Why Choose the Chint CJ19-32-11-230V Power Factor Correction Contactor?
The Chint CJ19-32-11-230V is a specialised power factor correction contactor designed for reliable switching and control of capacitor banks in industrial and commercial electrical systems. As part of the Chint CJ19 capacitor switching contactor series, it is engineered for AC-6b capacitor switching applications to provide dependable reactive power compensation control.
Unlike standard contactors, the CJ19 series is specifically designed for capacitor switching duties, helping reduce switching stress and improve the service life of capacitor bank components. The series is manufactured according to IEC/EN 60947-4-1 standards and is suitable for automatic power factor correction systems.
With a rated operational current of 23 A, a 230 V AC coil supply and a three-pole configuration with 1 normally open and 1 normally closed auxiliary contact, the Chint CJ19-32-11-230V is suitable for capacitor banks, reactive power compensation panels and industrial low-voltage electrical distribution systems.
Key Advantages
- Dedicated capacitor switching contactor for power factor correction applications.
- 23 A rated operational current for capacitor bank switching.
- 230 V AC coil voltage for industrial control circuits.
- Designed for reliable AC-6b capacitor switching duty.
- Compact construction for electrical control panels.
- Suitable for automatic reactive power compensation systems.
Key Features
- Chint CJ19 capacitor switching contactor series.
- 32 A thermal current rating.
- 23 A rated operational current.
- 230 V AC 50/60 Hz coil voltage.
- Three-pole main contact configuration.
- 1NO + 1NC auxiliary contacts.
- AC-6b utilisation category for capacitor switching.
- Pre-charge resistor technology for capacitor switching protection.
- DIN rail or screw mounting compatibility.
Reliable Capacitor Switching for Power Factor Correction
Power factor correction contactors such as the Chint CJ19-32-11-230V are designed to safely control capacitor banks used in reactive power compensation systems. Their dedicated switching design helps manage capacitor energisation currents and improves the reliability of electrical distribution equipment.
By supporting efficient reactive power management, capacitor switching systems can help improve power quality, reduce unnecessary reactive power consumption and maintain stable operation in industrial electrical networks.
Typical Applications
- Automatic power factor correction panels.
- Industrial capacitor banks.
- Reactive power compensation systems.
- Commercial electrical distribution boards.
- Factory automation control panels.
- Industrial low-voltage power systems.