ABB 3AUA0000150269 ACS880-104-0035A-3 - PN:kW, IN:A
Part Number: 3AUA0000150269
Quick Summary
3AUA0000150269 ABB ACS880-104-0035A-3 drive delivers precise motor control for mid‑scale industrial automation applications. It helps address common commissioning and sizing challenges by providing configurable parameters that reduce setup time and risk of undersized drives. This model aligns with CE conformity, robust IP‑rated reliability, and safety‑oriented performance in typical automation configurations; verify exact ratings in the product documentation. By offering scalable control and intuitive parameter sets, it enables faster project delivery and lowers total cost of ownership through improved energy efficiency and smoother operation across variable load scenarios.
Product Information
Feature → Business Impact → Application: The drive delivers parameter-driven control that accelerates commissioning and minimizes configuration errors, increasing line productivity in manufacturing lines and packaging systems. This translates to reduced downtime and faster time-to-value for ABB ACS880 deployments in conveyors, pumps, and fans. Feature → Energy efficiency → Application: With optimized speed control and load matching, the drive lowers energy consumption and mechanical wear, yielding noticeable operating cost reductions in continuous‑duty applications such as cooling fans and process pumps. Feature → Network compatibility → Application: Built to integrate with standard industrial networks, it streamlines PLC communication and data exchange, simplifying panel design and remote diagnostics across assembly lines. Feature → Diagnostics and safety → Application: Built‑in diagnostics and protection features support predictive maintenance and safer startup sequences, increasing machine uptime in high‑availability environments. Feature → Compact installation → Application: A compact form factor reduces panel footprint and wiring complexity, enabling easier upgrades in existing machines and scalable automation projects. Objection handling: If spare parts or training are a concern, the drive uses familiar ABB interfaces and comprehensive documentation to accelerate knowledge transfer and support, helping teams realize ROI faster.
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FAQs
Installation should begin with verifying the device model and power rating (PN:kW) to ensure proper motor sizing, followed by wiring according to the user manual and safe‑work practices. Confirm compatibility with your PLC or automation network and plan for voltage and protection requirements. Use ABB’s recommended commissioning presets to minimize parameter tuning time and validate safety features such as STO in your control scheme.
Expect parameterized motor control with configurable torque and speed profiles suitable for mid‑range applications. The model’s PN:kW and IN:A values define the drive’s power and current envelope, supporting precise speed regulation, smooth acceleration/deceleration, and protection against overcurrent, overtemperature, and faults. Always confirm exact ratings from the device documentation for your specific motor and load profile.
Yes. The ACS880‑104‑0035A‑3 variant is designed for variable speed control of motors in conveyors, pumps, and fans, allowing energy savings, reduced mechanical stress, and improved process control. When selecting, size the drive to the motor’s full load current and ensure the application’s protection scheme aligns with the drive’s safety and fault handling capabilities.
Key certifications typically include CE conformity for European compliance and robust safety and electrical protection suitable for industrial environments. Depending on configuration, IP ratings and SIL compatibility may apply. Always verify the exact certification and rating details in the purchased unit’s documentation and the accompanying technical sheet.
The drive enables energy savings through optimized speed control, reduces motor wear via smooth starts, and minimizes unplanned downtime with built‑in diagnostics and fault reporting. While ROI depends on load profiles and usage, typical benefits include lower energy costs, longer motor life, simpler maintenance planning, and faster commissioning, all contributing to a more predictable TCO for automation projects.