ABB 3AUA0000227511 Motors & Drives - E-Clipse UL

Part Number: 3AUA0000227511
Manufacturer
ABB
Part number
3AUA0000227511

Quick Summary

ABB ACH580 HVAC packaged drive with E-Clipse bypass delivers reliable motor control for packaged HVAC systems. Operators often contend with cramped control panels, wiring complexity, and downtime during motor starts, which erodes uptime and increases maintenance costs. UL-listed protection in a NEMA Type one, twelve, or three R enclosure supports safe, code-compliant installation in utility rooms and equipment closets. With a door-mounted graphical panel, integrated bypass starter, and serial communications, this drive reduces wiring, speeds commissioning, and supports scalable automation projects. The solution aligns with industrial motor control and energy-efficient HVAC automation objectives, delivering improved performance, easier serviceability, and a clear path to compliance and ROI.

Product Information

Extended Description

3AUA0000227511 ABB: The ACH580 with ABB E-Clipse bypass has an integrated UL (NEMA) Type 1, 12 or 3R enclosure with a bypass motor starter and is available from 1 to 350 hp at 230/460/575 V. The ACH580 with ABB E-Clipse bypass provides an input disconnect switch or circuit breaker, both including fast acting drive fuses, with door mounted and interlocked switch (padlockable in the OFF position), a bypass starter, electronic motor overload protection, a door mounted control panel with graphical display for local control, provisions for external control connections, and serial communications capability.
The ACH580 bypass drive combines an integrated E-Clipse bypass with a bypass starter to simplify motor control in tight HVAC installations, reducing downtime and maintenance labor. By eliminating complex standalone bypass wiring, facilities see faster commissioning and safer operations, especially in confined plant spaces. The system supports a broad horsepower range from one to three hundred fifty and voltages from two hundred thirty to five hundred seventy five volts, enabling a single platform for multiple HVAC loads. An input disconnect or circuit breaker with fast-acting fuses adds fault clearance and personnel safety while maintaining continuous operations for critical HVAC equipment. Electronic motor overload protection protects motors from thermal damage and reduces unscheduled outages. A door-mounted graphical panel provides local control, while serial communications enable remote monitoring and integration with building management systems. Compatibility with UL Type one, twelve, or three R enclosures and international energy standards supports scalable, compliant deployments and predictable ROI.

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FAQs

Plan for the UL listed enclosure type and space for the door mounted control panel. Ensure the supply supports two hundred thirty, four hundred sixty, or five hundred seventy five volts and the drive is sized from one to three hundred fifty horsepower. Include the bypass starter, fast acting fuses, and a padlockable OFF switch for safe commissioning.
The ACH580 supports a horsepower range from one to three hundred fifty and voltages from two hundred thirty to five hundred seventy five volts. It includes an integrated bypass starter, electronic motor overload protection, and serial communications to enable remote monitoring and integration with control systems.
Yes. The ACH580 bypass drive is designed for HVAC packaged systems, air handling, fans, and pumps where precise speed control, compact installation, and safe operation are essential. Its door mounted panel and integrated bypass simplify installation and maintenance while meeting typical building automation interfaces.
The drive is UL listed for US and Canadian installations and comes in NEMA Type one, twelve, or three R enclosure configurations, supporting safe, compliant deployments in equipment rooms and outdoor shelters where permitted.
The solution reduces wiring complexity, accelerates commissioning, and lowers maintenance labor through an integrated bypass and local control panel. Energy-efficient operation and remote monitoring possibilities improve uptime and enable predictable total cost of ownership over the equipment life cycle.