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140 SCFM Non-Cycling Refrigerated Air Dryers by Beko Technologies - RSHP140
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Model Number: RSHP140
Manufacturer: Beko Technologies
* Whole number only
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- Capacity SCFM: 140
- Electrical Power Supply: 115V or 230V
- Max. Pressure Drop pisg: 725
- Connection Size: 1 ” NPT-F
- Dryer Dimensions (in.) A x B x C: 33x20x25
REFRIGERATION DRYING WITH THE BEKO ADVANTAGE
A SYNERGY OF ENGINEERING
The BEKO product family of compressed air refrigeration dryers provides users with several advanced features creating a balanced and efficient drying system.
The unique Vario Flow technology of the hot gas bypass valve, utilizes a special, gas charged capsule that
operates independently of power or electronic support. Thus providing users with a 100% stable dew point, no
maintenance, and zero freeze-up.
The synergistic effect when combined with the standard BEKOMAT® results in a dryer that has a direct effect on
reducing energy consumption and displays maximum respect for the environment because nearly every
component can be recycled.
This not only adds to the stability and reliability of the dryer, but transforms one of the most inefficient pieces
of compressed air treatment equipment into an energy saving one.
+1: ALUMINUM HEAT EXCHANGER
Vertical profile allows for minimum pressure drop and self cleans using gravitational force
+2: STANDARD BEKOMAT DRAIN
Reliable condensate discharge and maximum energy savings
+3: VARIOFLOW HOT GAS BY-PASS
Stable dew point regardless of varying operating conditions - patented design
+4: LARGE CROSS SECTION OF FLOW CHANNELS.
Low velocities, reduced power input
+5: MAINTENANCE FRIENDLY
The compact design and open frame provides easy access to all components
DRY POINT® RS HP
DRY POINT® RS HP compressed air refrigeration dryers are designed specifically for high pressure applications. They are certified for operating pressures up to 725 psig. Among the technical highlights of this series are the specially developed plate heat exchangers made of stainless steel and a condensate separation system based on the demister principle.
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