贝克曼离心机
自 1947 年以来,贝克曼库尔特一直为世界各地的实验室,医院和大学提供离心解决方案。创新的离心技术帮助我们为全球的生命科学,生物技术,制药,临床诊断,学术和工业领域的客户提供优质服务。我们的离心机产品系列包括 Microfuge 系列和更大的高性能台式离心机,落地式超速离心机以及分析型超速离心(AUC)仪器,广泛的离心机转头系列也可用于您的特定应用领域,旨在适应各种样品体积,相对离心力和转速(RPM)。此外,为了支持这一产品组合,我们还提供管材,离心瓶和适配器等耗材,这些耗材均由您研究所需的耐用材料制成。
FAQ on Centrifuges & Lab Equipment
What are the different types of laboratory centrifuges?
Laboratory centrifuges are available in several configurations designed for specific applications. Common types include benchtop centrifuges for routine sample preparation, high-speed centrifuges for larger biomolecules and cell harvesting, ultracentrifuges for viruses and nanoparticles, analytical ultracentrifuges for macromolecule characterization, and specialized systems such as microcentrifuges and continuous-flow centrifuges. The appropriate centrifuge depends on sample volume, separation requirements, speed, and workflow needs.
What should I consider when choosing a laboratory centrifuge?
When selecting a centrifuge, laboratories should evaluate sample volume, rotor compatibility, maximum speed, relative centrifugal force (RCF), temperature control requirements, biosafety considerations, and future scalability. Choosing the right centrifuge can improve workflow efficiency, sample integrity, and reproducibility.
Which type of centrifuge is best for my application?
The best centrifuge depends on sample type, throughput requirements, separation goals, and speed requirements. Benchtop centrifuges are commonly used for routine laboratory workflows, such as nucleic acid and protein workflows, cell isolation, and multi-well plate processing high-speed centrifuges support larger-volume separations and cell harvesting, while ultracentrifuges are designed for high-resolution purification or particles such as viruses, extracellular vesicles, nanoparticles, and other very small particles.
What are centrifuges used for in life science laboratories?
Centrifuges are used throughout life science research for cell harvesting, protein purification, nucleic acid preparation, blood processing, viral vector purification, exosome isolation, density gradient separations, and biopharmaceutical development workflows.