Spectroscopy
The use of the absorption, emission, or scattering of electromagnetic radiation by atoms or molecules (or atomic or molecular ions) to qualitatively or quantitatively study the atoms or molecules, or to study physical processes. Virginia Tech
See Also: Dissolved Gas, Terahertz
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Spectroscopy Applications
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Anadis Instruments Benelux b.v.
Spectroscopy has become a powerful tool leading to a broad range of applications, as can be seen in the map below. From the lesser known FT-IR analysis of lipid structures in skin (of interest when applying medicines to the skin as well as in studying the effects of skin aging) to the widely used measurement of additives and the octane number (RON, MON) in fuels. Using spectroscopic techniques has many advantages. The technique is non-destructive; almost any sample can be studied in virtually any state. The techniques are applicable off-line, in-line, at-line or on-line. Identification als well as quantification is possible. Check the map with applications, it will be regularly updated and expanded.
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Molecular Spectroscopy
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Characterize advanced complex materials on any budget. Our comprehensive portfolio of analytical solutions has the ideal molecular spectroscopy instruments for any lab to measure UV, infrared, and fluorescence.*Higher accuracy, increased sensitivity*Sample size flexibility*Wide array of sampling techniques*Shorter sample setup time*Easy-to-use software providing expert results
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Energy Dispersive X-ray Spectroscopy
EDS
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Materials Evaluation and Engineering
EDS is an elemental chemical microanalysis technique performed in conjunction with each of the SEMs at MEE. Features or phases as small as about 1 micron can be analyzed.
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Energy Dispersive X-Ray Spectroscopy (EDS)
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Rocky Mountain Laboratories, Inc.
Energy Dispersive Spectroscopy (EDS Analysis) is used in conjunction with the Scanning Electron Microscope (SEM) providing chemical analysis in areas as small as 1 µm in diameter. EDS detects all elements except for H, He, Li, and Be. EDS can be performed exactly on any features or particles seen in the SEM images and can “MAP” elements on a surface. Unknown materials can be identified and quantitative analysis can be performed.
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Atomic Spectroscopy
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Tens of thousands of installations worldwide rely on PerkinElmer spectrometers to obtain accurate results from inorganic elemental analyses quickly, efficiently, effortlessly. No matter what your field, application or sample type, we have the tools and expertise to help -- all based on more than 50 years at the forefront of atomic spectroscopy technology. Take advantage of our complete array of solutions for unparalleled performance, accuracy, and confidence.
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Energy Dispersive Spectroscopy (EDS) Detector Technology
EDS
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The Element SDD is a solutions based detector, which excels at basic analysis. Focused primarily on serving the needs of the industrial market segment, it provides application specific software and analysis that can quickly provide answers in the industrial environment.
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Terahertz Spectroscopy Solutions
STRIPP Control IM
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Teratonics offers innovative solutions for contactless non-destructive testing and imaging inside dielectric materials and on coated metallic surfaces. Based on the patented technology and our profound know how on its application, we offer: ► Instruments for product and process control as well as for inspection with automated evaluation ► Laboratory services for industrial R&D, fatigue tests, maintenance, end of life studies
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Advanced Stand-Alone AFM
SmartSPM
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The SmartSPM Scanning Probe Microscope is the first 100% automated system that offers its cutting-edge technology of ultra-fast, metrological and high-resolution measurements for the most advanced materials research at the nanoscale in all AFM and STM modes. With the SmartSPM zooming in from large up to 100 µm overview scans down to atomic resolution has become a reality. Its design has been specially developed to be capable of being seamlessly integrated with optical spectroscopies (SNOM, Raman, Photoluminescence and TERS/SERS techniques).
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Spectrometer Modules
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ZEISS Spectroscopy offers high-quality, robust, customer-driven spectrometer modules. Various optical design and detector options allow for OEM solutions tailored to your exact needs.
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Tunable Diode Laser Absorption Spectroscopy
5100 TDLAS
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The feature-rich 5100 TDLAS offers high-sensitivity, analyte-specific, fast-response measurements for critical industrial applications. It features a single absorption cell and integrated sample system in a compact, cost-effective package.
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IR Emitters and Controllers
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Opto Diode manufactures five families of infrared emitters that are used for a variety of medical and industrial applications, including gas analysis, environmental monitoring, spectroscopy, and process control. From the steady state (DC) emitters (SA Series), to high-power steady state emitters (SHA Series), to pulsable sources of black-body radiation (SVF Series) and fast pulsable sources of black-body radiation (SPF Series), to high-speed IR emitters with integrated drive electronics (PIREPLUS), we have the perfect family of products for your critical requirements.
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AFM (Atomic Force Microscope) Optical Platform
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The AFM platform allows fully-integrated use of confocal Raman microscopy and AFM for Tip-Enhanced Optical Spectroscopies (such as Tip-Enhanced Raman Spectroscopy (TERS) and Tip-Enhanced PhotoLuminescence (TEPL)), but also for truly co-localized AFM-Raman measurements.The myriad of AFM (Atomic Force Microscope) techniques that allow study of topographical, electrical and mechanical properties can be performed with any laser source available in Raman spectrometer, or with other external illumination (e.g., solar simulator or other tunable or continuum source). TERS and TEPL can provide nanoscale chemical and structural information, making the AFM-Raman platform a two-way road; where complimentary techniques provide novel and unique imaging capabilities to each other.
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Current to Digital
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Analog Devices’ breakthrough current-to-digital converter technology is backed by award winning expertise to help solve your medical, industrial, and security application needs. Our high speed, high resolution ADC modules enable improved CT scanner data acquisition, photodiode sensors and power monitoring, spectroscopy, and high channel count data acquisition systems.
