X-ray Fluorescence
measure of irradated sample's fluorescence radiation revealing it's elemental composition.
See Also: XRF, X-ray Fluorescence Spectrometers
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Precious Metal Analyzer
MIDEX
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SPECTRO Analytical Instruments GmbH
Small spot energy dispersive X-ray fluorescence (ED-XRF) spectrometer optimized for precious metal testing. Analyzing precious metals alloys, SPECTRO MIDEX provides high precision and accuracy for a wide range of concentration levels — plus record-setting testing times (as low as 15 seconds). For small jewelry items or drill cuttings from remelted samples, it analyzes a small spot (typically 1.2 mm). For silver samples, which may be relatively inhomogeneous, averaged results from an optional larger spot size maintain high-accuracy results.
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X-ray Fluorescence Spectrometers
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Is a non-destructive analytical technique used to determine the elemental composition of materials.
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Energy Dispersive X-ray Fluorescence Spectrometer
Pharmaceutical Elemental Impurities Analysis System
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Control of Elemental Impurities in Pharmaceuticals In the pharmaceutical industry, the analysis of elemental impurities is necessary to ensure the safety of pharmaceuticals. In December 2014, the "Guideline for Elemental Impurities" (Q3D) was issued by the International Council for Harmonisation of Technical Requirements for Pharmaceuticals for Human Use (ICH), consisting of representatives from Europe, the U.S. and Japan. In Japan, the "Guideline for Elemental Impurities in Drug Products" (PFSB/ELD Notification 0930 #4 from the Ministry of Health, Labour and Welfare) was issued, and will be applied to new drug products submitted for approval after April 1 2017. For 24 elements categorized in Class 1 to Class 3, residual quantities in pharmaceutical drug products must be controlled within permissible limits. Although ICP-AES and ICP-MS are used for precise analysis of elemental impurities, X-ray fluorescence spectrometers can be used as an alternative analysis method. This is because they can quantitatively and qualitatively analyze a variety of elements nondestructively, and without chemical pretreatment, unlike ICP-AES and ICP-MS systems. The X-ray fluorescence spectrometry has been adopted as a general method of analysis in the U.S Pharmacopeia and the European Pharmacopoeia. (USP<735>, Ph.Eur.2.2.37)
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Portable XRF Spectrometers
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Handheld / portable X-ray fluorescent (XRF) analyzers have the capability to non-destructively quantify or qualify nearly any element from Magnesium to Uranium, depending on the instrument configuration.
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X-ray Analytical Microscope Super Large Chamber Model
XGT-9000SL
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- Large chamber capacity (W x D x H) : 1030 mm x 950 mm x 500 mm- X-ray shield complying with JAIMAS0101-2001/ IEC1010-1 to protect you from X-ray exposure- Mapping area size up to 350 x 350 mm2- <15 µm spot size with ultra-high intensity without compromising sensitivity and spatial resolution- Dual types of detectors for transmission and fluorescent X-rays- Detectable element range down to C with a light element detector and He purge module
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TEL-X-Ometer X-ray System
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X-ray experiments can include radiography, x-ray fluorescence, and x-ray diffraction. All can be performed with the TEL-X-Ometer, a compact x-ray source designed for student use. Take a look at the TEL-X-Ometer and accessories today.
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Micro-XRF Spectrometers
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Micro X-ray fluorescence spectrometry is the method of choice for the elemental analysis of non-homogeneous or irregularly shaped samples as well as small objects or even inclusions.
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X-Ray Seamless Pixel Array Detector
XSPA-400 ER
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In general, X-ray diffraction measurements using a Cu X-ray source are known to have difficulty detecting trace crystalline phases because of increased background when measuring samples containing transition metals. The high energy resolution of the XSPA-400 ER supresses the fluorescent X-rays originating from the sample, thereby reducing background, enabling highly sensitive measurements of samples containing transition metals, such as iron and steel compounds and battery materials.Therefore, it achieves higher sensitivity measurements than conventional detectors.
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High Performance Fluorescent X-ray (XRF) Coating Thickness Gauge
FT150 Series
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Hitachi High-Technologies Corp.
The FT150 is a high-end fluorescent X-ray coating thickness gauge equipped with the polycapillary X-ray focusing optics and Vortex silicon drift detector. The improved X-ray detection efficiency enables high throughput and high precision measurement. Furthermore, new design to secure wide space around sample position gives exellent operability.
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XRF Analyzer
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X-ray fluorescence (XRF) is a non-destructive analytical method used to determine elemental concentrations in various materials.
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TXRF Spectrometers
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Total reflection X-ray fluorescence spectrometry (TXRF) is a well-established method for trace element analysis on a variety of samples.
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Handheld XRF Analyzer
Genius-XRF
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Zhengzhou Nanbei Instrument Equipment Co. Ltd
Based on the mature technology of desktop X-ray fluorescence analyzer and the latest technological development, and on the performance of the existing international commercial handheld X-ray fluorescence analyzer, adding new elements into it on the basis of the first, second, and third generation, Skyray Instrument has developed the intellectual portable fourth generational handheld analyzer-Genius XRF series, which can satisfy the market requirements and possess independent intellectual property rights.
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XRF Analyzers
Vanta iX
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The Olympus Vanta™ iX in-line X-ray fluorescence (XRF) analyzer gives you confidence in your products by automating material analysis and alloy identification on the manufacturing line.
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Handheld XRF Analyzers
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XRF stands for X-ray fluorescence. It’s a powerful, nondestructive technique for measuring elemental composition from magnesium (Mg) to uranium (U), from parts per million to 100%. Handheld XRF analyzers are portable devices that can be used on location for immediate, lab-quality results to help you determine the next course of action and where it’s needed.
