Produktname: KSR Kuebler FLR-H Reed Level Transmitter
Marke: KSR Kuebler
Produktcode: FLR-H
Stichwörter: KSR Kuebler
Kuebler FLR-H Transmitter
Kuebler FLR-H Level
Kuebler Reed Level
Reed Level Transmitter
KSR Kuebler Level
KSR FLR-H Transmitter
KSR Reed Level
KSR Kuebler Reed
FLR-H Transmitter
Kuebler Level Transmitter
KSR FLR-H
Kuebler FLR-H Reed Transmitter
Kuebler Reed Transmitter
KSR FLR-H Level
KSR Kuebler Reed Transmitter
KSR Reed Level Transmitter
Kuebler
KSR FLR-H Reed
KSR FLR-H Reed Transmitter
Reed Level Transmitter
Interessieren Sie sich für das Produkt KSR Kuebler FLR-H Reed Level Transmitter vom Hersteller KSR Kuebler mit dem Code FLR-H? 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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Applications Level measurement for almost all liquid media Chemical, petrochemical industry, natural gas, offshore, shipbuilding, machine building, power generating equipment, power plants Process water and drinking water treatment, food and beverage industry, pharmaceutical industry Special features Process- and system-specific solutions possible Operating limits:- Operating temperature: T = -80 ... +200 °C- Operating pressure: P = Vacuum up to 80 bar- Limit density: ? ?400 kg/m3 Wide variety of different electrical connections, process connections and materials Optionally with programmable and configurable head-mounted transmitter for 4 ... 20 mA field signals, HART®, PROFIBUS® PA and FOUNDATION™ Fieldbus Explosion-protected versions (option) Description The model FLR sensors with reed measuring chain are used for level measurement in liquid media. They work on the float principle with magnetic transmission. The float's magnetic system in the guide tube actuates a resistance measuring chain that corresponds to a 3-wire potentiometer circuit. The measurement voltage generated by this is proportional to the fill level. The measurement voltage is very finely-stepped due to the contact separation of the measuring chain and is thus virtually continuous. Depending on the requirements several different contact separations are available.