Digital combined pH/ORP sensor Memosens CPS96D

  • Measuring principle

    Potentiometric

  • Application

    – Process applications – media with high contamination: emulsions, suspensions, precipitation reactions – min. conductivity >500µS/cm

  • Characteristic

    – Rapid response – new, stabilised gel insensitive to contaminations

  • Measurement range

    pH 0-14

  • Measuring principle

    – Open aperture – double gel reference with ion trap
    Pt-disc as additional ORP element.
    rH measurment and control of the reference impedance.

  • Design

    – All shaft lengths with temperature sensor – advanced gel technology – digital electrode with Memosens technology

  • Material

    Glass

  • Dimension

    Diameter: 12 mm (0.46 inch)
    Shaft lengths: 120, 225, 360 and 425 mm
    (4.68, 8.77, 14.04 and 16,57 inch)

  • Process temperature

    max. 110°C
    (230°F)

  • Process pressure

    max. 10 bar
    (145 psi)

  • Temperature sensor

    NTC 30k

  • Connection

    Inductive, contactless connection head with Memosens technology

  • Ingress protection

    IP68

Field of application
Memosens CPS96D is the expert for fibrous media or media with a high content of suspended solids such as dispersions, precipitation or emulsions. The open aperture guarantees the most reliable, simultaneous pH and ORP measurement for better process control and increased quality. Memosens CPS96D is not the latest Memosens generation. To get information on the new Memosens CPS96E sensor with extended functionality, click here.

Chemical processesPulp and paper industryContaminated media and suspended solids- Dispersions- Precipitation- EmulsionsWith ATEX and IEC approval for use in hazardous areas.

Benefits
Simultaneous measurement of pH, ORP and rH values (in rH mode) for a better process overview Additional platinum electrode enables constant monitoring of reference impedance and thus sensor qualityRobust and resistant to poisoning thanks to stabilized gel and reference with ion trapNot affected by fluctuations in pressure and temperatureMaximum process safety through non-contact inductive signal transmissionEnables predictive maintenance due to storage of sensor and process-specific dataReduced operating costs due to minimized process downtime and extended sensor lifetime

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