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Wet film thickness

MPO Thickness Gauge

MPO Thickness Gauge

With the proven Fischer probe technology, it is the smallest instrument and the best fit for your measurement needs. It measures accurately, has a user-friendly interface and is robust. Ideal for on-site measurements of uncomplex workpieces. Built-in probes with magnetic induction and eddy current methods for fast and non-destructive measurement of coating thickness. The DUALSCOPE®MP0 automatically recognizes the substrate such as iron or aluminium and selects the appropriate measurement method. The most important statistical parameters can be displayed. Thanks to its excellent repeatability and the calibration function of a uniform standard, this instrument is unrivalled in its class.

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Ordering Information:

MPO Thickness Gauge


• Electroplating on iron such as galvanized, chrome, copper, etc

• Paints, varnishes, plastics, etc. on iron

• Coatings such as paints, varnishes, plastics, etc. on non-ferromagnetic metals (aluminum, copper, brass) or non-magnetic stainless steel


Measurement applications

& measuring range

NF, Iso/Fe
0 – 2000 µm

Iso/NF
0 – 2000 µm

Measurement error

Based on Fischer's standard film

0 to 75 µm       ± 1.5 µm
75 ... 1000 µm   ≦ 2 %
1000 ... 2000 µm ≦ 3 %

0 to 50 µm      ± 1 µm
50 ... 1000µm   ≦ 2 %
1000 ... 2000µm ≦ 3 %

Repeatability

Based on Fischer's standard film

0 to 50 µm    ≦ 0.25 µm
50 ... 2000 µm ≦ 0.5 %

0 to 100 µm  ≦ 0.5 µm
100 ... 2000 µm ≦ 0.5 %

Measurement method

Magnetic induction method

(DIN EN ISO 2178)

Eddy current method

(DIN EN ISO 2360)

Operating temperature

5 – 60°C

5 – 60°C

Memory capacity

1000 measurements


• Measurable on all metal substrates (steel or non-ferromagnetic).

• The instrument automatically recognizes the substrate material under the plating and selects the corresponding measurement method

• Excellent repeatability

• Less affected by the permeability, conductivity and geometry (curvature, thickness, etc.) of the substrate

• Patented conductivity compensation technology (eddy current method)

• Compact enough to reliably measure even in hard-to-reach areas


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