Dry Room Configuration
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Dry Room Configuration

Dupine provides a stable environment based on strict quality standards and extensive experience.

Dry Room Components

System
Design

Panel & Duct Installation

Piping Installation

Electrical Installation

Automatic Control

Flooring Installation

System Design

Panel & Duct Installation

Piping Installation

Electrical Installation

Automatic Control

Flooring Installation

Design Considerations

Airtightness

In practice, the capacity of a dry room dehumidification system is determined based on the assumption that the room is completely airtight. Therefore, any air leakage from the room, equipment, or ductwork will directly affect the room's dew point temperature. For this reason, airtightness must be verified at every stage of construction, and both the manufacturing and installation methods should prioritize maintaining airtightness.

Static Electricity Control

Because a dry room maintains a low-dew-point environment, measures must be taken to prevent static electricity from causing safety accidents or affecting production equipment. Conductive epoxy flooring or conductive tiles are commonly installed to dissipate static electricity.

Energy Savings

There are several methods for producing the dry air supplied to a dry room, but a rotor-type dehumidification system is the most economical option for dehumidifying large volumes of air to a low dew point. However, energy consumption varies depending on the overall airflow design, automatic control, air distribution, and desiccant regeneration method. Therefore, the system should be selected only after thorough review.

Safety Measures and Emergency Planning

Because a dry room is an enclosed structure, measures must be prepared for fire, explosion, and other emergencies. It is also important to plan in advance for changes in room humidity that may occur if the dehumidifier fails.

Applications

Electrical & Electronics Manufacturing Process (Secondary Batteries)

Creates a low-humidity environment to improve quality and reduce defects, supporting manufacturing processes in precision industries such as electronics, aerospace equipment, rockets, lithium cobaltate, cathode and anode materials, battery materials, chemicals, and pharmaceuticals.

Research Laboratory

Creates controlled temperature and humidity environments for laboratories and research facilities that require constant temperature and humidity throughout the year or conditions similar to those of a specific season or period.

Chemical Industry

Essential for preventing explosions caused by moisture-reactive chemicals, thereby creating safer production and research facilities.

Pharmaceutical Manufacturing Process

Low-humidity conditions tailored to different pharmaceutical products and processes are required for the manufacture of tablets, powders, capsules, and other products that are sensitive to ambient temperature and humidity.

Hospitals & Medical Facilities

Suppresses the growth of airborne microorganisms and bacteria and maintains air cleanliness to create a hygienic healthcare environment.

Warehouse

Maintains appropriate humidity conditions for long-term storage to prevent mold growth and condensation, making it suitable for facilities that store or display pharmaceuticals, precision machinery, grains, furs, artworks, and crafts.

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