- Industrial machines and equipment >
- Furnace and Heat Treatments >
- High-temperature compressed air dryer
High-temperature compressed air dryers
{{#each product.specData:i}}
{{name}}: {{value}}
{{#i!=(product.specData.length-1)}}
{{/end}}
{{/each}}
{{{product.idpText}}}
{{#each product.specData:i}}
{{name}}: {{value}}
{{#i!=(product.specData.length-1)}}
{{/end}}
{{/each}}
{{{product.idpText}}}
Capacity: 8.5 m³/min - 85 m³/min
Working pressure: 20 bar - 45 bar
Motor power: 1 kW - 9.2 kW
... unit parts are insulated Integrated control cabinet with electronic controller Air/air and air/refrigerant stainless steel plate-type heat exchangers Internal compressed ...
Capacity: 20 m³/h - 125 m³/h
Working pressure: 0 psi - 250 psi
Motor power: 5 ch - 30 ch
Gardner Denver RHT Series High Inlet Temperature refrigerated dryers feature a unique design which works directly with reciprocating air compressors. A unique heat exchanger ...
Capacity: 10 m³/h - 20,000 m³/h
Working pressure: 1 bar - 350 bar
Compressed air dryer: Process safety is the deciding factor Moisture in the form of condensate in compressed air systems creates a permanent danger for operation processes. ...
Capacity: 35 m³/h - 170 m³/h
Working pressure: 16 bar
Motor power: 0.16 kW - 0.61 kW
High-temperature inlet air dryer (up to 82°C). This special dryers enclose an after cooler and a filter/ceramic separator. In this way we achieve remarkable ...
Capacity: 1,250 ft³/min - 3,000 ft³/min
Working pressure: 50 psi - 200 psi
Operating temperature: 41 °F - 131 °F
... Digital readout air in temperature • Digital readout ambient or water in temperature • High inlet temperature warning • High ambient ...
Capacity: 20 ft³/min - 145 ft³/min
Motor power: 5 ch - 30 ch
Operating temperature: 180 °F
Refrigerated dryer for small shop compressors Kaeser High Temperature Refrigerated Dryers (HTRD) are specifically designed for use with 5 - 25 hp piston compressors. ...
Capacity: 15 ft³/min - 100 ft³/min
Working pressure: 0 bar - 14 bar
Motor power: 0.21, 0.37, 0.48, 0.57, 0.71 kW
High Inlet Temperature Non-Cycling Refrigerated Dryers 0.42-3 m3/min, 15-100 cfm High inlet temperature non-cycling refrigerated dryers ...
Capacity: 31 m³/h - 212 m³/h
Working pressure: 0 bar - 16 bar
HIGH TEMPERATURE AIR DRYERS Most of the compressor manufacturers do not use aftercooler on their piston type compressors. Therefore, compressed air ...
Capacity: 0.52 m³/min - 3.53 m³/min
Working pressure: 16 bar
Weight: 62 kg - 97 kg
... not use an aftercooler in their designs. Therefore compressed air exits the compressor at about 100 oC temperature. Hertz high temperature dryers incorporate ...
... adsorption dryer. Standard technical parameters: 1. Air inlet temperature: 120-200℃ 2. Inlet pressure: 0.7-1.0Mpa 3. Air dew point: -40℃ 4. Air ...
Capacity: 10.8 m³/min - 100 m³/min
Working pressure: 7, 10 bar
Motor power: 3.15 kW - 15 kW
The high temperature and high humidity air from the air compressor will do heat exchanges and cooling dehumidification with cold air ...
Shanghai Success Engine Compressor Co.,Ltd
Capacity: 20 ft³/min - 125 ft³/min
Working pressure: 3 bar - 16 bar
Motor power: 0.69 kW - 1.97 kW
... reliable condensate drain - air operated - automatically discharges water and oil from dryer without air loss and no timer to adjust. Our automatic refrigeration temperature ...
Capacity: 20 ft³/min - 125 ft³/min
Working pressure: 250 psi
High Inlet Temp Refrigerated Air Dryers The CRH Series High Inlet Temperature refrigerated dryers feature a unique design which works ...
Capacity: 5.6 m³/min - 16.4 m³/min
Working pressure: 700,000 Pa
Motor power: 770 W - 2,980 W
・Applicable for the high-temperature environments Inlet air temperature : Max. 65℃ ・Increased air flow capacity
Your suggestions for improvement:
Receive updates on this section every two weeks.
Please refer to our Privacy Policy for details on how DirectIndustry processes your personal data.
- Brand list
- Manufacturer account
- Buyer account
- Our services
- Newsletter subscription
- About VirtualExpo Group
Please specify:
Help us improve:
remaining