Protection Class: IPX4 (safe for light rain conditions)
Control: Mechanical thermostat
Safety: Flame sensor, automatic shut-off when fuel runs out
Material: Stainless steel combustion chamber
Dimensions:
Width: 32 cm
Depth: 77 cm
Height: 42 cm
Weight: 14 kg
Applications:
Ideal for heating large workshops, warehouses, construction sites, and similar spaces. Note: This model does not have wheels, so it must be carried manually.
Construction dehumidifier 950 W 90-161 from the professional brand NEO is a device designed for construction and industrial activities, where difficult conditions prevail and visible quick results are required. The 950 W (max 1300 W) dehumidifier with a volume of 58 dB is characterised by moisture removal of 70 litres per day (30℃ and 80% relative humidity). It handles an airflow of 400 m³/h, has an easy-to-clean filter and R290 refrigerant. It features a practical automatic defrost function and continuous drainage (water drainage through a rubber tube). It allows programming of up to 24 hours on the LCD monitor. Equipped with convenient wheels and handle for easy transportation. Dehumidifies surfaces up to 250 m2. It works in temperatures from minimum 5 to maximum 35 degrees Celsius. The construction dehumidifier is recommended for removing water from basements, utility rooms or construction sites. It prevents the development of mould and mildew and removes the effects of flooding. The unit weighs 40 kg with dimensions of 545 x 460 x 870 mm. For professional use.
Construction dehumidifier 1000 W 90-162 from the professional brand NEO is a device designed for construction and industrial activities, where difficult conditions prevail and visible quick results are required. The dehumidifier with a power of 1000 W (max 1350 W) and a volume of 60 dB is characterised by the removal of 90 litres of moisture per day (30℃ and 80% relative humidity). It handles an air flow of 500 m³/h, has an easy-to-clean filter and R290 refrigerant. It features a practical automatic defrost function and continuous drainage (water drainage through a rubber tube). It allows programming of up to 24 hours on the LCD monitor. Equipped with convenient wheels and handle for easy transportation. Dehumidifies surfaces up to 310 m2. It works at temperatures from minimum 5 to maximum 35 degrees Celsius. The construction dehumidifier is recommended for removing water from basements, utility rooms or construction sites. It prevents the development of mould and mildew and removes the effects of flooding. The unit weighs 48 kg with dimensions of 480 x 405 x 910 mm. For professional use.
Construction dehumidifier 750 W 90-160 from the professional brand NEO is a device designed for construction and industrial activities, where difficult conditions prevail and visible quick results are required. The dehumidifier with a power of 750 W (max 900 W) and a volume of 56 dB has a moisture removal capacity of 50 litres per day (30℃ and 80% relative humidity). It handles an airflow of 300 m³/h, has an easy-to-clean filter and R290 refrigerant. The dehumidifier has a built-in 7l water tank. It features a practical automatic defrost function and continuous drainage (water drainage through a rubber tube). It allows programming of up to 24 hours on the LCD monitor. Equipped with convenient wheels and handle for easy transport. Dehumidifies surfaces up to 180 m2. It works in temperatures from minimum 5 to maximum 35 degrees Celsius. The construction dehumidifier is recommended for removing water from basements, utility rooms or construction sites. It prevents the development of mould and mildew and removes the effects of flooding. The unit weighs 30 kg with dimensions of 480 x 450 x 655 mm. For professional use.
The 90-069 electric heater is a portable heat source designed to heat rooms such as workshops, garages, households, and shops. The heating element of the device is made of stainless steel, which provides protection against overheating. The IPX4 water resistance class allows the device to be used in damp and wet connections. The heater has an insulated plastic handle for easy portability. Powder coated metal housing protects the device against rust. The heater is characterized by high efficiency with a small footprint. Characteristic features: power 5kW; heating element: stainless steel; adjustable thermostat; adjustable angle of setting; protection against overheating; fan; full metal housing; strong and durable structure; insulated, safe handle; portable, free-standing.
