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The Open Path Gas Analyzer EM27 is a broadband infrared detection system for remote sensing of hazardous atmospheric compounds. The system performance allows real-time field screening analysis (analysis less than 1 s). The lightweight system includes an infrared radiation analyzer based on the proven Bruker RockSolid™ interferometer. An internal calibration source provides self-test and self-calibration for radiometric measurements. Due to the novel design of the sensor module, the system is resistant to mechanical shocks, vibrations and temperature extremes. It is hardened for field operations in harsh environments. The Bruker EM27 features: - Easy handling - Robust and compact design - Low weight - Minimal power consumption - Fast measurement and analysis time In order to cover a large range of field application purposes, EM27 has two different system configurations with different sensitivities: Passive mode uses the natural infrared radiation signatures of chemical agents. Active mode detection uses the transmitted light from an active infrared source.
Rudolf-Plank-Str. 27 76275 Ettlingen, Ettlingen, GERMANY
GERMANY
SENTERRA Dispersive Raman Microscope The SENTERRA is a high performance Raman microscope spectrometer designed for the most demanding analytical and research applications. Its most important innovation is certainly its internal continuous calibration as it ensures highest wavenumber accuracy without the need for calibrations with external standards. The SENTERRA combines numerous novel and several patented features: - Continuous calibration with Sure_Cal® - Compact design with spectrometer included in the microscope - Multiple wavelengths: 1064nm, 830nm, 785nm, 633nm, 532nm and 488nm - High performance confocal depth profiling with FlexFocusTM - Automatic Fluorescence Rejection (AFR) using SERDS - Open architecture version for the study of larger samples (e.g. in art) with high lateral resolution - Inverted version for the investigation of living cells Compact and Rugged Design Most commercial Raman microscopes employ spectrometers that are separate from the microscope. Therefore, alignment and maintenance of these devices is time consuming. SENTERRA integrates a multi-laser Raman spectrometer between the reflected light illuminator and the binocular of the microscope. SENTERRA’s compact design provides a short beam path, which increases sensitivity and makes it more robust and stable.
LUMOS is a fully automated stand-alone FT-IR microscope. It combines best performance for visual inspection and infrared spectral analysis of micro samples with highest comfort in use. Due to the motorization of all moveable components including the ATR-crystal, the LUMOS provides an unmatched high degree of automation. All required changes of hardware settings as well as the complete IR-measurement procedures are performed fully automated – even in ATR-mode. The intuitive software guides the operator step-by-step through the process of microscopic sample analysis. At each step the user interface only provides the appropriate functions to proceed. The measurement results in a single file including visible images, spectral data and sample information. For evaluation and visualization of the microscopic data the software provides powerful and intuitive Chemical Imaging functionality. Although the LUMOS is designed to be operated by non-experts for routine applications its exceptional sensitivity makes it also very suitable for high demanding applications. - Stand-alone FT-IR microscope with full automation - Highly comfortable and easy in use - Motorized ATR crystal (ATR = Attenuated total reflection) - Fully automated measurement in transmission, reflection and ATR mode - Large working distance; allowing ample space for sampling - Outperforming quality in both IR and VIS range - Space saving footprint
If you need a FT-IR spectrometer that can rapidly identify, quantify and verify your routine samples, TENSORTM is the right tool for your laboratory. It combines the highest performance and outstanding flexibility with an intuitive and easy to operate interface. High Performance TENSOR is designed for today’s laboratory requirements. It combines easy operation with highest instrument performance and affordability. TENSOR provides high sensitivity performance with the permanently aligned, high throughput patented RockSolidTM cube corner interferometer. Unlike a conventional flat mirror interferometer, cube corner's optically eliminates alignment errors. Easy to Use Customizable workspaces, easy measurement mode and wizards to guide you through setup of analytical methods are standard in OPUSTM software. All manipulation and evaluation routines are designed for multiple file operation. These factors make learning the software and the operation of the instrument so easy that even untrained personnel can operate a TENSOR series spectrometer. Bruker Artificial Intelligence Network The TENSOR series automatically recognizes optical components and sampling accessories. Component exchanges (like source, beamsplitter, detector, or laser). All relevant parameters transfers to the software for the user to immediately start a measurement. The TENSOR utilizes the Online PerformanceGuardTM to ensure all optical components, automation units accessories...
