ABB ACS310-03E-09A7-4 LV AC drive - integrated PID control

Part Number: 3AUA0000039632
Manufacturer
ABB
Part number
3AUA0000039632

Quick Summary

ABB ACS310-03E-09A7-4 LV AC drive controls pumps and fans with precise speed modulation. Facing fluctuating loads, engineers often see energy waste and increased wear on critical equipment. CE-compliant designs and robust protection in this drive family support safe operation in harsh environments. Built-in PID controllers and pump and fan control (PFC) adapt performance to changes in pressure, flow, or external data. This combination delivers meaningful energy savings, longer equipment life, and simplified commissioning for HVAC, pumping stations, and process cooling. Designed for easy integration with ABB drive ecosystems, this module offers compatible installation and scalable control for growing facilities.

Product Information

Extended Description

3AUA0000039632 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: Designed for squared torque applications such as booster pumps and supply/return fans. Business Impact: Maintains stable pressure and flow, reducing cycling, energy use, and wear. Application: Booster pump networks and air handling systems in HVAC and process environments. Feature: Built-in PID controllers and pump and fan control (PFC). Business Impact: Dynamic response to pressure and flow data, optimizing energy consumption and process stability. Application: Variable-speed control for pumps and fans in water systems and ventilation networks. Feature: Rated 4 kW, 9.7 A capacity (Pn 4 kW). Business Impact: Aligns with mid-range loads, enabling compact yet powerful control for medium-sized pumps and fans. Application: Medium-duty drive requirements in equipment rooms and cabinets. Feature: Compact LV drive module designed for integration with ABB ecosystems. Business Impact: Streamlined installation, easier service, and better spare-part availability across facilities. Application: New builds or retrofit projects in industrial plants and HVAC installations. Feature: Designed for booster pumps and supply/return fans with squared torque needs. Business Impact: Precise torque management reduces mechanical stress and improves system longevity. Application: Critical fluid handling and air distribution tasks in process and HVAC networks.

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FAQs

Plan for a compliant low-voltage power supply matching the 4 kW rating and 9.7 A current. Ensure correct wiring to three-phase motors, allow space for cooling, and use a suitable enclosure that accommodates the drive’s dimensions. Verify compatibility with existing ABB drive modules and ensure proper grounding and protection against electrical noise to maintain performance and reliability.
Key specs include a 4 kW rating and 9.7 A current, making it suitable for mid-range pump and fan loads. The drive integrates PID controllers and a pump and fan control (PFC) algorithm to adjust speed in response to external data, enabling stable operation and energy efficiency in fluctuating demand scenarios.
Yes. The ACS310-03E-09A7-4 LV AC drive is specifically designed for squared torque applications like booster pumps and supply/return fans, delivering precise speed control, improved pressure and flow management, and better energy use in HVAC and related systems.
Industrial drives like the ACS310 family are typically CE-compliant, reflecting adherence to European safety and electromagnetic compatibility standards. When selecting a drive for regulated environments, verify the specific installation is evaluated for required safety practices and any site-specific regulatory requirements, including protection level and energy-management standards.
The built-in PID and PFC reduce energy use by optimizing motor speed in real-time, yielding measurable energy savings. Fewer mechanical stress events extend pump and fan life, lowering maintenance costs and downtime. The integrated features also simplify commissioning and ongoing diagnostics, contributing to faster project timelines and predictable operating costs.