ABB 3AXD50000529452 Motors & Drives - ACS880-07LC-3260A-7
Part Number: 3AXD50000529452
Quick Summary
ABB 3AXD50000529452 is an ACS880 drive that delivers precise motor control for industrial automation and packaging lines. Engineers often struggle with downtime, integration complexity, and energy waste in drive-based systems, especially during commissioning and changeovers. The ACS880 family is CE compliant and supports SIL-ready safety features with protective enclosure options, helping meet demanding plant standards while protecting personnel and equipment. With built-in diagnostics, easy PLC integration, and scalable performance, this solution aligns with lean maintenance programs and energy-reduction goals.
Product Information
Advanced vector control and sensorless torque optimization. This feature delivers precise speed and torque response with smooth starts, reducing motor wear and energy spikes during load changes. It is especially beneficial for high-inertia conveyors, material-handling rollers, and packaging machinery where repeatable performance matters. Energy efficiency and regenerative braking options. The drive lowers overall energy consumption during operation and can recover energy during deceleration, cutting operating costs and reducing cooling requirements. This is particularly valuable for pumps, fans, and hoists in continuous processes with frequent speed modulation. Built-in safety architecture, including Safe Torque Off (STO). The safety features enhance operator protection and simplify compliance with safety standards, reducing downtime due to faults and ensuring safer line operation in hazardous environments. Flexible fieldbus and PLC/SCADA integration. The drive supports multiple communication protocols, simplifying commissioning and data exchange with control systems, OEM panels, and modern IIoT-ready architectures. Compact form factor and installation advantages. A space-saving footprint lowers panel costs, simplifies retrofits in tight machines, and improves overall machine stack-up in crowded plant floors. Robust diagnostics and maintenance support. Built-in diagnostics, remote monitoring, and predictive maintenance help maximize uptime and optimize service planning for lean maintenance programs.
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FAQs
To integrate this drive with current controls, verify compatibility with your PLC/SCADA ecosystem and confirm fieldbus support (such as PROFINET, EtherNet/IP, or Modbus). Plan for proper cabinet space, adequate ventilation, and correct power supply ratings. Ensure wiring practices follow the manufacturer’s guidance and establish a clear commissioning sequence to minimize startup risk. Compatibility with existing motors and motor protection schemes should be validated prior to deployment.
The ACS880-07LC-3260A-7 variant leverages advanced motor control algorithms to provide precise speed and torque management, with scalable control for diverse loads. It supports smooth acceleration, energy-efficient operation, and robust fault diagnostics. While exact current and power ratings depend on the installed motor, the drive is designed to align with common industrial motors used in packaging, conveyors, and process equipment.
Yes. The ACS880 family is well-suited for conveyors and pumps due to its precise speed control, smooth starting and stopping, and energy-saving capabilities. Its safety features and diagnostic tools help maintain uptime in packaging lines, while its multiple fieldbus options simplify integration with existing control architectures and line control strategies.
You can expect CE safety and conformity for European markets, with optional safety features like Safe Torque Off (STO) to support regulatory compliance. ABB drives in this family are commonly designed to be IP-rated for enclosure protection, and safety-integrated configurations may support SIL-related safety workflows. Always verify the specific variant’s certifications with your supplier for your region and application.
Deploying this drive typically reduces downtime through built-in diagnostics and remote monitoring, enabling predictive maintenance and faster fault isolation. Energy savings arise from efficient motor control and regeneration during deceleration. The combination of lower energy costs, longer motor life, and reduced commissioning time translates to a favorable return on investment for OEMs and maintenance teams.