Instrument Introduction:
The JT-607C coating thickness gauge is a compact and highly precise coating thickness gauge with a highly precise module design. The C-shaped slotted sample chamber allows it to measure both ultra small samples and large workpieces that exceed the size of the sample chamber. Widely used for quality control of various products, incoming material inspection, and measurement of production process control. It is a high-precision X-ray fluorescence spectrometer with multiple collimators (0.05mm, 0.1mm, 0.2mm, 0.5mm) that automatically switch. Suitable for testing small area electroplated coatings, repeated coatings, and uneven samples.
Instrument features:
1) Equipped with a micro focused enhanced X-ray generator and advanced optical path conversion focusing system, it can measure various small components
The minimum measurement area is 0 002mm²
2) Equipped with non-destructive zoom detection technology and manual zoom function, it can perform non-destructive testing on various irregular groove parts with a groove depth range of 0-90mm
3) The core EFP algorithm can perform fast, accurate, and stable data analysis on multiple layers of elements, including the same element in different layers (Ni/Cu/Ni/FeNDB on neodymium iron boron magnets, accurately detecting the thickness of the first and third layers of Ni)
4) Equipped with high-precision micro mobile slides, it can achieve precise displacement and simultaneous detection of multiple points and samples
5) 23 coatings and 24 elements can be analyzed simultaneously, with a measurement range of chlorine CL (17) - uranium U (92) and a coating analysis range of chlorine CL (17)/lithium Li - uranium U (92). The minimum detection limit of the coating is 0.005 μ m
6) Humanized closed software, automatic fault diagnosis, prompt correction, and operation steps to avoid misoperation
7) The standard configuration includes two collimators to choose from, with a minimum measurement area of 0.002mm ²
8) Equipped with low light focusing technology, the diffusion of the nearest distance measuring spot is less than 10%
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