


Disposable cuvettes, macro
Cuvettes for spectrophotometry applications in the visible spectrum. The production technology and quality control ensure the reproducibility of the cuvettes. The absorption changes are kept within the ±1 % interval, an important condition for analyses in series.Cuvettes for spectrophotometry applications in the visible spectrum. The production technology and quality control ensure the reproducibility of the cuvettes. The absorption changes are kept within the ±1 % interval, an important condition for analyses in series.

Disposable cuvettes, semi-micro
Cuvettes for spectrophotometry applications in the visible spectrum. The production technology and quality control ensure the reproducibility of the cuvettes. The absorption changes are kept within the ±1 % interval, an important condition for analyses in series.Cuvettes for spectrophotometry applications in the visible spectrum. The production technology and quality control ensure the reproducibility of the cuvettes. The absorption changes are kept within the ±1 % interval, an important condition for analyses in series.

Disposable cuvettes, standard, 4 clear faces
Cuvettes for spectrophotometry applications in the visible spectrum. The production technology and quality control ensure the reproducibility of the cuvettes. The absorption changes are kept within the ±1 % interval, an important condition for analyses in series.Cuvettes for spectrophotometry applications in the visible spectrum. The production technology and quality control ensure the reproducibility of the cuvettes. The absorption changes are kept within the ±1 % interval, an important condition for analyses in series.


LLG-Disposable plastic cells, PS
The shape and narrow wall thickness of the cuvettes enable an excellent heat transfer resulting in constant sample temperatures during photometric measurements.Cavity sortedGlass clear polystyrene (PS)Applicable wavelength range 340 nm to 900 nmVery low variation of extinction valuesExcellent optical transmission rangePath length 10 mmOverall dimensions 12.5 mm x 12.5 mm x 45 mmStyrofoam racks: 100 cuvettes in a styrofoam box with cover

Macro cuvettes
Sorted by mold cavity number to ensure lowest variation of extinction coefficient. Optically perfect transmission range. Manufactured under controlled room conditions and packaged fully automatically. CERTIFIED LIFE SCIENCE QUALITY.Sorted by mold cavity number to ensure lowest variation of extinction coefficient. Optically perfect transmission range. Manufactured under controlled room conditions and packaged fully automatically. CERTIFIED LIFE SCIENCE QUALITY.

Macro cuvettes, plastic
For photometric measurements even in the UV range.Applicable wavelength range 220 to 900 nmLow variation of extinction valuesGood optical transmission rangeSorted by mould cavity numberScope of supply: 100 netidentical cuvettes in styrofoam box with a resealable cover

Macro cuvettes, with 4 optical windows, PS
Sorted by mold cavity number to ensure lowest variation of extinction coefficient. Optically perfect transmission range. Manufactured under controlled room conditions and packaged fully automatically. CERTIFIED LIFE SCIENCE QUALITY.Particularly suitable for fluorescence spectroscopy.

Macro cuvettes, with 4 optical windows, UV-transparent
Sorted by mold cavity number to ensure lowest variation of extinction coefficient. Optically perfect transmission range. Manufactured under controlled room conditions and packaged fully automatically. CERTIFIED LIFE SCIENCE QUALITY.Particularly suitable for fluorescence spectroscopy. The UV version can be used from a wavelength of 230 nm and shows minimal autofluorescence.

Plastic disposable UV cuvettes, micro
For photometric determination of proteins, ssDNA, dsDNA, RNA and oligonucleotides in the UV range. Sample volumes as small as 70 µl are sufficient.Usable for wavelengths from 230 nmFor measurements at 260 nm, 280 nm and in the visible rangeGrouped by mold cavity number

Plastic disposable UV cuvettes, micro, individually wrapped
For photometric determination of proteins, ssDNA, dsDNA, RNA and oligonucleotides in the UV range. Sample volumes as small as 70 µl are sufficient.Usable for wavelengths from 230 nmFor measurements at 260 nm, 280 nm and in the visible rangeFree of DNase, DNA and RNaseGrouped by mold cavity number


Semi micro cuvettes
Sorted by mold cavity number to ensure lowest variation of extinction coefficient. Optically perfect transmission range. Manufactured under controlled room conditions and packaged fully automatically. CERTIFIED LIFE SCIENCE QUALITY.Sorted by mold cavity number to ensure lowest variation of extinction coefficient. Optically perfect transmission range. Manufactured under controlled room conditions and packaged fully automatically. CERTIFIED LIFE SCIENCE QUALITY.

