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UV Fluorescence Total Reduced Sulfur Analyzer
Model T102
The Model T102 TRS analyzer uses the proven UV fluorescence principle to measure Total Reduced Sulfur at levels commonly required for ambient air monitoring.The Model T102 uses a high temperature external converter set at 850°C to allow conversion of H2S, methyl mercaptan, dimethyldisulfide, and methyl-disulfide to SO2 at this temperature with efficiency greater than 98%. A switching option alternately measures TRS and SO2 while showing both readings concurrently on the front display.All T Series instruments offer an advanced color display, capacitive touch screen, intuitive user interface, flexible I/O, and built-in data acquisition capability. All instrument set up, control and access to stored data and diagnostic information is available through the front panel, or via RS232, Ethernet, or USB com ports, either locally or by remote connection.The Model T102 comes with NumaView ™ Software. NumaView™ Remote PC Software allows for a remote connection with virtual interface and data downloading capability to analyzers operating NumaView ™ Software.
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Motor Exhaust Gas Sulfur Analyzer
MEXA-1170SX
The MEXA 1170 SX is a new instrument used to measure sulfur for after treatment and transient lubricant oil consumption. The analyzer uses ultraviolet fluorescence (UVF) for detection and it can be operated in a total sulfur mode, analyzing sulfur oxides, hydrogen sulfide and all organic sulfur compounds. An inorganic sulfur mode will analyze hydrogen sulfide and the sulfur oxides. The final operational mode will analyze just the sulfur oxides. Any one of these modes can be selected by the user from a front panel interface.
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Fluorescence Lifetime Spectrometer
S-FL
The technique of Time Correlated Single Photon Counting (TCSPC) has been developed and introduced more then 25 years ago. The technique is now widely accepted to be the most sensitive fluorescence detection technique with the inherent temporal resolution required for fluorescence decays.
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TXRF Spectrometers
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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X-ray Fluorescence, XRF Analysis Services
Two XRF systems are available, a wavelength dispersive system (WDXRF) and an energy dispersive system (EDXRF). The difference is the manner in which the x-rays are detected. WDXRF instruments have very good energy resolution which leads to fewer spectral overlaps and improved background intensities. EDXRF instruments have higher signal throughput which can shorten analysis times. The higher signal throughput also makes EDXRF systems suitable for small spot or mapping analysis.
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LED Light Sources
LED light sources provide high power at a precise wavelength. A typical application for AvaLight-LED sources is fluorescence. They provide a long lifetime, short warm-up time, and high stability.
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sCMOS Camera
Quantalux
Thorlabs' Quantalux™ Scientific CMOS (sCMOS) Camera offers extremely low read noise and high sensitivity for demanding imaging applications. The compact housing has been engineered to provide passive thermal management for the sensor, reducing dark current without the need for a cooling fan or thermoelectric cooler. These features makes the Quantalux camera ideally suited for low-light imaging applications such as fluorescence microscopy.
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Lasers And LEDs
AGILE features a broadband spectral output from <400 nm to >2000 nm and pulse repetition rates from 10 kHz to 1 MHz, making it the ideal light source for the majority of fluorescence lifetime applications. Using the Time-Correlated Single Photon Counting (TCSPC) technique, fluorescence lifetimes from a few picoseconds to microseconds can be accurately resolved. It is also compatible with Multi-Channel Scaling (MCS) mode for lifetimes up to 10 μs.
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Energy Dispersive X-ray Fluorescence Spectroscopy
Energy Dispersive X-ray Fluorescence Spectroscopy
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Total Sulfur Analyzer
Model 6200T
Teledyne Analytical Instruments
The Model 6200T Total Sulfur Analyzer utilizes proven UV fluorescent technology to continuously detect sulfur found in inert gas streams. An internal, quartz catalytic converter is employed to convert the sulfur, when mixed with scrubbed ambient air, into SO2 via higher temperature oxidation. An internal vacuum pump is employed to draw both the sample and the ambient air into the converter. The converted sample gas is fed to the fluorescence chamber where it is then exposed to ultraviolet radiation.
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Fluorescence Microscopes
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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X-ray Fluorescence Measuring Instrument
FISCHERSCOPE® X-RAY XDLM®
Universal instrument for inspection of small parts and small structures, measuring of light metals, hard coatings and thin electroplated parts.
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NEX CG II Energy Dispersive X-ray Fluorescence Spectrometer
NEX CG II
Applied Rigaku Technologies, Inc
NEX CG II, a powerful second-generation energy dispersive X-ray fluorescence (EDXRF) spectrometer, delivers rapid qualitative and quantitative determination of major and minor atomic elements in a wide variety of sample types — from oils and liquids to solids, metals, polymers, powders, pastes, coatings, and thin films.
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Energy Dispersive X-ray Fluorescence Spectrometer
Pharmaceutical Elemental Impurities Analysis System
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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Imaging Platform
TRITOM
The patented TriTom imaging platform is based on Photoacoustic Fluorescence Tomography (PAFT) technology that provides unparalleled capabilities for whole body imaging and in vivo characterization of small animal models.
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Sulfur Compound Instruments
Teledyne Advanced Pollution Instrumentation
Teledyne API's Sulfur compound analyzers utilize familiar UV Fluorescence technology to produce reliable and accurate gas measurements. All T Series instruments offer two front-panel USB ports, an advanced touch screen full color display, customizable user interface with predictive maintenance alerts, one-touch real-time graphing, and multiple language support. All of our instruments are designed meet the rigorous demands of ambient air quality, stack, or industrial process gas monitoring.
