Agilent 5975T LTM GC/MSD System - Data Sheet
Brochures and specifications | 2011 | Agilent TechnologiesInstrumentation
Gas chromatography coupled with mass spectrometry (GC/MS) enables precise identification and quantification of complex chemical mixtures. A portable, high-performance GC/MS expands analytical capabilities beyond the fixed laboratory, supporting rapid decision-making in environmental monitoring, forensics, food safety, and industrial quality control.
This summary presents the Agilent 5975T LTM GC/MSD system, the first commercially available transportable GC/MS with laboratory‐grade performance. It integrates low thermal mass (LTM) technology with a triple-axis high-efficiency detector to deliver fast analysis, reliable operation, and flexibility for field or lab deployment.
The LTM approach replaces a conventional GC oven by wrapping the capillary column with an electric heating element and sensor, achieving ramp rates up to 1200 °C/min and reducing power consumption. Temperature control spans ambient +8 °C to 350 °C with precise digital pneumatic regulation. The mass selective detector operates under electron ionization with a noncoated inert source, programmable up to 350 °C. A monolithic hyperbolic quadrupole, heatable to 200 °C, provides mass selection up to 1050 u. Key instrument components include:
Performance testing demonstrates retention time precision better than 0.10 u over 48 h, scan speeds up to 12 500 u/s, and write-to-disk rates of 8 000 u/s. Trace Ion Detection combined with Deconvolution Reporting Software enables reliable identification of coeluting low-level compounds. Retention time locking and eMethods support rapid method transfer across multiple sites.
The 5975T LTM GC/MSD offers high throughput and ruggedness for on-site or mobile labs, reducing sample turnaround times. Its robustness suits environmental screening, forensic analysis, food safety testing, and QA/QC workflows. Automated tuning, maintenance feedback, and quick-change inlet liners enhance uptime and ease of operation.
Emerging advancements in miniaturized detectors, high-speed data acquisition, and AI-driven deconvolution promise further enhancements in portability and analytical depth. Integration with remote monitoring and cloud-based data networks will enable real-time decision support in field settings.
The Agilent 5975T LTM GC/MSD system successfully merges transportable design with laboratory-class sensitivity, precision, and reliability. Its innovative LTM heating, advanced detection, and automated workflows make it a versatile tool for diverse analytical challenges.
GC/MSD, GC/SQ
IndustriesManufacturerAgilent Technologies
Summary
Importance of the Topic
Gas chromatography coupled with mass spectrometry (GC/MS) enables precise identification and quantification of complex chemical mixtures. A portable, high-performance GC/MS expands analytical capabilities beyond the fixed laboratory, supporting rapid decision-making in environmental monitoring, forensics, food safety, and industrial quality control.
Objectives and Overview
This summary presents the Agilent 5975T LTM GC/MSD system, the first commercially available transportable GC/MS with laboratory‐grade performance. It integrates low thermal mass (LTM) technology with a triple-axis high-efficiency detector to deliver fast analysis, reliable operation, and flexibility for field or lab deployment.
Methodology and Instrumentation
The LTM approach replaces a conventional GC oven by wrapping the capillary column with an electric heating element and sensor, achieving ramp rates up to 1200 °C/min and reducing power consumption. Temperature control spans ambient +8 °C to 350 °C with precise digital pneumatic regulation. The mass selective detector operates under electron ionization with a noncoated inert source, programmable up to 350 °C. A monolithic hyperbolic quadrupole, heatable to 200 °C, provides mass selection up to 1050 u. Key instrument components include:
- Triple‐axis high-efficiency EM detector for enhanced sensitivity
- Programmable ion source for optimized signal intensity
- Dual‐filament EI source and oil-free pumping for low maintenance
- Automated SIM/scan acquisition with synchronized switching
- Autosampler options ranging from injector tower to CTC-PAL
Main Results and Discussion
Performance testing demonstrates retention time precision better than 0.10 u over 48 h, scan speeds up to 12 500 u/s, and write-to-disk rates of 8 000 u/s. Trace Ion Detection combined with Deconvolution Reporting Software enables reliable identification of coeluting low-level compounds. Retention time locking and eMethods support rapid method transfer across multiple sites.
Benefits and Practical Applications
The 5975T LTM GC/MSD offers high throughput and ruggedness for on-site or mobile labs, reducing sample turnaround times. Its robustness suits environmental screening, forensic analysis, food safety testing, and QA/QC workflows. Automated tuning, maintenance feedback, and quick-change inlet liners enhance uptime and ease of operation.
Future Trends and Application Possibilities
Emerging advancements in miniaturized detectors, high-speed data acquisition, and AI-driven deconvolution promise further enhancements in portability and analytical depth. Integration with remote monitoring and cloud-based data networks will enable real-time decision support in field settings.
Conclusion
The Agilent 5975T LTM GC/MSD system successfully merges transportable design with laboratory-class sensitivity, precision, and reliability. Its innovative LTM heating, advanced detection, and automated workflows make it a versatile tool for diverse analytical challenges.
Content was automatically generated from an orignal PDF document using AI and may contain inaccuracies.
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