The XOS R series Signal complies with ASTM D7757 and delivers quantitative analysis of silicon from gasoline to ethanol and toluene. The Signal bench-top analyzer delivers unprecedented precision and accuracy in quantitative analysis of silicon. The analyzer is based on XOS MWD XRF technology, as found in the XOS R series Sindie and Clora analyzers. Ensuring a robust analysis solution for demanding petroleum and industrial environments.
Total silicon analysis in hydrocarbons and bio fuels
For use in refinery labs, pipeline terminals, additive plants, and inspection laboratories.
Features and Benefits
LOD: 0.65 mg/kg (ppm) at 600 seconds
Dynamic Range: 0.65 mg/kg (ppm) to 3000 mg/kg (ppm)
Easy to use
Intuitive 10-inch touchscreen
Just plug in and measure
Measurement time: 10-99 seconds
Low maintenance: no gasses, heating elements,columns, or quartz tubing
Traditional 43 mm XRF sample cups
Small footprint
LIMS integration for data management and transfer
Custom sample presets to save data entry time and minimize data entry error on common samples
Bar code reader autofills sample name to reduce data entry time
Storage capacity for more than 50,000 measurement results
Supports up to 30 calibration curves
USB connectivity in front and back for connecting to printer, keyboard, mouse, and memory stick
Supports USB and network printers
Large, easy-to-remove side panels for easy serviceability
Advanced error reporting and diagnostics
Trusted Precision
Monochromatic Wavelength Dispersive X-ray Fluorescence (MWD XRF®) utilizes state-of-the-art focusing and monochromating optics to increase excitation intensity and dramatically improve signal-to-background over high-power traditional WD XRF instruments. This enables significantly improved detection limits and precision, and a reduced sensitivity due to matrix effects. A monochromatic and focused primary beam excites the sample, and secondary characteristic fluorescence X- rays are emitted from the sample. A second monochromating optic selects the silicon characteristic X-rays and directs these X-rays to the detector. MWD XRF is a direct measurement technique and does not require consumable gasses or sample conversion.
For more information please download our product catalogues or visit XOS Signal R series
Additional information
Manufacturer
XOS
Industry
Biofuels, Energy – Oil, Gas and Petrochemicals, Recycling – Fuels from Waste
XOS R series Signal Silicon MWD XRF Analyzer
Silicon Analysis in Petroleum and Bio Fuels
The XOS R series Signal complies with ASTM D7757 and delivers quantitative analysis of silicon from gasoline to ethanol and toluene. The Signal bench-top analyzer delivers unprecedented precision and accuracy in quantitative analysis of silicon. The analyzer is based on XOS MWD XRF technology, as found in the XOS R series Sindie and Clora analyzers. Ensuring a robust analysis solution for demanding petroleum and industrial environments.
Description
Applications
Features and Benefits
Trusted Precision
Monochromatic Wavelength Dispersive X-ray Fluorescence (MWD XRF®) utilizes state-of-the-art focusing and monochromating optics to increase excitation intensity and dramatically improve signal-to-background over high-power traditional WD XRF instruments. This enables significantly improved detection limits and precision, and a reduced sensitivity due to matrix effects. A monochromatic and focused primary beam excites the sample, and secondary characteristic fluorescence X- rays are emitted from the sample. A second monochromating optic selects the silicon characteristic X-rays and directs these X-rays to the detector. MWD XRF is a direct measurement technique and does not require consumable gasses or sample conversion.
For more information please download our product catalogues or visit XOS Signal R series
Additional information
XOS
Biofuels, Energy – Oil, Gas and Petrochemicals, Recycling – Fuels from Waste
X-ray Fluorescence Spectroscopy
Brochure
XOS R series Signal Datasheet
XOS XRF Family Product Brochure
Video
Application Notes
White Papers
Understanding the Silicon Issue