MOBILE GC-MS - FLIR GRIFFIN G410 - Data Sheet
Brochures and specifications | | FLIR SystemsInstrumentation
Rapid chemical identification in the field is critical for timely decision making in security, environmental monitoring, and public safety. Mobile GC-MS platforms bridge the gap between laboratory-grade analysis and on-site detection by enabling real-time, actionable information.
This summary examines the FLIR Griffin G410 mobile GC-MS system. It highlights design features, sampling versatility, ruggedness for deployment, and its ability to detect a wide range of threats and pollutants under field conditions.
The Griffin G410 integrates a low thermal mass gas chromatograph with an MS/MS-capable ion trap mass analyzer. Key characteristics include:
The G410 achieves full compound identification in 5–15 minutes for most analytes. It reliably detects explosives, narcotics, chemical warfare agents, toxic industrial chemicals, and environmental pollutants. A simplified graphical interface guides operators through sampling and analysis, while color-coded go/no-go alarms expedite field decisions. Data are stored locally on a laptop via Ethernet with access to NIST, AMDIS, and user-defined libraries.
The mobile GC-MS reduces sample shipping costs and delays by preserving integrity on site. It supports CBRN reconnaissance, forensic investigations, industrial hygiene, and environmental compliance monitoring. The platform’s modular sampling tools and optional vehicle mounts enhance adaptability across missions.
Advancements may include integrated hydrogen generators for autonomous carrier gas supply, enhanced automation with AI-driven spectral deconvolution, expanded on-board libraries tailored to emerging threats, and further miniaturization. Integration with remote networks and cloud-based analytics could enable distributed sensor architectures.
The FLIR Griffin G410 mobile GC-MS delivers laboratory-quality analysis in challenging environments. Its versatile sampling, rapid identification, and rugged design make it an essential tool for field chemists, first responders, and security personnel aiming to obtain fast, reliable chemical intelligence on location.
GC/MSD
IndustriesEnvironmental, Homeland Security
ManufacturerFLIR Systems
Summary
Importance of the topic
Rapid chemical identification in the field is critical for timely decision making in security, environmental monitoring, and public safety. Mobile GC-MS platforms bridge the gap between laboratory-grade analysis and on-site detection by enabling real-time, actionable information.
Study objectives and overview
This summary examines the FLIR Griffin G410 mobile GC-MS system. It highlights design features, sampling versatility, ruggedness for deployment, and its ability to detect a wide range of threats and pollutants under field conditions.
Methodology and instrumentation used
The Griffin G410 integrates a low thermal mass gas chromatograph with an MS/MS-capable ion trap mass analyzer. Key characteristics include:
- Mass range 35–425 m/z with up to 10 000 m/z per second scan rate
- Internal electron ionization source and conversion dynode electron multiplier detector
- Fused silica DB-5MS column (15 m × 0.18 mm × 0.18 µm), programmable 40–300 °C
- Onboard FC-43 calibrant and external carrier gas options (He or H₂)
- Split/splitless injector accepting direct syringe, SPME fiber, headspace, autosampler, and PSI-Probe™ sampling tools
- Rugged internal shock isolation meeting MIL-STD-810G
Main results and discussion
The G410 achieves full compound identification in 5–15 minutes for most analytes. It reliably detects explosives, narcotics, chemical warfare agents, toxic industrial chemicals, and environmental pollutants. A simplified graphical interface guides operators through sampling and analysis, while color-coded go/no-go alarms expedite field decisions. Data are stored locally on a laptop via Ethernet with access to NIST, AMDIS, and user-defined libraries.
Benefits and practical applications
The mobile GC-MS reduces sample shipping costs and delays by preserving integrity on site. It supports CBRN reconnaissance, forensic investigations, industrial hygiene, and environmental compliance monitoring. The platform’s modular sampling tools and optional vehicle mounts enhance adaptability across missions.
Future trends and opportunities
Advancements may include integrated hydrogen generators for autonomous carrier gas supply, enhanced automation with AI-driven spectral deconvolution, expanded on-board libraries tailored to emerging threats, and further miniaturization. Integration with remote networks and cloud-based analytics could enable distributed sensor architectures.
Conclusion
The FLIR Griffin G410 mobile GC-MS delivers laboratory-quality analysis in challenging environments. Its versatile sampling, rapid identification, and rugged design make it an essential tool for field chemists, first responders, and security personnel aiming to obtain fast, reliable chemical intelligence on location.
Content was automatically generated from an orignal PDF document using AI and may contain inaccuracies.
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