UHPLC chromatography system ChromasterUltra Rs
for research and developmentsynthesisUV/VIS

UHPLC chromatography system - ChromasterUltra Rs - Hitachi High-Technologies - for research and development / synthesis / UV/VIS
UHPLC chromatography system - ChromasterUltra Rs - Hitachi High-Technologies - for research and development / synthesis / UV/VIS
UHPLC chromatography system - ChromasterUltra Rs - Hitachi High-Technologies - for research and development / synthesis / UV/VIS - image - 2
UHPLC chromatography system - ChromasterUltra Rs - Hitachi High-Technologies - for research and development / synthesis / UV/VIS - image - 3
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Characteristics

Type
UHPLC
Applications
for research and development, synthesis
Detector type
UV/VIS, DAD
Other characteristics
modular

Description

ChromasterUltra Rs, an ultra-high performance liquid chromatograph, provides the ultimate in high performance, high resolution, and high sensitivity analysis that are becoming requirements for research and development in pharmaceutical and chemical fields. Features High Resolution The newly developed LaChromUltra II column is the longest UHPLC column at 250 mm in length. When used together with the reduced volume system ChromasterUltra Rs, it produces an exceptional high-separation performance. High Sensitivity A total-reflection capillary flow cell is incorporated into the diode array detector to answer to the increasing need for high-sensitivity analysis of hazardous substances, genotoxic impurities, etc. A high-sensitivity flow cell with an optical path length of 65 mm is also available. In addition to the capability of high-sensitivity analysis, carryover is reduced through the use of a double-corkscrew mixer. High-sensitivity total-reflection capillary flow cell The diode array detector (DAD) exhibits low noise and low drift, achieved through the use of a new optical system providing optimal conditions for high-sensitivity analysis. The optional high-sensitivity flow cell (optical path length of 65 mm) further enhances sensitivity; about a tenfold increase is obtained compared with our previous model (LaChromUltra), thus enabling high-sensitivity applications including impurities from side reactions, genotoxic impurities, etc. The acquisition of impurity profiles during all stages of synthesis and in raw materials used in medicines and chemicals, intermediate byproducts, and finished drugs are examples of useful applications.

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