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Quadrupole spectrometer 8900
ICP-MSMS/MSlaboratory

Quadrupole spectrometer - 8900 - Agilent Technologies - Life Sciences and Chemical - ICP-MS / MS/MS / laboratory
Quadrupole spectrometer - 8900 - Agilent Technologies - Life Sciences and Chemical - ICP-MS / MS/MS / laboratory
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Quadrupole spectrometer - 8900 - Agilent Technologies - Life Sciences and Chemical - ICP-MS / MS/MS / laboratory - image - 3
Quadrupole spectrometer - 8900 - Agilent Technologies - Life Sciences and Chemical - ICP-MS / MS/MS / laboratory - image - 4
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Characteristics

Type
quadrupole, ICP-MS, MS/MS
Domain
laboratory, chemistry
Other characteristics
high-sensitivity, high-resolution, robust, triple

Description

The Agilent 8900 triple quadrupole ICP-MS (ICP-QQQ) is the world’s most successful and widely used tandem ICP mass spectrometer. Available in a range of configurations to cover applications from routine contract analysis to advanced research and high-purity materials analysis, the Agilent 8900 ICP-QQQ redefines ICP-MS performance, delivering results you can trust The 8900 offers the same matrix tolerance and robustness as Agilent’s market-leading single quadrupole ICP-MS systems, combined with the industry’s most effective helium (He) collision mode. But the 8900 adds tandem mass spec operation (ICP-MS/MS) for unmatched control of reaction chemistry in the collision reaction cell (CRC), making it the world’s most powerful and flexible multi-element analyzer. Let the 8900 ICP-QQQ take control of your interferences and put your results beyond doubt Features MS/MS controls the reaction chemistry ensuring consistent, reliable results, even for previously difficult elements like Si, P, and S Reaction chemistry resolves isobaric overlaps, which are beyond the capability of high-resolution ICP-MS Four-channel cell gas control provides fast, flexible, multi-mode operation A suite of pre-set methods simplifies method setup for routine analysis Helium mode provides simple, effective control of common polyatomic interferences Robust (low CeO/Ce) plasma for unmatched matrix tolerance Ultra High Matrix Introduction (UHMI) technology tolerates samples with up to 25% total dissolved solids (TDS) High sensitivity and low background provide the lowest detection limits for ultratrace analytes Versatility and high performance combine to support advanced research and demanding applications

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