Testa att söka på nyckelord, orderkod eller produktkod, eller serienummer t.ex. ”CM442” eller ”teknisk information”
Enter at least 2 characters to start the search.
Memosens CLS15E - Digital contacting conductivity sensor for pure and ultrapure water

Digital conductivity sensor
Memosens CLS15E

Memosens 2.0 contacting conductivity sensor for standard applications in pure and ultrapure water

CLS15E
Please Wait (spinning wheel)
Laddar pris
Pris ej tillgängligt för tillfället
Price on request
Aktiverar pris
pris: ange information
Filtrera mät-/applikationsuppgift
Mät-/applikationsuppgift

Konfigurera för att ladda ner denna produkts CAD-ritningar

  • Mätprincip

    Conductive

  • Application

    Measurement in pure and ultrapure water range
    Monitoring of ion exchangers
    Reverse osmosis
    Distillation and chip cleaning

  • Characteristic

    Digital 2-electrode conductivity sensor

  • Measuring range

    k=0,01: 0.04 to 20 µS/cm
    k=0,1: 0.10 to 200 µS/cm

  • Measuring principle

    Conductive conductivity cell with electropolished stainless steel electrodes

  • Design

    2-electrode conductivity cell with coaxially arranged electrodes, electropolished

  • Material

    Electrode: stainless steel 1.4435
    Electrode shaft: PES

  • Dimension

    Electrode diameter: 16 mm (0.63 inch)
    Electrode length: appr. 55 mm (2.17 inch)

  • Process temperature

    Threaded with fixed cable:
    -20 to 100 °C (-4 to 212 °F)
    Threaded with plug-in head:
    -20 to 120 °C (-4 to 248 °F)
    Sterilization: max. 140 °C (284 °F) for 30 minutes

  • Process pressure

    13 bar at 20 °C (188 psi at 68 °F) absolute
    2 bar at 120 °C (14 psi at 248 °F) absolute

  • Temperature sensor

    Pt1000

  • Ex certification

    ATEX, NEPSI, CSA, IECEx, INMETRO, EAC Ex

  • Connection

    Process: 1/2" and 3/4" NPT, Clamp 1 1/2"
    Sensor connection: Inductive, digital connection head with Memosens 2.0 technology

  • Ingress protection

    IP68

  • Additional certifications

    Calibration certification of the cell constante and temperature, material certification 3.1