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NanoSpectralyzer
NS1
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ANF offers the NS1 NanoSpectralyzer®, a unique automated fluorimetric analyzer based on the most advanced research in nanotube spectroscopy. This patent-pending instrument combines a specialized optical system with custom software to enable efficient, turn-key analyses of bulk SWNT samples. The NS1 NanoSpectralyzer is valuable for tuning the process conditions in SWNT growth reactors, for quality control, for guiding nanotube sorting and separation methods, and for a wide range of research applications that require detailed compositional data on a rapid time scale.
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Secondary Ion Mass Spectrometry (SIMS Analysis)
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Rocky Mountain Laboratories, Inc.
Secondary ion mass spectroscopy is operated either in the dynamic mode (DSIMS) or the static mode (SSIMS). DSIMS is useful for profiling impurity and trace elements through films and interfaces. SSIMS is useful for characterizing polymeric materials and only measures the outermost molecular layer of a specimen.
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OSA - OEM Modules
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Optoplex’s near-infrared optical spectrum analyzer module (NIR OSA) is a high performance optical spectral engine for Process Analytical Technology (PAT) and Fiber Optic Test Equipment (FOTE) applications. Based on proprietary technologies, Optoplex’s OSA module offers much higher spectral resolution capability than those available in the market, which is demanding in today’s increasing spectroscopy applications. Other features include: compact, light-weight, low power consumption and wide wavelength coverage. Optoplex’s compact OSA engines are suitable for a variety of handheld, portable, bench-top and inline OSA/spectrometer applications.
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Potentiostat Galvanostat
1287A
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The Solartron Analytical 1287A potentiostat and galvanostat is a high accuracy, wide bandwidth instrument which offers a range of DC test capabilities. The 1287A can be coupled with a frequency response analyzer, such as the Solartron Analytical 1260A or 1255B, and ZPLOT software for AC tests such as Electrochemical Impedance Spectroscopy.
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64 Channel 16 bit 125 MS/s Digitizer
V2740
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The V2740 Digitizer is a 64-channel digital signal processor for radiation detectors in a VME64 form factor. It offers not only waveform digitization and recording but also Multi-Channel Analysis for nuclear spectroscopy using Silicon strip, segmented HPGe, Scintillation detector with PMTs, Wire Chambers, and others.
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AvaSpec-ULS
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Step into the realm of advanced spectroscopy with the AvaSpec-ULS from Avantes, available in 2 versions; ULS2048CL with a 2k pixel detector and the ULS4096CL with a 4k pixel detector. The AvaSpec-ULS is available as an OEM unit – optimized for integration, bench-only – optimized for customized software communication, or rackmount version which offers the opportunity to stack spectrometers and perform multiple measurements at the same time.
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Nanopositioning Systems
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Mad City Labs'' nanopositioning systems move and maintain the position of objects with sub-nanometer precision and high stability. Applications for nanopositioners include super resolution microscopy, high speed confocal imaging, AFM, NSOM, SPM, optical trapping, fiber positioning, single molecule spectroscopy, single molecule/particle tracking, high resolution optical alignment, nanoscopy and lithography.
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Portable Functional Near-Infrared Spectroscopy System For Research
LIGHTNIRS
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Shimadzu Portable functional Near-Infrared Spectroscopy (fNIRS) System for Research* Near infrared light, which readily diffuses easily through biological tissue, can be used to measure localized blood oxygenation levels of the brain to monitor where activity occurs in response to a task of stimulus. The portability of LIGHTNIRS allows visualizing brain function activity in real time in a more natural state than other methods. Consequently, it is being used in a wide range of applications including medical research, developmental psychology, education, cognitive science and engineering.
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Analysis System
Pegasus (EDS-EBSD)
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The Pegasus Analysis System enables the simultaneous collection of Energy Dispersive Spectroscopy (EDS) (chemistry) and Electron Backscatter Diffraction (EBSD) (crystallography) data, allowing direct correlation between the elemental content and microstructural aspects of the material being studied.
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Delays And Gates
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Delays, Gate and Delay Generators, Logic Modules, and Linear Gates are used in many research or teaching experiments and in non-research applications such as actively shielded spectroscopy systems. Delay modules allow the alignment in time of signals from different paths, so that a logical decision can be made within a logic module which will often result in an electronic go/no-go decision as to whether a particular detector analog output will be processed within an associated multichannel analyzer.
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Single Channel Potentiostats
12XX Series
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The 12xx Series Potentiostats has two current models: the 1287A and 1280Z. This family of potentiostats communicate through trusted GPIB interface technology that can convert to USB for easy connection modern computers. The Solartron Analytical 1287A and 1280Z are often driven by CorrWare software for DC testing, such as Cyclic Voltammetry, and ZPLOT for AC testing, such as Electrochemical Impedance Spectroscopy.
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FTIR Spectrometers
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FTIR spectroscopy is used to quickly and definitively identify compounds such as compounded plastics, blends, fillers, paints, rubbers, coatings, resins, and adhesives. It can be applied across all phases of the product lifecycle including design, manufacture, and failure analysis.
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Magnetic Field Camera: mapping for MRI applications
MFC2046
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MRI and NMR spectroscopy applications require a highly uniform magnetic field, within at most a few ppm. NMR is the only magnetic measurement technique capable of providing a field map with that degree of precision. Introduced 25 years ago, Metrolab’s NMR Magnetic Field Cameras have revolutionized field mapping for MRI magnets. They reduced acquisition times from hours to minutes, positioning errors to fractions of a millimeter, and they rendered human and drift errors negligible. Now, meet the latest generation NMR Magnetic Field Camera, the MFC2046! Map any magnet with the New generation of MFC probe arrays. Magnetometer Teslameter Gaussmeter





























