Refrigerated Orbital Laboratory Incubator Shaker ST-206R
- Intuitive Touch Control: Centralized operation via a 7" touch screen LCD display with P.I.D. control for precise parameter management.
- High-Capacity Programming: Enables detailed 30-segment programming across 5 groups for complex, multi-stage incubation and shaking protocols.
- Data Management Ready: Standard USB interface and RS485 port facilitate easy data export and system integration.
- Verifiable Documentation: Optional integrated thermal printer allows for immediate hardcopy recording of run parameters.
- Uninterrupted Workflows: Power-failure recovery function automatically restarts protocols after an outage, protecting valuable long-term experiments.
- Calibrated Accuracy: Built-in temperature and speed calibration ensures consistent, reproducible results over time.
- Dual Monitoring: Continuously displays both the internal working temperature and the ambient room temperature.
- Secure Parameter Storage: Parameter memory function saves and recalls frequently used protocols, enhancing efficiency.
- Adaptable Illumination: Standard fluorescent/UV lamps are included, with an optional LED culture lighting system for specialized applications.
- Versatile Sample Handling: Standard and optional accessories (spring platform, tube racks, microplate holders) support flasks, tubes, and plates.
- Stable Motion Platform: Utilizes quiet, durable single-shaft 5-dimensions drive technology for consistent orbital motion.
- Gentle Start-Up: Soft start feature protects sensitive cultures from disruptive forces.
- Reliable Motor: Maintenance-free brushless motor delivers constant torque across a wide speed range.
- Critical Safety Protections: Comprehensive system includes alarms for temperature/speed deviations, door-open stops, and electrical fault protection.
- Space-Saving Stackability: Floor-standing design allows vertical stacking of up to 3 units, optimizing laboratory footprint.
| Temp. Control Range | 4℃-60℃ |
| Environment Temp. | 15℃-35℃ |
| Control | P.I.D. |
| Display | 7" LCD with touch screen |
| Thermal Printer | Included |
| USB Interface | Included |
| Convection Mode | Forced Convection |
| Shaking Mode | Orbital |
| Drive | Single-shaft balance device |
| Temp. Resolution | 0.1℃ |
| Temp. Accuracy | ±0.1℃ |
| Temp. Uniformity | <±1℃ (at 37℃) |
| Speed Range | 30-300rpm |
| Speed Accuracy | ±1rpm |
| Orbit(mm) | Φ50 |
| Refrigerant | R134a,CFC-Free |
| Timing Range | 0-999.59 hr/Continuous |
| Platform Size | 780x480x10(mm) |
| Flask Capacity | 2000mlx12,1000mlx15,500mlx28,or, 250mlx40 |
| Flask Platform Qty.(PC) | 1 |
| N.W. /G.W. (Kg,single Unit) | 310/330 |
| Chamber Dimensions | 870x590x380(WxDxH,mm) |
| Capacity(L) | 189 |
| Overall Dimensions | 1150x780x640(WxDxH,mm) |
| Packing Size(LxWxH,cm) | 120x83x73 |
| Power | 1200W |
| Power Supply | AC 200∽240V 50-60HZ. Optional: AC110V/60Hz |
| Chamber Material | Polished SUS304 Stainless Steel |
| Construction | Steel with powder coating |





In the pursuit of scientific reproducibility, the laboratory shaker stands as a pivotal instrument, available in space-saving benchtop or high-capacity floor-standing configurations. Its core mandate is to impart consistent mechanical motion—orbital or linear—to samples. This action facilitates crucial processes: adequate aeration for aerobic cultures, homogenization of multi-component solutions, and the prevention of particulate settling. By doing so, it lays the groundwork for dependable outcomes in protein studies, cell-based assays, and chemical analysis.
The operational principle centers on creating and sustaining uniform experimental conditions. Different shaking modalities serve specific purposes. The orbital path, generating a subtle vortex, is excellent for general mixing and culturing suspension cells. A linear or reciprocating motion is sometimes preferred for certain staining or washing protocols. Specialized rockers offer a see-saw motion for delicate applications. The integration of shaking platforms with incubation chambers (incubator shakers) allows researchers to concurrently control temperature and agitation, mimicking dynamic biological environments.
From research to diagnostics, the utility of shakers is broad. They are indispensable for growing microbial or mammalian cells in liquid media, where mixing prevents clumping and ensures nutrient access. In chemistry, they accelerate dissolution and extraction. In molecular biology labs, they are used for membrane blotting and hybridization procedures. Contemporary devices are equipped with sophisticated control systems, offering precise digital adjustment of operational parameters. Robust construction, along with features like adjustable platform holders and low-noise operation, makes them suitable for continuous use in busy laboratories.
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