Infrared Spectrophotometer

An infrared spectrophotometer is an analytical instrument used to identify materials including organic polymers. Infrared spectrophotometers record the relative amount of energy as a function of the wavelength/frequency of the infrared radiation when it passes through a sample. Therefore, chemical structures of different samples will reflect differences in the IR absorption spectrum allowing for identification of a sample. Unlike a dispersive spectrometer, an FTIR spectrometer or FTIR spectrophotometer is used to simultaneously obtain spectral data of a sample. It does this by using an interferometer to collect the interferogram, also known as the raw data/signal format, which can then be translated into the infrared spectrum of the sample by means of a fourier transform algorithm. As a result, there are many advantages including greater signal-to-noise ratio, high resolution, higher throughput, and a short wavelength limit. FTIR spectrometers can be used in a variety of industries including environmental, pharmaceutical, and petrochemical.

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CompanyBruker OpticsBruker OpticsBruker Optics
ItemINVENIO FT-IR SpectrometerMATRIX-MG Gas AnalyzersOMEGA 5 Versatile Gas Analyzer
Citations
(1)
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Catalog NumberInvenioMG01 / MG2 / MG5OMEGA 5
Price
Wavelength RangeInquire4800 - 720 cm-1 (other ranges optional)4500 – 800 cm-1
Signal-to-Noise Ratio60’000:1 1 min sample measurement, 4 cm-1, peak-to-peakInquireInquire
Resolution< 0.085 cm-1Better than 1 cm-1 (apodized) | Option: Better than 0.5 cm-1Better than 2 cm-1, option: better than 1 cm-1
Optical SystemInquirePTFE-coated gas cell with 10 cm optical pathMulti-reflection cell
DescriptionThe INVENIO is made to innovate from routine quality control to advanced research and development. Whether you focus on productivity, precision or if you must comply to extensive regulations, the INVENIO supports you in every regard.

Features:
  • Newly designed beam path for high signal to noise
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The MATRIX-MG5 features a 5 m multi-reflection gas cell and is designed for the high-precision quantification of gas compounds from very low concentrations on the ppb level up to one hundred percent.

Features:
  • Fast, continuous and fully automated identification and quantification of gas compositions
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