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Current-limiting relay capacitive, 1 NO contact 16A image 1

Current-limiting relay capacitive, 1 NO contact 16A

Yra sandėlyje: Ne Pardavėjo atsargos: Ne Minimalus užsakymo kiekis: 1
Kaina (be PVM):
32,43 €
Ši kaina galioja iki 31.12.24
EAN: 4010312205457
MPN: 22100430
Pakuotė: 1

Technical Information

Prekės būklė Nauja
Gamintojo pavadinimas Current-limiting relay capacitive, 1 NO contact 16A
Prekės ženklas ELTAKO
Kategorijos Priedai (automatika ir valdymas)
Kilmės šalis CN
Suderintos sistemos kodas 8536 4900 00
Montavimo metodas DIN bėgis
Nominali nuolatinė srovė Iu 16 A
Sąlygota nominali trumpo jungimosi srovė lq 0.02 kA
Trumpo jungimosi srovės ribotuvas No
Maks. matoma galia 1200 VA

Pakavimo informacija

Pakavimo lygis 1 4010312205457, 4010312205457
Pakavimo lygis 2 4010312205457
Pakavimo lygis 3 4010312205457

Atsisiuntimai

Aprašymas

1 NO contact 16A/250V AC. No standby loss. Modular device for DIN 60715 TH35 rail mounting. 1 module = 18mm wide, 58mm deep. Max. capacitive load 240μF downstream of rectifier (e.g. energy saving lamps and electronic ballast) or 120μF directly at the mains (e.g. shunt-compensated fluorescent lamps). Limiting resistor 12Ω, limiting period approx. 15ms. The starting current impulse of energy saving lamps, fluorescent lamps and compact fluorescent lamps is limited to 20A by short-time switch-on (approx. 15ms) of heavy-duty resistors (12Ω). The current-limiting relay is connected on the load side of the protected relay contact. Permanent load max. 1200W, max. switching frequency 600/h. Explanation of capacitive load specification: The specified max. capacitive load directly at the mains is the deciding factor determining shunt-compensated fluorescent lamps or conventional ballast, for example. Here the capacitor switched in parallel to the mains is the deciding factor determining the correct dimensioning per lamp. The specified max. capacitive load downstream of the rectifier is the deciding factor determining fluorescent lamp ballast or energy saving lamps, for example. An equivalent capacitance of 10µF per lamp may be calculated.