Agilent InfinityLab Pro iQ Series Mass Detectors
Brochures and specifications | 2025 | Agilent TechnologiesInstrumentation
Modern analytical laboratories demand mass spectrometers that combine exceptional sensitivity, accuracy, and ease of use. High-performance single quadrupole LC/MS detectors play a critical role in pharmaceutical development, environmental testing, food safety, and quality control. Streamlined operation and robust design minimize learning curves and maximize uptime, making advanced mass detection accessible to both experienced and new users.
This datasheet outlines the technical specifications and performance features of the Agilent InfinityLab Pro iQ Series mass detectors, including the standard Pro iQ (G6160B) and the enhanced Pro iQ Plus (G6170A). The goal is to highlight key parameters such as sensitivity, mass range, resolution, dynamic range, and operational flexibility, enabling laboratories to select the optimal detector for their analytical needs.
Performance metrics were determined using established calibration compounds such as reserpine. Sensitivity was evaluated by selected ion monitoring of m/z 609.3, while mass accuracy, resolution, and stability were assessed under ambient laboratory conditions over extended time periods. Autotune procedures utilize proprietary calibration solutions to optimize ion optics and mass calibration in both positive and negative modes.
The Pro iQ series demonstrates industry-leading sensitivity, with the standard model achieving an IDL below 70 femtograms of reserpine and the Plus version reaching an IDL under 20 femtograms using Jet Stream. Mass range extends from m/z 2 to 1600 on the Pro iQ and up to m/z 3000 on the Pro iQ Plus. Autotuned resolution offers full width at half maximum of 0.4 Da in narrow mode and up to 2.5 Da in the widest setting. Mass accuracy remains within 0.1 Da over 24 hours, and dynamic range exceeds six orders of magnitude. Rapid polarity switching and maximum scan rates of 15 000 Da per second support complex workflows, including mixed scan modes and time-programmed events.
Ongoing developments in mass detection may include deeper integration with artificial intelligence for adaptive method optimization, expansion into higher mass ranges for intact protein analysis, and miniaturized detectors for portable or field-deployable instrumentation. Enhanced fraction collection algorithms and improved deconvolution capabilities will support high-throughput proteomics and metabolomics studies.
The Agilent InfinityLab Pro iQ Series mass detectors deliver a compelling combination of sensitivity, resolution, and operational simplicity. Both the Pro iQ and Pro iQ Plus models address the evolving demands of modern analytical workflows, offering reliable performance and advanced features that empower laboratories to achieve accurate, high-throughput results with minimal training requirements.
LC/MS, LC/SQ
IndustriesOther
ManufacturerAgilent Technologies
Summary
Importance of the Topic
Modern analytical laboratories demand mass spectrometers that combine exceptional sensitivity, accuracy, and ease of use. High-performance single quadrupole LC/MS detectors play a critical role in pharmaceutical development, environmental testing, food safety, and quality control. Streamlined operation and robust design minimize learning curves and maximize uptime, making advanced mass detection accessible to both experienced and new users.
Study Objectives and Overview
This datasheet outlines the technical specifications and performance features of the Agilent InfinityLab Pro iQ Series mass detectors, including the standard Pro iQ (G6160B) and the enhanced Pro iQ Plus (G6170A). The goal is to highlight key parameters such as sensitivity, mass range, resolution, dynamic range, and operational flexibility, enabling laboratories to select the optimal detector for their analytical needs.
Methodology
Performance metrics were determined using established calibration compounds such as reserpine. Sensitivity was evaluated by selected ion monitoring of m/z 609.3, while mass accuracy, resolution, and stability were assessed under ambient laboratory conditions over extended time periods. Autotune procedures utilize proprietary calibration solutions to optimize ion optics and mass calibration in both positive and negative modes.
Used Instrumentation
- Mass Detectors: Agilent Pro iQ (G6160B) and Pro iQ Plus (G6170A)
- Data System: Agilent OpenLab CDS (version 2.7 and later) for full control of HPLC/UHPLC and LC/MS systems
- Ion Sources: Electrospray ionization, APCI, multimode ionization; Pro iQ Plus adds Agilent Jet Stream for enhanced desolvation
- Vacuum System: Single turbomolecular pump with mechanical backing pump
- Additional Features: High-voltage dynode detector, Vacshield vent prevention, SWARM automated ion optics optimization, scheduled autotune capability
Main Results and Discussion
The Pro iQ series demonstrates industry-leading sensitivity, with the standard model achieving an IDL below 70 femtograms of reserpine and the Plus version reaching an IDL under 20 femtograms using Jet Stream. Mass range extends from m/z 2 to 1600 on the Pro iQ and up to m/z 3000 on the Pro iQ Plus. Autotuned resolution offers full width at half maximum of 0.4 Da in narrow mode and up to 2.5 Da in the widest setting. Mass accuracy remains within 0.1 Da over 24 hours, and dynamic range exceeds six orders of magnitude. Rapid polarity switching and maximum scan rates of 15 000 Da per second support complex workflows, including mixed scan modes and time-programmed events.
Benefits and Practical Applications
- High Sensitivity and Wide Dynamic Range enable trace-level quantification in pharmaceutical assays and environmental analyses.
- Robust Autotune and Scheduled Maintenance reduce downtime and ensure consistent performance.
- Multiple Ionization Options accommodate diverse sample chemistries from small molecules to complex matrices.
- Ease of Use with a single control interface and intelligent Auto Acquire simplifies method development and user training.
Future Trends and Potential Applications
Ongoing developments in mass detection may include deeper integration with artificial intelligence for adaptive method optimization, expansion into higher mass ranges for intact protein analysis, and miniaturized detectors for portable or field-deployable instrumentation. Enhanced fraction collection algorithms and improved deconvolution capabilities will support high-throughput proteomics and metabolomics studies.
Conclusion
The Agilent InfinityLab Pro iQ Series mass detectors deliver a compelling combination of sensitivity, resolution, and operational simplicity. Both the Pro iQ and Pro iQ Plus models address the evolving demands of modern analytical workflows, offering reliable performance and advanced features that empower laboratories to achieve accurate, high-throughput results with minimal training requirements.
Content was automatically generated from an orignal PDF document using AI and may contain inaccuracies.
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