Introduction
Floor Model Manifold Top Press Freeze Dryer has a -60°C condenser for effective sublimation and protection of heat-sensitive materials. The built-in pre-freezing function eliminates external cooling needs, simplifying preparation. It features a vacuum alarm to alert users of abnormal pressure, ensuring safe operation. Our Floor Model Manifold Top Press Freeze Dryer supports research, pharmaceutical, and food drying, preserving structure.
This laboratory freeze dryer is designed to meet the rigorous requirements of modern laboratory operations, ensuring high precision, reliability, and ease of use for various experimental applications.Applications
Floor Model Manifold Top Press Freeze Dryer E14 preserves heat-sensitive materials through freeze-drying. It's ideal for biological research, pharmaceuticals, and food processing, enabling long-term storage without refrigeration.
Specifications
| Condenser Temperature | -60°C (optional -80°C) |
| Ambient Temperature | Less than or equal to 35°C |
| Condenser Capacity | 6 kg |
| Freeze Drying Area | 0.09 m² |
| Noise Level | Less than or equal to 55 dB |
| Pumping Speed | 4L/s |
| Vial Capacity Φ 12 mm | 630 pieces |
| Vial Capacity Φ 16 mm | 358 pieces |
| Vial Capacity Φ 22 mm | 180 pieces |
| Eggplant Shaped Flask | 2 × 100 ml, 2 × 150 ml, 2 × 250ml, 2 × 500ml |
| Shelves | 200 mm, 3 layers |
| Layer Spacing | 100 mm |
| Vacuum Degree | Less than or equal to 5 Pa |
| Final Vacuum | 0.1 Pa |
| Power Consumption | 1100 W |
| Power Supply | AC220V 50Hz or 110V/60Hz |
| Packaging Dimensions (W×D×H) | 630×670×1500 mm |
| Dimension (W×D×H) | 560×560×980 mm |
| Packaging Weight | 150 kg |
| Weight | 88 kg |
Features
Advanced gas diversion technology
Flexible power supply options
Multi-item drying capacity
Sustainable refrigeration technology
Expansive vial holding space
FAQs
1. What types of vessels can the Floor Model Manifold Top Press Freeze Dryer support?
Floor Model Manifold Top Press Freeze Dryer accommodates a range of vessels, including ampoules, round-bottom flasks, vials, and plasma bottles for diverse lab workflows. Its top press setup offers a firm seal for flask necks, minimizing leakage risks during sublimation. Switching between vessel types does not require mechanical adjustments, reducing downtime between experiments. Ample flask ports support simultaneous sample handling without imbalance. The system’s structure ensures thermal consistency across the drying chamber. This is critical when working with temperature-sensitive materials. It supports both low-yield pilot trials and scaled experimental batches. That flexibility benefits the pharmaceutical, food, and biochemical sectors. Researchers can carry out multi-format testing without reconfiguring hardware. The system’s open manifold design further promotes parallel drying efficiency.
2. Can the Floor Model Manifold Top Press Freeze Dryer be controlled remotely?
The Floor Model Manifold Top Press Freeze Dryer offers optional mobile and desktop remote control features, allowing teams to monitor conditions away from the unit. Users can view temperature, vacuum levels, and time progress without halting operations. This is especially useful during overnight runs or in controlled-access environments. Real-time notifications provide alerts on parameter changes. Remote locking ensures secure access while the system is running. The software supports multi-user login for team collaborations. Changes made remotely are logged for audit purposes. Remote functionality reduces the need for constant on-site supervision.
3. Does the Floor Model Manifold Top Press Freeze Dryer support sample data tracking?
Floor Model Manifold Top Press Freeze Dryer provides full data logging during each session with a export option for record-keeping. All temperature, time, and vacuum metrics are stored chronologically for easy review. This traceability is vital in research audits, quality assurance, and documentation. Session logs are automatically saved to avoid data loss during unexpected interruptions. The interface includes graphical trends to simplify analysis. Records can be deleted or archived after evaluation. The layout ensures minimal training for first-time users. This promotes streamlined compliance in regulated industries.
4. Is there a defrosting function in the Floor Model Manifold Top Press Freeze Dryer?
Floor Model Manifold Top Press Freeze Dryer features a one-touch defrost function to speed up cold trap cleaning after a run. This allows for rapid turnover between batches without labour-intensive thawing. The auto-defrost ensures users avoid direct contact with frozen residues. Its interface prevents accidental defrosting during drying phases through embedded safety locks. This function improves system longevity by preventing excessive build-up. Laboratories working with varied sample types can reduce cleaning wait times. Frequent defrosts maintain refrigeration efficiency and chamber hygiene. This feature supports continuous use in fast-paced labs.
5. How does the Floor Model Manifold Top Press Freeze Dryer handle different sample types?
The Floor Model Manifold Top Press Freeze Dryer supports a wide range of sample types, including biologics, reagents, enzymes, and botanical materials. It preserves molecular integrity by maintaining ultra-low temperatures throughout sublimation. Heat-sensitive compounds retain their active properties post-drying, thanks to stable vacuum control. Uniform shelf design minimizes dehydration gradients across the sample load. The system prevents oxidation in volatile substances via controlled pressure reduction. This is ideal for labs focused on analytical repeatability. Quick rehydration ensures material usability for downstream applications. Versatility across materials allows cross-disciplinary utility.
6. What does the cold trap pre-freezing function in the Floor Model Manifold Top Press Freeze Dryer do?
Floor Model Manifold Top Press Freeze Dryer enables direct sample pre-freezing in the cold trap before initiating the drying cycle. This integration reduces dependency on separate freezers or extra prep equipment. Pre-cooling lowers sample thermal shock, minimizing irregular ice crystal formation. Cold trap surfaces offer fast temperature transfer for consistency. This is particularly useful for stabilizing delicate proteins or biologicals. It also helps reduce contamination from equipment transfers. By integrating two processes in one, lab space is optimized. This feature strengthens workflow continuity in temperature-critical studies.
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