ABB 3AUA0000221319 Motors & Drives - ACH550-CARUH-04A1-4+N2006+X1558

Part Number: 3AUA0000221319
Manufacturer
ABB
Part number
3AUA0000221319

Quick Summary

ABB ACH550 drive for precise motor speed control in machine automation and processing lines. Engineers often struggle with tuning, energy spikes, and downtime during commissioning. Common certifications to look for include CE safety compliance, IP ratings for enclosure protection, and SIL readiness in safety-integrated systems. By leveraging this drive, teams can reduce energy use, simplify integration with existing ABB motors, and shorten project timelines, delivering measurable ROI for manufacturing operations. This combination supports scalable automation architectures, from single-motor lines to multi-axis systems. This also aids compliance with evolving safety and energy standards in modern factories.

Product Information

Feature: Vector control and robust motor protection improve torque accuracy and fault resilience, reducing wear and unplanned downtime. Business Impact: Enhanced line uptime and longer motor life translate to higher overall equipment effectiveness. Application: Packaging lines, conveyors, and CNC-like machines benefit from reliable speed regulation and safer operation. Feature: Easy commissioning and parameter templates cut engineering time and cut-time-to-value. Business Impact: Faster project realization and lower engineering costs. Application: OEM installations and retrofit projects where time-to-production matters. Feature: Flexible cabinet integration and wiring options simplify installation in existing facilities. Business Impact: Reduced cabinet redesigns and quicker cabinet builds. Application: Retrofit or new-install projects with tight space constraints. Feature: Built-in diagnostics, alarms, and remote monitoring enable proactive maintenance. Business Impact: Lower maintenance costs and improved MTBF. Application: Continuous production environments with multi-shift operation. Feature: Energy-efficient PWM control minimizes dynamic losses under varying loads. Business Impact: Lower energy bills and longer-term energy cost savings. Application: Variable-torque processes such as mixers and fans in industrial facilities.

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FAQs

Start with the machine powered down and in a safe state. Mount the drive in a ventilated cabinet and secure it per the manufacturer’s guidelines. Connect the three-phase input, motor output, and any fieldbus or analog signals using shielded cables. Use the built-in commissioning wizard or your PLC program to set the motor parameters, protection limits, and safety settings before testing with a low-load run.
The ACH550 is designed for three-phase AC motors used in industrial drive applications. It supports standard motor ratings aligned to common industrial voltages, with parameterizable voltage and frequency ranges to suit your motor’s nameplate. Before selecting this drive, verify motor power rating, voltage, and enclosure class, and refer to ABB’s compatibility lists for your region to ensure safe, reliable operation.
Yes. The ACH550 supports precise speed control and smooth torque response, making it well-suited for packaging line conveyors, reducers, and printers. With programmable speed curves, acceleration/deceleration profiles, and fault diagnostics, you can maintain tight tolerances, minimize product damage, and reduce scrap. When integrated with a PLC or industrial network, it offers repeatable performance across shifts.
ABB ACH550 products typically carry CE marking and compliance with recognized safety and EMC standards for industrial equipment. For global deployments, verify regional approvals and any additional certifications required by your customer or sector. When planning audits or maintenance, rely on ABB documentation and service channels to confirm current certifications for the CARUH variant.
The drive contributes to ROI through energy-efficient motor control, reduced wear from smooth starts, and lower downtime thanks to onboard diagnostics and alarms. Predictive maintenance becomes easier with fault codes and trending data, while remote monitoring options support faster troubleshooting. In steady operations, this translates to longer mean time between failures and predictable maintenance windows.