Hospital

For this sector, which includes all healthcare establishments (hospitals, CHU, clinics, Ehpad...), we offer a complete range of control solutions adapted to various needs and contexts. Thanks to our expertise and extensive product range, we can offer generator control solutions to satisfy the most varied and demanding healthcare requirements. Our objective is to supply reliable, efficient systems, adapted to each context of use, to guarantee a stable, continuous, high-quality power supply.

Hybrid

Power Plant Applications Combining Thermal, Renewable Energies, and Storage

Discover applications covered by our innovative solutions for optimizing energy management in your power plants. Our state-of-the-art controllers seamlessly integrate thermal and renewable energies with advanced storage systems. With our technology, enjoy reliable, sustainable, and cost-effective energy production. Whether it's to maximize energy efficiency, reduce operating costs, or minimize your carbon footprint, our products are designed to meet the industry's most demanding needs. Choose innovation and performance for a sustainable energy future.

On grid hybrid application (generator, renewable, grid)

In this application, one or more generators are combined with a photovoltaic system, while being connected to a main power grid. This hybrid system uses solar energy to generate electricity, with additional support provided by the generators or the grid as required, to maximize energy efficiency and guarantee a continuous power supply. This configuration offers a reliable and environmentally-friendly energy solution, suitable for a wide range of installations. It optimizes energy costs and contributes to a reduction in carbon emissions, while ensuring a seamless transition between different energy sources according to needs and available conditions.

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Mains paralleling

Power Plant Applications paralleled with the Main Electrical Grid

Explore applications covered by our advanced solutions for paralleling power plants with the main electrical grid, ensuring continuous power supply and preventing service interruptions. Our state-of-the-art controllers enable perfect synchronization between generators and the grid, guaranteeing optimal stability and uninterrupted power. With our technology, you can operate your installations in parallel with the grid for extended periods, ensuring efficient load management and maximum flexibility. Whether it's to maintain service continuity or optimize resource utilization, our products are designed to meet the highest industry standards. Choose innovation for a high-performing and resilient energy infrastructure.

Single genset + mains in paralleling mode

In this application, the energy source is a single thermal generator associated with a main electrical grid, operating in static paralleling or no break change over mode. This configuration makes it possible to switch between the two energy sources without any interruption, guaranteeing uninterrupted power supply. In this way, the load can be supplied seamlessly from either the thermal generator or the main electrical grid, depending on requirements or the availability of the sources. This system is particularly advantageous for installations where stable, reliable power supply is essential, ensuring seamless, uninterrupted transition between different energy sources.

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Multiple gensets paralleled with mains breaker

In this application, the energy source consists of a power plant composed of multiple thermal generators, up to 32 units, which can be paralleled to each other and associated to a main electrical grid. The system operates in static paralleling or no break change over mode, enabling switching between the different sources without any interruption, thus ensuring uninterrupted power supply to the load. A particular feature of this configuration is the absence of a circuit breaker on the power plant busbar, simplifying the electrical architecture while optimizing implementation costs. This solution is particularly well suited to installations where continuity and reliability of the power supply are essential, offering a smooth, uninterrupted transition between the thermal generators and the main electrical grid.

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Multiple gensets paralleled with 2 mains breakers

In this application, the energy source is a power plant consisting of multiple generators, up to 32 units, which can be paralleled to each other and associated with a main electrical grid. The system operates in static paralleling or no break change over mode, allowing seamless transition between the different energy sources without any interruption, thus ensuring continuous, uninterrupted power supply to the load. To guarantee effective protection and management of the system, it is equipped with both a mains circuit breaker and a circuit breaker on the power plant busbar. The mains circuit breaker ensures safety and isolation of the electrical mains, while the power plant busbar circuit-breaker protects and controls the entire multi-generator power plant, providing optimized management of energy flows, enhanced safety and easier maintenance. Ideal for installations where reliability and continuity of power supply are paramount, this solution ensures optimum performance by integrating flexibility, protection and efficiency.

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Multiple gensets paralleled with multiple mains

In this application, the energy source is a power plant consisting of multiple generators, up to 32 units, which can be paralleled to each other and associated with several electrical mains feeders. Each mains feeder supplies a specific load, which can be backed up by the thermal generator central unit if required. This configuration offers maximum flexibility, with the possibility of switching between the electrical mains feeders and the thermal generators to ensure continuous, reliable supply to the loads. In the event of failure or interruption of one of the mains supplies, the generator station can immediately take over, guaranteeing uninterrupted power supply. This system is particularly advantageous for critical installations where power supply stability and redundancy are essential, ensuring optimized management of energy sources and enhanced protection against mains failures.

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H configuration with 2 generators + 2 mains + bus tie breaker

In this application, the energy source is a power plant equipped with two thermal generators associated with two mains supplies, and fitted with a tie-breaker. The tie-breaker makes it possible to isolate a generator with its mains incomer , while offering the possibility of backing up the load supplied by the other mains incomer in case of failure. This configuration ensures greater flexibility and reliability, enabling a continuous, stable power supply to be maintained even in case of failure on one of the mains feeders. It is ideal for installations where continuity of service is essential, ensuring that the critical load remains supplied without interruption.

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Renewable & Storage

Power Plant Applications Based on Renewable Energies and Storage

Explore applications covered by our advanced solutions for green power plants. Our sophisticated controllers seamlessly integrate renewable energies, such as solar and wind, with cutting-edge storage systems. Benefit from clean, reliable, and cost-effective energy production while contributing to a more sustainable future. Our products are designed to maximize energy efficiency, reduce operational costs, and minimize the carbon footprint. Embrace innovation for environmentally friendly energy management.

BESS, photovoltaic/wind and grid applications

In this application, the energy source is a photovoltaic system associated with storage batteries and paralleled to the main power grid. This system uses solar energy to generate electricity, which is then stored in the batteries for later use. The combination with the main power grid maximizes energy efficiency and guarantees a continuous power supply. When sufficient solar energy is produced, it can be used directly to power loads or stored in batteries. In the event of a surplus, the excess energy can be fed into the grid. This configuration offers a flexible and reliable solution, integrating renewable energy sources while ensuring continuity of service. It reduces dependence on fossil fuels and cuts energy costs, while helping to reduce carbon emissions.

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