Blauberg EKH 70x40-27
- Description
- Characteristics
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- Designation key
- Dimensions
- Additional characteristics
FEATURES
For warming up of supply air in heating, ventilation and air conditioning systems installed in various premises. Compatible with 400×200 up to 1000×500 mm rectangular air ducts. DESIGNGalvanized steel case and junction box. Heating elements are made of stainless steel and have additional ribbing to increase heat exchange surface. Several power options for each standard size. For higher heating capacity several heaters may be installed in series. Equipped with overheat protection thermostats:
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MOUNTING
Fixing to rectangular ducts with flange connection. Any mounting position except for the junction box downwards to prevent condensate leakage and short circuit. Install a filter upstream to the heater to protect heating elements against dirt ingress. Recommended distance between the heater and other system components must be not less than one air heater diagonal for air flow stabilization. Duct heaters are rated for minimum air flow speed 1.5 m/s and maximum operating air temperature supplied to the units 40 °C. In case of speed regulation with a speed controller the minimum air speed through the heater must be provided. For correct and safe heater operation an automatic control and protection system is recommended, including the following functions:
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Parameter | EKH 70x40-27 | Measurement unit |
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Voltage | 400 | V |
Current | 39.0 | A |
Power | 27000 | W |
Min. air flow | 1980 | m³/h |
Min. air flow | 550 | l/s |
Number of heating coils x capacity | 9x3000 | W |
Weight | 18.5 | kg |
Casing material | galvanized steel | - |
Air duct | for rectangular air ducts | - |
Series | Flange size (WxH) [cm] | Heater power [kW] | |
EKH | 40x20; 50x25; 50x30; 60x30; 60x35; 70x40; 80x50; 90x50; 100x50 | — | 4.5; 6; 7.5; 9; 10.5; 12; 15; 18; 21; 24; 27; 36; 45; 54 |
Model | Overall dimensions [mm] | ||||||
B | B1 | B2 | H | H1 | H2 | L | |
EKH 70x40-27 | 700 | 720 | 840 | 400 | 420 | 440 | 510 |
CAPACITY DIAGRAM |
AIR TEMPERATURE INCREASE AS A FUNCTION OF AIR FLOW |