Thermal Analysis provides ideal tools for the characterization of organic and inorganic, either solids or liquids. Thermodynamic transitions, thermal stability, decomposition and chemical reactions can be detected and quantified with high accuracy over a broad temperature range
The identification of gases released directly from the sample or during thermal treatment cannot be performed just by thermal analysis, but coupling a spectroscopic method such as Fourier-Transform-Infrared (FT-IR) spectroscopy is an excellent solution.
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The unique verTera extension upgrades the famous VERTEX 80v to the first and only combined FT-IR/continuous wave THz spectrometer.
verTera makes use of high precision semiconductor based photomixers, converting near infrared laser light into THz radiation. Source and detector are integrated into the VERTEX 80v beam path and the class 1 NIR laser radiation is connected via fiber and vacuum tight feedthrough.
Vacuum operation eliminates unwanted atmospheric interferences and provides utmost stable conditions, resulting in significantly higher THz performance.
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The IFS 125HR is the ultimate instrument for the high resolution IR spectroscopy
In absorption or emission mode, the IFS 125HR can resolve highly complex spectra into discrete lines for recognition and spectral assignment.
The IFS 125HR electronics provides Ethernet connectivity and data acquisition based on the DigitectTM system using 24-bit ADC’s integrated with the detector. The standard MIR spectral range can be easily extended to the NIR, visible, or even UV.
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The external accessory PMA 50 has been specially developed for Polarization Modulation measurements. It can be adapted to Bruker INVENIO and VERTEX FT-IR spectrometers. All optic and electronic components in the PMA 50 module are optimized for the Polarization Modulation. Both linear dichroitic measurement techniques like PM-IRRAS and circular dichroitic experiments like VCD spectroscopy can be realized using this dedicated system.
The core of the Polarization Modulation technique is the Photoelastic Modulator (PEM) with a nominal modulation frequency of 42 kHz. With the help of the parallel 24-bit dual-channel data acquisition technology the sum and the difference signals can be collected simultaneously with highest sensitivity. The PMA 50 module exhibits short beam path, and therefore provides optimal S/N ratio and stability.
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CryoSAS combines Bruker’s high performance FT-IR spectrometers with built-in, closed-cycle cryo-cooling technique that does not require any liquid Helium. All CryoSAS components are state-of-the-art, yet utilize proven technologies to accomplish a difficult analysis in the demanding silicon production environment. CryoSAS can be operated at a high level of automation including accurate reporting of the analysis results.
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The MATRIX II-MG Series comprises four high-performance FT-IR gas analyzers in a compact and rugged housing. They are designed for the automated, high precision and real-time monitoring of gas concentrations in many different applications. Whatever application you have in mind, you can configure the system to your needs:
A variety of different detector types are available for your needs: detectors with exceptional sensitivity (liquid-nitrogen- or Stirling-cooled MCT), detectors with extended spectral range (DLaTGS) or detectors when liquid nitrogen is unavailable but low detection limits are yet required (TE-MCT).
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Drug checking, or harm prevention , uses Fourier-Transform Infrared (FT-IR) Spectroscopy to analyze recreational drugs. This helps drug users identify harmful additives and impurities, ultimately promoting safer drug consumption by providing critical composition information. Overall, FT-IR enables rapid and accurate substance analysis for harm reduction.
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