| Max. Pressure | 1500 bar (22,000 psi) depending on configuration | Inquire | up to 1000 bar (15,000psi) | Up to 1500 bar (22,000 psi) | up to 1000 bar (15,000psi) |
| Description | Experience the high-resolution fractionation of the Thermo Scientific™ Vanquish™ Analytical Purification LC Systems featuring the integrated Thermo Scientific™ Vanquish™ Fraction Collector. Achieve efficient purification by combining the separation power of the Thermo™ Experience the high-resolution fractionation of the Thermo Scientific™ Vanquish™ Analytical Purification LC Systems featuring the integrated Thermo Scientific™ Vanquish™ Fraction Collector. Achieve efficient purification by combining the separation power of the Thermo™ Scientific™ Vanquish HPLC or UHPLC Systems with precise fractionation allowing for compound characterization or purification tailored for your processes.... Read More | Improve the analysis of complex samples or simplify the separation of difficult-to-resolve analytes with Thermo Scientific Vanquish Online 2D-LC Systems. Select from one of four configurations focused on online SPE or various heart-cutting, two-dimensional liquid chromatography (LC-LC) workflows. Improve the analysis of complex samples or simplify the separation of difficult-to-resolve analytes with Thermo Scientific Vanquish Online 2D-LC Systems. Select from one of four configurations focused on online SPE or various heart-cutting, two-dimensional liquid chromatography (LC-LC) workflows. These robust, easy-to-use modular instruments offer versatile configurations to improve your confidence in peak identity with great performance and maximum application flexibility.... Read More | The Thermo Scientific™ Vanquish™ Flex Quaternary system provides state-of-the-art quaternary solvent blending. As a member of the Thermo Scientific Vanquish UHPLC product line, the Vanquish Flex Quaternary system delivers new benchmarks in accuracy, precision, and sensitivity with a state-of-the-artThe Thermo Scientific™ Vanquish™ Flex Quaternary system provides state-of-the-art quaternary solvent blending. As a member of the Thermo Scientific Vanquish UHPLC product line, the Vanquish Flex Quaternary system delivers new benchmarks in accuracy, precision, and sensitivity with a state-of-the-art quaternary low-pressure pump.... Read More | Use the Thermo Scientific™ Vanquish™ High-throughput LC Systems to improve productivity and save bench space. Vanquish Tandem LC systems increase sample throughput and MS utilization for LC-MS applications by eliminating column washing and equilibration steps from method cycle time. Vanquish Duo Use the Thermo Scientific™ Vanquish™ High-throughput LC Systems to improve productivity and save bench space. Vanquish Tandem LC systems increase sample throughput and MS utilization for LC-MS applications by eliminating column washing and equilibration steps from method cycle time. Vanquish Duo UHPLC systems combine two completely independent LC flow paths to double sample throughput or run independent analyses in parallel. In addition, Vanquish High-throughput LC Systems expand the benefits of the Vanquish platform without compromising performance, robustness, or ease-of-use.... Read More | Today’s scientists deserve the best analytical tools available; tools that empower to achieve the next scientific breakthrough, measure the previously unmeasurable or deliver outstanding quality results dependably. The Vanquish systems improve performance and repeatability with no trade-offs in Today’s scientists deserve the best analytical tools available; tools that empower to achieve the next scientific breakthrough, measure the previously unmeasurable or deliver outstanding quality results dependably. The Vanquish systems improve performance and repeatability with no trade-offs in quality, robustness, or ease-of-use. Regardless of which Vanquish system is used, chromatographers have all they need to solve their toughest analytical challenges with confidence. This innovative, simple-to-operate, and easy-to-maintain platform delivers confident separations that push chromatographic boundaries.... Read More |