





Fiber Optic Spectrometer LB-13FOS comes with a wavelength range of 200 to 1100 nm for versatile spectral analysis. It features a high-resolution 3648-pixel detector for accurate detection of subtle spectral changes. It delivers resolution below 0.75 nm, ensuring high clarity in spectral data. Our fiber optic spectrometer has a clear digital display for real-time monitoring of spectral data.
$ 3400
Download CatalogSpecifications
| Wavelength Range | 200 to 1100 nm |
| Optical Resolution | < 0.75 nm |
| Sensitivity | 130 photons/count at 400 nm 60 photons/count at 600 nm |
| Corrected Linearity | > 99.8% |
| Signal-To-Noise Ratio | 300:1 |
| Stray Light | < 0.05 % at 600 nm < 0.10 % at 435 nm |
| Integration Time | 4 ms to 10 s |
| Detector | 3648 pixels |
| Pixel Size | 8 µm × 200 µm |
| Fiber Optic Connector | SMA905 to 0.22 NA single-strand fiber |
| Entrance Aperture Options | 5, 10, 25, 50, 100, 200 µm |
| Optical Design | Symmetrical Czerny-Turner |
| Focal Length | 101.6 mm (input/output) |
| Trigger Modes | 2 types |
| Power Supply | 450 mA at 5 VDC |
| Connector | 30-pin connector |
| Dimension | 149 × 105 × 46 mm |
| Net Weight | 840 g |
Features
Multiple grating options
Excellent photon sensitivity
Quick full-spectrum scans
Minimal signal distortion
Sensitive light detection
Standard Accessories
Software
Optional Accessories
EX-TA/TB Box
1.0/1.5/2.0 m 400 µm fiber
400 µm fiber holder
SMA905 or FC/PC 400 µm fiber
Applications
Fiber Optic Spectrometer LB-13FOS is suitable for laser, fluorescence, Raman, and LIBS spectral analysis, measuring reflectivity, transmittance, and film thickness.
It is used in textile industries, chemical research labs, and medical diagnostics.
Frequently asked questions For Fiber Optic Spectrometer
1. What makes the Labotronics LB-13FOS suitable for advanced spectral techniques like Raman or LIBS analysis?
Labotronics LB-13FOS offers high-resolution detection, low stray light, and sensitive light detection, making it highly effective for Raman, LIBS, and fluorescence spectral techniques.
2. Can the Labotronics LB-13FOS handle fast spectral measurements?
Yes, the LB-13FOS is designed for quick full-spectrum scans, allowing rapid acquisition of spectral data in dynamic or time-sensitive applications.
3. Is the Labotronics LB-13FOS ideal for low-intensity or weak signal samples?
Yes. Labotronics LB-13FOS delivers accurate results even with low-light or trace-level samples, thanks to its high photon sensitivity and low signal distortion.
4. What is the primary use of a Labotronics Fiber Optic Spectrometer?
Labotronics Fiber Optic Spectrometers are used for precise spectral analysis of light, enabling accurate identification and quantification of materials in scientific and industrial applications.
5. How does a Labotronics Fiber Optic Spectrometer capture and analyze spectral data?
Labotronics Fiber Optic Spectrometers uses fiber optic probes to collect light from the sample and directs it through diffraction gratings, allowing the system to separate and measure specific wavelengths for detailed analysis.
6. Can Labotronics Fiber Optic Spectrometers be used for real-time monitoring?
Yes, our fiber optic spectrometers feature digital displays that allow real-time monitoring of spectral data during experiments, enhancing data accuracy and user control.
7. Are Labotronics Fiber Optic Spectrometers suitable for field applications?
Yes, Labotronics Fiber Optic Spectrometers feature a compact design and flexible fiber optic connectivity, making them ideal for both laboratory and field-based use in environmental, chemical, and biomedical studies.
Still have questions?
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| Wavelength Range | 200 to 1100 nm |
| Optical Resolution | < 0.75 nm |
| Sensitivity | 130 photons/count at 400 nm 60 photons/count at 600 nm |
| Corrected Linearity | > 99.8% |
| Signal-to-Noise Ratio | 300:1 |
| Wavelength Range | 200 to 1100 nm (optional, max. 650 nm span) |
| Optical Resolution | < 1.0 nm |
| Detector | 3648 pixels |
| Pixel Size | 8 µm × 200 µm |
| Signal-to-Noise Ratio | 300:1 |
| Wavelength Range | 350 to 1100 nm |
| Optical Resolution | Depends on grating mark density and slit size |
| Detector | 2048 pixels |
| Pixel Size | 14 µm × 14 µm |
| Signal-to-Noise Ratio | ~ 450:1 |
| Wavelength Range | 350 to 1100 nm |
| Optical Resolution | < 0.75 nm |
| Sensitivity | 130 photons / count at 400 nm 60 photons/count at 600 nm |
| Corrected Linearity | > 99.8% |
| Signal-to-Noise Ratio | 300:1 |
| Wavelength Range | 200 to 1100 nm |
| Optical Resolution | Depends on grating mark density and slit size |
| Detector | 2048 pixels |
| Pixel Size | 14 µm × 14 µm |
| Signal-to-Noise Ratio | ~ 450:1 |
| Wavelength Range | 350 to 1100 nm |
| Optical Resolution | < 0.75 nm |
| Sensitivity | 130 photons/count at 400 nm 60 photons/count at 600 nm |
| Corrected Linearity | > 99.8% |
| Signal-to-Noise Ratio | 300:1 |
Address: Labotronics Scientific. 1007 N Orange St.,
Wilmington, DE 19801, USA
Mail: info@labotronics.com
WhatsApp: +1 579 401 0534
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