Waters Xevo TQ MS with Acquity UHPLC System
The Waters Xevo TQ Mass Spectrometer, coupled with the Acquity UHPLC System, represents the pinnacle of innovation in analytical chemistry. Designed for advanced research and quality in diagnostic applications, this benchtop mass spectrometer integrates cutting-edge technology with exceptional usability, enhancing the capabilities of any laboratory.
Key Features:
- Tandem Quadrupole Technology: The Xevo TQ employs tandem quadrupole mass spectrometry, ensuring high sensitivity, specificity, and accuracy, making it ideal for complex sample analysis.
- Atmospheric Pressure Ionization (API): Utilize diverse ionization techniques to accommodate a wide variety of compounds, ensuring robust performance across diverse applications.
- Enhanced Analytical Speed: Rapid data acquisition enables high-throughput analysis without compromising data quality.
- Acquity UHPLC System: This system minimizes time and cost per sample while elevating the quality of results. Experience higher efficiencies with improved flexibility in linear velocities, flow rates, and backpressures.
- Intuitive User Interface: The system features a user-friendly interface that streamlines operations and facilitates quick learning for new users.
Technical Specifications:
- Mass Range: Capable of analyzing mass ranges to suit various applications, offering unmatched versatility.
- Detector Type: Utilizes advanced detection technologies to ensure precise measurements across a range of compounds.
- Data Acquisition Rates: High-speed data collection allows for real-time analytical feedback, enhancing decision-making capabilities.
- Sample Introduction: Supports multiple sample introduction techniques, broadening the types of analyses that can be performed.
- Software Compatibility: Compatible with leading analytical software for streamlined data management and analysis.
Transform your laboratory's analytical capabilities with the Waters Xevo TQ MS paired with the Acquity UHPLC System, setting new standards for speed, efficiency, and accuracy in mass spectrometry.