Heatless Desiccant Air Dryers - NEXTGen TW Series | #TW0800-FB11NNF


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Heatless Desiccant Air Dryers - NEXTGen TW Series | #TW0800-FB11NNF

NEXTGen Twin Tower Heatless Desiccant Air Dryers remove contaminants in compressed air using Pressure Swing Adsorption technology. The dryers are sized to deliver a Pressure dewpoint of -40°F (-40°C) with flowrates from 55 - 3000 scfm.


Technical Specifications

  • Electrical Requirements: 120V/1Ph/60Hz
  • Maximum Flow Rate: 800 SCFM
  • Pressure Dew Point: -40°F
  • Connection Type: 2" NPT
  • Maximum Inlet Pressure Rating: 100 PSI
  • Maximum Operating Pressure: 150 PSIG
  • Minimum Operating Pressure: 80 PSIG
  • Maximum Operating Temperature: 120°F
  • Minimum Operating Temperature: 50°F
  • Maximum Ambient Temperature: 100°F
  • Minimum Ambient Temperature: 40°F
  • Purge Air Equivalent: 120
  • Weight: 2120 lbs
  • Width: 56 in
  • Depth: 60 in
  • Height: 89 in
  • Compatible Prefilter: AAPX050INFX
  • Compatible After Filter: AOPX050INMX
  • Compatible Prefilter Element: P050AA
  • Compatible After Filter Element: P050AO
  • Installed Condensate Drain Type: Float Drain
  • Current: 2.0 A
Safety Warning

Item Information

Parker NEXTGen TW Series Heatless Desiccant Air Dryers remove water vapor from compressed air through a process known as Pressure Swing Adsorption. A standard pressure dewpoint of -40°F (-40°C) is attained by directing the flow of saturated compressed air over a bed of desiccant.

The most commonly used desiccant is activated alumina, a spherical shaped, hygroscopic material, selected for its consistent size, shape and extreme surface to mass ratio. This physically tough and chemically inert material is contained in two separate but identical pressure vessels commonly referred to as "dual" or "twin" towers.

As the saturated compressed air flows up through the "on line" tower, its moisture content adheres to the surface of the desiccant. The dry compressed air is then discharged from the chamber into the distribution system.

A solid state controller automatically cycles the flow of compressed air between the towers, while the "on line" is drying, the "off line" tower is regenerating. Regeneration, sometimes referred to as purging, is the process by which moisture accumulated during the "on line" cycle is stripped away during the "off line" cycle. As dry low pressure purge air flows gently through the regenerating bed, it attracts the moisture that had accumulated on the surface of the desiccant during the dryer cycle and exhausts it to the atmosphere.

To protect the desiccant bed from excess liquid, all Parker NEXTGen TW Series Heatless Air Dryers are designed to work with the natural pull of gravity. By directing the saturated air into the bottom of the "on line" tower and flowing up through the bed, liquid condensate caused by system upset, is kept away from the desiccant and remains at the bottom of the tower where it can be easily exhausted during the regeneration cycle. Counter flow purging ensures optimum performance by keeping the driest desiccant at the discharge end of the dryer.

Heatless dryers in general are the most reliable and least expensive of all desiccant type dryers. Parker NEXTGen TW Series Heatless Desiccant Air Dryers are the most energy efficient thanks to standard features like, "Variable Cycle Control", "CycleLoc" and regulating of the purge flow.

Features / Benefits

Basic & Basic Plus Controller
Allen-Bradley® PLC
NEMA 12, 4X SS, or 7 Enclosures
LCD User Interface
4 Line Digital Display
-Tower Regeneration Status
-Time remaining in Cycle
-Dewpoint (Basic Plus Only)
Powerloc Energy Management (Basic Plus Only)
Adjustable Timing Cycles
Filter Maintenance Timer
Manual Stepping
Compressor Lock
Cycle Lock
Alarms (Basic Plus Only)
-High Dewpoint
-Bad Blowdown
-Bad Repressurization

Advanced Controller
Allen-Bradley® PLC
NEMA 12, 4X SS, or 7 Enclosures
LCD Touch Panel Display
-Dewpoint
-Inlet Temperature
-Inlet & Outlet Pressures
-Left & Right Tank Pressures
- Pre & After Filter Differential Pressure
Powerloc Energy Management
Adjustable Timing Cycles
Filter Maintenance Timer
Manual Stepping
PLC Controlled Timed Solenoid Drain
Modbus TCP / Ethernet Standard
Modbus RTU RS485 - Optional
Iot Gateway Included - Voice of the Machine Enabled
Alarms
-Failure to switch
-High Inlet Temp
-High Dewpoint
-Low Inlet Pressure
-Bad Blowdown
-Bad Repressurization
-Drain Fault

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Where to Buy

Local Contact

South Africa Headoffice

Parker Hannifin (Africa) Pty LTD

Sales Company South Africa

10 Berne Avenue

Aeroport

Kempton Park

Gauteng

South Africa

1620

Phone

0027 11 961 0700

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