Integrated DRYPOINT M Plus solution: filtration and dryer in a compact form, as well as condensate drain integrated
Filtration on the spot in the treatment chain where the highest efficiency is achieved
Easy maintenance / replacement of filter element as with a filter
Application-specific degree of dryness can be selected
Consistent compressed air quality under fluctuating operating conditions
Energy saving through minimization of purging air consumption for actual amount of useful air and degree of drying
Power evaluation via LED, forwarding via current output 4 … 20 mA possible
User-friendly: Easy to use, test functions, error messages
Concept based on the fail-safe principle, error message can be picked up via potential-free contact
Functionality of the DRYPOINT® M eco control
Based on the measurement result from the sensor, the control software decides in defined cycles whether and how long the full amount of purge air has to be provided to achieve and stabilize the required degree of dryness. This process is implemented by means of a targeted clocking of a solenoid valve. In each cycle, the duration of the two process sections described below varies in order to keep the degree of drying within the specified tolerance range.
Drying by partial vapor pressure compensation of water vapor by diffusion in combination with a highly selective membrane
No change in the compressed air composition - can be used for breathing air treatment
Efficient
Reaches the required pressure dew point with low energy consumption
Very fast availability of dried compressed air
Filtration and drying compact in one device
Robust
Housing made of seawater-resistant aluminum
Low-maintenance, currentless technology
System-compatible
Modularly combinable with CLEARPOINT Filter program
Can be used anywhere along the compressed air treatment chain - can also be integrated into system technology
The ultimate membrane dryer technology with integrated nanofilter
Filtration and drying in one housing (simple filter element change)
Low purge air requirement (Twist 60 technology)
Availability of dried compressed air immediately without running-in phase
Safe drying due to the high partial vapor pressure gradient
No change in the compressed air temperature and composition
Proven 100,000 times
Maintenance-free (except filter element change)
For diverse applications, including for breathing air treatment
Also ideal for use directly behind the compressor / aftercooler
Optionally also for higher loads (assembly potting, 16 bar, 70°C)
For a reliable function of the DRYPOINT M membrane dryer must meet the following requirements:
The incoming compressed air must not contain any liquid condensate
Particles larger than 1 μm must be separated before the membrane dryer
The oil content of the compressed air must not exceed 0.01 mg/m³.
DRYPOINT M membrane dryers have been an alternative to existing ones for years Compressed air drying process proven.
Advantages DRYPOINT M PLUS
Proven process of highest reliability and functional safety
Immediate availability of dry compressed air, even when working discontinuously
Low purge air requirement, compressed air drying can be adjusted to the application
Compact and robust, small space requirement due to low overall height
Compressed air inlet and outlet on one level (filter version), easy to combine with CLEARPOINT filters
Maintenance and wear-free as there are no moving parts
No reduction in the oxygen content, therefore also suitable for breathing air treatment
No electrical connection, also suitable for Ex areas
Long service life in case of use of CLEARPOINT filters
Environmentally friendly, does not require CFCs / CFC-containing refrigerants or adsorbents
Complete solution: filtration and dryer in a compact form, integration of drain pipe
Filtration at the point in the treatment chain where the highest efficiency is achieved
Easy maintenance / replacement of filter element as with a regular filter
Filter element: N (nanofilter)
The CLEARPOINT filter element type N is used to separate solid particles down to 0.01 micron, water and oil aerosols . The element has a multi-stage structure for efficient and long-lasting filtering. In the first stage, coarse particles are retained by a pre-filter layer. In the second stage, finer particles are absorbed by a depth filter bed made of high-performance borosilicate fiber fabric. Due to the very large cavity volume of the filter medium (96%), a very high dirt holding capacity is achieved. The filter medium is specially impregnated in order to avoid cross-sectional swelling of the individual fibers.
Trap: Float trap
The basic version includes a float drain.
