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Agilent 6850 Series II Network GC System Specifications

Brochures and specifications | 2010 | Agilent TechnologiesInstrumentation
GC
Industries
Manufacturer
Agilent Technologies

Summary

Importance of the Topic


Gas chromatography is a fundamental analytical technique for separation and quantification of volatile and semi-volatile compounds across environmental, pharmaceutical, food, and petrochemical industries. The Agilent 6850 Series II Network GC combines high-performance separation with advanced network connectivity and automation capabilities in a compact footprint.

Aims and Overview of the Article


This document presents the technical specifications, performance characteristics, and practical features of the Agilent 6850 Series II Network GC System. It is intended to inform instrument selection, laboratory setup, and method development strategies for quality control and research laboratories.

Methodology


The Agilent 6850 Series II Network GC employs a single-channel design with a six-button, two-line keypad for local control and status monitoring. It integrates a LAN interface for remote control and data acquisition. The oven architecture supports both standard and fast temperature programs with precise ambient rejection and rapid cool-down rates. Carrier gas delivery, pressure or flow programming, and electronic pneumatics control (EPC) ensure stable and reproducible separations.

Instrumentation Used


  • Oven module with standard and fast ramps, ambient tracking, and optional liquid nitrogen cryogenic cooling.
  • Inlets: split/splitless capillary, purged-packed injection port (PPIP), programmable temperature vaporizer (PTV), programmable cool-on-column (PCOC).
  • Detectors: flame ionization detector (FID), thermal conductivity detector (TCD), flame photometric detector (FPD), micro-electron capture detector (µECD).
  • Electronic pneumatics control (EPC) with 0.01 psi setpoint resolution, ambient compensation, and remote start/stop options.
  • Optional six-port gas sampling or four-port liquid sampling valves with rotary or diaphragm designs.

Main Results and Discussion


The system supports multiple voltage and frequency power standards (100–230 V, 47–63 Hz) and meets global EMC and safety regulations. The oven delivers up to 350 °C with ramp rates to 350 °C/min, cools from 350 °C to 50 °C in about 5.2 minutes, and dissipates 3,000 Btu/h. Inlets operate to 375 °C with precise flow control for columns up to 530 µm i.d. Detectors achieve detection limits in the low picogram range, dynamic ranges up to 10^7, and fast data rates (50–200 Hz). Built-in diagnostics and a service method facilitate preventive maintenance.

Benefits and Practical Applications


  • Compact width and network readiness optimize bench space and integration into automated workflows.
  • Wide selection of inlets and detectors supports diverse analytical methods including environmental monitoring, petrochemical profiling, and flavor analysis.
  • High ramp rates and rapid cool-down enhance sample throughput.
  • Advanced EPC and diagnostics improve method reproducibility and reduce downtime.

Future Trends and Applications


Emerging demands include greater integration with laboratory information management systems, enhanced cryogenic modulation for comprehensive two-dimensional GC, miniaturized GC modules for field applications, and AI-driven method optimization. Continued advancements in detector sensitivity and gas-sampling valving will broaden applications in trace analysis and real-time monitoring.

Conclusion


The Agilent 6850 Series II Network GC System offers a balanced combination of performance, flexibility, and connectivity. Its modular design and regulatory compliance make it a reliable platform for high-throughput laboratories requiring robust quantitation and versatile method development capabilities.

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