Introduction

Bench-top Manifold Freeze Dryer offers a condenser temperature of -60°C to support consistent low-temperature sublimation. It includes a cold trap with pre-freezing to simplify sample preparation. The colour Manifold Top Press Freeze Dryer is designed to meet the needs of pharmaceutical, biotechnology, and food industry applications.

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

Bench-top Manifold Freeze Dryer eliminates moisture from sensitive substances using low-temperature vacuum sublimation. It is used in pharmaceutical labs, food technology centers, chemical facilities, and academic research for sample preservation. 

Specifications

Condenser Temperature -60°C (optional -80°C)
Ambient Temperature Less than or equal to 35°C
Condenser Capacity 4 kg
Freeze Drying Area 0.1 m²
Noise Level Less than or equal to 55 dB
Pumping Speed 2L/s
Vial Capacity Φ 12 mm 700 pieces
Vial Capacity Φ 16 mm 400 pieces
Vial Capacity Φ 22 mm 210 pieces
Eggplant Shaped Flask 2 × 100 ml, 2 × 150 ml, 2 × 250ml, 2 × 500ml
Shelves 180 mm, 4 layers
Layer Spacing 70 mm
Vacuum Degree Less than or equal to 5 Pa
Final Vacuum 0.1 Pa
Power Consumption 950 W
Power Supply AC220V 50Hz or 110V/60Hz
Packaging Dimensions (W×D×H) 740×810×850 mm
Dimension (W×D×H) 520×600×400 mm
Packaging Weight 98 kg
Weight 48 kg

Features

Compact benchtop design 

Low operating noise 

Multi-vial capacity 

Modular manifold ports 

Stable shelf alignment 

FAQs

1. Why is the Bench-top Manifold Freeze Dryer ideal for temperature-sensitive samples?

It Bench-top Manifold Freeze Dryer protects heat-sensitive samples by maintaining a vacuum environment that prevents thermal exposure throughout the cycle. This is essential for preserving the structure of compounds such as enzymes or diagnostics that degrade under ambient drying conditions. Its advanced interface supports programmable cycles tailored to specific reagents or bio-compounds. Built-in monitoring tools allow the operator to detect pressure and temperature changes in real-time without opening the chamber. The vacuum level helps preserve chemical activity and moisture uniformity. This product is particularly helpful in biopharmaceutical research settings. Each cycle is logged digitally for repeat study references. Cooling remains constant across all sample ports to avoid inconsistencies.

2. What kind of user experience does the Bench-top Manifold Freeze Dryer support in labs?

Bench-top Manifold Freeze Dryer enhances lab workflow by simplifying sample tracking and providing real-time status updates via the touchscreen. Teams can schedule, monitor, and record runs without interruption, streamlining multi-user access. Its platform is designed for fast switching between tasks without reprogramming. Notifications alert users when conditions shift during critical stages of sublimation. ports simplify documentation transfer, supporting compliance in regulated labs. Its built-in security features help maintain controlled access to drying protocols. The design accommodates group use with ease. Researchers can rely on consistent results with minimal intervention.

3. How does the Bench-top Manifold Freeze Dryer assist with multi-sample drying applications?

The Bench-top Manifold Freeze Dryer allows simultaneous freeze-drying of multiple sample types using its manifold structure, which supports flasks and containers of various dimensions. This is particularly useful in pharmaceutical and biotechnology projects where different samples require identical environmental settings. Its design supports complex projects requiring concurrent processes without interfering with individual ports. Labs can reduce cycle time by loading several test runs in one session. Each port is isolated to prevent cross-contamination. Transition between sample types is supported without recalibration. The compact unit fits well in high-traffic spaces without reducing function.

4. Can the Bench-top Manifold Freeze Dryer operate without ultra-low temperature storage before drying?

Bench-top Manifold Freeze Dryer incorporates a cold trap system that supports pre-freezing, removing the need for separate ultra-low freezers before drying begins. This integration speeds up workflows and reduces equipment dependency. It enables immediate transition from raw material to the drying stage. The interface supports rapid setup through programmable parameters. The sample condition remains stable from start to finish. Research labs benefit from reduced handling steps, minimizing contamination risk. Built-in defrosting makes post-process cleanup faster. This is particularly valuable for mobile labs or field research facilities where space and time are limited.

5. What makes the Bench-top Manifold Freeze Dryer effective in academic research settings?

The Bench-top Manifold Freeze Dryer supports teaching labs by offering a clear operational display and simplified controls, allowing students to visualize each phase of freeze-drying without technical barriers. It’s ideal for demonstrating sublimation principles during chemistry or microbiology classes. Instructors can simulate real lab-scale production environments within academic timelines. system allows safe handling of volatile or delicate substances like or protein samples. Repeat runs maintain consistency without requiring daily recalibration. Shared access modes help avoid procedural conflicts between users. It’s suitable for project-based lab curricula and long-term experiments.

6. How does the Bench-top Manifold Freeze Dryer maintain purity across sensitive samples?

It Bench-top Manifold Freeze Dryer maintains chemical and biological purity by using non-reactive, corrosion-resistant internal components that avoid altering the nature of samples during drying. This is essential in molecular biology or pharmaceutical testing, where sample stability is critical. Each drying port operates independently, minimizing contamination risk between flasks. The vacuum system includes micro-adjustable valves for smooth pressure transitions. Top sealing reduces airborne exposure during cycles. Cleaning is easy due to smooth interior surfaces. The unit supports sterile operations in controlled lab environments. Trace residues do not accumulate after runs, making it suitable for regulated facilities.

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