Copper Foil Surface Roughness Detector

The copper foil roughness tester scans the surface profile using a contact probe and calculates the roughness value by measuring the peak-to-valley height difference. It is used to evaluate the surface flatness of copper foil, monitor the quality of copper-clad laminates in PCB manufacturing, and ensure the adhesion of circuits and the stability of signal transmission.
Selection
When selecting, consider a measurement range covering 0.1-10 μm, a probe pressure below 1 mN to prevent scratches, and an environmental vibration isolation function. It should be compatible with industry-standard algorithms, support automatic multi-point measurement, have a simple operation interface, and meet the needs of rapid production line inspection.

Terms

Standards

Instruments

The stamping sampling method is accurate and fast, the limit cutting thickness range is 0.0045~ 0.1mm, and the sampling error is only +/- 0.01mm. The special treatment die blade is used, and it can be used for 2 years without replacement. It is suitable for high-fiber paper, metal foil and other materials.

$ 1848.00

It can be extended by 50mm, and up to 2 pieces can be installed to achieve 100mm deep hole measurement; it is suitable for deep hole internal surface roughness detection, and needs to cooperate with the measurement platform to ensure Stability.

$ 157.00

Measurement range from 5mm, depth up to 22mm, suitable for a variety of Roughness Gauge to achieve profiled surface detection.

$ 275.00

Maximum load 50Kg, Test speed 10~ 60mm/min adjustable, using pointer sensing mode, effective Travel 0~ 360mm, suitable for vertical angle disbonding test.

$ 716.00

It can measure planar and cylindrical surface roughness, with a minimum diaMeter of 5mm and a maximum depth of 22mm, and supports a variety of Sensors to adapt to different workpiece shapes.

$ 332.00

It can measure the surface roughness of the hole with an aperture greater than 2mm, and the maximum depth is 9mm. It supports both flat and cylindrical measurement, and is suitable for a variety of special-shaped surface detection needs.

$ 425.00

DSP chip control, Measurement speed and low power consumption; Support 160μm large-range measurement, up to 320μm; Multi-ParaMeter measurement function, compatible with ISO, DIN, ANSI, JIS multiple national standards.

$ 1364.00

High-speed DSP processor is used to improve Measurement speed, support Ra0.05-10.0 μ m Measurement range, Sensor host integrated design is convenient for field use, and can measure the cone surface and groove of the outer circle.

$ 1145.00

It can measure the groove surface roughness with a groove width greater than 3mm and a groove depth less than 10mm, and is compatible with flat and cylindrical measurement. It can be used with the measurement platform to achieve accurate detection.

$ 425.00

Provide 25, 40, 70, 100 four profile specifications, size 87x87x2.5mm, weight only 60 grams, Portable design is convenient for quick comparison and evaluation on site.

$ 505.00

Providing stable copper Ion concentration standards to ensure ElectRode Measurement accuracy, 250ml Encasement meets the daily calibrating needs of the laboratory and is suitable for a variety of copper ion detection scenarios.

$ 110.00

Adopt replica tape method to measure surface roughness, Peak Measurement range 20~ 115μm, accuracy +/- 5μm, with automatic subtracting substrate function, High Protection Rating, anti-solvent and water dust.

$ 935.00

The device uses 1200-1500lx Illumrination degree, achieves 80x magnification and 0.01mm resolution through scale Microscope, and can measure the maximum aperture of 2mm, suitable for aluminum foil pinholing light transmission observation.

$ 554.00

Small size only 106 * 70 * 24mm, weight 200 grams easy to carry; measurement of outer circle, cone, plane and groove, Indication Error ≤ +/- 15%, using piezoelectric crystal Sensor to ensure measurement Reliability.

$ 687.00

Measurement range 0~ 500μm, stylus angle 60 degrees, can measure more than 50 readings per minute, with built-in temperature compensation and aluminum oxide wear surface design, in line with ASTM D4417 and other international standards.

$ 1437.00

Articles

Roughness Measurement Instrument Selection: Contact vs. Non-Contact
This article introduces the differences between contact and non-contact methods when selecting a roughness measuring instrument.
Comparison of Selection Parameters for Stylus and Laser Roughness Measuring Instruments
Stylus-type roughness measuring instruments perform contact scanning to measure two-dimensional profile parameters in accordance with standards such as ISO 4287, while laser-based instruments utilize non-contact optical principles and refer to ISO 25178.
The film coater achieves controllable coating of lithium-ion battery anode slurry on copper foil.
This article explores how coating machines control the application process of the negative electrode slurry onto copper foil in the manufacturing of lithium-ion batteries.
Contact angle measuring instrument measures the surface wettability of paper.
The contact angle goniometer evaluates wettability by measuring the contact angle of a liquid droplet on the surface of paper, based on the principle of Young's equation. The static drop method is commonly used for measurement, requiring control over sample flatness, environmental conditions, and droplet volume, while also considering the influence of surface roughness.
Surface Roughness Tester Evaluates the Impact of Substrate on Adhesion
This article primarily explores how the surface roughness of the substrate affects the adhesion of coatings or bonds.
Paper smoothness and roughness
Paper smoothness and roughness are key parameters that describe the flatness of the paper surface, and they complement each other. Smoothness refers to the extent to which the paper surface approaches an ideal plane, while roughness reflects the amplitude and frequency of surface irregularities.
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 coating machine in the laboratory ensures a more stable functional layer on the surface of copper and aluminum foils.
The laboratory coating machine is used to apply functional layers on the surfaces of copper foil and aluminum foil. By precisely controlling parameters such as coating speed, slurry viscosity, and drying temperature, it enhances the uniformity and adhesion of the coatings.
Application of Tensile Testing Machine in Coating Peel Strength Testing of Silicon-Carbon Anode Materials
This article introduces how to use a tensile testing machine to measure the bonding strength between silicon-carbon anode material coatings and copper foil substrates in lithium-ion battery research and development. During the test, the coating is peeled off using the 180-degree peel method at a constant speed, and the force variations throughout the peeling process are recorded.