Size 10 - 40
This size is for the demand-oriented compressed air drying of medium volume flows configured. Different levels of drying of the compressed air are achieved through different purge air settings.
Drying by partial vapor pressure compensation of water vapor by diffusion in combination with a highly selective membrane
No change in the compressed air composition - can be used for breathing air treatment
Efficient
Reaches the required pressure dew point with low energy consumption
Very fast availability of dried compressed air
Filtration and drying compact in one device
Robust
Housing made of seawater-resistant aluminum
Low-maintenance, currentless technology
System-compatible
Modularly combinable with CLEARPOINT Filter program
Can be used anywhere along the compressed air treatment chain - can also be integrated into system technology
The ultimate membrane dryer technology with integrated nanofilter
Filtration and drying in one housing (simple filter element change)
Low purge air requirement (Twist 60 technology)
Availability of dried compressed air immediately without running-in phase
Safe drying due to the high partial vapor pressure gradient
No change in the compressed air temperature and composition
Proven 100,000 times
Maintenance-free (except filter element change)
For diverse applications, including for breathing air treatment
Also ideal for use directly behind the compressor / aftercooler
Optionally also for higher loads (assembly potting, 16 bar, 70°C)
For a reliable function of the DRYPOINT M membrane dryer must meet the following requirements:
The incoming compressed air must not contain any liquid condensate
Particles larger than 1 μm must be separated before the membrane dryer
The oil content of the compressed air must not exceed 0.01 mg/m³.
DRYPOINT M membrane dryers have been an alternative to existing ones for years Compressed air drying process proven.
Advantages DRYPOINT M PLUS
Proven process of highest reliability and functional safety
Immediate availability of dry compressed air, even when working discontinuously
Low purge air requirement, compressed air drying can be adjusted to the application
Compact and robust, small space requirement due to low overall height
Compressed air inlet and outlet on one level (filter version), easy to combine with CLEARPOINT filters
Maintenance and wear-free as there are no moving parts
No reduction in the oxygen content, therefore also suitable for breathing air treatment
No electrical connection, also suitable for Ex areas
Long service life in case of use of CLEARPOINT filters
Environmentally friendly, does not require CFCs / CFC-containing refrigerants or adsorbents
Complete solution: filtration and dryer in a compact form, integration of drain pipe
Filtration at the point in the treatment chain where the highest efficiency is achieved
Easy maintenance / replacement of filter element as with a regular filter
Filter element: N (nanofilter)
The CLEARPOINT filter element type N is used to separate solid particles down to 0.01 micron, water and oil aerosols . The element has a multi-stage structure for efficient and long-lasting filtering. In the first stage, coarse particles are retained by a pre-filter layer. In the second stage, finer particles are absorbed by a depth filter bed made of high-performance borosilicate fiber fabric. Due to the very large cavity volume of the filter medium (96%), a very high dirt holding capacity is achieved. The filter medium is specially impregnated in order to avoid cross-sectional swelling of the individual fibers.
Trap: Float trap
The basic version includes a float drain.
Size 10 - 40
This size is for the demand-oriented compressed air drying of medium volume flows configured. Different levels of drying of the compressed air are achieved through different purge air settings.
