
Control Transformers
Control transformers are widely used in industrial applications such as electrical panels or PLC power supplies.
Input and output voltages may vary up to 1000V and they possibily include voltage taps or shield windings.Power ratings of these transformers go up to 10kVA. The electrical connection is done via terminal blocks and special mounting for DIN rails is availableon request
Isolation Transformers
Isolation Transformers are designed to be used on one or three phase systems where galvanic isolation and voltage step-up or step-down required.
Input and output voltages may vary up to 5000V and they possibily include voltage taps or shield windings. Power ratings of these transformers go up to 1600kVA.
The electrical connection is done via terminal blocks or bars. Any vectoral connection type is available on request.


Medical Transformers
Medical transformers used for isolating systems in purpose of maintaining human safety and protecting sensitive medical equipments in hospitals and medical clinics. Therefore these transformers are designed and built to meet the specifications for these places. The IEC 61558-2-15 standard describes the additional specifications. Medical transformers can be produced according to the customers voltage requests. Different voltage ratings for different regions are applicable.
Harmonic Filter Reactor
Detuned Harmonic Filter Reactors, are used in series with capacitor banks in power factor correction units.


Shunt Reactors
Shunt reactors are mainly used in places with long power transmission and distribution lines. Especially for supplying telecomunication stations in urban areas like radio, GSM and TV transmitters with electricity, long overland cables must be used. These cables have a capacitive characteristic at longer distances. This capacitive characteristic causes the system to become overcompensated. This results
in penalties in electricity bills because of high capacitive demand.
Thyristor Modules
ALPHA series thyristor modules are designed to switch capacitive loads up to 80 kVAr in power factor
correction (PFC) applications. The modules can switch capacitive loads within 10ms of receiving a
triggering signal. The microprocessor-based architecture and its algorithm switches at the voltage zero crossing, thereby avoiding capacitor abrasion.














