Bruker launches the INVENIO X FTIR research spectrometer

6 Oct 2019
Edward Carter
Publishing / Media

Product news

Bruker announced the launch of the novel INVENIO X Fourier Transform Infrared (FTIR) system for research in molecular spectroscopy. This intuitive, modular, new advanced R&D spectrometer further expands Bruker’s next- generation INVENIO® FTIR R&D platform. The INVENIO X is designed for the most demanding analytical applications, and now offers new capabilities for advanced research & development.

The INVENIO platform was introduced in 2018 and offers beneficial MultiTectTM technology for mounting up to 5 detectors, as well as the unique FM functionality for simultaneous mid- and far-infrared spectroscopy. The INVENIO X is available with an automated 3-position beam splitter changer, and its wear-free, novel INTEGRALTM interferometer combines high spectral resolution of <0.09 cm-1 with the accuracy of cube corner mirrors.

“With up to seven software-controlled detectors and multiple light source options, INVENIO X is the most highly automated, multispectral research spectrometer,” said Dr. Michael Joerger, Bruker Product Line Manager for FTIR R&D systems. “This permits measurements from the far IR to the UV/VIS range without the manual exchange of any optical components.”

In addition, INVENIO X benefits from other features introduced with the INVENIO platform. Its novel beam path improves spectroscopic sensitivity, and system-on-a-chip (SoC) built-in intelligence ensures faster data acquisition and processing. Its optional TransitTM channel enables quick measurements without removing longer-term experiments from the main sample compartment. Coded beam windows with magnetic mounts, an automated internal attenuator, an 8-position validation wheel, and an optional integrated touch panel for intuitive spectroscopic workflows represent further smart INVENIO innovations.

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INVENIO

Bruker Optics

INVENIO: FTIR Excellence for Industry, R&D and Science. INVENIO is the definitive spectroscopic solution for routine FTIR analysis as well as research and development. It is all you need and so much more: innovative technologies, intelligent design and its new beam path contribute to an unrivalled user experience. Your advantage: Outstanding signal-to-noise ratio Broad spectral range (FIR, MIR, NIR and VIS/UV) Time-resolved spectroscopy: use Rapid-Scan, Slow-Scan and Step-Scan  Touch-PC with dedicated software for enhanced productivity MultiTect™: up to seven automated and software controlled internal detectors Transit™: parallel availability of two experimental setups RockSolid™: reliable, well-proven and precise CenterGlow™ IR source: optimized light flux and durability Bruker FM: MIR and FIR spectra in one go Upgradability: retrofit spectral range extensions or time resolved measurements Multiple beam inputs and outputs Compact footprint optimized for laboratory benches

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Infrared / IR SpectroscopyInfrared (IR) spectroscopy measures the interaction of infrared light with a sample, including transmission, reflectance & absorbance, facilitating the identification of analytes. Equipment used for quantitative analysis includes Fourier-transform infrared (FTIR) spectrometers, infrared cameras, FTIR gas analyzers, as well as attenuated total reflectance (ATR) accessories and pellet or film presses. Find the best IR spectroscopy products in our peer-reviewed product directory: compare products, check customer reviews and receive pricing direct from manufacturers.Mass SpectrometryMass spectrometry (MS) is a powerful analytical technique used to identify and quantify molecules based on the mass-to-charge ratio of gas-phase ions. It provides detailed information about the structure, composition, and properties of compounds and is widely used across fields such as environmental monitoring, materials science, drug discovery and development, food and beverage testing, and wider chemical research. Key MS techniques include tandem mass spectrometry (MS/MS), liquid chromatography–mass spectrometry (LS-MS) and inductively coupled plasma (ICP-MS). Choosing from these wide range of techniques and technologies can be a daunting task, so keep up to date with scientific applications, performance expectations, and customer reviews here all in one place. Visit our product directory to receive quotes direct from the manufacturer. SpectroscopySpectroscopy is a technique that analyzes the interaction of light with matter to study molecular properties, concentrations, and structural information. Widely used in chemical, pharmaceutical, and environmental analysis, spectroscopy offers insights into molecular composition and helps identify unknown compounds. It plays a key role in quality control, research, and diagnostics. Browse our peer-reviewed product directory to compare spectroscopy tools, read reviews, and get prices directly from manufacturers.Molecular DiagnosticsMolecular diagnostics use an individual’s genetic code and gene expression to diagnose and monitor diseases. The technique is used increasingly in the field of infectious diseases and oncology, as well as areas such as coagulation, HLA typing and pharmacogenomics. Molecular diagnostics plays a pivotal role in personalized medicine.
Bruker launches the INVENIO X FTIR research spectrometer