MPO SERIES

MPO series
MPO series

The small all-rounders for mobile coating thickness measurement.

Leading industrial instrument series for fast and easy coating thickness measurement in corrosion protection and industrial applications.

Fischer MPO Series
Fischer MPO Series

Coating thickness measurement for your pocket.

Practical to use and easy to handle, the measuring devices of the MP0® series are a compact solution for simple coating thickness measurement onsite. With two illuminated displays, a robust housing and an intuitive user interface, they are your ideal companion. Use these small handheld gauges to measure coating thicknesses (e. g. paint coating thickness or hot-dip galvanized coating thickness) on practically all metals quickly, easily and non-destructively.

Perfect fit. The devices of the DUALSCOPE family automatically

select the right test method for your measuring task

Flexible.

Available in many different configurations depending

on requirements

Compact.

Fits in any pocket

Up to all challenges.

Precise measurement on many surfaces in a wide range of

coating thicknesses

Built to last.

Suitable for thousands of measurements thanks to low wear probe pole

Ideal for onsite use.

Compact design and 2-display solution

Ideal for onsite use thanks to its , compact format, low weight and durable design.

MPO series always offers optimum solution for all your applications

Second display for reading the measured values directly on the top of device

Overview of the MP0 series models and application examples

DAULSCOPE MPO

Measuring method:

Amplitude-sensitive eddy current method and magnetic induction measuring method

Applications:

Measurement of non-magnetic or electrically non-conductive layers on magnetic or non-magnetic, electrically conductive base materials

Application examples:

  • Coating thickness measurements on steel and non-ferrous metals

  • Zinc, chrome, copper, paint, varnish or plastic coatings on steel, iron or cast iron

  • Paint, lacquer or plastic coatings on aluminum, copper or brass

  • Anodized coatings on aluminium

  • Suitable for smooth and rough surfaces

PERMASCOPE MPO

Measuring method:

Magnetic induction measuring method

Applications:

Measurement of non-magnetic layers on magnetic base materials

Application examples:

  • Precise coating thickness measurements of thin layers on steel and iron

  • Zinc, chrome, copper, paint, varnish or plastic coatings on steel, iron or cast iron

  • Coating thickness measurements on smooth and rough surfaces

ISOSCOPE MPO

Measuring method:

Amplitude-sensitive eddy current method

Applications:

Measuring electrically insulating layers on non-magnetic, electrically conductive metals

Application examples:

  • Precise coating thickness measurements on practically all non-ferrous metals

  • Paint, lacquer or plastic coatings on aluminum, copper or brass

  • Anodized coatings on aluminium

Download technical brochure of Fischer MPO series

DUALSCOPE MPO

PERMASCOPE MPO

ISOSCOPE MPO

Description

Part No.

Dualscope MPO

Measurement of non-magnetic or electrically non-conductive layers on magnetic or non-magnetic, electrically conductive base materials .

Request

Dualscope MPOR-FP

Measurement of non-magnetic or electrically non-conductive layers on magnetic or non-magnetic, electrically conductive base materials with extended probe and software .

Permascope MPO

Measurement of non-magnetic or electrically non-conductive layers on magnetic substrate .

Permascope MPO-FP

Measurement of non-magnetic or electrically non-conductive layers on magnetic substrate with extended probe .

Isoscope MPO

Measuring electrically insulating layers on non-magnetic, electrically conductive metals

Isoscope MPO-FP

Measuring electrically insulating layers on non-magnetic, electrically conductive metals with extended probe.

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ROI calculations for choosing DIGITAL COATING THICKNESS Instrument with DATA LOGGING Software Vs DIGITAL COATING without DATA LOGGING AND software

  • Application notes

  • Require onsite demo

  • Need application based assistance for model selection