ABB 3AXD50000312443 Motors & Drives - 1400kW

Part Number: 3AXD50000312443
Manufacturer
ABB
Part number
3AXD50000312443

Quick Summary

ABB ACS880 drive is a high-power motor controller designed for industrial automation and heavy-duty applications. Engineers often face uptime gaps, integration challenges with legacy controls, and heat management in large power drives, which this solution helps address. Typical industry certifications for drives of this class include CE safety marking, SIL-rated safety integration options, and robust IP-rated enclosures to protect electronics in harsh environments. This ABB drive combines scalable control, energy efficiency, and streamlined commissioning, delivering measurable business value across production lines and large-scale automation projects.

Product Information

High-power performance for 1400 kW applications translates to precise torque and stable speeds for pumps, conveyors, and fans in demanding processes. The business impact is improved process control, reduced cycle times, and lower energy consumption, especially in continuous-running applications common in material handling and processing. This supports installation within existing automation architectures while enabling seamless integration with ABB control ecosystems, resulting in faster project realisation and fewer integration errors. Safety and protection features provide SIL-capable configurations and robust protective functions, which translate into lower risk of unplanned downtime and enhanced regulatory compliance for critical machinery. In practice, users benefit from safer startup sequences and easier fault diagnosis, minimizing maintenance time and enhancing operator confidence on the shop floor. Diagnostics and remote monitoring capabilities enable predictive maintenance and fleet-wide visibility, reducing unscheduled outages and enabling data-driven optimization across multiple lines. The solution is built for rugged industrial environments, with installation advantages such as modular hardware, scalable I/O, and straightforward cabling, which shorten commissioning and simplify spare parts planning. Energy-efficient vector control and regenerative options further reduce operating costs over the machine’s lifecycle, delivering a compelling total cost of ownership advantage for large-scale automation projects.

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FAQs

When upgrading to the 3AXD50000312443, ensure three-phase power availability at the required current level (around 1576 A) and verify enclosure placement for industrial environments. Plan cable sizing, shielded control wiring, and proper grounding. Compatibility with existing ABB controls and drive profiles speeds up commissioning, while selecting appropriate braking resistors and thermal management minimizes risk of overheating during peak loads.
Critical specs include the 1400 kW power rating and 1576 A current, which determine torque and speed range for belt tension and throughput. Look for robust vector control, dynamic braking capability, and high overload tolerance. Thermal management and cooling strategy are essential to maintain performance during long runs, while integration with drive control software supports precise load sharing and energy optimization.
Yes, the ACS880 family is designed with safety in mind. It typically supports CE compliance for EU markets and offers SIL-rated configurations for safety-related motor control, enabling safer integration into machinery that requires protective interlocks and safe operating procedures. Verify the specific safety functions configured for your installation and ensure proper documentation and maintenance procedures are in place.
The upgrade yields energy efficiency through advanced motor control and regeneration options, reducing utility costs. Reduced downtime from predictive diagnostics and remote monitoring improves line availability. Faster commissioning and scalable protection features shorten project timelines, while extended motor life and simpler maintenance lower total cost of ownership over the asset’s lifecycle.
Follow ABB-recommended maintenance, including periodic firmware updates, monitoring of motor currents and temperatures, and inspection of power and control cables. Use built-in diagnostics to anticipate faults, replace worn components proactively, and maintain spare parts on hand. Regularly review performance logs to optimize parameters for your specific load profile and industry application.