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Energy Dispersive X-ray Fluorescence Spectroscopy Systems
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Energy Dispersive X-ray Fluorescence Spectroscopy Systems
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X-ray Fluorescence Spectrometer
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X-ray fluorescence spectrometer that provides quick, easy elemental analysis using touch screen operation. It is equipped with functions for conventional qualitative and quantitative analysis (FP method, calibration curve method), as well as screening for RoHS elements. With a variety of both hardware and software options available, it is customizable to cover a wide range of analysis needs.
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Handheld XRF Analysers
X-MET8000 range
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Hitachi High-Technologies Corp.
The X-MET8000 range of handheld X-ray fluorescence (HHXRF) analysers delivers the performance needed for rapid alloy grade identification and accurate chemistry of a wide variety of materials (solid and powder metals, polymers, wood, solutions, soil, ores, minerals etc). The X-MET is practical, rugged and easy to use to deliver results you can trust.
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Handheld ED-XRF Spectrometers
SPECTRO xSORT
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SPECTRO Analytical Instruments GmbH
The SPECTRO xSORT family of handheld ED-XRF spectrometers supplies elemental testing and spectrochemical analysis of myriad materials in widely varying conditions. These energy dispersive X-ray fluorescence devices are recognized for ruggedness and reliability on the job. They offer metals or nonmetals identification in seconds, with innovative technologies and designs that provide repeatable, laboratory-quality results. Simple, user-friendly displays and efficient ergonomics make these instruments extremely easy to use. At a range of affordable prices, SPECTRO xSORT spectrometers are leaders in their class for a broad spectrum of applications. - See more at: http://www.spectro.com/products/xrf-spectrometer/xsort-xrf-gun-handheld-analyzer#sthash.18piI4Px.dpuf
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Fluorescence Illuminators
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In fluorescence microscopy, fluorescent substances are viewed or imaged with a microscope. These fluorescent substances may be naturally occurring in the sample or may be introduced to assist in the identification of specific features in the sample. Multiple fluorescent substances (fluorophores) with different fluorescent properties can be visualized within the same sample using the capabilities of fluorescence illumination and fluorescence filter combinations.
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Fluorescence Spectroscopy
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HORIBA’s Fluorescence division incorporates technology from SPEX, IBH, Jobin-Yvon, PTI and SLM - the dominant names in Fluorescence Spectroscopy. We offer the widest range of Steady State Fluorescence spectrometers, Fluorescence Lifetime spectrometers, Steady State and Lifetime Multi instruments and Microscope-based Microscopy solutions.
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Fluorescence Spectrometers
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PicoQuant offers several fluorescence spectrometers that range from compact table-top spectrometers for teaching or daily routine work to modular high-end spectrometers with exact timing down to a few picoseconds. Samples can be liquids in standard cuvettes, solid samples or even semiconductor wafers for in-line quality control.
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Fluorescence Microscopes
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Bruker’s suite of fluorescence microscopy systems provides a full range of solutions for life science researchers. Our multiphoton imaging systems provide the imaging depth, speed and resolution required for intravital imaging applications in neuroscience, oncology and immunology. Our confocal systems enable cell biologists to study function and structure using live-cell imaging in cell cultures and invertebrate model organisms at speeds and durations previously not possible. Bruker’s super-resolution microscopes are setting new standards with quantitative single molecule localization which allows for the direct investigation of the molecular positions and distribution of proteins within the cellular environment. Our latest addition, Luxendo light-sheet microscopes, are revolutionizing long-term studies in developmental biology and investigation of dynamic processes in cell culture and small animal models.
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Fluorescence Microscopes
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PicoQuant offers different solutions for time-resolved confocal microscopy. The available systems include single molecule sensitive microscopes with picosecond temporal resolution and super-resolution imaging capabilities as well as upgrade kits for laser scanning microscopes of all major manufacturers that enable time-resolved applications.
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X-Ray Detectors
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Sydor Technologies is committed to innovating x-ray detector technology—as we have done for over a decade—developing complex measurement solutions and commercializing emerging technologies for world-class laboratories. We’re committed to innovating cutting-edge technology to improve the accuracy, resolution, and ultrafast speeds of x-ray detectors to enable complex measurements.
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X-Ray Detectors
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With the need to always reduce the inspection time to the strict minimum, the NDT world is slowly reducing its dependency on films and jumping straight into the Digital Radiography (DR) revolution. While saving tremendous amount of time and money not developing films, digital radiography also enables you to edit, record and send your inspections to whomever, whenever and wherever you want.
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X-ray sources / X-ray optics
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X-ray sources are the heart of every X-ray analytical instrument. In combination with advanced X-ray optics, they generate the required X-ray radiation for structure analysis in various fields of material and life sciences. X-ray sources must offer perfect thermal constancy for excellent position stability of the X-ray beam as well as high intensity, even at low power levels. The design has to guarantee easy integration into advanced X-ray equipment paired with straightforward operation to keep uptimes high and to guarantee maximum radiation safety for operators and equipment.
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Fluorescence and Absorbance Spectrometer
Duetta
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Duetta™ is a spectrofluorometer that combines, simultaneously, the functions of fluorescence and absorbance spectrometers. Thanks to its high-speed built-in CCD detector, the Duetta can acquire a full spectrum from 250 nm to 1,100 nm in less than one second, making it the fastest fluorescence spectrometer on the market.
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X-Ray Transmittance
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In x-ray transmission (XRT), a sample is irradiated with high-energy x-rays, which are absorbed by sulfur atoms. Measuring the x-rays that pass through the sample provides a measurement of sulfur concentration.





























