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The Compact Low-Dew-Point Small Rotary Desiccant Dehumidifiers are professional industrial dehumidification equipment engineered for B-end users with medium and small air volume dehumidification demands in various industrial scenarios. Designed based on local climate conditions and customized according to process temperature and humidity requirements, this series adopts mature silica gel rotor dehumidifier technology to ensure stable airflow and year-round continuous operation—an ideal solution for small-space industrial environments that require precise humidity control. Its core component is the imported Swedish Proflute silica gel rotor, with a service life of up to 8 years, and it is equipped with low-temperature regeneration industrial dehumidifier technology, which balances high dehumidification efficiency and energy saving. Suitable for operating temperatures from -10℃ to 50℃, it can reduce environmental humidity to below 40% RH, fully meeting the strict humidity control needs of industries such as new energy, laboratories, and infrastructure.

Adopts high-quality silica gel adsorption technology with a Swedish Proflute silica gel rotor as the core, ensuring stable dehumidification performance and a lifespan of up to 8 years, reducing the later maintenance and replacement costs for B-end users.
It can effectively dehumidify in the temperature range of -10℃ to 50℃, adapting to complex outdoor and indoor industrial working conditions, and is not limited by regional climate differences.
Uses PTC ceramic electric heating low-temperature regeneration technology, which is more energy-efficient, safe and reliable than traditional heating methods, and effectively reduces the long-term operating power consumption of the equipment.
The casing is made of stainless steel or powder-coated material, which is corrosion-resistant, aesthetically pleasing and durable; the whole machine has an IP21 protection grade, which can cope with the basic dust and water splashing environment in industrial sites.
Parameter | ADM-E350 | ADM-E450 | ADM-E550 | ADM-E700 | ADM-E1000 | ADM-E1500 |
Dehumidification capacity (KG/H) | 1.1 | 2.1 | 2.6 | 4.3 | 6.1 | 9.1 |
Airflow rate (M³/H) | 350 | 450 | 550 | 700 | 1000 | 1500 |
Regeneration airflow rate (M³/H) | 120 | 150 | 180 | 240 | 340 | 500 |
Power supply (V-Hz) | 380V-50Hz | 380V-50Hz | 380V-50Hz | 380V-50Hz | 380V-50Hz | 380V-50Hz |
Maximum power (kW) | 1.1 | 2.2 | 2.7 | 4 | 5.7 | 8.6 |
Humidity control (%RH) | 10-90 | 10-90 | 10-90 | 10-90 | 10-90 | 10-90 |
Protection class | IP21 | IP21 | IP21 | IP21 | IP21 | IP21 |
Weight (KG) | 28 | 40 | 48 | 50 | 230 | 320 |
Dimensions (MM) | 440×290×520 | 660×480×365 | 770×525×410 | 810×525×410 | 840×690×1620 | 1200×940×1700 |
Check the integrity of all components (rotor, fan, heating module) and prepare standard 380V power supply accessories; confirm the installation site is flat and well-ventilated, with no obstacles around the air inlet and outlet.
The compact design supports one-person simple assembly: fix the machine on a flat surface with expansion screws, connect the air inlet/outlet according to the process requirements, and connect the 380V-50Hz power supply (must be grounded for safety).
Power on and test the operation, check whether the airflow and regeneration system work normally; verify the humidity control accuracy, and adjust the parameters according to the actual process needs; check the sealing of the air duct to avoid air leakage affecting dehumidification efficiency.
Ideal for bridge structure dehumidification, wind power dehumidification and basement storage, preventing equipment and structural parts from rust and corrosion caused by high humidity.
Applied in national defense and military industry, civil defense engineering and laboratory research, providing a stable low-humidity environment for precision equipment and experimental tests.
Core dehumidification equipment for lithium battery new energy, lithium battery materials and pharmaceutical industries, ensuring the production and storage quality of moisture-sensitive products.
Customize the model and airflow parameters according to the B-end user’s actual process temperature and humidity requirements, matching the dehumidification capacity to the on-site demand.
Support the replacement of regeneration heating methods, including electric heating, steam heating, thermal oil heating and high-temperature heat pump heating (separate design).
Choose between stainless steel and powder-coated casing according to the corrosivity of the on-site environment, improving the adaptability of the equipment.
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Bridge structures | wind-powered dehumidification | storage room |
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Laboratory research | defense industry | medical and pharmaceutical industries |
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