Benchtop EDXRF Spectrometer
Energy-dispersive X-ray spectroscopy, sometimes called energy dispersive X-ray analysis or energy dispersive X-ray microanalysis, is an analytical technique used for the elemental analysis or chemical characterization of a sample. It relies on an interaction of some source of X-ray excitation and a sample.
Key Features of Benchtop EDXRF Spectrometer
Multi-Elemental Analysis Across a Wide Range
High-Performance Detector and X-ray Source
Fast, Accurate Quantitative & Qualitative Analysis
Ease of Use & Automation
Compact Design & Flexible Sample Handling
ARL EasySpark Metal Analyzers
Energy-dispersive X-ray spectroscopy, sometimes called energy dispersive X-ray analysis or energy dispersive X-ray microanalysis, is an analytical technique used for the elemental analysis or chemical characterization of a sample. It relies on an interaction of some source of X-ray excitation and a sample.
We are offering you the following model in Benchtop ED XRF category:
- ARL™ QUANT'X EDXRF
The Thermo Scientific™ ARL™ QUANT’X EDXRF Spectrometer provides major, minor and trace element quantification across the broadest range of samples, including bulk solids, granules, powders, thin films and liquids. Featuring standardless software and accessories, this complete benchtop EDXRF (Energy Dispersive X-ray Fluorescence) system meets the elemental analysis needs of central and contract laboratories, as well as the environmental monitoring, chemicals, mining, forensics, food, cement and metals industries.
- Latest generation silicon drift detector (SDD).
- Advanced digital pulse processing (DPP) technology.
- High-performance, multi-element analysis.
- Optional Thermo Scientific™ UniQuant™ software for superior standardless analysis.
- Exceptional sensitivity for trace analysis.
- High measurement throughput for process control
- Advanced analytical algorithms for atypical materials.
- Outstanding sample-handling flexibility.
- Mechanical simplicity and reliability.
- Compact footprint and ease of transport for field measurements.
- Rapid, easy installation and complete on-site customization.
- Complete laboratory start-up package included.
- Allows sample analysis in air, vacuum and helium.
- Proven hardware and all-inclusive software.
- On-site, collaborative method development.
- Full technical applications support.
- Expertise across hundreds of applications.
- Large sample chamber, camera, and wide range of collimators.
- Standardless and semi-standardless analysis.
- Fundamental parameters (FP) and empirical methods with standards.
- Multi-layer thickness and composition.
- Unlimited elements, unlimited number of standards.
- Simple results transmission to external computer or LIMS.
- Support of nine languages and more.
- Multiple excitation conditions with automated operation.
- Going further than any other FP analysis, the optional UniQuant program collects all emission lines of all possible elements from fluorine to uranium. This complete spectral profile of the sample allows UniQuant to automatically correct for all possible overlap and background effects, which are especially complex in energy-dispersive spectra
- All elements are always analyzed
- Each sample’s unique physical properties, i.e. area, height, and mass are included in the calculation
- Long-term changes in X-ray tube output are corrected
- A variety of selectable reporting levels and formats present the results clearly for any type of user
- UniQuant comes completely pre-calibrated and ready for use
- Cement, feed and alternative fuels
- Forensics and trace element analysis
- Gemstones, precious metals and jewelry analysis
- RoHS / WEEE screening for toxins in plastics
- Oil industry products
- Plastics and polymers
- Environmental applications
- Waste sludges and used oils
- Nutritional supplements
- Soil contamination and other environmental screening
- Monitoring corrosion of cooling water circuits
- Cement, feed and alternative fuels
- Metallurgical slags and mining ores
- Catalysts and chemicals
- Thin films on filters
- Aerosol particulate filters
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How Benchtop EDXRF Spectrometer Work?
A Benchtop EDXRF (Energy-Dispersive X-ray Fluorescence) Spectrometer works by directing primary X-rays from an X-ray tube onto a sample, which excites the atoms present in it. This excitation causes inner-shell electrons to be ejected, and when outer-shell electrons move in to fill these vacancies, they emit fluorescent X-rays with energies unique to each element. These emitted X-rays are captured by a high-resolution detector, typically a Silicon Drift Detector (SDD), which measures their energy and intensity. The instrument’s software then analyzes this data to identify the elements present and determine their concentrations, providing fast, accurate, and non-destructive multi-element analysis with minimal sample preparation.
Locations We Serve
QS Metrology provides Benchtop EDXRF Spectrometer across India, serving all major industrial regions, including:
Delhi NCR, Rajasthan, Punjab, Uttar Pradesh, Himachal Pradesh, Uttarakhand, Jammu & Kashmir
Why Choose QS Metrology?
Advanced and accurate elemental analysis solutions
Fast, non-destructive testing
Wide range of XRF, XRD, and OES systems
Expert technical and application support
Reliable pan-India service network
FAQs
A benchtop EDXRF spectrometer is used for non-destructive elemental analysis of solids, powders, and liquids to identify and quantify elements across various industries such as metals, mining, polymers, environmental testing, and quality control.
Benchtop EDXRF spectrometers can typically detect elements ranging from sodium (Na) to uranium (U), depending on the instrument configuration, detector type, and use of vacuum or helium purge.
EDXRF requires minimal to no sample preparation. Many samples can be analyzed directly, while powders or liquids may need simple containment, making the technique fast and user-friendly.
EDXRF provides high accuracy and repeatability for both qualitative and quantitative analysis, with detection limits often in the ppm range, depending on the element, matrix, and measurement conditions.
Yes, benchtop EDXRF is completely non-destructive, meaning the sample remains intact after analysis, which is ideal for valuable, limited, or archival samples.
Benchtop EDXRF spectrometers are widely used in metallurgy, mining and geology, cement and ceramics, environmental monitoring, RoHS compliance, plastics, coatings, and research laboratories.
Industries We Serve

Automotive

Medical Device & Pharmaceutical

Aerospace

Electronic & Electric Component

Chemicals & Petrochemicals

Metal Foundries & Casting

Energy, Power & Renewables

Mining & Minerals
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