Mass spectrometer QTRAP 6500+
quadrupoleion trapfor laboratory

Mass spectrometer - QTRAP 6500+ - SCIEX - quadrupole / ion trap / for laboratory
Mass spectrometer - QTRAP 6500+ - SCIEX - quadrupole / ion trap / for laboratory
Mass spectrometer - QTRAP 6500+ - SCIEX - quadrupole / ion trap / for laboratory - image - 2
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Characteristics

Type
mass, quadrupole, ion trap
Domain
for laboratory, chemical
Other characteristics
robust, triple

Description

This system is the fastest and most sensitive QTRAP. It provides the best LOQs to enable the detection and quantification of the broadest scope of chemical compounds in the most challenging matrices. Improved polarity switching and MRM3 speeds allow faster chromatography and better throughput. The built-in QTRAP functionality enables quantitative MRMs and qualitative QTRAP scans in the same injection to maximize throughput. The system is ideal for laboratories performing demanding applications requiring ultimate sensitivity for ultra-low-level quantitation of small and large molecules. Key features Mass range Triple quadrupole: 5 – 2,000 Da; linear ion trap: 50 – 2,000 Da Flexible ionization options Options include electrospray ionization (ESI) and heated nebulizer ionization probes. Selective, robust and powerful ion separation Optional SelexION differential mobility spectrometry Detector type IonDrive high energy detector Polarity switching 5 msec in MRM and Scheduled MRM modes The production of more ions with the newly designed IonDrive Turbo V source is just one of the updates you will see with the QTRAP 6500+. Also added is the ability to capture and transmit more ions with the unique IonDrive QJet ion guide and greater detection with the new IonDrive high energy detector+ The new design of the legendary Turbo V source increases ion production by using enhanced gas flow dynamics and optimized heater configuration to improve reliability, reproducibility, and robustness. With its dual-stage design, the IonDrive QJet guide improves sensitivity and ion capture rate while focusing ions more efficiently than funnel approaches.

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