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Microfluidizer - Model LM20 -High Shear Fluid Processor System
Electrically Powered Lab Unit for Small Sample Processing. The LM20 high-pressure homogenizer ensures that 100% of your material undergoes exactly the same treatment, yielding consistently reliable results that include uniform particle and droplet size reduction, submicron emulsions and high-yield cell disruption.
Our unique design converts pressure into shear forces more efficiently than other technologies, delivering superior performance. The LM20’s unique intensifier pump supplies the desired pressure at a constant rate to your materials, driving them through precisely defined, fixed-geometry microchannels within the interaction chamber. The product stream accelerates to high velocities, creating shear rates that are orders of magnitude greater than any other conventional method.
- 300 ml glass reservoir
- Diamond interaction chamber (ceramic chamber is standard on LM20-20 model)
- Digital pressure control
- Integrated stroke counter with maintenance reminder
- Multiple languages (selectable by user)
- Auxiliary Processing Modules (APMs)
- Cooling coil and chilled bath assembly
- Process fluid recirculation assembly/kit
- Process pressure gauge
- Larger capacity glass or stainless steel reservoirs
- Solvent-resistant gasket materials
- Requires a minimum sample size of 14 ml
- Is suitable for laboratory and benchtop applications
- Achieves unmatched size reduction/disruption performance at lower process pressure
- Limits sample temperature rise during processing, ensuring minimal heat denaturation of sensitive materials
- Results in higher product yields after sterile filtration with tighter particle size distribution
- Saves on development time in pilot/production with linear volumetric scaleup
- Provides enhanced repeatability with easy-to-use digital pressure control
- Has a compact design that fits in a fume hood
- Ensures dependable process performance over time with maintenance reminder and operator alerts
- Adapts to future experimentation possibilities with field upgradable firmware
