Scientific research fluorometer Quantus™
for DNA quantificationfor RNA quantification

Scientific research fluorometer - Quantus™ - Promega France - for DNA quantification / for RNA quantification
Scientific research fluorometer - Quantus™ - Promega France - for DNA quantification / for RNA quantification
Scientific research fluorometer - Quantus™ - Promega France - for DNA quantification / for RNA quantification - image - 2
Scientific research fluorometer - Quantus™ - Promega France - for DNA quantification / for RNA quantification - image - 3
Scientific research fluorometer - Quantus™ - Promega France - for DNA quantification / for RNA quantification - image - 4
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Characteristics

Applications
for scientific research, for DNA quantification, for RNA quantification

Description

Easy, intuitive controls Ready to use with QuantiFluor® Dyes Recommended for next-generation sequencing Bundled package available for integrated instrumentation and assay Highly sensitive, affordable, single-tube fluorometer The Quantus™ Fluorometer is a compact, dual-channel fluorometer designed to provide highly sensitive fluorescent detection when quantifying nucleic acids. The Quantus™ Fluorometer is optimized with preprogrammed settings for Promega QuantiFluor® Dye Systems (QuantiFluor® dsDNA, RNA and ssDNA Systems) to quantitate nucleic acids and offers the flexibility to create customized methods and quantitation settings for other fluorescent dyes. Features Easy, intuitive controls. Calculates concentration automatically. Store the last 50 readings and transfer data in real time. Recommended for NGS and compatible with Illumina (HiSeq/miSeq), Roche (454) and LifeTech (ion Torrent and ion Proton) Systems. Callout-1Two fluorescent channels: Red: Ex: 640nm shortpass (wavelengths up to 640nm); Em: 660–720nm Blue: Ex: 495nm shortpass (wavelengths up to 495nm); Em: 510–580nm Callout-2Easily customize sample names, view concentration results, raw values, sample volumes and a quality check. Compact size at only 22.7 x 11.5 x 4.5cm Large 3-inch liquid crystal display screen Intuitive navigation Performance Detection Sensitivity Fluorescence-based nucleic acid quantification methods are more sensitive than absorbance-based methods, allowing you to quantitate low-level DNA samples accurately. Calibration and Sample Measurement The calibration process eliminates the need to generate a standard curve for each set of unknown samples.

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