Description
This is a Gas Transmission Infrared Fiber Optic Probe for Gases by art photonics GmbH
Our FlexiSpec® product line includes the latest generation of Transmission infrared fiber optic probes for gases to be used with any spectrometer or photometer.
The design of Transmission Fiber Probe for gases is based on a bifurcated fiber bundle. Due to low Mid IR-attenuation in gases the collimated beam design of double pass (or multiple pass) gas cell is needed to increase optical path length to 10 – 40cm. This design is easily realized by the mean of the collimating objective and reflecting mirror cell.
Gas Transmission Infrared Fiber Optic Probe for Gases (Chalcogenide IR)
Specifications
| Transmission: | 1.6 – 5.5 um |
|---|---|
| Temperature Range: | -50 – 90 C |
| Sensitivity: | >1ppm depending on optical path, spectrometer performance, gases in test |
Features
- On-line transmission spectroscopy in gases
- High throughput in any part of NIR-MIR spectra
- Flexible and robust for industrial applications
- Compatible with any spectrometer
Applications
- Reaction investigation and monitoring in real time
- Analytical Characterization
- Exhaust gases monitoring
- Solvent vaporization monitoring
- Associated petroleum gas monitoring
Frequently Asked Questions
What is the Gas Transmission Infrared Fiber Optic Probe for Gases used for?
The Gas Transmission Infrared Fiber Optic Probe for Gases is used for on-line transmission spectroscopy in gases, reaction investigation and monitoring in real time, analytical characterization, exhaust gases monitoring, solvent vaporization monitoring, and associated petroleum gas monitoring.
What is the design of the Transmission Fiber Probe for gases based on?
The design of the Transmission Fiber Probe for gases is based on a bifurcated fiber bundle.
What is the optical path length of the Transmission Fiber Probe for gases?
The optical path length of the Transmission Fiber Probe for gases is 10 – 40cm.
What is the mean of the collimating objective and reflecting mirror cell used for?
The mean of the collimating objective and reflecting mirror cell is used to realize the collimated beam design of double pass (or multiple pass) gas cell to increase the optical path length.
Is the Gas Transmission Infrared Fiber Optic Probe for Gases compatible with any spectrometer?
Yes, the Gas Transmission Infrared Fiber Optic Probe for Gases is compatible with any spectrometer.
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