The unique features of the XGT-7200 have seen this innovative micro-XRF analyser widely embraced for a range of applications, including electronics, engine wear analysis, forensic science, geology, mineralogy, pharmaceutics, museums, metallurgy, biology, medicine and archaeology.
The flexible XGT-7200 micro-XRF system covers everything from macro analysis, for a general survey of a wide area, to the inspection of a specific micro area, with simultaneous XRF and transmission imaging. Its many features ensure high performance analysis with easy operation.
The unique x-ray guide tube technology of HORIBA provides the highest spatial resolution micro-XRF analysis, with x-ray beam diameters down to 10 µm. The high intensity, ultra-narrow beams provided by the guide tubes allow fast, non-destructive analysis of microscopic features.
In combination with XRF imaging, the XGT-7200 allows transmitted X-ray images to be acquired. This can be used to perform internal structural analyses and identify regions of interest not visible to the eye. Scanning is done with a narrow perpendicular beam, resulting in clear penetrating images even for non-flat samples such as cylindrical parts.
The XGT-7200 system offers the user unique Dual Vacuum Modes for sample analysis – switching between the two modes takes just a few seconds. In Full Vacuum Mode the entire sample chamber is subjected to vacuum conditions to ensure the ultimate sensitivity to light elements. In Partial Vacuum Mode the sample is maintained at atmospheric pressure whilst a vacuum is drawn around the detector and capillary optics. This mode is ideally suited for analysis of water containing samples such as biological tissue, and fragile archaeological/museum objects.
The accommodating sample chamber enables a wide range of samples to be analyzed, from a 10 µm spot analysis on a microscopic feature, to mapped analysis of areas as large as 10cm x 10cm.
Intuitive software allows easy control of instrument hardware, fast sample visualization and selection of measurement region, and full data analysis. Functions include automated peak identification, quantitative measurements, RGB composite image generation, line profile analysis.
Elements | Na to U |
X-ray tube | Rh target / Tube voltage 50kV / Tube current 1mA |
Fluorescent X-ray detector | Peltier cooled Silicon Drift Detector (SDD) |
Transmitted X-ray detector | Nai(Tl) scintilltor |
X-ray guide tube | Mono capillary 10μm / 100μm with no filter |
Optical image | Full sample optical image and coaxial magnification image |
Sample stage size | XY : 100mm×100mm |
Sample chamber | Vacuum chamber model/ Max 300mm×300mm×80mm in vacuum |
Signal processing | Digital pulse processor ( INCA unit ) |
Qualitative analysis | Auto identification / KLM marker / Peak search / Compare spectrum |
Quantitative analysis | Non standard FPM / Standard FPM / Standard file matching FPM /Calibration curve / Multi layer FPM (Thickness gage) /Multi point analysis (Max5000) / Multi point result send to Excel / XGT-5000 spectrum view |
Mapping function | Transmitted X-ray image / Elemental image / Spectrum mapping / Rectangle mapping / Generate spectrum / RGB composition / Scale maker / Line analysis |
Other function | Possible to start the XGT-5200 software simultaneously. |
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