
Specs at a glance
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Laser wavelength
With immersion optic:
532 nm, 785 nm, 1000 nm
With bIO-Optic:
785 nm, 1000 nm
With Raman optic system for single use:
785 nm, 1000 nm -
Body and window materials
Rxn-10 probe body: 6061 aluminum, 316L stainless steel, and 303 stainless steel
Field of application
Designed for product and process development, the Rxn-10 probe is the workhorse of the Raman probe portfolio. It is trusted to deliver high performance Raman measurements across a wide spectral range. It is also compact, lightweight, and flexible, offering multi-purpose convenience for solids and liquids analysis in the laboratory environment. The Rxn-10 probe accepts a variety of interchangeable optics, making it a highly versatile and easily adaptable instrument in your laboratory toolbox.
Chemical: reaction monitoring, blending, catalysis, hydrocarbon speciation, process unit optimization
Polymer: polymerization reaction monitoring, extrusion monitoring, polymer blending
Pharmaceutical: API reaction monitoring, crystallization
Biopharmaceutical: cell culture and fermentation monitoring, optimization, control
Food & Beverage: zonal heterogeneity mapping of meats and fish
Benefits
Multipurpose use for both solids and liquids measurement
Lightweight and compact
Integrated laser safety interlock, including “laser on” indication and probe shutter
Flexible output compatible with a range of sampling options
Easy switching of non-contact, immersion, and bioprocessing optics to suit a variety of applications
Wide spectral range, including access to the critical low-wavenumber region
Extended selection
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High-end products
- Highly functional and convenient
Technical excellence
Simplicity

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Standard products
- Reliable, robust and low-maintenance
Technical excellence
Simplicity
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Specialized products
- Designed for demanding applications
Technical excellence
Simplicity
Variable
FLEX selections | Technical excellence | Simplicity |
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Fundamental selection Meet your basic measurement needs |
Technical excellence
|
Simplicity
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Lean selection Handle your core processes easily |
Technical excellence
|
Simplicity
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Extended selection Optimize your processes with innovative technologies |
Technical excellence
|
Simplicity
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Xpert selection Master your most challenging applications |
Technical excellence
|
Simplicity
Variable |
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Technical Information (TI)
Rxn-10 Raman Spectroscopic Probe Technical Information
System design andspecifications for the Raman Rxn-10 probe
Language:
English
Version:
08/09/2021
File size:
379.6 KB
File name:
TI01629CEN_0121.pdf
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Operating Instruction (BA)
Rxn-10 Raman Spectroscopic Probe Operating Instructions
Commissioning, operation, and maintenance details for the Raman Rxn-10 probe
Language:
English
Version:
08/09/2021
File size:
1014.7 KB
File name:
BA02160CEN_0121.pdf
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Short Instruction (KA)
Rxn-10 Raman Spectroscopic Probe Brief Operating Instructions
Quick start guide for the Raman Rxn-10 probe
Language:
English
Version:
08/09/2021
File size:
717.4 KB
File name:
KA01546CEN_0121.pdf
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PU (Publication)
Advanced process and product control in fermentations - Raman spectroscopy for composition analysis in a lab or process
An overview of Raman spectroscopy analyzer systems (including the Raman Rxn2 analyzer, Raman Rxn4 analyzer, Rxn-10 probe, and Rxn-45 probe), powered by Kaiser Raman technology, for fermentation compositional analysis in a lab or process applicable to biotechnology in the food & beverage industry.
Language:
English
Version:
03/03/2022
File size:
726.2 KB
File name:
PU01457CEN_0122.pdf
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Competence Brochure (CP)
Raman spectroscopy food & beverage application guide - Trusted technology for composition analysis in a laboratory or process environment
A guide to Raman spectroscopy application notes for the food & beverage industry (featuring studies using the Raman Rxn2 analyzer, Raman Rxn4 analyzer, Rxn-10 probe, Rxn-20 probe, Rxn-45 probe, and the immersion optic and non-contact optic).
Language:
English
Version:
17/02/2022
File size:
858.7 KB
File name:
CP01489CEN_0122.pdf
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Innovation (IN)
Raman technology in bioprocessing - Scalable in situ bioprocess monitoring enabling advanced process control
An overview brochure about our Raman spectroscopy analyzer and probe portfolio, powered by Kaiser Raman technology, for the bioprocessing / biopharmaceutical industry (including the Raman Rxn2 analyzer, Raman Rxn4 analyzer, Rxn-10 probe, Rxn-45 probe, Rxn-46 probe, and probe accessory optics (bIO-Optic, Raman single use optic system / SUB, immersion optic , non-contact optic), powered by Kaiser Raman technology.
Language:
English
Version:
02/11/2021
File size:
6.8 MB
File name:
IN01228CEN_0121.pdf
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Innovation (IN)
Raman technology for the chemical industry - Reliable composition measurement of chemical process streams
An overview brochure about our Raman spectroscopy analyzer systems, powered by Kaiser Raman technology, for the chemical industry (includes the Raman Rxn2 analyzer, Raman Rxn4 analyzer, Raman Rxn5 analyzer, and the Raman Rxn-10 probe, Raman Rxn-20 probe, Raman Rxn-30 probe, Raman Rxn-40 probe, and Raman Rxn-41 probe).
Language:
English
Version:
18/10/2021
File size:
10.6 MB
File name:
IN01223CEN_0121.pdf
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Innovation (IN)
Raman spectrographic probes - Robust optical measurement of chemical composition
An overview brochure about our Raman spectroscopy probe portfolio including the Rxn-10 probe, Rxn-20 probe, Rxn-30 probe, Rxn-40 probe, Rxn-41 probe, Rxn-45 probe, Rxn-46 probe, and probe accessory optics (bIO-Optic, Raman single use optic system / SUB, immersion optic , non-contact optic), powered by Kaiser Raman technology.
Language:
English
Version:
26/10/2021
File size:
4.9 MB
File name:
IN01225CEN_0121.pdf
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AI (Application note)
Quantitative in-line measurement of CO2 loading in amine gas scrubbers
This paper evaluates the use of Raman spectroscopy to directly monitor the chemical composition of and quantify the CO2 loadings inan amine scrubber.
Language:
English
Version:
21/08/2021
File size:
604.2 KB
File name:
AI01202CEN_0121.pdf
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AI (Application note)
Monitoring a pharmaceutical crystal transformation in situ
This note describes the use of in situ Raman spectroscopy to probe the kinetics of a hemihydrate, transforming to an anhydrous polymorph and then to a different polymorph.
Language:
English
Version:
08/09/2021
File size:
486.7 KB
File name:
AI01206CEN_0121.pdf
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