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INVENIO Analytical FT-IR Toolbox

Brochures and specifications | 2022 | Bruker OpticsInstrumentation
FTIR Spectroscopy
Industries
Materials Testing
Manufacturer
Bruker

Summary

Importance of the Topic



Fourier transform infrared spectroscopy (FT-IR) is a cornerstone technique in analytical chemistry for material characterization, quality control, and research across multiple industries. A modular, upgradeable FT-IR platform provides laboratories with flexibility to adapt to evolving analytical challenges, enhance productivity, and ensure long-term return on investment.

Study Objectives and Overview



This document presents the INVENIO FT-IR system as a versatile analytical toolbox that can be configured, upgraded, and extended to meet diverse application requirements. Key goals include demonstrating system modularity, performance specifications, robustness, and application scenarios across research and development, analytical services, quality-control laboratories, and industrial sectors.

Methodology



The INVENIO platform employs interchangeable interferometers, detectors, light sources, and accessories to address specific measurement needs. Core methodologies allow for rapid-scan and step-scan FT-IR, multispectral measurements, time-resolved spectroscopy, and automated sampling workflows. Intelligent software and hardware monitoring ensure fault tolerance and reproducible results.

Applied Instrumentation



The system is built around:
  • RockSolid™ and INTEGRAL™ wear-free interferometers with automated beam splitter changers
  • MultiTect™ detector unit supporting up to five room-temperature detectors and a DigiTect™ slot for liquid-nitrogen-cooled detectors
  • CenterGlow™ MIR Globar source and optional additional sources via electronic switching
  • OPUS-TOUCH PC and OPUS software for guided, fail-safe operation
  • Extensive accessory range: ATR, transmission, reflectance, microscopy, cryostats, and hyphenated techniques (TG-IR, FT-Raman, photoluminescence)


Key Results and Discussion



Performance benchmarks show signal-to-noise ratios up to 60 000:1, spectral resolution down to 0.085 cm⁻¹, wavenumber accuracy within 0.005 cm⁻¹, and temporal resolution below microseconds. The modular design supports on-the-fly channel selection, parallel measurement paths, and automated QA/QC routines. Robust mechanical design and real-time monitoring eliminate alignment drifts and operational errors.

Benefits and Practical Applications



INVENIO’s adaptability and reliability deliver:
  • Enhanced productivity through parallel measurements and rapid spectral acquisition
  • Extended system lifetime and reduced downtime via wear-free components and in-field upgrades
  • Broad analytical coverage from FIR to UV without manual reconfiguration
  • Compliance with industry regulations (e.g., pharmaceutical 21 CFR Part 11, cGMP, GLP)
Applications span material research, life science, pharmaceuticals, environmental testing, agricultural analysis, and industrial quality control.

Future Trends and Applications



Emerging trends include integration with AI-driven data analysis, remote instrument monitoring, expansion of hyphenated techniques (e.g., combined chromatography-IR workflows), and further miniaturization for field-deployable systems. Advances in detector materials and rapid-scan electronics will push temporal and spectral resolution boundaries.

Conclusion



The INVENIO FT-IR toolbox exemplifies a future-proof analytical platform delivering high performance, modularity, and operational intelligence. Its upgrade-on-demand philosophy ensures that laboratories can evolve capabilities in line with scientific and industrial demands, maximizing analytical return on investment.

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