ABB 3AXD50000529261 ACS880 Drive - ACS880-07LC-1030A-7
Part Number: 3AXD50000529261
Quick Summary
ABB ACS880 Drive is a robust VFD for precise motor control in automated production lines. Operators and engineers often struggle with tuning, startup transients, and energy waste when upgrading legacy drives. It aligns with CE compliance and IEC safety and EMC standards, with IP-rated enclosure options for demanding environments. The drive offers flexible parameterization, scalable protection features, and remote monitoring capabilities, enabling plant teams to optimize processes, reduce energy consumption, and increase uptime. In practice, the ABB solution delivers faster commissioning, simpler troubleshooting, and a longer motor lifespan, translating into lower total cost of ownership for modern automation projects.
Product Information
Feature: Precise motor control with advanced modulation and vector capability translates to smoother speed profiles and reduced torque ripple. Business Impact: Lower mechanical wear, quieter operation, and improved process stability for conveyors, pumps, and fans. Application: Optimized material handling and flow control in automated lines. Feature: Soft-start and ramping control minimize inrush and mechanical stress. Business Impact: Extended equipment life and reduced maintenance needs, leading to lower downtime. Application: Start-stop cycles in packaging and bottling lines benefit from gentler motor engagement. Feature: Built-in safety and compliance alignment with IEC/EMC standards. Business Impact: Enhanced operator safety and regulatory readiness, simplifying audits and certifications. Application: Regulated manufacturing environments and process plants requiring robust safety margins. Feature: Network-ready integration and scalable architecture. Business Impact: Faster commissioning, easier PLC integration, and reduced wiring complexity, supporting Industry 4.0 initiatives. Application: Large-scale automation projects and multi-drive installations. Feature: Easy customization and diagnostics for maintenance teams. Business Impact: Quicker fault localization, proactive maintenance, and reduced service costs. Application: Industrial facilities seeking predictable uptime and lower total cost of ownership.
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FAQs
Begin by confirming voltage and motor compatibility with the ACS880 family. Mount the drive in a ventilated enclosure, connect field wiring and power supply according to ABB installation guidelines, then configure basic motor parameters and control mode. Commission with a smooth-start profile, verify fault protection settings, and integrate with the existing PLC or HMI for closed-loop control. Documentation and local standards should guide final wiring and safety checks.
The ACS880-07LC-1030A-7 delivers flexible motor control with vector or scalar operation, supporting energy-efficient speed regulation and precise torque control. Essential specs include a configurable voltage/current range, overload protection, and safe operating features. The drive supports standard industrial automation interfaces and provides scalable performance suitable for conveyors, pumps, and fans in manufacturing environments.
Yes. The ACS880 Drive offers smooth acceleration/deceleration, accurate speed control, and torque management, which minimize belt wear and jam events. Its programmable profiles and safety features help maintain consistent conveyor throughput, reduce energy consumption, and enable reliable integration with conveyor-focused PLCs and supervisory systems in automated facilities.
The ACS880 Drive is designed to meet CE marking and aligns with IEC safety and EMC standards, supporting safe operation in industrial environments. While exact certifications can vary by region and enclosure, ABB drives are engineered to facilitate regulatory compliance and safe integration into automated production lines, with protection features that aid safety documentation and audits.
The ACS880 reduces total cost of ownership through energy efficiency, smoother motor operation, and extended equipment life. Lower startup transients reduce mechanical stress, while built-in diagnostics and remote monitoring shorten mean time to repair. These advantages translate to higher uptime, predictable maintenance cycles, and faster payback on automation projects.