Impel IE2 Series 40 HP Three Phase 2 Pole Flange Mounted AC Induction Motor With 2 Years Warranty
SKU : TI-II-15026
MRP : ₹153100
₹114400
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Short Description
IMPEL IE2 Series 40 Hp Flange Mounted 3 Phase AC Induction Motor
2 Pole, Copper Winding
This motor is suitable for Lifts, Crane, Textile, Hoists, Compressor, Crusher Atta Chakki etc.
2 Years Of Warranty
Country of origin: India
Specification
Brand: Impel
Power : 40 hp
Weight (Approx.) : 235 kg
Winding Material : Copper
Series : IE2
Product Type : AC Induction Motor
Brand : IMPEL
Power : 40 HP (30 kW)
No Of Poles : 2
Winding : Copper
Electricity Connection : Three Phase
Rated Voltage : 415 Volt (± 10% )
Frequency : 50Hz ( ± 5% )
Current Rating : 53.8 Amp.
Speed : 2880 RPM
Mounting Type : B5 Flange
Body Material : Casting
Standard : IS12615:2018
Frame : 200L
IP Rating : IP55
Insulation Class : F
Duty Cycle : S1
Ambient Temperature : 50C
Enclosure : TEFC (Total Enclose Fan Cooled)
Cooling Method : IC411 (Shaft Mounted Fan)
Description
A flange-mounted AC induction motor has a special flat plate (flange) on its body, allowing it to be directly and securely bolted onto a machine or piece of equipment . They are widely applied in pumps, fans, compressors, and conveyor systems, providing compact and stable power solutions.
Features
:
High Efficiency and Long Life Product
Motors are fitted with dynamically balanced aluminium die cast squirrel cage rotors
High Torque Level.
High Power Factor.
Low Temperature Rise.
Minimum copper losses due to use of electrolytic grade of copper
Minimum friction losses with SKF/FAG
Easy maintenance
Minimum Pay Back Period
Applications
:
This motor is suitable for Lifts, Cranes, Hoists, Large exhaust fans, Lathe machines, Crushers, Oil extracting mills, Textiles, Atta Chakki, Domestic Flour Mill, Chaff Cutter Machine, Air Compressor, Thresher, Gearboxes, Conveyors, General Machinery, etc.
Benefits :
Longer insulation and bearing lives
Lower heat output and less vibration
Extended winding life
Increased tolerance of overload conditions
Higher tolerance for increased voltage rates or phase imbalance