Product Details
All-in-one dual-purpose coating thickness gauge German Nix
Coating thickness gauge
Parameters
Model
Substrate:
Probe form : Integrated
Display:
Digital display
Measurement range::
Measurement accuracy
:
:.
:
Display accuracy:
Operating temperature
+
℃
Temperature compensation
℃
Minimum base
Minimum curvature: convex and concave radius
/
Thinnest substrate
:.
:.
Power supply
Battery
Section
Weight
Dimensions
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Application
Measurement of non-magnetic coatings, coatings and oxide layers on magnetic metal substrates such as steel , such as paint, powder, plastic, rubber, zinc, chromium, aluminum, etc.
Measurement of insulating coatings on non-magnetic metal substrates such as aluminum, copper, zinc, stainless steel, such as paint, porcelain, plastic, Enamel oxide layer, etc.
Features
Zero position stability
All coating thickness gauges are required to calibrate the zero position before measurement,
This can be done on the zero calibration board that comes with the instrument. or zero for uncoated workpieces.
The stability of the zero position of the instrument is the prerequisite for ensuring accurate measurement.
After a good thickness gauge is zeroed, it can maintain the zero position for a long time without drifting,
ensuring accurate measurement
The German Nix coating thickness gauge does not require calibration< br/>In addition to zero calibration, most thickness gauges also need to be calibrated with standard pieces. To measure the thickness in a certain range, it is necessary to use a certain range of standard pieces for calibration. The main reason is that it cannot meet the linear accuracy within the full range. Not only is the operation cumbersome, but it will also fail due to the rough surface of the standard sheet, increasing system errors.
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Temperature compensation
The measurement of coating thickness is greatly affected by temperature. Measuring the same workpiece at different temperatures will result in large errors. Therefore, a good thickness gauge should have ideal temperature compensation technology to ensure measurement accuracy at different temperatures.
Ruby Probe
The wear resistance of the probe contact point directly affects the accuracy of the measurement. Ordinary metal contact probes will cause large errors after surface wear.
Unique DC sampling technology
The measurement repeatability is unparalleledly superior and improved compared to traditional AC technology.
Disclaimer
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