Film Thickness Gauge

The film thickness gauge measures the thickness of coatings or films using optical interference or magnetic induction principles. It is used in industries such as coatings and plastics to ensure product thickness meets standards and to control quality.

Instruments

In line with ISO2808-1974 standard, the range is 0~ 150μm, the accuracy is not more than 5μm, can measure the wet film thickness and estimate dry-film thickness, suitable for laboratory and pRoduction control.

$ 127.00

In line with ISO2808 standard, the range is 0~ 500μm, the accuracy is not more than 5μm, can measure the wet film thickness and estimate dry-film thickness, suitable for laboratory and pRoduction site.

$ 127.00

Made of stainless steel, the thickness is only 1.5mm, the range is 20~ 200μm, Division 20μm, the card design is convenient for quick measurement of wet-film Coating thickness on site.

$ 119.00

The three-wheel structure design is adopted, and the center wheel contacts the film directly for reading. The measuring range is 0-500 μm and the indexing is 25 μm. It can perform nondestructive thickness measurement on plane and curved surface.

$ 186.00

Roller type design, range 0~ 500μm, stainless steel material to ensure durability, suitable for on-site rapid measurement wet film thickness, in line with a number of execution standards.

$ 146.00

Provide an additional one-year warranty period, which is applicable to Coating thickness Gauge pRoducts. It needs to be purchased simultaneously when purchasing the equipment and is not sold separately.

$ 122.00

Dedicated to Coating thickness Gauge calibrating, ensure accurate thickness measurement, suitable for F type equipment, improve Reliability.

$ 88.00

Stainless steel material is sturdy and durable, with a range of 50-950 microns, Division 50 and 100 microns, and a compact shape of only 65 * 43 * 1.5mm, suitable for rapid measurement of wet film thickness on site.

$ 119.00

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

Using mechanical measurement method, Measurement range 0~ 1mm, accuracy ≤ 0.005mm, Graduation 0.001mm, probe diaMeter Φ 5mm, suitable for flat film and sheet, providing two probe pressure options.

$ 267.00

The three-wheel structure design is adopted, and the thickness of the center wheel contact film is directly read, with a range of 0-100 μm and a Graduation of 5 μm, which can be used for nondestructive measurement on planes and surfaces.

$ 186.00

Made of precision stainless steel, with a range of 50 to 950 μm, the 10-step tooth design can accurately measure wet film thickness, ensure painting mass and avoid material waste.

$ 109.00

Made of stainless steel, the range is 10~ 100μm, Division 10μm, Dimension 65 * 36 * 1.5mm, suitable for Paints, varnish and other Coating Coating thickness measurement.

$ 119.00

Measurement range 0-20mm, accuracy 0.001mm, contact pressure 20 +/- 5kPa, suitable for paper, Cardboard and sheet material Film thickness detection, in line with a number of international standards.

$ 401.00

The three wheel structure design is adopted, and the thickness of the center wheel contact film is directly read, with a range of 0-1000 μm and a Graduation of 50 μm. Destructiveness measurement can be carried out on the curved surface, and the operation is simple and high accuracy.

$ 186.00

Articles

Mechanical thickness gauge for measuring film thickness uniformity.
The mechanical thickness gauge assesses the uniformity of film thickness through contact measurement. During measurement, the probe contacts the sample under standard pressure, converting displacement into a thickness reading.
Preparation of composite films by coating mechanism for electrical performance experimental characterization
This article introduces the method of preparing composite films using a film coating machine and testing their electrical properties. The film coating machine evenly spreads the slurry with a blade, controlling thickness and uniformity. The preparation process includes raw material preparation, substrate treatment, coating, and curing.
Heating coating machine is used for the doctor-blade coating of gel electrolyte films in zinc-ion batteries.
This article introduces the blade coating process for preparing gel electrolyte films for zinc-ion batteries using a heated coating mechanism. By controlling parameters such as temperature, coating speed, and gap height, this method enables the fabrication of films with uniform thickness and smooth surfaces.
The coating machine applies an anti-reflection coating on the surface of optical lenses.
A coating machine is a precision device used for depositing anti-reflection coatings on the surface of optical lenses. Based on the principle of light interference, it forms a thin film of specific thickness on the lens surface through physical or chemical methods to reduce light reflection and enhance light transmission performance.
The coating machine applies the OLED light-emitting layer onto ITO glass.
This article introduces the technique of using a coating machine to apply OLED luminescent layers onto ITO glass. The coating principle involves matching solution rheology with substrate surface energy, allowing control over film thickness by adjusting parameters such as viscosity and speed.
Multilayer functional films are constructed by layer-by-layer coating using a coating machine.
This article introduces a method for preparing multilayer functional films using a coating mechanism. By sequentially coating different materials layer by layer, it enables precise control over the thickness and structure of each layer, thereby adjusting the optical, electrical, and other properties of the films.
Principles and Selection of Film Thickness Measurement Instruments
This article introduces the principles and selection methods of thin film thickness measurement instruments. The measurement principles are mainly divided into contact and non-contact methods, which calculate thickness by detecting the differences in the thin film's response to physical signals.
Phosphor films and quantum dot coatings are uniformly applied using a coating machine.
This article introduces the significance of phosphor films and quantum dot coatings in optoelectronics and display technologies, highlighting that their performance depends on the uniformity, thickness, and density of the coatings.
From aluminum foil and copper foil to electrode coating, the laboratory coating machine handles it all in one go.
A laboratory coating machine is a sample preparation device used for material research and development and quality control. It evenly applies slurry onto substrates such as aluminum foil and copper foil, forming a film of specific thickness by controlling the drying process.
The laboratory coating machine provides uniform coating for OCA optical adhesive and AR coating.
The laboratory film coater is a precision instrument used to prepare uniform thin films on substrates, playing a crucial role in the research and development of OCA optical adhesives and AR coatings. It ensures consistent film thickness and prevents defects by precisely controlling parameters such as coating speed, gap distance, and solution viscosity.
Choosing a laboratory coating machine for phase change material thin film coating is more professional.
Phase change material thin films have important applications in areas such as thermal energy management, and their performance is influenced by factors such as thickness uniformity and surface morphology. Laboratory research and development require precise control of parameters like coating speed and temperature to ensure the stability of the material's phase change characteristics.
The laboratory coating machine is used for perovskite battery research and development.
The laboratory film coater is a key piece of equipment in the research and development of perovskite solar cells, used for the precise preparation of perovskite functional layer thin films. By controlling parameters such as coating speed and blade gap, it influences the thickness and uniformity of the wet film, thereby determining the crystallization quality of the film and the final performance of the solar cell.
Laboratory Preparation of Graphene Films by Doctor Blade Coating Method
Blade coating is a laboratory technique for preparing graphene films, where a graphene dispersion is evenly spread onto a substrate using a blade and then dried and processed to form a thin film. This method is simple to operate, cost-effective, easy to control in terms of thickness, and suitable for fundamental research and small-scale production.