Used PERKIN ELMER / SCIEX 5600 QTOF #293651498 for sale

PERKIN ELMER / SCIEX 5600 QTOF
ID: 293651498
Mass Spectrometer (MS).
WATERS / MICROMASS / MDS SCIEX QTOF 5600 is a high-performance quadrupole time-of-flight mass spectrometer that combines breakthrough speed with superior sensitivity to accelerate data-driven discovery. The performance of WATERS QTOF 5600 exceeds any previous time-of-flight mass spectrometer, offering enhanced sensitivity, extended dynamic range, and improved resolution. MICROMASS QTOF 5600 incorporates an ultra-high-speed quadrupole, an innovative new ion source, and a single continuous linear sector coupled to a high-performance orthogonal acceleration time-of-flight analyzer. This combination delivers improved performance but doesn't add complexity to the system. The quadrupole ion filter can be tuned to separate ions according to their mass-to-charge ratio. The combined quadrupole-time-of-flight analyzer enables higher resolution mass analysis, providing the ability to detect different isobaric ions with similar mass-to-charge ratios. The advanced ion source features improved ionization efficiency, higher ionization energy, and improved desolvation of sample molecules. It is specifically designed to enhance both qualitative and quantitative analysis. The source enables high-efficiency ionization and transmits ions to the analytical path before they are subjected to high-energy acceleration, facilitating a faster measurement cycle. The extended mass range of up to 20,000 m/z allows for accurate measurements of molecular ions with high masses, enabling determination of the exact mass of peptides, proteins, and other large molecules. The adjustable signal-to-noise ratio allows users to control the scan speed of the mass spectrometer, allowing users to balance resolution and sensitivity. In conclusion, MDS SCIEX QTOF 5600 is a highly advanced, ultra-high-speed quadrupole time-of-flight mass spectrometer with improved resolution and an extended mass range. It offers exceptional performance in terms of speed, sensitivity, and accuracy, and is ideally suited for characterization of molecular ions, as well as qualitative and quantitative analysis.
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