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Energy management solutions
Intelligent energy optimisation for a sustainable future
In a world where energy efficiency is key, our inductive components provide innovative and reliable energy management solutions. From reducing consumption to improving sustainability, our technologies are designed to maximise performance and minimise environmental impact.
We manufacture tailor-made components to improve energy efficiency, reduce operating costs, and better control over industrial processes.
Choke or filter inductance in alternating current without magnetic saturation. It admits high short-circuit current while minimising radial electrodynamic stresses and maintaining its nominal inductance value L(mH).
Filter choke for AC/DC DC converters. They attenuate DC ripple and improve the power factor on the AC side.
The choke is used simultaneously as differential mode inductance (DM) and also as common mode inductance (CM). It attenuates the switching ripple in DC DC converters.
Choke choke or HF filter for DC Flyback and Buck-Boost converters. Attenuates switching ripple and reduces dV/dt.
Integration in a single unit of 3 primary inductances for paralleling 3 converters. For converter output LC filter. Attenuates PWM switching harmonics by restoring the sine wave and at the same time eliminates the problems associated with high dV/dt.
Introduce an electrical isolation barrier between the input and output bridges. Enable power transmission through their leakage inductance.
Primary choke for liquid-cooled WF converter output LC filter. Allows to reduce the integration size in the converter. They attenuate PWM switching harmonics by restoring the sine wave and at the same time eliminate the problems associated with high dV/dt.
The distribution choke couples two converters in a back-to-back topology, which allows bidirectional power control in the converters. In addition, it coasts at the output of a filter inductance dV/dt common to both converters.
The inductance attenuates the fast PWM voltage variation of the power converter. It protects generators/motors and electronic components against transient surges caused by switching pulses.
Notch filter inductance tuned in the unwanted kHz band, attenuate or remove the residual harmonics of the main filtering to obtain a sine wave in accordance with the most stringent IEEE harmonic standards.
Independent primary and secondary chokes for converter output LCL filter. They attenuate PWM switching harmonics by restoring the sine wave and at the same time eliminate the problems associated with high dV/dt.
Primary and secondary choke integrated in a single device for LCL filter converter output. They attenuate PWM switching harmonics by restoring the sine wave and at the same time eliminate the problems associated with high dV/dt.
We manufacture tailor-made components to improve energy efficiency, reduce operating costs, and better control over industrial processes.
Choke or filter inductance in alternating current without magnetic saturation. It admits high short-circuit current while minimising radial electrodynamic stresses and maintaining its nominal inductance value L(mH).
Filter choke for AC/DC DC converters. They attenuate DC ripple and improve the power factor on the AC side.
The choke is used simultaneously as differential mode inductance (DM) and also as common mode inductance (CM). It attenuates the switching ripple in DC DC converters.
Choke choke or HF filter for DC Flyback and Buck-Boost converters. Attenuates switching ripple and reduces dV/dt.
Integration in a single unit of 3 primary inductances for paralleling 3 converters. For converter output LC filter. Attenuates PWM switching harmonics by restoring the sine wave and at the same time eliminates the problems associated with high dV/dt.
Introduce an electrical isolation barrier between the input and output bridges. Enable power transmission through their leakage inductance.
Primary choke for liquid-cooled WF converter output LC filter. Allows to reduce the integration size in the converter. They attenuate PWM switching harmonics by restoring the sine wave and at the same time eliminate the problems associated with high dV/dt.
The distribution choke couples two converters in a back-to-back topology, which allows bidirectional power control in the converters. In addition, it coasts at the output of a filter inductance dV/dt common to both converters.
The inductance attenuates the fast PWM voltage variation of the power converter. It protects generators/motors and electronic components against transient surges caused by switching pulses.
Notch filter inductance tuned in the unwanted kHz band, attenuate or remove the residual harmonics of the main filtering to obtain a sine wave in accordance with the most stringent IEEE harmonic standards.
Independent primary and secondary chokes for converter output LCL filter. They attenuate PWM switching harmonics by restoring the sine wave and at the same time eliminate the problems associated with high dV/dt.
Primary and secondary choke integrated in a single device for LCL filter converter output. They attenuate PWM switching harmonics by restoring the sine wave and at the same time eliminate the problems associated with high dV/dt.