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Dew point temperatures from -40°F (-40°C) or below to +50°F (+10°C)
Advancements in design allow membrane technology to efficiently dehydrate compressed air. Versatile, environmentally and user-friendly, membrane dryers are the ideal solution for low flow and point of use applications.
Membrane gas separation technology, used for years to generate nitrogen, is now widely used for compressed air drying. Operation is simple and reliable. Compressed air, saturated with water vapor, flows through a bundle of tube-shaped membranes (think of tiny drinking straws). Water vapor (and a fraction of the compressed air used to sweep the water vapor out of the dryer) passes through the membrane walls. Dry air then exits the tube bundle for use downstream. As long as the dried air isn't exposed to temperatures below the dew point temperature produced by the dryer, no troublesome liquid water will form in your air system.
Simplicity:
Options:
Model | Dimensions | |||
---|---|---|---|---|
Length | Width | |||
in. | mm. | in. | mm. | |
HMD20-2 | 26.4 | 671 | 2.5 | 63,5 |
HMD20-3 | 15.3 | 389 | 4.2 | 106,7 |
HMD20-4 | 26.9 | 683 | 4.2 | 106,7 |
HMD20-5 | 41.1 | 1.044 | 4.2 | 106,7 |
HMD20-6 | 41.1 | 1.044 | 5.3 | 134,6 |
HMD20-7 1 | 52 | 1.321 | 19.3 | 490 |
HMD20-8 1 | 52 | 1.321 | 12 | 305 |
HMD20-9 1 | 52 | 1.321 | 21.5 | 546 |
RHD016SS | 26.9 | 683 | 4.2 | 106,7 |
RHD026SS | 41 | 1.041 | 4.2 | 106,7 |
RHD052SS | 41.1 | 1.044 | 5.3 | 134,6 |
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