A fluorescence spectrometer is a device to detect and analyze organic compounds. Used in biology, chemistry, and environmental science laboratories, the fluorescence spectrometer measures the fluorescence of a molecule to gather information about its components and chemical environment. The two main types of fluorescence spectrometers are filter fluorometers, which use filters to isolate the different types of light, and spectrofluorometers, which isolate the types of light with diffraction grating monochromators. When choosing a fluorescence spectrometer, consider the wavelengths it can analyze, the time analysis takes, and the amount of sample needed for analysis.
Find, compare, and request a quote for fluorescence spectrometers across leading suppliers at Labcompare; including access to product citations, related published figures, and first-hand reviews from our scientific community.
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| Company | Edinburgh Instruments Ltd | Edinburgh Instruments Ltd |
| Item | FLS1000 Photoluminescence Spectrometer | FS5 v2 Spectrofluorometer |
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| Catalog Number | FLS1000 | FS5 v2 |
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| Description | The FLS1000 Spectrometer sets the standard in both steady state and time-resolved photoluminescence spectroscopy for both fundamental research and routine laboratory applications.
The system is a modular fluorescence and phosphorescence spectrometer for measuring spectra from the ultraviolet to The FLS1000 Spectrometer sets the standard in both steady state and time-resolved photoluminescence spectroscopy for both fundamental research and routine laboratory applications.
The system is a modular fluorescence and phosphorescence spectrometer for measuring spectra from the ultraviolet to the mid-infrared spectral range (up to 5,500 nm), and lifetimes spanning from picoseconds to seconds. All of this can be achieved through various upgrade routes, either at the time of order or in the future.
Whether you are studying photophysics, photochemistry, biophysics, biochemistry, material or life sciences, the FLS1000 will enable you to reliably and accurately measure luminescence spectra and kinetics using state-of-the-art sources, detectors, acquisition techniques, quality optics and precision mechanics. The large sample chamber will house practically any type of sample accessory.
High sensitivity is a prerequisite for measurements of low sample concentrations, small sample volumes or low sample quantum yields. The instrument’s guaranteed sensitivity of >35,000:1 for the standard water Raman measurement using the SQRT method is unmatched in the industry.
The FL1000 has a USB interface and all modes of operation are controlled by ONE data acquisition module and ONE all-inclusive Fluoracle software package for data acquisition and analysis. Light source, detector, grating, slits, polarisers are all computer-controlled for accurate and precise measurements.
Features: - New Fluoracle® software package – easily accessible user interface and updated features
- Higher Resolution – new 325 mm focal length monochromators provide superb accuracy and excellent stray light rejection with minimum step size
- Faster measurements – increased scan speeds and leading performance
- Increased automation – ease of use for even the most complex configurations
... Read More | Compact high-sensitivity spectrofluorometer; FS5 v2 is adaptable to a wide range of research and analytical applications.
Features:
- High Sensitivity: Photon counting detection, with a signal-to-noise ratio of 12,000:1, provides exceptional sensitivity for the detection of weak fluorescence signals
Compact high-sensitivity spectrofluorometer; FS5 v2 is adaptable to a wide range of research and analytical applications.
Features:
- High Sensitivity: Photon counting detection, with a signal-to-noise ratio of 12,000:1, provides exceptional sensitivity for the detection of weak fluorescence signals
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2-in-1 Spectrometer: Measure both absorption and fluorescence spectra in a single instrument
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Adaptable: Tailor to your requirements, from a dedicated spectral fluorometer to an all-in-one characterisation platform with time-resolved fluorescence and quantum yield
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Plug & Play Sample Modules: Auto-recognised sample modules that can be swapped in seconds, enabling a rapid transition between different sample formats and measurement types
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Near-Infrared Detection: Extend the measurement range out to 2050 nm by adding a NIR detector, ideal for studying NIR-emitters, such as quantum dots and upconversion nanoparticles
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Automated Acquisition: Maximise your lab productivity with the FluoAuto software feature to create automated sample measurement sequences
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| Wavelength Range | Emission Wavelength Range 160 nm to 5500 nm | <230 nm to 1000 nm (Excitation), 200 nm to >870 nm (Emission) |
| Wavelength Accuracy | 0.2 nm | ± 0.5 nm |
| Resolution | 0.05 nm | Inquire |
| Signal-to-Noise Ratio | > 35,000:1 FSD | 12,000:1 |
| Detector(s) | Photomultipliers (UV - NIR), Analogue (NIR - MIR) | Photomultiplier, spectral coverage 200 nm - 870 nm, cooled and stabilised |
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