Higher efficiency - lower costs The innovative and highly efficient ASDB series uses a patented 3-circuit heat exchanger system. In combination with the glycol cycle, a significant energy saving is achieved. The glycol mass acts like a cold-storing medium. The ASD dryers are particularly suitable for partial load operation and for irregular compressed air requirements. By using the ASD dryers, you can noticeably save operating costs. Operation and advantages of the glycol cycle The water-glycol mixture is cooled when not all the cooling energy is needed to cool the compressed air. When the refrigeration compressor shuts off during partial load operation, the compressed air is cooled down by the cold stored in the glycol mass. Only when the mass is no longer cool enough, the refrigerant compressor turns on again. Therefore, the ASD dryers show their potential for savings, especially during partial load operation and irregular compressed air requirements. When the air compressor starts again after a pause and releases compressed air into the piping system, the ASD dryers immediately cool this compressed air to dew point because the glycol mass immediately provides the temperature required. Many other systems, in which the refrigeration compressor can cool down to operating temperature only after a start-up period, allow humid air to flow into the supply network during this time, with all the adverse effects. The advantages at a glance
Improved energy efficiency thanks to patented 3-circuit heat exchanger system
Energy saving and longer service life by switching off the refrigeration compressor in partial load operation
Optimal dew point control with additional temperature sensor for the glycol control
Condensate drainage without pressure loss through integrated electronic, level-regulated condensate separator
Optimum performance under all load and ambient conditions thanks to variable fan speed control
By using quality components longevity and reduction of service costs
Operating cost reduction with active environmental protection
The operation of the patented 3-circuit heat exchanger system
Warm saturated with compressed air compressed air flows into the heat exchanger.
Pre-cooling of the inlet air is caused by the countercurrent cold outlet air in the heat exchanger.
Input air is brought to dew point temperature by the refrigerant circuit, causing condensate.
Condensate is collected and removed in the integrated electronic, level-regulated condensate separator.
Glycol circulation stores excess energy and cools the intake air at partial load.
The refrigeration compressor switches off at partial load, which can double its service life. (Explanation in product description series ASD under " Function and advantages of the glycol cycle " )
Manufacturer Aircraft Kompressorenbau und Maschinenhandel GmbH Gewerbestraße Ost 6, 4921 Hohenzell, Austria info@aircraft.at
Integrated DRYPOINT M Plus solution: filtration and dryer in a compact form, as well as condensate drain integrated
Filtration on the spot in the treatment chain where the highest efficiency is achieved
Easy maintenance / replacement of filter element as with a filter
Application-specific degree of dryness can be selected
Consistent compressed air quality under fluctuating operating conditions
Energy saving through minimization of purging air consumption for actual amount of useful air and degree of drying
Power evaluation via LED, forwarding via current output 4 … 20 mA possible
User-friendly: Easy to use, test functions, error messages
Concept based on the fail-safe principle, error message can be picked up via potential-free contact
Functionality of the DRYPOINT® M eco control
Based on the measurement result from the sensor, the control software decides in defined cycles whether and how long the full amount of purge air has to be provided to achieve and stabilize the required degree of dryness. This process is implemented by means of a targeted clocking of a solenoid valve. In each cycle, the duration of the two process sections described below varies in order to keep the degree of drying within the specified tolerance range.
Drying by partial vapor pressure compensation of water vapor by diffusion in combination with a highly selective membrane
No change in the compressed air composition - can be used for breathing air treatment
Efficient
Reaches the required pressure dew point with low energy consumption
Very fast availability of dried compressed air
Filtration and drying compact in one device
Robust
Housing made of seawater-resistant aluminum
Low-maintenance, currentless technology
System-compatible
Modularly combinable with CLEARPOINT Filter program
Can be used anywhere along the compressed air treatment chain - can also be integrated into system technology
The ultimate membrane dryer technology with integrated nanofilter
Filtration and drying in one housing (simple filter element change)
Low purge air requirement (Twist 60 technology)
Availability of dried compressed air immediately without running-in phase
Safe drying due to the high partial vapor pressure gradient
No change in the compressed air temperature and composition
Proven 100,000 times
Maintenance-free (except filter element change)
For diverse applications, including for breathing air treatment
Also ideal for use directly behind the compressor / aftercooler
Optionally also for higher loads (assembly potting, 16 bar, 70°C)
For a reliable function of the DRYPOINT M membrane dryer must meet the following requirements:
The incoming compressed air must not contain any liquid condensate
Particles larger than 1 μm must be separated before the membrane dryer
The oil content of the compressed air must not exceed 0.01 mg/m³.
DRYPOINT M membrane dryers have been an alternative to existing ones for years Compressed air drying process proven.
