Non-magnetic Thickness Gauge

Non-magnetic thickness gauges operate based on the principle of eddy current induction. The probe generates a high-frequency electromagnetic field, which induces eddy currents in the non-magnetic metal substrate. The thickness of the coating is then calculated by measuring changes in these eddy currents. This method is used to measure the thickness of insulating coatings on non-magnetic metal surfaces, such as anodized layers on aluminum or plastic coatings.
Selection
When selecting, consider the substrate conductivity, coating thickness range, probe size, and curvature adaptability. Pay attention to the influence of ambient temperature, and ensure it is equipped with a temperature compensation function. Choose automatic or manual models based on measurement accuracy requirements, and check the calibration certificate and probe protection rating.

Terms

Instruments

Adopt magnetic Induction principle to measure 0-1250μm thickness, equipped with line Probe measurement groove and narrow area, support single point and two point calibrating, with automatic matrix recognition and undervoltage prompt function.

$ 186.00

Using magnetic Induction Measuring method, range 0~ 5mm, error +/- 5%, can measure a variety of non-ferrous magnetic coatings, suitable for different curvature substrate surface.

$ 359.00

Using the magnetic induction method, the measurement range is 0~2000 μm, with an error of ±5%, a resolution of 0.1 μm. It supports separate probes and low-voltage alerts, and is suitable for various types of coatings.

$ 243.00

Measurement range 0~ 1250μm, suitable for LEEB220 and LEEB222 Coating thickness Gauge, Abrasion Resistance is good, suitable for a variety of nonmagnetic Coating thickness detection.

$ 157.00

Adopting the principle of magnetic Induction Thickness Measurement range 0~ 1250 microns, suitable for LEEB242 models, can be connected to the printer output data, suitable for nonmagnetic Coating thickness detection on magnetic metal substrates.

$ 219.00

Adopt magnetic Induction principle measurement, thickness range 0~ 1000μm, error +/- 3%, with low voltage prompt function, support split Probe and customized range, adapt to different curvature matrix measurement needs.

$ 243.00

Using magnetic and eddy current two thickness measurement methods, Measurement range 0-1250μm, with automatic identification of iron and non-iron matrix function, support single point and two point calibrating, with power supply undervoltage indication and statistical function.

$ 170.00

Using magnetic Induction and eddy current double thickness measurement method, Measurement range 0-1250μm, error +/- 3%, automatic identification of iron and non-iron matrix, with statistical function and undervoltage indication, easy to operate.

$ 180.00

Measurement range of 0-1250μm using eddy current principle, with single and continuous two measurement modes, support metric imperial unit conversion, with split Probe and RS232C interface, providing Automatic calibration and matrix recognition function.

$ 320.00

Adopt magnetic Induction principle measurement 0-10mm thickness range, resolution up to 0.1μm, Probe wear-resistant more than 500,000 times, suitable for -10-50 ℃ environment, error range +/- 3%, stable and fast test.

$ 369.00

Using magnetic Induction and eddy Current dual principle, Measurement range 0~ 500μm, resolution of 0.1μm, wear-resistant hard metal probe and Automatic calibration function, support USB data communication.

$ 275.00

Using magnetic Induction principle, Measurement range of 0-10000 μ m, support one and two point calibrating, split structure design can adapt to a variety of Probe types, to meet different Coating thickness measurement needs.

$ 340.00

Using magnetic Induction and eddy Current dual principle, Measurement range 0~ 1500μm, resolution 0.1μm, with automatic substrate recognition function, support USB and Bluetooth data transmission, Protection Rating IP65.

$ 1995.00

Adopt magnetic Induction principle to achieve 0-1250μm range measurement, equipped with large Probe to improve Stability, support single continuous two Measurement mode, with Automatic calibration and matrix material identification function.

$ 320.00

Adopt magnetic Induction principle measurement Coating thickness, Measurement range 0-1250μm, resolution up to 0.1μm, with automatic identification Probe, Data storage and upper and lower limit alarm function, aluminum shell is sturdy and durable.

$ 296.00

Articles

Application of Coating Thickness Gauges in Electroplating Thickness Detection
Coating thickness gauges are used to measure the thickness of electroplated layers, primarily employing the electromagnetic induction method for measuring non-magnetic coatings on magnetic substrates, or the eddy current method for measuring insulating coatings on non-magnetic metal substrates.
Paper Thickness Gauge for Determining Paper Thickness and Apparent Density
This article explains how to measure paper thickness and apparent density using a paper thickness gauge. Thickness refers to the vertical distance between the two sides of paper under standard pressure, while apparent density is calculated by dividing the basis weight by the thickness, reflecting the compactness of the paper.
Comparison of Dual-Principle Instruments: Magnetic Induction vs. Eddy Current for Coating Thickness Measurement
This article compares the principles of two coating thickness gauges. The choice of method depends on the substrate material: magnetic induction is used for magnetic metals, while eddy current is applied for non-magnetic metals.
Magnetic thickness gauge measures the thickness of coatings on steel surfaces.
Magnetic thickness gauges are used to measure the thickness of non-magnetic coatings on ferromagnetic substrates such as steel, based on the principles of magnetic induction or changes in magnetic attraction. Prior to use, calibration should be performed according to relevant standards, and attention should be paid to factors such as substrate characteristics, workpiece shape, and surface conditions that may affect the measurements.