ABB 3AXD50001123376 LV AC Servo Motor - 5-Pole Design

Part Number: 3AXD50001123376
Manufacturer
ABB
Part number
3AXD50001123376

Quick Summary

ABB DSM servo motor is a high-performance LV AC servo solution designed for precision motion in packaging, robotics, and general automation. Engineers often struggle with cogging torque, encoder selection, and drive compatibility when upgrading to newer automation platforms. CE conformity is standard for European markets, with options for SIL-rated safety integration and protective enclosures to meet demanding industrial environments. With flexible brake, oil seal, and encoder options, this motor reduces downtime, accelerates prototyping, and lowers total cost of ownership while integrating seamlessly into existing control architectures and line-side PLCs for scalable automation.

Product Information

Extended Description

3AXD50001123376 ABB: The DSM servo motor is a high performance servo motor. It is used together with the E530 servo drive. The DSM servo motor offers various options including: brake, oil seal, and encoder type, which provides flexible choices for customers. The 5 pole-pairs design makes it more compact in structure and effectively reduce the cogging torque.
5-pole-pairs design provides a compact structure and reduced cogging torque, directly boosting positioning accuracy and motion smoothness. In production lines, this means higher throughput and fewer quality defects on high-speed packaging and robotics tasks requiring tight control of torque ripple. Flexible brake, oil seal, and encoder options let you tailor protection and feedback to the application, enabling safe stops on conveyors, protection against dust and fluids, and high-resolution feedback for demanding servo loops. Seamless E530 drive compatibility simplifies retrofits, reducing wiring changes and shortening commissioning time while preserving the integrity of ABB’s control ecosystem. The high-density 7.5 kW at 380 V with 48 Nm torque delivers strong performance in compact packages, ideal for conveyors and material handling where space is at a premium. Industry insight confirms modular feedback and safety options cut downtime and improve diagnostic visibility, boosting overall equipment effectiveness (OEE).

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FAQs

The 3AXD50001123376 is designed to operate with the E530 servo drive. Begin by verifying 380 V supply, connect the encoder feedback according to the motor’s feedback type, and select the appropriate brake/oil seal options if required. Follow ABB installation guidelines for mounting torque, cable routing, and ground integrity to ensure clean startup, accurate zero positioning, and VFD-free startup sequences where applicable.
Key specs include Pn 7.5 kW, Tn 48 N·m, 380 V supply, and a 5-pole-pairs configuration. The motor is designed for integration with the E530 drive and offers optional brake, oil seal, and encoder types to match application needs. This combination delivers high torque density, smooth motion, and flexible feedback suitable for precise automation tasks.
Yes. The 3AXD50001123376’s 7.5 kW power, 48 N·m torque, and 5-pole design deliver robust performance in high-speed packaging, pick-and-place, and robotic tasks. The option to tailor encoders and protective features allows you to optimize feedback quality and reliability, reducing cycle times and improving product consistency in automated systems.
Typical configurations prioritize CE conformity for European markets, with options to integrate SIL-rated safety features and protective enclosures. While exact certifications depend on the final configuration, these motors are designed to meet common industrial safety and regulatory expectations, and ABB supports configurations that align with rigorous safety and compliance requirements.
The motor’s reduced cogging torque and high-precision feedback translate to smoother motion and higher throughput, lowering defect rates and energy waste. Optional brake and protective features minimize downtime and maintenance costs, while compatibility with ABB control platforms simplifies upgrades. Over time this can yield improved OEE, reduced spare-part usage, and faster payback on automation projects.