Instrument Database:
Thermo Scientific - TSQ Quantum XLS Ultra™ GC-MS/MS
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Year of introduction |
2012 |
Status |
historical ( out of sale ) |
Company |
Thermo Scientific
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Categories |
Mass spectrometer: GC-MS |
When you need a system with the highest laboratory productivity and excellent analytic performance—even in a complex matrix— choose the Thermo Scientific™ TSQ Quantum XLS Ultra™ GC-MS/MS. Featuring best-in-class target compound selectivity and analytical performance, the TSQ Quantum XLS Ultra system is engineered to meet the requirements of the most demanding analyses across food safety, environmental, clinical research, forensic toxicology, pharmaceutical and metabolomics applications. With thissystem, data can be evaluated quickly and easily, providing the answers you need faster.
For Ultimate Chromatographic Performance:
- Proprietary Thermo Scientific™ HyperQuad™ technology delivers exceptional sensitivity with superior precision at the lowest concentration levels
- Exclusive Ultra-Selective Reaction Monitoring (U-SRM) is featured for optimal selectivity with increased mass resolution
- Cleaner mass chromatograms enable easy peak identification and integration
Features and Benefits:
- HyperQuad technology for ultra high resolved Q1 precursor selection (less than 0.2Da U-SRM)
- Unsurpassed analyte selectivity in very complex matrix extracts
- Superior results from less cleaned real life sample extracts
- Reliable, first time peak integration, quantitation
- Ion ratio confirmation compliant with official regulations
- U-SRM with increased mass resolution
- Thermo Scientific™ DuraBrite™ IRIS source technology for class-leading sensitivity and robustness
- Highest selectivity for complex matrix samples with enhanced mass resolution (U-SRM)
- Ability to analyze a virtually unlimited number of target compounds in a single GC run with 1ms dwell times
- Quantitation-enhanced Data-dependent MS/MS (QED-MS/MS) for simultaneous
- compound quantitation and confirmation
- Vacuum interlock for ion volume removal or changing of ionization modes without venting
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