ABB 2GUW024200C310 Industrial Power Capacitor
The ABB 2GUW024200C310 is a three-phase high voltage industrial power capacitor designed for reactive power compensation and power factor correction in electrical distribution systems. It belongs to the ABB 2GUW capacitor family, which is widely used in medium and high voltage capacitor bank applications for improving electrical efficiency and maintaining stable system performance in industrial environments.
In industrial and utility power systems, inductive loads such as large motors, transformers, and heavy electrical equipment generate reactive power that reduces transmission efficiency and increases losses. The ABB 2GUW024200C310 is engineered to compensate for this reactive power, helping improve voltage stability, reduce system losses, and optimize overall electrical performance in demanding environments. :contentReference[oaicite:1]{index=1}
The ABB 2GUW024200C310 is designed for industrial capacitor bank systems requiring high voltage reactive power compensation, stable power factor correction, and long-term electrical reliability.
Key Features
- Three-phase high voltage industrial capacitor
- Designed for capacitor bank systems
- Supports reactive power compensation
- Improves power factor correction efficiency
- Suitable for 4160V-class systems
- Stable capacitance under continuous load
- Self-healing metallized film technology
- Designed for industrial switchgear integration
- Long service life under electrical stress
- Improves voltage stability and power quality
Industrial Applications
Capacitor Bank Systems
The ABB 2GUW024200C310 is commonly used in capacitor banks to provide reactive power compensation, improving system efficiency and reducing energy losses in industrial and utility networks.
Power Distribution Networks
In medium and high voltage distribution systems, the capacitor helps stabilize voltage levels and reduce reactive current flow across transmission infrastructure.
Industrial Facilities
Manufacturing plants with heavy inductive loads benefit from improved energy efficiency and reduced transformer loading through effective power factor correction.
Switchgear Systems
The capacitor can be integrated into switchgear assemblies where stable reactive power control is required for safe and efficient operation.
Technical Overview
ABB 2GUW series capacitors use metallized polypropylene film dielectric technology with self-healing properties, allowing the capacitor to recover from minor dielectric breakdowns and maintain stable long-term performance in harsh electrical environments. :contentReference[oaicite:2]{index=2}
The 2GUW024200C310 model is designed for continuous operation in high voltage capacitor bank systems, ensuring consistent reactive power compensation and efficient energy utilization in industrial applications.
Performance Benefits
Improving power factor reduces reactive current flow, which lowers energy losses and improves transformer utilization. The ABB 2GUW024200C310 supports these improvements by stabilizing electrical load conditions and enhancing system efficiency.
It also contributes to better voltage regulation and reduced electrical stress on infrastructure components, improving overall system reliability.
Reliability and Operation
The capacitor is designed for long-term industrial and utility use under continuous electrical load conditions. ABB capacitor systems are widely recognized for durability, stability, and consistent performance in demanding environments.
Proper installation in capacitor bank assemblies ensures reliable reactive power compensation and improved power quality across electrical networks.
Conclusion
The ABB 2GUW024200C310 is a reliable high voltage capacitor designed for industrial power factor correction and reactive power compensation. It supports improved energy efficiency, stable voltage performance, and long-term operational reliability in industrial and utility systems.
With ABB’s established engineering expertise in power systems, this capacitor is widely used in capacitor banks and electrical distribution infrastructure requiring stable and efficient power quality management.




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