ABB ACS310-03E-04A5-4 LV AC Drive Module - 1.5 kW
Part Number: 3AUA0000039630
Quick Summary
ABB ACS310-03E-04A5-4 LV AC drive module for pumps and fans optimizes speed control in HVAC and water systems. Engineers often wrestle with fluctuating pressure, throttled flow, and energy waste when scaling pump and fan networks. This drive family is designed with practical industry standards in mind, aligning with common CE expectations and robust IP-rated housing considerations for industrial environments. Built-in PID controllers and pump and fan control (PFC) streamline tuning and enable responsive control, reducing external hardware and commissioning time. Together, these features support energy efficiency, reduced maintenance costs, and easier integration with existing automation platforms.
Product Information
Extended Description
3AUA0000039630 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 and fan control (PFC) are integrated into the ACS310-03E-04A5-4. Business impact: Precise regulation of pressure and flow without external controllers reduces wiring, panel space, and commissioning time. Application: Booster pumps and supply/return fans in HVAC and process cooling systems. Feature: 1.5 kW nominal power with a 4.5 A rated current. Business impact: Matches mid-size pump and fan loads with reliable torque across the speed range, improving overall system efficiency and reducing motor wear. Application: Small to mid-size pumping and ventilation tasks in industrial plants. Feature: Designed for squared torque applications. Business impact: Supports stable startup and steady torque profiles in demanding booster and air handling scenarios, lowering vibration and wear. Application: Equipment that requires consistent torque at variable speeds. Feature: LV drive integration and installation benefits. Business impact: Simplifies wiring and control integration within existing ABB control architectures, enabling faster deployment and easier diagnostics. Application: Retrofit projects and new installations in manufacturing or building services. Feature: Energy efficiency and maintenance advantages. Business impact: Reduces energy consumption through optimized speed control and lowers maintenance costs with fewer external control components. Application: Continuous operation in pumping and ventilation networks, contributing to lower total cost of ownership.
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FAQs
Begin with de-energizing the system, mount the drive in a suitable enclosure, connect motor terminals to the drive output, wire the power supply and control signals, and configure basic parameters. Enable the built-in PID for pump or fan control and set the desired pressure or flow setpoints. Follow manufacturer wiring diagrams and safety guidelines to ensure proper cooling and accessibility for maintenance.
Key specs include 1.5 kW nominal power, 4.5 A rated current, a low-voltage drive architecture, built-in PID controllers, and pump and fan control (PFC) for squared torque applications such as boosters and HVAC fans.
Yes. The ACS310 family is designed for squared torque applications, making it well suited for booster pumps and supply/return fans where precise speed and flow control improves system stability and energy efficiency.
Certification specifics are not listed in the provided data. In practice, industrial LV drives commonly pursue CE compliance and IP-rated enclosures; always verify the exact certifications with the supplier datasheet for your deployment region and application.
Expect energy savings from optimized speed control, reduced wiring and external control components due to built-in PID and PFC, and simpler maintenance with fewer external interfaces. These factors collectively shorten commissioning time and lower operating costs in pump and fan networks.