MK137-2DK.20.NK – 120499H

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Product specification – Technical data
Article number 120499H
Product category ZAondemand
Type MK137-2DK.20.NK
Rated values
3~230/400V Δ/Y 50Hz P(1) 3.00kW
9.30/ 5.30A 2800/min COSY 0,85 –
not voltage-controllable-
Electrical connection Terminal box K08
Heat Class Thermal class 155
Mounting Type Terminal Box fixed on Motor
Connection Diagram 1360-106X
Installation Position
Fitting Position Mot Mounting position H/Vu/Vo
Motor Protection thermal contact
Type Of Protection IP54
Impregnation Moisture and hot climate protection
Bearing Quality ball bearing with long-time lubrication
Painting Motor Motor 1 coat paint
Colour Motor 2T58036999 RAL 7032 (pebble grey)
Min. Operating Temperature °C -40°C
Disclaimer Ct20/Doe
Selected product is not governed by U.S. DOE and CT20 industrial fan and blower regulations.
Operating Manual L-BAL-010
Weight 22.40 Kg
Product specification – Applicable technical standards
None
Corrosion protection:
Thickness of powder coating
The total thickness of the standard powder coating as an average value of 10 measurements and evenly distributed over the entire part shall be between 80 and 160 μm (or 260 μm in the case of a double powder coating) and shall not be less than 60 μm at any measurement point. The thickness should not exceed 160 μm (or 260 μm in the case of a dual powder coating). However, the total thickness of the coating cannot be used as a measure of corrosion protection. The corrosion protection of a coated part is composed of the pre-treatment (e.g. zinc phosphorisation), the type of powder (e.g. mixed powder), the coating (one or two layers), the material (bright steel/galvanised) and the correct execution of the powder coating (cleaning/degreasing of the part).
Powder coating properties
The standard ZIEHL-ABEGG powder coating uses a mixture of polyester powder and epoxy. Due to the polyester component in the powder mixture, a medium UV resistance is achieved. As a rule, the functional surfaces of all parts with threads, nuts and bolts or pre-defined functional surfaces are not coated in order to ensure the proper functioning of the thread or the application (e.g. grounding of the part).

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