Störk Tronic ST181-VL4KA.12 2xPTC 230AC K123 10W/24V RTC 900223.015 Controllers for Cooling Applications


Störk Tronic ST181-VL4KA.12 2xPTC 230AC K123 10W/24V RTC 900223.015 Controllers for Cooling Applications Image

Störk Tronic ST181-VL4KA.12 2xPTC 230AC K123 10W/24V RTC 900223.015 Controllers for Cooling Applications


Produktname: Störk Tronic ST181-VL4KA.12 2xPTC 230AC K123 10W/24V RTC 900223.015 Controllers for Cooling Applications
Marke: Störk Tronic
Produktcode: ST181-VL4KA.12 2xPTC 230AC K123 10W/24V RTC
Stichwörter: Störk Tronic
Artikel: 900223.015
Controllers for Cooling Applications



Interessieren Sie sich für das Produkt Störk Tronic ST181-VL4KA.12 2xPTC 230AC K123 10W/24V RTC 900223.015 Controllers for Cooling Applications vom Hersteller Störk Tronic mit dem Code ST181-VL4KA.12 2xPTC 230AC K123 10W/24V RTC? Kontaktieren Sie uns jetzt und holen Sie sich ein Angebot. Imtek Engineering, der schnellste und zuverlässigste Lieferant von Industrieausrüstung der Welt, wird Ihnen das beste Angebot machen!

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TECHNICAL DATAHousing dimension ST181 Front: 180x52mmPower supply 230V ACSwitching inputs noneNumber of outputs 3Sensor type PTCST-Bus available NoSoftware 12PRODUCT DESCRIPTIONThe cooling controller ST181-VL4KA.12 is a control unit specifically designed for 24V DC ventilation adjustment. The maximum ventilation power is 10W. The number of revolutions can be decreased to 20% and thus create a minimum air speed. Due to the galvanic separation of the ST181-controller the low-voltage ventilator can also be safely operated in a wet environment.The three switching outputs with our proven 16A relay allow complete operation of the cooling circle as well as further additional features, as for example the lighting and many other functions.The timer allows a 1-week time management for the defrosting periods as well as for setting the cooling chamber temperature at night or on the weekend. With regard to the parameter level, programming of this timer is easy and user-friendly. The actual time can be re-set simply directly on the operator surface.