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Fischer Probes for Handheld Coating Thickness Gauges

SKU: FIS1006632

  • $ 1,06795
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Fischer Probes for Handheld Coating Thickness Gauges

Ordering Guidance for Probes

Click on each model number to view detailed specifications. Additional probe models are available upon request. If you need assistance selecting the most suitable probe for your application, please contact us for expert recommendations.

Coating Thickness Base Substrate Probes Measuring Range Applications
Non-Ferrous

FTA3.3H

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0–1200 µ (0–47.24 mils) Coating thickness on non-ferrous metal base materials (NF); NC/NF.

FTA3.3FG

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0–1200 µ (0–47.24 mils) Measures non-conductive coatings on non-ferromagnetic metals (Iso/NF); moisture-sealed probe—ideal for anodized layers with acidic contamination.

FAW3.3

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0–1200 µ (0–47.24 mils) Measures non-conductive coatings on non-ferromagnetic metals, works well in flat areas or recesses, and may also function on slightly damp or contaminated surfaces.

FAI3.3-150

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0–800 µ (0–31.49 mils) Measuring the thickness of electrical non-conducting coatings on non-ferromagnetic metal base materials (NC/NF).
Ferrous

D-F (FGAB1.3)

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0–2000 µ (0–78.74 mils) Measures the thickness of electrically non-conductive and non-ferromagnetic metallic coatings on steel or iron (Fe) base materials.

FGAB1.3-150

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0–1000 µ (0–39.37 mils) Measures non-conductive and non-ferrous coatings on steel/iron; ideal for bores, pipes, and grooves; external-triggered low-uncertainty on IDs ≥ 11.5 mm (0.45 in).

D-F-Ro (F20H)

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0–2500 µ (0–98.43 mils) Measures electrically non-conductive and non-ferromagnetic metallic coatings on steel or iron (Fe) base materials.

FGABW1.3

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0–2000 µ (0–78.74 mils) Measures non-conductive and non-ferrous metal coatings on steel or iron, including in pipes and recesses, but may require special probes for accurate results on rough surfaces.
Ferrous / Non-Ferrous

D-FN (FD13H)

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0–2000 µ (0–78.74 mils) Dual-method probes measure coating thickness on both ferrous and non-ferrous metals and are well-suited for rough surfaces due to their large pole tip.