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Orbital Shaker BSOR-105
Orbital Shaker
Our product is an accurately designed, microprocessor controlled with a double Decker platform to save your valuable lab space. Three eccentric shaft balancing drive ensure shaking with uniform speed. Speed adjustment settings permit both gentle and vigorous shaking. Varieties of platforms are available for different glassware and vessels.
Key Features
- PID microprocessor control.
- Advanced unishaft drive, low noise.
- Eight self-compiled programs, with different speed and time settings.
- Automatic operation, auto-stop, timing, time display, parameters memory and recovery function.
SKU: BSOR-105
Old SKU: BEM2CF3
Pricing & Resources
- Up to 3-Year Product Warranty
- US & EU Compliance Standards
- Door-to-Door Shipping
Technical Specifications
Detailed operating and construction parameters for this model.
| Model | BSOR-105 |
| Speed Range | 50~300 rpm |
| Maximum Configuration | 250 mlx96 or 500 mlx60 or 1000 mlx40 or 5000 mlx15 |
| Shaking Speed Accuracy | ±1 rpm |
| Timing Range | 0~500 h |
| Motion | Orbital |
| Vibrational Amplitude (mm) | Φ50 mm |
| Circulation Mode | |
| Drive Mode | |
| External Material | Cold-rolled steel with anti-bacterial power coating |
| Platform Dimension | 1108x740 mm |
| Overall Dimension | 1210x775x480 mm |
| Package Dimension | 1310x875x630 mm |
| Weight | 305 kg |
| Power | 280 W |
| Standard Configuration | 250 mlx96 |
| Power Supply | AC110V/220V±10%,50/60Hz |
Product Features
Key design, performance, usability, and safety advantages.
PID microprocessor control.
Advanced unishaft drive, low noise.
Eight self-compiled programs, with different speed and time settings.
Automatic operation, auto-stop, timing, time display, parameters memory and recovery function.
Independent over-speed audio and visual alarm, independent leakage protection device.
Automatic power-off protection system when the motor is overheating and temperature is out of control.
Applications Explore common laboratory, research, industrial, and process applications.
Stability, Dissolution Studies, Liquid Extractions, Protein Precipitation, Small Peptide Synthesis, Dilutions