ABB 3AUA0000039631 ACS310 Drive Module - Pump & Fan Control
Part Number: 3AUA0000039631
Quick Summary
ACS310 drive module is a compact LV drive that provides precise speed control for pumps and fans in industrial settings. This solution tackles energy waste and pressure fluctuations by adjusting motor performance in real time based on process data. Typical ABB drives align with CE safety standards and offer rugged, IP-rated variants with considerations tied to SIL concepts to support reliability and regulatory needs. By choosing this ABB solution, you gain energy efficiency, reduced maintenance, and smoother integration with building automation and industrial control networks.
Product Information
Extended Description
3AUA0000039631 ABB: The ACS310 drives are designed for squared torque applications such as booster pumps and supply and return fans. The drive includes a powerful and beneficial set of features designed for pump and fan applications. These features include built-in PID controllers and pump and fan control (PFC) that varies the drive=E2=80=99s performance in response to changes in pressure, flow or other external data.
Feature: Built-in PID controllers and pump/fan control (PFC) enable closed-loop regulation, maintaining target pressure and flow while reducing energy consumption. Business impact: tighter process control, lower operating costs, and longer equipment life. Application: booster pumps and supply/return fans in HVAC and water systems. Feature: 3 kW, 8 A rating designed for squared torque applications provides robust motor performance and reliable start/stop sequences. Business impact: improved uptime and predictable torque curves, cutting wear and maintenance costs. Application: medium-duty pumping and fan drives in processing plants. Feature: Compact LV drive form factor simplifies panel integration, wiring, and serviceability. Business impact: reduced installation time, lower panel footprint, easier retrofits in existing automation architectures. Application: plant-wide motor control across pumps and fans. Feature: Built-in control capabilities support energy efficiency and process stability without external controllers. Business impact: fewer external devices, streamlined commissioning, and faster time-to-value. Application: industrial automation environments requiring responsive speed control. Feature: Compatibility with standard industrial control networks and straightforward parameterization speeds deployment and reduces commissioning risk. Business impact: quicker project ramp-up, easier maintenance, and consistent performance across fleets. Application: new installations and retrofits in manufacturing and utilities.
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FAQs
Follow the ABB installation guide for LV drive wiring: mount in a suitable enclosure, connect power and motor leads per the 3 kW, 8 A rating, and configure the built-in PID and pump/fan control (PFC) parameters. Ensure proper shielding, grounding, and safety interlocks. Verify settings with commissioning software and test run at reduced speed before full operation.
Expect tighter flow and pressure control due to built-in PID and PFC. Variable speed operation reduces energy consumption and reduces pump wear by avoiding sudden starts. This translates to lower energy bills, longer pump life, and more stable process conditions in booster and distribution pumping scenarios.
Yes. The ACS310 drive module is designed for pumps and fans, including supply and return fans in HVAC. It enables smooth speed ramping, responsive control to pressure/flow changes, and straightforward integration with building automation systems, improving overall climate control and energy efficiency.
The provided data does not specify certifications. Check the official ABB datasheet or regional product literature to confirm CE marking, IP rating, and any SIL-related safety considerations for your installation location. Compliance verification is essential for regulatory and safety assurance in your plant.
The ACS310 can lower operating costs through energy savings from variable speed control and reduced mechanical wear due to soft-start behavior. Maintenance requirements often decrease because fewer external controllers are needed and the integrated protections simplify diagnostics, leading to shorter downtime and faster maintenance cycles.