Refrigerated Benchtop Centrifuge NovaFuge B114-20R with Colour LCD
- Resilient construction featuring powder-coated housing and a guarded stainless steel chamber.
- Dependable, maintenance-free drive system powered by a variable frequency motor.
- Automated electronic lock ensures the cover remains securely closed while spinning.
- Includes a manual release mechanism for the lid in case of power loss or emergency.
- Lid movement is assisted by reliable pneumatic springs to prevent sudden drops.
- Refrigerated versions use eco-friendly CFC-free cooling with a standby pre-chill function.
- Operate flexibly with on-the-fly edits and one-touch recall of previous settings.
- Full digital management via a microprocessor for all run parameters and error messaging.
- Continuous protection through automated diagnostics for imbalance and system overloads.
- Ergonomic rotor connector allows for effortless installation and removal.
- Automatic lid opening at the end of run.
- Short spin.
- Rotor identification.
| Model | B114-20R |
| Max. RPM/RCF for angle rotor | 20000rpm / 27259*g |
| Max. RPM/RCF for swing rotor | 6000rpm / 4492*g |
| Max. Capacity for angle rotor | 4*100ml, 48*1.5/2.2ml |
| Max. Capacity for swing rotor | 4*10ml, 48-well plates |
| Speed Increment | 10rpm |
| Speed Accuracy | ±20rpm |
| Temp. Range | -20℃~+40℃ |
| Temp. Accuracy | ±2℃ |
| Timer Range | 0min~99min59s |
| Acc / Dec rates | 10/10 |
| Program Memory | 15 |
| Power Supply | AC220V / 50~60Hz |
| Power Requirement | 1KW |
| Noise | <55db |
| Display | LCD |
| Machine Body | Plastic and metal frame |
| Net Weight (without rotor) | 58kg |
| Machine Dimension(L*W*H) | 620*500*350mm |
Essential for purification and isolation, a centrifuge operates by subjecting samples to sustained rotational force. This action pushes heavier solids or liquids to the perimeter of the spinning vessel, enabling clear separation. Instrument categories are largely defined by scale: benchtop centrifuges suit everyday clinical and research tasks, while floor-standing systems address high-capacity demands in production or core facilities. Key operational elements include rotor type (fixed-angle or swing-bucket), precise speed/temperature controls, and safety interlocks. A prudent choice demands matching the device's specifications to the sample's physical properties and the protocol's force requirements.
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