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  1. Measurement Range:

    • Typical ranges (e.g., 0-100% hydrogen).
    • Detection limits for impurities (e.g., parts per million, ppm).
  2. Accuracy:

    • Percentage of accuracy (e.g., ±0.1% of reading).
  3. Precision:

    • Repeatability and reproducibility measures.
  4. Response Time:

    • Time taken for the analyzer to provide results after sample introduction (e.g., seconds to minutes).
  5. Temperature and Pressure Range:

    • Operating temperature and pressure limits for analysis.
  6. Technology Type:

    • Method of detection (e.g., gas chromatography, infrared spectroscopy, thermal conductivity).
  7. Sample Conditioning:

    • Required sample preparation steps (e.g., filtration, drying).
  8. Calibration:

    • Calibration frequency and methods (e.g., calibration gas standards).
  9. Interface and Connectivity:

    • Output options (e.g., analog, digital, USB, Ethernet).
    • Compatibility with data logging or monitoring systems.
  10. User Interface:

    • Display type (e.g., touchscreen, LCD).
    • Ease of operation and menu navigation.
  11. Size and Portability:

    • Dimensions and weight for stationary or portable models.
  12. Power Supply:

    • Operating voltage and power consumption.
  13. Maintenance Requirements:

    • Frequency and type of maintenance needed (e.g., sensor replacement).
  14. Environmental Resistance:

    • Resistance to dust, moisture, and chemical exposure (e.g., IP rating).
  15. Regulatory Compliance:

    • Adherence to industry standards (e.g., ISO, ASTM).
  16. Warranty and Support:

    • Manufacturer warranty and availability of technical support.

These specifications will help ensure the analyzer meets the needs for accurate and reliable hydrogen purity measurement. 

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Gas Analysers рдЕрдиреНрдп рдЙрддреНрдкрд╛рдж



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