Spectrometer XRF RoHS Vision

Xenemetrix XRF spectrometer RoHS VISION is specifically designed to allow quick and easy analysis of the content of hazardous substances in accordance with the regulations concerning environmental protection RoHS (Directive on restriction of Hazardous Substances) and WEEE. Using RoHS VISION you can successfully carry out the analysis in accordance with all the requirements of RoHS, MCV verification procedures, using test procedures included in the bulletin IEC TC111. The analyzer combines proven Xenemetrix technology and a new intuitive technology Selective Acquisition Reflexive Matrix Technology (SMART), which allows the analysis of many complex materials without the knowledge of their composition.

RoHS Vision enables you to record the image of the analyzed area thanks to CCD camera with markers of dimensions for analysis of samples in micro and macro scale. The device is compact, with great analytical potential, yet easy to use for people who do not have extensive analytical knowledge.

Additionally spectrometer in the version of X-RoHS + SDD in addition to applications for analysis RoHS allows full qualitative and quantitative analysis in terms of F-Fm. It is equipped with SDD detector with optimized window for the measurement of light elements from fluorine. It is characterized by an extremely good resolution of 125 eV, so you can use it also for applications such as fuel analysis for sulfur, analysis of polymers, metallurgy, mineral analysis and forensics.

 

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Additional Info

Model: ROHS VISION laboratory EDXRF spectrometer
Application: RoHS
Analysis range: sub ppm - 100% depending on the matrix
Detector: SDD
Energy resolution: approx. 125 eV
Measured elements: Pb, Hg, Cd, Cr, Br
Measurement atmosphere: Air, Helium (optional)
Test time: 60-200 s
Tube power: 50kV, 50W
Power: 230V AC
Forms of samples: solid, powder and liquid
Weight: approx. 50 kg
Sample chamber dimensions: 220 x 220 x 50 mm
Dimensions: 550 x 550 x 320 mm
Additional informations: Built-in camera and micro collimator micro spot (1 mm) allow precise measurement of point and the collimator macro spot (8mm), covering a larger area measurement.