Fluorescence Spectrometer

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.

What to consider when choosing a fluorescence spectrometer?

When choosing a fluorescence spectrometer, consider the wavelengths it can analyze, the time analysis takes, and the amount of sample needed for analysis.

Discover and compare Fluorescence Spectrometers:

CompanyJASCOJASCOJASCOJASCO
ItemFP-8350 SpectrofluorometerFP-8250 SpectrofluorometerFP-8550 SpectrofluorometerFP-8650 NIR Spectrofluorometer
Citations
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Catalog NumberFP-8350FP-8250FP-8550FP-8650
Price
DescriptionThe FP-8350 Spectrofluorometer is an extremely sensitive spectrofluorometer that can be used in the broadest range of applications: biological, environmental, teaching labs, and core facilities. Many features make this a simple-to-use instrument; automatic cut-off filters (included as standard) ... Read MoreThe FP-8250 Spectrofluorometer is a user-friendly, general-purpose instrument that allows for measurement with a quick press of a start button on top of the instrument. The simplified, yet sensitive design includes everything that is required for routine fluorescence measurements in a quality-... Read MoreThe FP-8550 Spectrofluorometer has been designed for demanding research applications and has the same functionality and advantages of the FP-8350, but also includes an optimized optical design for very low stray-light and enhanced spectral purity. Combined with the most thorough spectral correction,... Read MoreThe FP-8650 Spectrofluorometer uses a uniquely red-sensitive PMT that extends the measurement range from the UV-Visible to the near infrared. Providing excitation wavelengths from 200 to 850 nm and emission detection up to 980 nm (1010 nm option). Samples such as carbon nanotubes, porphyrins and ... Read More
Wavelength RangeZero order, 200 to 750 nmZero order, 200 to 750 nmZero order, 200 to 850 nmEx: Zero order, 200 to 850 nm
Em: Zero order, 200 to 980 nm
Detector(s)Excitation: Silicon photodiode
Emission: Photomultiplier tube
InquireInquireInquire
ResolutionExcitation: 1.0 nm (at 546.1 nm)
Emission: 1.0 nm (at 546.1 nm)
Excitation: 1.0 nm (at 546.1 nm)
Emission: 1.0 nm (at 546.1 nm)
Excitation: 1.0 nm (at 546.1 nm)
Emission: 1.0 nm (at 546.1 nm)
Excitation: 1.0 nm (at 546.1 nm)
Emission: 2.0 nm (at 546.1 nm)
Signal-to-Noise RatioRMS Noise: 8,000:1RMS Noise: 4,500:1RMS Noise: 8,500:1RMS Noise: 3,500:1
ApplicationsProtein dynamics, Quantitative analysis, Cellular membrane studies, Enzyme kinetics, Water quality monitoring, Quantum dot and probe design, Carbon nanostructures and 2D materials, Fluorescent tracking materials, Short lifetime phosphorescence and PHOLEDsProtein dynamics, Quantitative analysis, Cellular membrane studies, Enzyme kinetics, Water quality monitoring, Quantum dot and probe design, Carbon nanostructures and 2D materials, Fluorescent tracking materials, Short lifetime phosphorescence and PHOLEDsProtein dynamics, Quantitative analysis, Cellular membrane studies, Enzyme kinetics, Water quality monitoring, Quantum dot and probe design, Carbon nanostructures and 2D materials, Fluorescent tracking materials, Short lifetime phosphorescence and PHOLEDsProtein dynamics, Quantitative analysis, Cellular membrane studies, Enzyme kinetics, Water quality monitoring, Quantum dot and probe design, Carbon nanostructures and 2D materials, Fluorescent tracking materials, Short lifetime phosphorescence and PHOLEDs
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