ABB 3AXD50000915361 Servo Motor - 0.2 kW (5 pole pairs)
Part Number: 3AXD50000915361
Quick Summary
ABB DSM servo motor is a precision motor for high-accuracy motion control in compact automation applications. Its core function is to provide reliable position and velocity control in systems such as packaging, robotics, and machine tooling. Engineers frequently confront integration challenges when servo motors are paired with mismatched drives or encoders, which can cause reduced performance and downtime. While the model specifics aren’t listing every certification, typical industrial deployments rely on CE-compliance and robust IP-rated variants to ensure safe, rugged operation, with SIL considerations for safety-related applications. By design, this motor pairs with ABB’s E530 drive to deliver predictable control, enhanced efficiency, and scalable performance, supporting cost-optimized automation and faster time-to-value for manufacturers seeking reliable motion solutions.
Product Information
Extended Description
3AXD50000915361 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.
Feature → Business Impact → Application: The 5-pole-pair design reduces cogging torque, enabling smoother motion and higher positional accuracy in high-precision tasks such as CNC milling or pick-and-place lines. This translates into reduced part wear, lower vibration, and improved cycle times when paired with the E530 servo drive for closed-loop control in demanding environments. Application: ideal for small-to-mid load machines requiring consistent torque delivery and repeatable positioning at 0.2 kW power with 220 V mains, delivering measurable efficiency gains and energy savings. Feature → Business Impact → Application: Brake, oil seal, and encoder options provide tailored protection and reliability in dusty or oily environments, minimizing maintenance intervals and unplanned downtime. Application: conveyors, packaging, and robotic cells where environmental sealing and hold-in-position are critical. Feature → Business Impact → Application: 5 pole-pairs design yields compact motor geometry, enabling space-saving installations and easier cabinet layout. Application: retrofit projects or new builds with tight enclosure constraints, where a smaller footprint improves service access and reduces installation costs. Feature → Business Impact → Application: Compatibility with E530 drive offers seamless integration, faster commissioning, and tighter control loops. Application: systems seeking predictable response, improved loop stability, and easier parameter tuning for consistent production performance. Feature → Business Impact → Application: 0.2 kW power class balances torque and speed for medium-load tasks, helping to minimize thermal load while delivering reliable torque at 220 V. Application: precision conveyors, feeder applications, and small spindle drives where stable torque profiles are essential. Feature → Business Impact → Application: The motor’s encoder-options pathway supports flexible feedback configurations, enabling incremental or absolute positioning as required by the application. Application: retrofits or upgrades in complex automation lines where migration paths for existing encoders must be preserved. Feature → Business Impact → Application: The DSM motor’s compact form factor and transformerless LV AC operation reduce overall system cost and footprint. Application: control panels and machine builds aiming for simplified power distribution and reduced wiring complexity.
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FAQs
To install the ABB DSM servo motor with an E530 drive, begin by confirming mains supply is 220 V and that the encoder option matches your feedback requirements. Mount the motor and connect the encoder signals, brake (if used), and power wiring per the E530 installation guide. Commission the drive by setting motor type, torque, and speed limits, then perform a stand-alone test run to verify torque response and positioning accuracy before integrating into the full control loop. This approach minimizes tuning time and ensures stable, repeatable motion from the outset.
The motor provides a nominal torque of 0.64 N·m with a 0.2 kW power rating at 220 V, designed for compact automation tasks. Its 5-pole-pair construction reduces cogging torque, enabling smoother acceleration and improved positional accuracy. This makes it suitable for mid-load applications such as small feeders, conveyors, and packaging equipment where precise speed control and reliable torque delivery are essential for consistent cycle times.
Yes. The ABB DSM servo motor is well-suited for packaging lines due to its compact form factor, 0.2 kW power class, and 220 V compatibility, which supports standard industrial electrical infrastructure. Its compatibility with the E530 drive provides precise motion control, repeatable positioning, and fast cycle times. Optional brake and encoder configurations offer added reliability in dynamic packaging tasks and in environments with vibration or particulate exposure.
The provided data does not list specific certifications. In typical ABB servo motors used in European manufacturing, CE compliance is common, and many variants offer IP-rated housings for protection against dust and moisture. SIL considerations apply for safety-related systems, and encoder feedback options enable compliant performance in safety-rated control loops. Always verify the exact certification set with the supplier for your target market and installation conditions.
Maintenance benefits come from configurable options like brake and oil seal, which extend the service life in demanding environments and reduce unplanned downtime. The motor’s compact design and compatibility with the E530 drive support simpler installation and faster commissioning, lowering installation costs. Over time, improved motion accuracy and reduced cogging torque contribute to higher production yields, lower energy consumption, and a faster return on investment for automation projects.