ABB 3ABD00058829-D LV AC wall-mounted drive - 1.5 kW
Part Number: 3ABD00058829-D
Quick Summary
ABB ACS880 drive is a LV AC wall-mounted solution that delivers precise motor control for demanding material handling and manufacturing applications. Engineers often face long commissioning times, tuning challenges, and integration hurdles when bringing new drives into existing control architectures. Certification details are not provided in the data, but the drive leverages PLCopen motion control blocks and a parameter-based configuration approach to deliver repeatable, predictable performance. By combining flexible programming with easy connectivity to motors and PLCs, this solution can help reduce setup costs, shorten time-to-value, and improve overall equipment availability for automated production lines.
Product Information
Extended Description
3ABD00058829-D ABB: The ACS880 drives which are configured with the positon control program (+N5700) is an ideal choice for high-power position control axes. Its motion functions are based on PLCopen motion control blocks and can be easily configured by parameters. Programming flexibility and connectivity to all motors and PLCs ensure optimized solutions for production machinery and material handling applications.
Feature: Position control capability built into the ACS880 drive using the +N5700 program with PLCopen motion control blocks. Business Impact: Improves move accuracy and repeatability, reducing reject rates and enabling tighter process control. Application: High-power position control axes in packaging, material handling, and autonomous machinery. Feature: LV AC wall-mounted form factor with straightforward connectivity to motors and PLCs. Business Impact: Saves installation space, simplifies cabinet design, and accelerates commissioning. Application: Production lines with space constraints and modular automation layouts. Feature: Parameter-based configuration and flexible programming. Business Impact: Shortens engineering time, speeds commissioning, and lowers changeover costs. Application: Custom motion profiles for conveyors, pick-and-place, and robotic cell integration. Feature: Robust control ecosystem via the ACS880 family. Business Impact: Consistent performance across different axes and machines, reducing downtime and maintenance overhead. Application: Multi-axis systems in material handling and manufacturing automation. Feature: Clear suitability for high-power applications with precise motion requirements. Business Impact: Enhanced throughput and improved process reliability, contributing to lower total cost of ownership. Application: Industrial machines needing reliable, scalable axis control and easy PLC integration.
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FAQs
The ACS880 LV AC drive is designed for integration with a wide range of motors and PLCs. Verify motor voltage and current ratings (1.5 kW, 4 A) and ensure control wiring matches PLCopen-compatible interfaces. Use standard ABB wiring diagrams and the parameter-based configuration to simplify installation and commissioning.
You gain precise, repeatable motion for high-power axes thanks to the PLCopen motion control blocks and the +N5700 program. Expect improved position accuracy, smoother velocity profiles, and faster move-set generation, which translates to higher throughput and lower defect rates in demanding automation tasks.
Yes. The ACS880 family is designed for high-power position control axes, a common requirement in material handling and production machinery. Its programmable motion blocks, robust connectivity, and flexible configuration support conveyors, pick-and-place systems, and other handling applications while maintaining consistent performance.
Certification details are not provided in the data. Before deployment, confirm standard regulatory requirements such as CE or local safety certifications with the supplier or product documentation, and ensure the installation complies with your facility’s electrical and safety standards.
The drive’s programmable motion control, streamlined commissioning, and reliable connectivity can shorten development cycles and reduce downtime. Over time, these benefits translate into lower maintenance costs, less rework from improved move accuracy, and a faster path to scalable automation as production demands grow.