Optical Analysis

Comprehensive lab and process optical analysis systems for solids, liquids, slurries, particles and gases.

1 - 33 of 33 Products
Raman Rxn KNCO1
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Raman Rxn KNCO1
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TDLAS gas analyzers SS2100A
Endress+Hauser
TDLAS gas analyzers SS2100A
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TDLAS gas analyzer J22
Endress+Hauser
TDLAS gas analyzer J22
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Raman probe KRFB
Endress+Hauser
Raman probe KRFB
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Raman Rxn KRSU1
Endress+Hauser
Raman Rxn KRSU1
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Raman Rxn KRCT
Endress+Hauser
Raman Rxn KRCT
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Raman Rxn KRXN5C
Endress+Hauser
Raman Rxn KRXN5C
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KRFC
Endress+Hauser
KRFC
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Raman Rxn KFOC1
Endress+Hauser
Raman Rxn KFOC1
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Raman Rxn KLBIO1
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Raman Rxn KLBIO1
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Raman probe KRBSL
Endress+Hauser
Raman probe KRBSL
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Maritime Suite IMARSUI
Endress+Hauser
Maritime Suite IMARSUI
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TDLAS gas analyzer SS2100
Endress+Hauser
TDLAS gas analyzer SS2100
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Raman Rxn KRXN4B
Endress+Hauser
Raman Rxn KRXN4B
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Raman Rxn KIO1
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Raman Rxn KIO1
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SS2100i Gas Analyzer
Endress+Hauser
SS2100i gas analyzer
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Raman probe KR46
Endress+Hauser
Raman probe KR46
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Raman probe KR20
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Raman probe KR20
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TDLAS gas analyzer SS500
Endress+Hauser
TDLAS gas analyzer SS500
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Raman probe KR41
Endress+Hauser
Raman probe KR41
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Raman probe KR45
Endress+Hauser
Raman probe KR45
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Raman probe KR30
Endress+Hauser
Raman probe KR30
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Raman Rxn KRXN2B
Endress+Hauser
Raman Rxn KRXN2B
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Raman probe KRCAL
Endress+Hauser
Raman probe KRCAL
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Raman probe KR40
Endress+Hauser
Raman probe KR40
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QF gas analyzer OXY5500
Endress+Hauser
QF gas analyzer OXY5500
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Raman Rxn KRC
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Raman Rxn KRC
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Raman Rxn KHCA1
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Raman Rxn KHCA1
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Raman Rxn-20 Probe Accessories
Endress+Hauser
Raman Rxn-20 probe accessories
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Raman probe KSC1
Endress+Hauser
Raman probe KSC1
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Raman probe KR10
Endress+Hauser
Raman probe KR10
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Raman probe KRBMO
Endress+Hauser
Raman probe KRBMO
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TDLAS gas analyzer JT33
Endress+Hauser
TDLAS gas analyzer JT33
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Optical Analysis

Optical analysis comprises atomic and molecular measurement techniques that use light–matter interactions to identify and quantify composition in solids, liquids, slurries, particles, and gases. In practice, these systems extend process analysis beyond conventional electrochemical sensors by providing fast, selective measurements for quality control, process optimization, and emissions monitoring. Endress+Hauser’s optical analysis offerings span laboratory, process, and continuous emissions monitoring use cases. 

The technology set includes key extractive and in-situ approaches such as tunable diode laser absorption spectroscopy (TDLAS), quenched fluorescence (QF), and Raman spectroscopy, along with NIR, IR, UV/Vis, and atomic absorption techniques. Each method is selected based on target species, required response time, sampling strategy, and the tolerance for dust, moisture, temperature, and pressure effects in the measurement path. 

Benefits of optical analysis are tied to transparency and speed. Measurements delivered in seconds or minutes support tighter control and faster detection of abnormal conditions, minimizing downtime and avoiding off-spec production. Inline, non-invasive measurement reduces sample handling and preparation, improving safety and supporting repeatable results with minimal disruption to the process stream.

Typical applications include process gas analysis (e.g., key contaminants and moisture), combustion and utility optimization, and real-time product quality verification in chemical and life-science production. In solids and slurries, optical techniques can support concentration, composition, or particle-related monitoring where sampling is difficult or where rapid feedback improves control. For environmental compliance, emissions monitoring solutions are used to analyze and document gas concentrations so that mitigation actions can be targeted and verifiable.

Implementation depends on choosing the right measurement geometry—extractive versus in-situ, cross-duct versus probe, or inline optical cell—along with appropriate purge, window management, and calibration strategies. Well-designed systems emphasize maintainability and plant availability through straightforward operation and service access, enabling dependable long-term monitoring in harsh industrial environments. 
Endress+Hauser

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