ABB 3GBJ356424-ADG 3-Phase squirrel cage motor - IP55

Part Number: 3GBJ356424-ADG
Manufacturer
ABB
Part number
3GBJ356424-ADG

Quick Summary

3GBJ356424-ADG is a robust 3-Phase squirrel cage motor for general industrial drive applications. Operators face downtime and overheating in harsh environments, which increases maintenance costs and reduces line efficiency. This ABB motor delivers IP55 protection, IC411 insulation, and a cast iron frame capable of withstanding 40 °C ambient temperatures and 1000 m altitude, supporting reliable operation across demanding sites. Built to ISO and IEC standards, it integrates smoothly with ABB's automation ecosystem, enabling efficient procurement and consistent spare parts availability. By choosing a proven ABB solution, maintenance teams gain predictable performance and long service life, helping OEMs and end users reduce total cost of ownership in plant automation and equipment modernization.

Product Information

Extended Description

3GBJ356424-ADG ABB: M3BJ 355MLB 12
ABB Type Designation
M3BJ 355MLB 12
Invoice Description
M3BJ 355MLB 12
Product Name
3-Phase squirrel cage motor
Product Type
3BJ0__M3BJ_CI
Made To Order
No
Minimum Order Quantity
1 piece
Selling Unit of Measure
piece
Country of Origin
Finland (FI)
Customs Tariff Number
85015394
Electrical Data
Temperature Class Default
--
Altitude
1000 m
Ambient Temperature
40 °C
IC Class
IC411
IP Class
IP55
Insulation Class
ICLF
Number of Poles (High)
12
Two Speed Motor
No
Type of Duty
S1
Voltage Code
D
Frame Material
Cast Iron
Frame Size
355
Bearing
6322/C3
Bearing NDE
6316M/C3 VL0241
IM Class
IMB3 IM1001
Package Level 1 Units
0 pallet (lift)
Product Net Weight
2210 kg
Gross Weight
2240 kg
WEEE Category
4. Large Equipment (Any External Dimension More Than 50 cm)
UNSPSC
26101100
Cast Iron frame and a 355 frame size deliver a rigid, mechanically robust enclosure that excels at heat management under high loads. The result is extended motor life and reduced maintenance intervals, which directly lower total cost of ownership in demanding lines such as conveyors, packaging equipment, and heavy-duty machine tools. This structural strength also simplifies field service and alignment, saving downtime during maintenance outages. IP55 protection, IC411 insulation, and the ICLF insulation class protect windings from dust, moisture, and temperature fluctuation in tough environments. The combination reduces risk of insulation damage, improves uptime, and lowers the likelihood of unplanned outages in dusty plants, outdoor equipment, or high-humidity operations. It also supports reliable performance in environments with limited climate control. 12-pole design delivers steady torque and suitable running speed for continuous S1 duty, optimizing performance where full-speed operation isn’t required but consistent torque is essential. The motor’s configuration supports smoother starts and reduced vibration, extending belt life and drive-train longevity. This makes it a strong match for line start/stop cycles in packaging, processing, and automated assembly. Bearing arrangement 6322/C3 with 6316M/C3 VL0241 and IMB3 IM1001 mounting provide long bearing life and straightforward maintenance. The design tolerates misalignment better and simplifies replacement with standard components, reducing downtime and spare-parts inventory. This is especially beneficial for installations with constrained space or frequent uptime targets in material handling and packaging lines. Origin and build quality reinforce confidence in long-term performance. Made in Finland with rugged cast iron frames and industrial-grade components, the motor offers consistent traceability and supply-chain reliability. Weight and heft indicate a design capable of handling demanding loads, while seamless ABB compatibility ensures straightforward integration with existing drives and control architectures. Installation and spare-parts planning are eased by a common footprint and standard mounting practices, reducing commissioning time and risk. Coupled with ABB’s drive ecosystem, this motor supports faster project timelines and predictable maintenance planning for OEMs and end users, delivering lower risk and lower total cost of ownership across multiple sites.

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FAQs

Installation guidance for the 3GBJ356424-ADG emphasizes compatibility with standard 355 frame, cast iron housing and IMB3 IM1001 mounting. Begin with proper alignment to the shaft and coupling, confirm terminal box wiring matches the voltage code D, and verify cooling airflow for continuous S1 duty. Use appropriate torque values for mounting bolts and perform a final belt/drive alignment check to ensure smooth operation and minimize vibration.
Key specifications include a 12-pole configuration for 3-Phase operation, IP55 protection, IC411 insulation with ICLF class, a 355 frame, cast iron frame material, and a 1000 m altitude tolerance with a 40 °C ambient limit. The motor employs bearing arrangements 6322/C3 and 6316M/C3 VL0241, along with IMB3 IM1001 mounting class, all designed for continuous S1 duty.
Yes. The motor is rated for ambient temperatures up to 40 °C and accommodates altitude up to 1000 m, with IP55 protection and IC411 insulation (ICLF). These features reduce moisture and dust ingress risk and maintain winding integrity in harsh environments, supporting reliable operation in production lines or outdoor installations with elevated thermal loads.
Applications with continuous, reliable torque and robust enclosure requirements benefit most, including conveyors, packaging lines, processing equipment, and general automation in dusty or humid plants. The 12-pole design provides steady torque at controlled speeds, while the cast iron frame and protective insulation ensure long service life in demanding manufacturing settings.
Maintenance considerations include monitoring bearing life (6322/C3 and 6316M/C3 VL0241) and ensuring proper mounting (IMB3 IM1001). The motor’s heavy, durable construction and Finland origin support consistent quality and spare parts availability. Regular inspections should focus on insulation integrity, alignment, and cooling performance to maximize uptime and minimize lifecycle costs.