● Durable, reliable and affordable ● Easy to operate, rapid hands-free disruption of up to 8 microtubes ● Processes at a constant, controlled shear rate ● Maintains genome integrity of the biological samples ● Facilitates subsequent purification of genomic material ● Best suited for research laboratories demanding accurate, reproducible, repeatable results
High-speed circumferential vortex and oscillation function
Orbital diameter
4mm
Speed range
0-3000rpm (Adjustable)
Speed display
Scale
Capacity
8x2mL
Power Requirements
200-240V/100-120V,50/60 Hz,60W
Dimension
127X130X160mm
Weight
2.0kg
SELLING POINT
Principle
The cell suspension and microbeads are fully mixed under rapid oscillation, and the microbeads and cells shear and collide with each other, causing the cell wall to break and release the contents. The cell wall breaking effect is more than 80%, which is very suitable for research work in ordinary laboratories.
Applications
Suitable for all sample types;Lysis of yeast and fungi;for lsolation of genomic material from faecal samples,fungi and bacteria samples, soil samples;for lsolationof PCR-Ready Genomic DNA from Soil Samples; DNA &RNA Purification, Lysis of bacteria; Lysis of softtissues; lsolation of genomic DNA, Purification of DNA:Cell Lysis, Used to lyse cell wall ofyeast; Breakhard/brittle samples
MARKET INFORMATION SHARE
Target Audience
TheLVM-Cis aimed at laboratories in fields such as molecular biology, microbiology, and biochemistry. Its target audience includes researchers and technicians who require efficient cell disruption for applications like yeast and bacteria lysis, genomic material isolation, and sample preparation for further analysis.
Competitive Edge
TheLVM-Coffers two key competitive edges: its powerful and precise disruption capability ensures efficient cell lysis and homogenization, while its durable, user-friendly design and consistent performance make it a reliable choice for demanding biological and biochemical applications.
Superior performance
TheLVM-CCell Disruptordelivers superior performance through its high-speed circumferential vortex and oscillation function, allowing for rapid disruption of cells and microorganisms. It maintains genome integrity by processing at a constant, controlled shear rate, facilitating subsequent purification of genomic material. Its durable construction ensures reliable operation in various laboratory settings.