The new Bruker Hyperspectral Imaging System HI 90 is an imaging remote sensing system based on the combination of a Michelson interferometer and a focal plane array detector. Each pixel of the array records an interferogram from the corresponding field of view. A spectrum is obtained by fourier transformation and contains the infrared signature of the scene. The system allows identification, quantification and visualization of potentially hazardous gases from long distances. The Hyperspectral Imaging System HI 90 has been developed for a wide range of applications. The method of infrared remote sensing allows the detection, identification, and quantification of an extremely wide range of relevant organic molecules in the atmosphere. Thus, applications of the HI 90 range from basic research such as atmospheric research, environmental research, and volcanology to industrial applications as well as safety and security applications. A major field of applications of the HI 90 is homeland security. If hazardous compounds are released into the atmosphere, for example in the case of a terrorist attack or a chemical accident, emergency response forces require information about the released compounds immediately in order to take appropriate measures to protect workers, residents, and the environment. HI 90 allows identification and visualization of such hazardous clouds in the atmosphere from long distances of several kilometers (stand-off detection). The image of a cloud ...
The VERTEX FT-IR research spectrometer productline is the culmination of everything Bruker has pioneered and developed in over 35 years. The VERTEX Series is built on a fully upgradeable optics platform that is designed with the utmost flexibility in mind. VERTEX spectrometers share a wide range of features, including the Bruker Artificial Intelligence Network (BRAIN), Automatic Component Recognition (ACR), the Plug & Play Ethernet connection and Automatic Accessory Recognition (AAR).
TANGO CREATES VALUES Fast measurements for high sample throughput, simultaneous evaluation of different components and an intuitive handling, without need for expertise training: TANGO simplifies the NIR analysis and therefore offers maximum security of the results. Specifically targeted for the given application and the demands required of an efficient analyzer. For liquids or for solids, with integrated PC and monitor or as separate analysis station, e.g. for connecting a laptop. Integrated into a network or as a stand alone solution.
Choosing the best possible sampling method is crucial when solving a specific analysis task. With the MPA™ , you have a complete solution at hand for your method development. The modular and compact instrument can easily be adapted to your needs. If at a later stage new applications arise, simply have the required sampling tool added; all combinations are possible at any time. The robustness of the instrument allows it to be used in the laboratory and factory floor. The MPA™ can be connected to your laptop via Plug & Play Ethernet and can even be placed on a utility cart to improve its mobility. The MPA offers everything you need for the analysis of liquids, solids, powders and tablets. Powerful accessories like the automated 30-position sample wheel, which can be used for vials and tablets of all shapes and sizes, the sample rotator for the integrating sphere or up to two different fiber probes help you to achieve high sample throughput with excellent precision. Transmission geometry for near-infrared (NIR) spectroscopy is ideal for pharmaceutical tablets as it samples a volume whereas reflectance NIR samples the surface of solids. MPA's transmission head can be combined with autosampling unit and optional tablet holders. Selection of the different measurement accessories of the MPA™ is completely software controlled, without the need for any manual adaptation.
The award winning MATRIX™-F is a new generation of Fourier Transform Near Infrared (FT-NIR) spectrometer. It is the first industry hardened FT-NIR system that can directly withstand harsh environments. This instrument incorporates state-of-the-art optics for outstanding sensitivity and stability, in a compact package. Its innovative design provides consistent high quality results, less downtime, direct methods transfer and the possibility of new applications that less sensitive and precise instruments are incapable of. In addition, the same instrument can go directly from the lab to the factory, eliminating the need for a new instrument when your method is ready for integration into your process control system. Full support of industry standard communication protocols make integration simple.
The MATRIX™-I is a rugged FT-NIR spectrometer designed for QA/QC analysis. The instrument comes equipped with an integrating sphere in the sampling area. This permits fast and easy analysis using the diffuse reflectance technique. Samples can be measured directly in their containers or poured into standard cups. This method is ideal for measuring large amounts of materials and is particularly useful for analyzing inhomogeneous samples or large particle size items such as grains or seeds.
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