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Top Press Manifold Freeze Dryer LMTMD-A102

Top Press Manifold Freeze Dryer LMTMD-A102 comes with 0.09 mdrying area. It features multiple material trays and shelves for accommodating different sample quantities and formats. Equipped with fine micro-adjustable vacuum valve ensuring consistent and controlled vacuum regulation. Incorporates smooth-rolling casters and front ventilation window for mobility and cooling efficiency. Our Top Press Manifold Dryer is ideal for drying heat-sensitive materials.

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Specifications

Drying Area 0.09 m²
Condenser Temperature -60℃
Ice Capacity Per Batch 6 Kg
Pumping Speed 4 L/S
Number Of Material Tray 3
System Vacuum Degree 0.1Pa
Standard Vacuum Degree Less than or equal to 5 Pa
Eggplant Shaped Flask 100ml×2, 150ml×2, 250ml×2, 500ml×2
Vial Loading Capacity Vial ɸ 12mm: 630 pieces, Vial ɸ 16mm: 358 pieces, Vial ɸ 22mm: 180 pieces
Noise Less than or equal to 55dB
Ambient Temperature Less than or equal to 35°C
Disc Spacing 100mm
Power Consumption 1100W
Power Supply AC220V 50HZ or 110V/60HZ
Tray Diameter 200 mm
Dimension 560×560 980 mm
Packaging Dimension 630×670×1500 mm
Net Weight 88 Kg
Gross Weight 150 Kg

Pricing

Product Price Unit Action
Top Press Manifold Freeze Dryer LMTMD-A102 $ 7175 Each of 1

Features

Touch screen interface

Data viewing option

USB export support

Maintenance alert function

Transparent vacuum hood

Acrylic flange structure

Air exhaust outlet

Applications

Top Press Manifold Freeze Dryer LMTMD-A102 is employed for drying heat-sensitive materials in biological research, pharmaceuticals, chemical processing, food preservation, and academic labs.

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Top Press Manifold Freeze Dryer LMTMD-A103
  • Condenser Temperature: -60 °C
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Top Press Manifold Freeze Dryer LMTMD-A101

  • Drying Area: 0.08 m²
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Frequently Asked Questions

1 What is a Top Press Manifold Freeze Dryer?

A Top Press Manifold Freeze Dryer is an apparatus that uses a manifold system to evenly freeze-dry materials by applying controlled pressure and temperature.

2 How does Top Press Manifold Freeze Dryer work?

It operates by freezing the material, then using a vacuum and controlled heat via the manifold to gradually remove moisture through sublimation, preserving the structure of product.

3 What kind of maintenance is required by Top Press Manifold Freeze Dryer?

Regular maintenance includes cleaning of manifold, checking vacuum pumps, and ensuring proper temperature and pressure control.

4 Can Top Press Manifold Freeze Dryer be used to preserve food?

It is ideal for preserving food, as it removes moisture while maintaining the nutritional content, flavor, and texture of food.

5 Is Top Press Manifold Freeze Dryer suitable for pharmaceutical applications?

It is widely used in the pharmaceutical industry to preserve sensitive compounds like vaccines, proteins, and other biologics by maintaining their stability.

6 Can Top Press Manifold Freeze Dryer be used for drying biological samples?

It is commonly used for drying biological samples, including tissues, enzymes, and cultures, preserving their structure and integrity for further study or use.

7 Can Top Press Manifold Freeze Dryer be used for research and development?

It is commonly used in research and development settings to test the effects of freeze-drying on different materials, ensuring consistent and reproducible results.

8 How does a Top Press Manifold Freeze Dryer benefit the biotech industry?

It benefits the biotech industry by preserving the integrity of sensitive biological materials, such as antibodies, enzymes, and vaccines, through a controlled freeze-drying process that ensures stability and long shelf life.

9 Can Top Press Manifold Freeze Dryer be used in the preservation of botanical extracts?

It is commonly used for preserving botanical extracts, as it helps maintain the potency and therapeutic properties of the plant compounds by drying them without using heat.

10 How does Top Press Manifold Freeze Dryer help in preserving microbial fermentation products?

It helps preserve microbial fermentation products by gently removing moisture without affecting their microbial viability or biochemical properties.