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Energy Dispersive X-ray Fluorescence (ED-XRF) Spectrometer
XEPOS
SPECTRO Analytical Instruments GmbH
The new SPECTRO XEPOS spectrometer represents a quantum leap in energy dispersive X-ray fluorescence technology. It provides breakthrough advances in multi-elemental analysis of major, minor, and trace element concentrations. New developments in excitation and detection deliver outstanding sensitivity and detection limits yielding remarkable gains in precision and accuracy. The amazing SPECTRO XEPOS excels at critical tasks from rapid screening analysis to precise product quality control. Apply it for at-line processing in a variety of industries, for geology and mining, for environmental and waste monitoring, and for research and academia.
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Quantitative Analysis Software
Electron Probe X-Ray Analyzer (EPXA)
The software runs on standard PC’s and operating systems (Windows XP and later). Complete ZAF analysis is possible, with or without standards, using an internal database of fundamental parameters (FP) such as absorption coefficients, fluorescence yields, transition probabilities, etc. There is also an integrated spectrum display.
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XRF Analyzer
X-ray fluorescence (XRF) is a non-destructive analytical method used to determine elemental concentrations in various materials.
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TCSPC Lifetime Fluorometer
DeltaPro
The DeltaPro has taken the complexity of time correlated single photon counting (TCSPC) and made it simple and affordable. Any lab can exploit the power of fluorescence dynamics using TCSPC. This system enables the seamless measurement of luminescence lifetimes from picoseconds to 1 second, using our DeltaHub timing electronics.
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Sulfur Compounds Analyzers
TML's Sulfur compound analyzers utilize familiar UV Fluorescence technology to produce reliable and accurate gas measurements. All T Series analyzers offer two front-panel USB ports, an advanced touch screen full color display, customizable user interface with predictive maintenance alerts, one-touch real-time graphing, and multiple language support. All of our analyzers are designed meet the rigorous demands of ambient air quality, stack, or industrial process gas monitoring.
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Sulfur Analysis System
Model 6400TSG
Teledyne Analytical Instruments
The 6400TSG series utilizes our field-proven ultraviolet (UV) fluorescence technology to continuously monitor the total sulfur content found in process gas and liquid feeds. UV-Fluorescence is a non-consuming method of detection, eliminating the hassles associated with replacing tape cartridges, and enables detection as low as 10 ppb, depending on application, with stable, reproducible results.
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Microscopy
Aurora is an award-winning Airy Beam Light Sheet imaging system designed for researchers working in fields such as neuroscience, developmental biology, cancer biology, regenerative medicine and other bioscience disciplines, including Plant Sciences and Marine Biology. Compact, affordable and customisable, Aurora is available as a single and multiphoton light sheet fluorescence microscope for rapid, large 3D volumetric imaging, high resolution, multicolour, time-lapse imaging and live cell imaging. Aurora uses ground-breaking Airy Beam Light Sheet imaging techniques to achieve outstanding results in the field. It is currently in use by many leading organisations delivering results previously not possible.
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Fluorescence Multiphoton Microscopy
Ultima Investigator™
As the most streamlined model of Bruker''s Ultima family of multiphoton microscopes, Ultima Investigator™ features a base system specifically optimized for in vivo studies and is designed for add-on flexibility with a host of specialized options. Ultima Investigator''s high-resolution, high-speed, high-sensitivity deep imaging provides the ultimate value for smaller labs and additional imaging bandwidth in larger labs.
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Photoluminescence Spectrometer
FLS1000
The FLS1000 sets the standard in both steady state and time-resolved photoluminescence spectroscopy for both fundamental research and routine laboratory applications. The system is a modular fluorescence and phosphorescence spectrometer for measuring spectra from the ultraviolet to the mid-infrared spectral range (up to 5,500 nm), and lifetimes spanning from picoseconds to seconds. All of this can be achieved through various upgrade routes, either at the time of order or in the future. Whether you are studying photophysics, photochemistry, biophysics, biochemistry, material or life sciences, the FLS1000 will enable you to reliably and accurately measure luminescence spectra and kinetics using state-of-the-art sources, detectors, acquisition techniques, quality optics and precision mechanics. The large sample chamber will house practically any type of sample accessory.
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Spectroscopy
*Femtosecond multi-pulse transient absorption and reflection measurements *Femtosecond fluorescence upconversion *Time-resolved femtosecond stimulated Raman scattering (FSRS) *Hundred picoseconds-to-microsecond time-correlated single-photon counting (TCSPC)
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Electron Microscope Analyzer
QUANTAX Micro-XRF
Micro-X-ray Fluorescence (Micro- XRF) spectroscopy analysis is a complementary non-destructive analytical technique to traditional Energy Dispersive Spectroscopy (EDS) analysis using a Scanning Electron Microscope (SEM).
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Coating thickness XRF Standards
We manufacture high accuracy reference standards capable of calibrating virtually any X-Ray Fluorescence (XRF) coating thickness and composition analysis system.
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XRF Spectrometers
Epsilon Range
The Epsilon range of X-ray fluorescence XRF analyzers are an ideal analytical solution. They are capable of simple element identification and quantification up to more sophisticated analysis. They are easy to operate, compact and X-ray safe instruments without the need for additional chemicals or operating gasses. Considerable savings in time and cost are two of the many benefits XRF can bring compared to alternative analytical techniques.
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TEL-X-Ometer X-ray System
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.