Why Choose the IMO MPV240-S-0024 DC Switching Contactor?
The IMO MPV240-S-0024 is a heavy-duty DC switching contactor engineered for demanding high-voltage direct current applications including photovoltaic systems, battery energy storage systems (BESS), EV charging infrastructure and industrial DC power distribution. Designed specifically for renewable energy and industrial installations, it delivers dependable high-current switching where conventional AC contactors are unsuitable.
Part of the IMO MPV Series, this contactor provides a 240 A DC1 operational rating at up to 1000 V DC. It features a versatile 24 V AC/DC operating coil and a 1 string switching configuration, making it suitable for integration into industrial control systems and renewable energy installations.
Its robust industrial construction, advanced contact design and dependable switching performance make the MPV240-S-0024 an excellent choice for panel builders, OEM manufacturers and renewable energy installers requiring safe, efficient and long-lasting DC isolation.
Key Advantages
- Heavy-duty DC switching contactor for renewable energy systems.
- 240 A DC1 operational rating.
- 1000 V DC switching capability.
- 24 V AC/DC operating coil for flexible control integration.
- Designed specifically for photovoltaic and battery storage applications.
- Reliable switching performance for demanding industrial DC systems.
Key Features
- IMO MPV Series DC switching contactor.
- 240 A rated operational current.
- 1000 V DC maximum switching voltage.
- DC1 utilisation category.
- 24 V AC/DC operating coil.
- 1 string DC switching configuration.
- Heavy-duty industrial construction.
- Optimised for photovoltaic and battery switching systems.
Direct current switching requires specialist contactor technology capable of safely interrupting high-voltage DC circuits. The IMO MPV240-S-0024 is engineered to minimise electrical arcing while delivering dependable switching performance and long operational life in demanding renewable energy and industrial environments.
Its high current capability makes it particularly suitable for photovoltaic arrays, battery energy storage systems, EV charging infrastructure and industrial DC automation where operational reliability and system safety are critical.
Typical Applications
- Utility-scale photovoltaic solar systems.
- Battery energy storage systems (BESS).
- EV charging infrastructure.
- Industrial DC power distribution.
- Renewable energy switching equipment.
- High-current DC isolation systems.