ABB 3ABD00057679-D Drive - 90 kW +N5700
Part Number: 3ABD00057679-D
Quick Summary
ABB 3ABD00057679-D drives provide LV AC power with high-precision position control for manufacturing and materials handling. Engineers often grapple with complex motion profiles and PLC integration, slowing line startup. This drive leverages PLCopen motion blocks, CE compliance, SIL safety integration, and IP-rated enclosure options to meet industry standards and uptime targets. In business terms, you gain lower commissioning time, tighter process control, and reduced spare-part costs through a single, scalable platform. Its 90 kW rating and 169 A current enable reliable handling of demanding loads in conveyors, presses, and material-handling systems. Designed for production environments, it integrates with existing PLCs to minimize engineering risk.
Product Information
Extended Description
3ABD00057679-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: High-power 90 kW LV AC drive configuration with 169 A current provides robust torque at demanding loads. Business Impact: Enables higher line throughput and reduced energy waste on conveyors, presses, and automated handling. Application: Production lines and material-handling systems requiring reliable high-power axis control. Feature: Position control program (+N5700) delivers precise, repeatable axis movements. Business Impact: Improves positioning accuracy, repeatability, and throughput, reducing scrap and rework. Application: Assembly and robotics-guided material handling where exact stop positions are critical. Feature: PLCopen-based motion control blocks and configurable parameters. Business Impact: Shortens commissioning time and lowers engineering risk by leveraging standard programming blocks familiar to automation engineers. Application: OEM lines that require rapid reconfiguration for new products. Feature: Connectivity to all motors and PLCs supports seamless integration into existing automation architectures. Business Impact: Lowers integration costs, simplifies upgrades, and protects legacy investments. Application: Plants upgrading from older drives or migrating to modern ABB ACS880 platforms. Feature: Wall-mounted single-drive enclosure with a compact footprint. Business Impact: Space savings in control cabinets and easier on-site maintenance, improving uptime. Application: Industrial environments with limited panel space in conveyors, presses, and packaging lines.
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FAQs
The drive is designed for straightforward integration with common PLCs using PLCopen motion control blocks. Begin with confirming the ACS880-01-169A-3+E200+N5700 configuration, mount the unit in a standard LV panel, wire control and motor cables per ABB installation guides, and configure the N5700 position control parameters alongside your PLC program for synchronized axis movements.
Yes. The +N5700 position control option provides repeatable, accurate axis positioning ideal for conveyors, robotic pick-and-place, and stamping or press applications. The 90 kW power rating supports demanding loads, while the PLCopen-based control blocks simplify tuning for tight tolerances.
This ACS880-based drive is CE compliant for EU markets and supports safety integration with SIL-rated control schemes and IP-rated enclosures where configured. Always confirm specific enclosure IP rating and safety certifications with your integrator based on your installation environment.
Absolutely. The drive is designed for compatibility with a wide range of motors and PLCs, leveraging PLCopen motion blocks and standard interfaces. This minimizes integration risk and protects your existing automation investment while enabling scalable upgrades to ABB’s ACS880 family.
Expect reduced commissioning time, improved process precision, and lower energy consumption due to optimized torque and speed control. The combination of high power density, easy configuration, and robust uptime translates to higher throughput and lower maintenance costs over the product lifecycle.