For high-performance chemical composition and quality measurements in real time from lab to process
What is Raman spectroscopy? Raman spectroscopy utilizes specific wavelengths of laser light which interact with molecules to cause scattering. A small amount of laser light will shift due to energy transfer (Raman shift). The back-scattered photons are collected and filtered by separation of Raman light. A CCD detector identifies a unique "fingerprint" of the chemical components and quantifies the amount of each, making Raman spectroscopy an excellent technique for accurate composition analysis.
Raman spectroscopy measurement is an optical analysis technology that measures composition and concentration
Raman Rxn2 analyzer: Raman analyzer that bridges laboratory analysis to the process environment with up to four channels
Raman Rxn4 analyzer: Rugged, reliable Raman analyzer ensuring 24/7 process monitoring and quality control
Raman fiber optic sampling probes: Non-destructive, continuous, real-time chemical composition measurements in any environment
Raman spectroscopy measurement is an optical analysis technology that measures composition and concentration
Raman Rxn2 analyzer: Raman analyzer that bridges laboratory analysis to the process environment with up to four channels
Raman Rxn4 analyzer: Rugged, reliable Raman analyzer ensuring 24/7 process monitoring and quality control
Raman fiber optic sampling probes: Non-destructive, continuous, real-time chemical composition measurements in any environment
Benefits
Rapid implementation User-friendly automation compatible software, a reliable partner with a long history of Raman expertise, and a vast global customer support network
Optimized process efficiency Faster delivery of real-time, highly accurate measurement data along with streamlined lab-to-process scalability
Increased safety Reliable, non-invasive measurement techniques that minimize human intervention while maximizing risk avoidance capabilities
Enhanced product quality Easier compliance with industry regulations through increased process visibility and tighter control of critical quality parameters
Lower costs Reduced maintenance, product waste, and cleaning burdens while increasing yields and plant availability
Fully scalable Raman systems Endress+Hauser Raman systems harness the power of Raman spectroscopy to perform continuous, real-time chemical measurements in any environment without needing to extract, prepare, or destroy the native sample. With over 40 years of experience, the depth and breadth of our portfolio allow our customers to gain chemical insights to help streamline product development, provide analytical scalability, and ensure product quality through process automation.
Spectral coverageStarter 785 nm: 300-3300 cm-1 Base model 532 nm: 150-4350 cm-1 Base model 785 nm: 150-3425 cm-1 Base model 1000 nm: 200-2400 cm-1 Hybrid 785 nm: 175-1890 cm-1
Laser wavelengthWith non-contact and immersion optic: 532 nm, 785 nm, 1000 nm With bIO-Optic or Raman optic system for single use: 785 nm, 1000 nm With bio multi optic and bio sleeve or Raman flow assembly: 785 nm
Body and window materialsRxn-10 probe body: 6061 aluminum, 316L stainless steel, and 303 stainless steel
Wetted materialsBody: 316L stainless steel Window: Proprietary material, optimized for bioprocesses Process connection: PG13.5 for industry standard sensor housings, welded port connectors available Surface finish: Ra 15 with electropolish Adhesive: USP Class VI and ISO993 compatible
Sterilization methodCIP/SIP
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Raman spectroscopic analyzers
Raman spectroscopic analyzers - Robust optical measurement of chemical composition
Learn how to unlock molecular insights with this overview of Raman spectroscopy—real-time, non-destructive analysis for chemical ID, process control, and innovation across industries.
Our Raman spectroscopic systems are powered by Kaiser Raman technology, enabling non-invasive chemical composition analysis of a material without needing to extract, prepare, or destroy the sample.
Optical analysis systems for monitoring composition and concentration in solids, liquids, slurries, particles, and gases - for laboratory, process, and emission monitoring.
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