Brief description: The NanoFocus μ surf explorer precision measurement and surface analysis system has complete functions, compact structure, high cost-effectiveness, and possesses ultra-high optical resolution and comprehensive three-dimensional surface morphology analysis capabilities. NanoFocus laser confocal microscope. The μ surf series is used to measure surface physical morphology and perform micro nano scale three-dimensional morphology analysis, such as 3D surface morphology, 2D depth morphology, contour (depth, width, curvature, angle), surface roughness, etc.
Product Details
μ surf explorer precision measurement and surface analysis system The μ surf series products use porous confocal technology, combined with CCD image capture, to replace the holes in the detector with a rotating disk with many holes, and then move the objective lens vertically, similar to tomography, to accurately measure the three-dimensional data of objects in a short time (about a few seconds). Its measurement method is non-contact and will not damage the surface of the sample. It does not require measurement in a vacuum environment and can also be observed using the function of a microscope. It can be used normally in harsh working environments. Due to the use of confocal method, compared with other methods, it can more accurately measure the height of objects and establish 3D stereoscopic images when measuring heights with large gradients, which has significant advantages.
The NanoFocus μ surf explorer precision measurement and surface analysis system has complete functions, compact structure, high cost-effectiveness, and possesses ultra-high optical resolution and the most comprehensive and extensive three-dimensional surface morphology analysis capabilities.
Laser confocal microscopeapplication The μ surf series is used to measure surface physical morphology and perform micro nano scale three-dimensional morphology analysis, such as 3D surface morphology, 2D depth morphology, contour (depth, width, curvature, angle), surface roughness, etc. Precision components: detect components that require surface wear, surface roughness, and surface microstructure, such as engine cylinders, cutting edges, etc; Life Sciences: Measuring Coating Thickness on Stents Brackets, etc Microelectromechanical systems: detection of microdevices, detection of tissue structures in pharmaceutical engineering, such as gene chips, etc Semiconductors: Detection of microelectronic systems, packaging, and auxiliary product structural design Solar energy: 3D morphology characterization of cell grid lines, aspect ratio measurement, 3D morphology characterization after velvet production (single crystal pyramid size, quantity, angle, polycrystalline corrosion pit morphology, density), roughness analysis, etc Paper: Measurement of three-dimensional surface morphology of paper and coins
Laser confocal microscopeTechnical Specifications LED light source: λ=505 nm, MTBF: 50000 h Measurement time: 5-10 seconds Measurement principle: non-contact, confocal X/Y direction, platform movement range: 50mmX50mm, motor-driven, resolution: 0.3 μ m Z-direction measurement range: 250 μ m, resolution: 2nm Objective lens: 10X, 20X, 50X, 100X (optional) Computer: High performance computer control system, comprehensive software with splicing function, Working power supply: 100-240V, 50-60Hz, input<45W Material: Steel, Rubber, Marble Dimensions: 710x270x330 mm (HxD) Weight: 28KG Cleanroom Class: Capability Class 6 (according to DIN EN ISO 14644)
Main business of the company:Fully automatic imaging system