圧縮空気用冷凍式ドライヤーCORMAK
Izberg N30S
圧縮空気用冷凍式ドライヤー
CORMAK
Izberg N30S
固定価格 消費税別
€1,009
製造年
2026
状態
新しい
所在地
Siedlce 

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地図を表示
機械に関するデータ
価格と所在地
固定価格 消費税別
€1,009
- 所在地:
- Brzeska 120, 08-110 Siedlce, Polska

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オファーの詳細
- 広告ID:
- A11000909
- 更新:
- 最終更新日:18.02.2026
説明
The purpose of a compressed air refrigerant dryer is to lower the temperature of the compressed air and remove water and oil particles contained in the air flow. Refrigerant dryers are important in applications where moist air could cause corrosion, contamination or damage to tools, machinery or products. By removing moisture, the dryer increases the reliability and durability of compressed air systems.
The refrigerant dryer is designed for maximum efficiency and durability. The main design elements include:
1. Air-to-air heat exchanger
In the first stage of the process, the inlet air passes through a heat exchanger, where it is pre-cooled by the cooler air leaving the evaporator. By using countercurrent flow, heat recovery increases the energy efficiency of the entire system.
2. Refrigeration system evaporator
In the second stage, the compressed air is fed to the evaporator, where it is cooled to a dew point temperature of 3°C. This results in the condensation of water vapor and oil particles contained in it. 3. Condensate separator
After cooling, the gas and condensate mixture goes to an efficient separator, where the condensate is separated and automatically drained outside the device.
4. Fan control system
The variable speed fan technology allows intelligent adjustment of the cooling intensity to the actual demand, which reduces energy consumption and increases the service life of the components.
Technical parameters
Inlet/outlet pipe diameter (BSP) 1 1/2"
Hjdpfx Agjmt Dcqowsi
Maximum operating pressure 10 bar
Maximum inlet air temperature ≤ 38°C
Dew point temperature 3°C
Efficiency 3800 l/min
Power 0.9 kW
Supply voltage 230 V
Dimensions (L x W x H) 850 x 480 x 480 mm
Weight 59 kg
Type and amount of refrigerant R410a, 650 g
The refrigerant dryer is designed for maximum efficiency and durability. The main design elements include:
1. Air-to-air heat exchanger
In the first stage of the process, the inlet air passes through a heat exchanger, where it is pre-cooled by the cooler air leaving the evaporator. By using countercurrent flow, heat recovery increases the energy efficiency of the entire system.
2. Refrigeration system evaporator
In the second stage, the compressed air is fed to the evaporator, where it is cooled to a dew point temperature of 3°C. This results in the condensation of water vapor and oil particles contained in it. 3. Condensate separator
After cooling, the gas and condensate mixture goes to an efficient separator, where the condensate is separated and automatically drained outside the device.
4. Fan control system
The variable speed fan technology allows intelligent adjustment of the cooling intensity to the actual demand, which reduces energy consumption and increases the service life of the components.
Technical parameters
Inlet/outlet pipe diameter (BSP) 1 1/2"
Hjdpfx Agjmt Dcqowsi
Maximum operating pressure 10 bar
Maximum inlet air temperature ≤ 38°C
Dew point temperature 3°C
Efficiency 3800 l/min
Power 0.9 kW
Supply voltage 230 V
Dimensions (L x W x H) 850 x 480 x 480 mm
Weight 59 kg
Type and amount of refrigerant R410a, 650 g
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