5 Liter Rotary Evaporator 0 To 200RPM Small Rotary Evaporator For Lab
The main machine lift, with ambidextrous design, allows for precise positioning of the glassware. Digital displays of rotation speed and heating bath temperature allow optimal control of all distilling processes. New clamp mechanism simplifies changing of evaporation flasks. This package comes with a heating bath and one set of glassware (vertical).
- Features an auto-lift main machine mechanism for automated, repeatable height control.
- Versatile heating bath supports water or oil use and includes practical carrying handles.
- Integrated key-lock function ensures temperature setting security and prevents tampering.
- Flexible immersion angle adjustment allows customization for specific experimental setups.
- Real-time digital readouts display both mixing speed (20-200 rpm) and temperature data.
- Ambidextrous single-hand operation design improves accessibility and ease of use.
- Broad speed spectrum enables applications ranging from gentle shaking to intense agitation.
- Guaranteed compatibility with the manufacturer's complete line of laboratory glassware.
| Model | NoVap-AL5 |
| Voltage | 220V/50Hz 110V’60Hz |
| Machine Power | 1560W |
| Rotating Motor | 40W |
| Lift motor Power | 20W |
| Heating Power | 1500W |
| Vacuum | 0.098Mpa |
| Boiling Flask | 5L flask Φ230mm /Φ50 flange |
| Collect Flask | 3L flask Φ195mm,35#Ball milling mouth |
| Stirring Speed | 0-200rpm/min |
| Temp. Control Range | Ambient to 99℃ |
| Temperature Accuracy | ±1℃ |
| Main Motor Lift Stroke | 90mm |
| Main Condenser | Φ100x530H(mm) |
| Condensing Area | 0.26㎡ |
| Feeding Valve | 19#Standard plug valve |
| Vacuum Suction Nozzle | Outer diameter of pagoda joint10mm |
| Condensing Pipe Inlet and Outlet Circulation Nozzle | Outer diameter of pagoda joint 12mm |
| Heating Pot | Φ275x160H(mm), around 9.5 L. |
| Dimensions(mm) | 690x 440x(825-9150) |
| Net Weight | 30Kg |
| Gross weight | 48Kg |
"Bumping" is a hazardous phenomenon in evaporation where a liquid becomes superheated and then violently erupts, potentially causing loss of sample, contamination, or even glassware breakage. Rotary evaporation effectively prevents bumping through its core mechanical action. The constant rotation of the flask ensures the liquid is continuously agitated and spread into a thin film. This prevents the formation of large, unstable vapor bubbles that characterize bumping. Instead, vapor release is smooth and steady from the large surface area of the film. The combined use of reduced pressure also promotes smoother boiling. This inherent safety feature makes the rotovap a more reliable and controlled platform than simple heating under vacuum alone.
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