Used NICOLET 6700 #9096745 for sale

Manufacturer
NICOLET
Model
6700
ID: 9096745
IR-Laser Spectrum Analyzer 110 W, 12 V.
NICOLET 6700 is a Fourier Transform Infrared (FT-IR) Spectrometer, equipped with a microscopy system, designed for high-resolution molecular analysis. It is comprised of a pair of Michelson interferometer optics, a source module, and a detector module. The source module is equipped with a halogen lamp, providing a broadband infrared light source. The light is split into two beams, one of which is directed towards the sample and the second is reflected into the detector module. The detector is a cooled, digitized, linear diode array that captures the intensity of the light reflected off the sample. 6700 features high spectral resolution of 8 cm-1, which is the capability to differentiate distinct vibrational frequencies within a wider range of the mid-infrared spectrum. This enables researchers to precisely determine the composition of a sample and to detect its amount and quality. It also has a microsparging accessory, enabling the correlation of samples to their amount via concentration measurements. NICOLET 6700 is also equipped with a diamond ATR accessory, allowing for the analysis of the internal structure of a sample. 6700 offers intuitive software features, such as the Smart Analysis Suite which provides an interactive method for identifying and comparing characteristic absorptions in a sample's mid-infrared spectrum. Additionally, NICOLET 6700 is complemented with a range of graphic formatting options that allow customization of spectral images to suit individual research needs. 6700 is an excellent tool for researchers in different fields, such as pharmacology, food science, and environmental analysis. It provides a high-resolution spectroscopic analysis that offers greater detection sensitivity and accuracy than other traditional methods. Its intuitive software capabilities and graphics options are tailored for quantitative and qualitative analysis and for the identification of molecules in non-volatile samples.
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