UV cuvette UVette®, individually packed
The plastic material of the UVettes® provides a transparency range of 220 nm to 1600 nm. It is possible to carry out measurements in the UV range as well as the entire VIS range.Suitable for measuring small volumes, min. 50 µlChoice of two optical path lengths: 2 mm and 10 mmUV- and VIS-transparent between 220 nm and 1600 nmVolume markings at 500 µl and 1000 µlTotal transparent material with outstanding surface propertiesOptimal filling guaranteed by tapered cuvette baseRecessed optical window prevents scratchesSelf-standing designMarking possible on frosted gripping surfaceFor use in BioPhotometer and BioSpectrometerDNase-/RNase- and protein-free

UV cuvette UVette®, routine pack
The plastic material of the UVettes® provides a transparency range of 220 nm to 1600 nm. It is possible to carry out measurements in the UV range as well as the entire VIS range.Suitable for measuring small volumes, min. 50 µlChoice of two optical path lengths: 2 mm and 10 mmUV- and VIS-transparent between 220 nm and 1600 nmVolume markings at 500 µl and 1000 µlTotal transparent material with outstanding surface propertiesOptimal filling guaranteed by tapered cuvette baseRecessed optical window prevents scratchesSelf-standing designMarking possible on frosted gripping surfaceFor use in BioPhotometer and BioSpectrometerReclosable box

UV cuvette UVette®, starter kit
The plastic material of the UVettes® provides a transparency range of 220 nm to 1600 nm. It is possible to carry out measurements in the UV range as well as the entire VIS range.Suitable for measuring small volumes, min. 50 µlChoice of two optical path lengths: 2 mm and 10 mmUV- and VIS-transparent between 220 nm and 1600 nmVolume markings at 500 µl and 1000 µlTotal transparent material with outstanding surface propertiesOptimal filling guaranteed by tapered cuvette baseRecessed optical window prevents scratchesSelf-standing designMarking possible on frosted gripping surfaceFor use in BioPhotometer and BioSpectrometerScope of supply: 80 x UVettes®, 1 universal adapter with beam centre height of 15 mm, convertible to 8.5 mm

UV plastic cuvettes, macro
For determinations in water analysis, chemistry and in life science applications.Usable with most polar solvents, acids and alkaline solutionsDrastically reduced risk of contamination Grouped by mold cavity number

UV plastic cuvettes, semi-micro
For determinations in water analysis, chemistry and in life science applications.Usable with most polar solvents, acids and alkaline solutionsDrastically reduced risk of contamination Grouped by mold cavity number

VIS cuvettes Eppendorf®, PMMA, macro
The Eppendorf® Vis Cuvettes are disposable cuvettes made of clear plastic with a light transmission of 300 nm to 900 nm. They are the perfect tool for applications outside of the UV range, for example, colorimetric protein assays (Bradford, Lowry, etc.), determining of the optical density of bacterial cultures (OD600 methods), kinetic and fluorescence measurements.
VIS cuvettes Eppendorf®, PMMA, semi-micro
The Eppendorf® Vis Cuvettes are disposable cuvettes made of clear plastic with a light transmission of 300 nm to 900 nm. They are the perfect tool for applications outside of the UV range, for example, colorimetric protein assays (Bradford, Lowry, etc.), determining of the optical density of bacterial cultures (OD600 methods), kinetic and fluorescence measurements.