temperature after equilibration
Temperature Range(s) 10°C - 40°C in 1 degree increments
Item Specifications Referenced B14542

Technical Documents

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Content and Resources

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Product Catalog: High Speed Centrifuges This centrifuge product selection guide is designed to help you determine the most efficient centrifuge tools for your laboratory.
Avanti Series Brochure Defining a new era of performance and possibilities
Lentiviral Vector Production Technical Application Note Clone gene of interest into a modified Lentiviral vector with this production method protocol