Thermo Scientific Vanquish UHPLC System
Brochures and specifications | 2016 | Thermo Fisher ScientificInstrumentation
The evolution from traditional high performance liquid chromatography to ultra high performance liquid chromatography addresses the growing demand for faster, more sensitive and higher resolution separations in analytical and industrial laboratories. UHPLC enhances throughput, data quality and method robustness, supporting critical applications in pharmaceuticals, environmental monitoring, food safety and life sciences.
This application note presents the Thermo Scientific Vanquish UHPLC system as a fully integrated solution that empowers chromatographers to achieve better separations, higher throughput and simpler operation. It reviews system design, performance specifications and practical benefits for modern analytical workflows.
The Vanquish UHPLC system combines biocompatible fluidics, high-pressure pumping and advanced detection modules under the control of Chromeleon chromatography data system software. Key components include:
Performance tests demonstrate the Vanquish system can achieve ultra high resolution separations and superior throughput without compromise:
The Vanquish UHPLC system offers:
Advances such as deeper integration with high resolution mass spectrometry, expanded automation through robotics and artificial intelligence driven method development will further boost analytical capabilities. Cloud based data management and real time decision support are emerging trends that will complement UHPLC performance and drive faster scientific discovery.
The Thermo Scientific Vanquish UHPLC system represents a significant step forward in liquid chromatography, offering unmatched resolution, throughput and ease of use. Its combination of high pressure operation, precise fluidics, advanced detection and software control meets the demands of modern analytical laboratories and paves the way for future innovations.
No specific literature references were provided in the source document.
HPLC
IndustriesManufacturerThermo Fisher Scientific
Summary
Importance of Topic
The evolution from traditional high performance liquid chromatography to ultra high performance liquid chromatography addresses the growing demand for faster, more sensitive and higher resolution separations in analytical and industrial laboratories. UHPLC enhances throughput, data quality and method robustness, supporting critical applications in pharmaceuticals, environmental monitoring, food safety and life sciences.
Objectives and Study Overview
This application note presents the Thermo Scientific Vanquish UHPLC system as a fully integrated solution that empowers chromatographers to achieve better separations, higher throughput and simpler operation. It reviews system design, performance specifications and practical benefits for modern analytical workflows.
Methodology and Instrumentation
The Vanquish UHPLC system combines biocompatible fluidics, high-pressure pumping and advanced detection modules under the control of Chromeleon chromatography data system software. Key components include:
- Pump module with up to 1500 bar operating pressure, flow rates to 5 mL per minute and two independent ternary solvent channels
- Autosampler capable of handling up to 23 microtiter plates (8832 samples), injection volumes from 0.01 to 100 microliters and barcode-driven rack identification
- Column compartment offering two thermostatting modes (still and forced air) over 5 to 120 degrees Celsius, active preheating and support for three independent chambers
- Diode array detector with Thermo Scientific LightPipe technology offering low dispersion, noise down to plus minus 3 micro absorbance units, linear response to 3000 milli absorbance units and programmable slit widths
- Optional Charger module for robotic plate loading and extended sample inventory management
- Chromeleon CDS software providing method compatibility checks, secure data vault, live acquisition monitoring and tablet remote control app
Main Results and Discussion
Performance tests demonstrate the Vanquish system can achieve ultra high resolution separations and superior throughput without compromise:
- Peak capacity of 720 in complex herbal extract analysis at 1360 bar pressure
- Retention time precision of under 0.02 percent relative standard deviation for small molecule standards
- Injection volume linearity with correlation coefficients above 0.999 across submicroliter to microliter volumes
- Sub-minute gradients yielding precise retention and peak shape for pharmaceutical screening at 100 hertz data rates
- Low baseline noise and wide detector dynamic range enabling quantitation of impurities down to 0.008 percent area in a 1.2 minute assay, well below international guidelines
Benefits and Practical Applications
The Vanquish UHPLC system offers:
- Enhanced resolution through low system dispersion, high pressure capability and efficient column technologies
- Accelerated sample throughput via fast cycle times, large plate capacity and automated workflows
- Robust reproducibility supported by advanced temperature control, precision pumping and barcode tracking
- Seamless integration with mass spectrometry for compound identification or quantitation using both triple quadrupole and Orbitrap platforms
- Intuitive operation and reduced training with automated method checks, intelligent shutdown and startup routines
Future Trends and Possibilities
Advances such as deeper integration with high resolution mass spectrometry, expanded automation through robotics and artificial intelligence driven method development will further boost analytical capabilities. Cloud based data management and real time decision support are emerging trends that will complement UHPLC performance and drive faster scientific discovery.
Conclusion
The Thermo Scientific Vanquish UHPLC system represents a significant step forward in liquid chromatography, offering unmatched resolution, throughput and ease of use. Its combination of high pressure operation, precise fluidics, advanced detection and software control meets the demands of modern analytical laboratories and paves the way for future innovations.
Reference
No specific literature references were provided in the source document.
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