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DXP Applications


This guide is intended to help potential customers find the right XIA product for their application. This page includes the most common DXP applications. Click the links below to see family-specific, and product-specific applications.

Handheld & Benchtop XRF Systems (microDXP)

High Resolution and High Rate SEM Elemental Analysis and Imaging (Mercury, Mercury-4)

Industrial XRF Systems (DXP-XMAP, Mercury, Mercury-4, microDXP)

Synchrotron Research Detectors (DXP-XMAP, Mercury, Mercury-4, FalconX, FalconX8)



Handheld & Benchtop XRF Systems

Handheld XRF instruments fulfill a critical role in metals sorting, mining, soil analysis, toxic materials regulatory compliance, coating thickness analysis, and more. Interfacing with SDDs and PIN diodes, XIA has served this market for more than a decade with the compact and low power microDXP signal processor. Similarly, benchtop XRF systems require spectroscopy electronics with a small footprint but with high performance for laboratory use. A recent upgrade to the microDXP has resulted in state-of-the-art energy resolution at output count rates up to 1 Mcps, providing faster, more accurate results.

Click here for more information: microDXP Applications


High Resolution and High Rate SEM Elemental Analysis and Imaging

Electron-beam excited x-ray micro-analysis is a well-established tool for materials research in R&D labs and industry. For this application, the Mercury-1 and Mercury-4 offer the unique features of high resolution and high count rate spectroscopy for rapid elemental analysis, combined with dead-time-free fast mapping data collection, from which 2D elemental images of the specimen can be created. The low-noise input of the Mercury allows identification and analysis of elements on the periodic table down to Beryllium, (110 eV x-ray). Choose between the Mercury-1 for single element SDDs or the Mercury-4 for quad detectors.

Click here for more information: Mercury Applications, Mercury-4 Applications


Industrial XRF Systems

X-ray fluorescence is employed in various industrial processes. One example is large scale metal sorting using a conveyor belt system, which typically uses an x-ray tube source and an array of x-ray detectors to measure the characteristic fluorescence from scrap metal. XIA is uniquely positioned to address this type of embedded application with the OEM Mercury-4 processor card, or the xMap card when a high number (>8) of detector channels is required. The rapid handling and storage of data from multiple detectors facilitates real-time control of mechanical systems for metal sorting. Digital I/O lines are available for equipment control and feedback. For some industrial systems, the use of multiple low cost and compact microDXP boards provides another option.

Click these links for more information: Mercury Applications, Mercury-4 Applications, xMAP Applications, microDXP Applications


Synchrotron Research Detectors

Synchrotron light sources throughout the world provide a powerful tool for studying materials with an intense, polarized x-ray beam. XIA has manufactured equipment for synchrotron research since the founding of the company. Over the years, increasing beam intensity has pushed the development of high rate and high resolution signal processing electronics. Detector systems with multiple channels (100 or more) are also common place. The xMap signal processor has established XIA as the leader in spectroscopy electronics for multi-element HPGe x-ray detectors and SDDs used in synchrotron research. The Mercury processor is also an established solution for single and quad detectors, with both the Mercury and Xmap being controllable by EPICS software. More recently, the FalconX1, FalconX4 and FalconX8 have emerged to offer extremely high data throughput capability with over 3 Mcps output count rate at only 20% dead-time.

Click these links for more information: xMAP Applications, Mercury Applications, Mercury-4 Applications, FalconX Applications, FalconX8 Applications


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http://www.xia.com/DXP_Applications.html, last updated November 1, 2016
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