Agilent 7890B GC System with FID
The Agilent 7890B GC System with Flame Ionization Detector (FID) is designed for excellence in gas chromatography, providing robust performance to meet the needs of a diverse range of applications. Each aspect of this system has been meticulously crafted to ensure precision and reliability, making it an essential addition to any laboratory.
Key Features:
- Integrated Detectors: The system features a sulfur or nitrogen chemiluminescence detector that operates at ultra-low parts per billion (ppb) detection levels, alongside an FID that automatically ranges from ppb to parts per trillion (ppt) detection, enhancing the accuracy and sensitivity of your analyses.
- Capillary Flow Technology (CFT): This innovative technology supports advanced techniques such as multi-dimensional gas chromatography (GC-GC) and comprehensive two-dimensional gas chromatography (GCxGC), enabling complex sample separation and analysis.
- Low Thermal Mass (LTM) Modules: Rapid heating and cooling capabilities of the LTM modules improve sample throughput, allowing for more efficient sample processing without compromising data quality.
- Electronic Pneumatic Control (EPC) Modules: These modules deliver precise control of pneumatics and temperature, ensuring optimal operating conditions for various applications.
- Carrier Gas Options: Features include a helium conservation module and built-in hydrogen sensors, as well as alternative carrier gas solutions aimed at reducing overall helium consumption.
- Gas Saver Mode: This efficiency mode significantly decreases gas consumption, providing an eco-friendly approach while maintaining high performance during analysis.
- Split Ratios: Capable of split ratios up to 7,500:1 to prevent column overload, along with a splitless mode ideal for trace analysis, enhancing the versatility of your chromatographic investigations.
Elevate your laboratory capabilities with the Agilent 7890B GC System with FID, where cutting-edge technology meets exceptional performance, designed to support the most demanding analytical needs.