Advantages DRYPOINT M PLUS
Proven process of highest reliability and functional safety
Immediate availability of dry compressed air, even when working discontinuously
Low purge air requirement, compressed air drying can be adjusted to the application
Compact and robust, small space requirement due to low overall height
Compressed air inlet and outlet on one level (filter version), easy to combine with CLEARPOINT filters
Maintenance and wear-free as there are no moving parts
No reduction in the oxygen content, therefore also suitable for breathing air treatment
No electrical connection, also suitable for Ex areas
Long service life in case of use of CLEARPOINT filters
Environmentally friendly, does not require CFCs / CFC-containing refrigerants or adsorbents
Complete solution: filtration and dryer in a compact form, integration of drain pipe
Filtration at the point in the treatment chain where the highest efficiency is achieved
Easy maintenance / replacement of filter element as with a regular filter
Filter element: N (nanofilter)
The CLEARPOINT filter element type N is used to separate solid particles down to 0.01 micron, water and oil aerosols . The element has a multi-stage structure for efficient and long-lasting filtering. In the first stage, coarse particles are retained by a pre-filter layer. In the second stage, finer particles are absorbed by a depth filter bed made of high-performance borosilicate fiber fabric. Due to the very large cavity volume of the filter medium (96%), a very high dirt holding capacity is achieved. The filter medium is specially impregnated in order to avoid cross-sectional swelling of the individual fibers.
Trap: Float trap
The basic version includes a float drain.
Size 10 - 40
This size is for the demand-oriented compressed air drying of medium volume flows configured. Different levels of drying of the compressed air are achieved through different purge air settings.
Higher efficiency - lower costs The innovative and highly efficient ASDB series uses a patented 3-circuit heat exchanger system. In combination with the glycol cycle, a significant energy saving is achieved. The glycol mass acts like a cold-storing medium. The ASD dryers are particularly suitable for partial load operation and for irregular compressed air requirements. By using the ASD dryers, you can noticeably save operating costs. Operation and advantages of the glycol cycle The water-glycol mixture is cooled when not all the cooling energy is needed to cool the compressed air. When the refrigeration compressor shuts off during partial load operation, the compressed air is cooled down by the cold stored in the glycol mass. Only when the mass is no longer cool enough, the refrigerant compressor turns on again. Therefore, the ASD dryers show their potential for savings, especially during partial load operation and irregular compressed air requirements. When the air compressor starts again after a pause and releases compressed air into the piping system, the ASD dryers immediately cool this compressed air to dew point because the glycol mass immediately provides the temperature required. Many other systems, in which the refrigeration compressor can cool down to operating temperature only after a start-up period, allow humid air to flow into the supply network during this time, with all the adverse effects. The advantages at a glance
Improved energy efficiency thanks to patented 3-circuit heat exchanger system
Energy saving and longer service life by switching off the refrigeration compressor in partial load operation
Optimal dew point control with additional temperature sensor for the glycol control
Condensate drainage without pressure loss through integrated electronic, level-regulated condensate separator
Optimum performance under all load and ambient conditions thanks to variable fan speed control
By using quality components longevity and reduction of service costs
Operating cost reduction with active environmental protection
The operation of the patented 3-circuit heat exchanger system
Warm saturated with compressed air compressed air flows into the heat exchanger.
Pre-cooling of the inlet air is caused by the countercurrent cold outlet air in the heat exchanger.
Input air is brought to dew point temperature by the refrigerant circuit, causing condensate.
Condensate is collected and removed in the integrated electronic, level-regulated condensate separator.
Glycol circulation stores excess energy and cools the intake air at partial load.
The refrigeration compressor switches off at partial load, which can double its service life. (Explanation in product description series ASD under " Function and advantages of the glycol cycle " )
Manufacturer Aircraft Kompressorenbau und Maschinenhandel GmbH Gewerbestraße Ost 6, 4921 Hohenzell, Austria info@aircraft.at