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Ryan Quality Control

SPI Coating Thickness Gage



SPI Coating Thickness Gage


Product Description

Coating Thickness Gage

The SPI coating thickness gauge can perform two different methods of calculating thickness measurement by utilizing the characteristics of both eddy current and magnetic induction. 

Testing performance is both nondestructive and extremely accurate. 

Sleek state of the art thickness gauge easily detects the thickness of non-magnetic coating on a magnetic substrate (ferrous) or an insulating coating on a non-magnetic conductive substrate (nonferrous). 

Can be used in many areas of industry including automotive, manufacturing, general engineering, commercial inspection, etc. 

Flip display for reading upside down. 

Includes: unit, 2 substrate samples (steel, aluminum), 4 calibrated thickness samples, operation manual, batteries, and carrying case. Main Technical Data 

Measuring range: 0 - 1000 µm max. or 0 - 40 mils. g Guaranteed tolerance: ± (2µm+3%) ± (0.1 mils +3%) g Display: 3 digits (digit height = 15 mm) 

Min. measuring area: 0.2" x 0.2" (5 mm x 5 mm) g Min. radius of curvature: Convex: 0.12" (3 mm), Concave: 1.2" (30 mm) 

Min. substrate thickness: Ferrous: 20 mils (0.5 mm), Nonferrous: 2 mils (50 µm). 

Calibration: zero calibration, foil calibration. g Max. surface temperature of test object: 302° F (contact time max. is 2 seconds). 

Memory: 10 measurements g Power source: 1 AAA battery g Dimensions: 4.25" x 1.80" x 0.885


Coating Thickness Gages; Maximum Thickness Measurement (micro m): 1,000.00; Maximum Thickness Measurement (mil): 40.00; Maximum Thickness Measurement (mm): 1.00; Minimum Thickness Measurement (mil): 0.00; Minimum Thickness Measurement (mm): 0.00 
Type: Portable Coating Thickness Gage
Maximum Measuring Range (MIL): 40.00
Minimum Measuring Range (MIL): 0.00
Maximum Measuring Range (Microns): 1000
Minimum Measuring Range (Microns): 0
Maximum Measuring Range (mm): 1.00mm
Minimum Measuring Range (mm): .00mm
Display Type: Digital
Accuracy (%): ±3
Accuracy (mm): ±0.01
Accuracy: ±0.1 MIL + 3% of Reading or ±2.0 Microns + 3% of Reading
For Use With: Either Ferrous Or Nonferrous Base

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