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Line/load reactors are generally serial-connected to the input terminal of three phase systems such as motor speed controllers which operate under IGBT method.
These reactors are designed in order to provide 4% voltage drop. Different voltage drop values are provided on demand.
Reactors reduce the harmonic current dissipated by the motor speed controllers, reduce the starting current, provide silent operation for motors, limit peak current, enable fuse selection depending on nominal motor current, decreases motor temperature, reduce over voltage (dv/dt) during switch off.
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FEATURES • Dry type • Indoor • Enclosures are available on demand • Aluminum or copper winding • - 40 ºC / + 55 ºC ambient temperature range • F class (155 ºC) or customer specific design • Fiberglass resin spacers are available in order to provide ease of cooling when necessary • AN (air-natural) cooling method
STANDARD EN 60289 or depending on customer requirements.
INSULATION . F class (155 ºC) film insulation or epoxy resin reinforced fiberglass. . Epoxy based paint & insulating varnish.
TESTS All the routine tests are performed in accordance with EN 60289 or other standards depending on customer request. Type test reports are available on request. All the test reports are submitted to customer.
Basic testing program includes some or all of the following tests: • Routine Tests (Inductance, Resistance, One Minute AC Insulation Voltage Withstand Test and Impulse Voltage Withstand Test) • Short Circuit Withstand Test • Temperature Rise Test • Sound Level Test • Seismic Test
QUALITY ASSURANCE Hilkar maintains a complete quality assurance program including ISO 9001 and other major industry standards in manufacturing plant.
TECHNICAL SUPPORT Hilkar provides complete technical assistance to contractors and end customers for applications, design, calculations and field installation. All Hilkar reactors are custom designed for different applications by considering the voltage, current, inductance, size, loss characteristics that are required to provide the most efficient design at the most economical prices.
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