Bruker Corporation - 810-MS and 820-MS Series

Manufactured by  Bruker Corporation
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Core to both the 810-MS and 820-MS are:     
         
  1. Robust, high-efficiency, 27MHz plasma system with patented interlaced coils providing stable analysis for the toughest sample matrices     
  2. High-efficiency 90 degree ion mirror delivering unmatched sensitivity at more than 1 million counts per second for 1µg/L     
  3. All-digital extended range detector with more than nine decades of dynamic range in pulse counting (digital) mode allows the measurement of trace to major elements in a single analysis.     
  4. Integrated laser abalation (LA) and liquid chromatography (LC) interfaces. Laser ablation allows for the direct analysis of solid samples while LC makes elemental and molecular speciation easy.     
  5. A range of optional accessories to further expand the productivity and capabilities of your 800-MS. Including SPS3 autosampler for automated sample analysis, Productivity Pack increases sample throughput for laboratories with large sample numbers and Clean Room Pack eliminates instrument contamination in clean room facilities     
     
The 820-MS also features Bruker‘s novel collision reaction interface (CRI) system, which provides simple, routine removal of troublesome spectroscopic interferences. The result is faster, more flexible interference-free analysis without the worry of complex multipole or scanning quadrupole ion guides, or cells.
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Features of 810-MS and 820-MS Series

The Bruker 810-MS is recommended for applications where spectroscopic interferences are few such as simple matrices or higher mass elements with atomic mass numbers above 80. For example:     

  • Environmental – Drinking water analysis     
  • Semi-conductor – High purity reagents using cool plasma technique     
  • Clinical Research - Metal-based anticancer agents     
  • Nuclear Applications – Detection of uranium     

The Bruker 820-MS, with Collision Reaction Interface (CRI) is the instrument of choice for challenging applications where spectroscopic interferences can be a problem. Elements commonly affected by spectroscopic interferences resulting from plasma gases (argon) and matrix elements include K, Ca, V, Cr, Fe, As and Se. Key elements in a number of important application fields. For example     

  • Environmental – Effluent, sludge and seawater analysis     
  • Food and toy safety – Toxic elements Cr, As, Hg, Cd, Pb     
  • Food/Agriculture – Toxic, nutritional and essential elements     
  • Semi-conductor – High purity reagents using normal hot plasma     
  • Clinical Research - Whole blood, serum and urine analysis
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