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Agilent 8453 UV-Vis Supplies

The Agilent 8453 UV-visible spectrophotometer offers the latest in diode-array technology:

  • Small footprint to save bench space
  • Prealigned deuterium and tungsten lamp light sources for trouble-free maintenance
  • Built-in buttons to measure sample, standard, and blank for convenient measurements even when wearing gloves
  • Thermally stable ceramic spectrograph for a wide operating temperature range
  • Communication through GPIB or LAN for dedicated or networked PC control
  • Firmware upgrade from PC for easy participation in future developments
  • Built-in GPIO interface for control of accessories
  • Compliance with all requirements of the European Pharmacopoeia (EP) and United States Pharmacopeia (USP)

The diode-array advantages Backed by over two decades of experience in the development and manufacture of diode-array spectrophotometers, the Agilent 8453 gives you clear advantages.

  • Fast spectral scanning for complete spectral information useful for:
  1. proof of identity and pureness of the sample
  2. additional information for “out of specification test result” investigation in a regulated environment
  3. re-evaluation with different method
  4. multi-wavelength applications such as user-defined equations
  5. multicomponent analysis of mixtures
  • Open sample area for convenient sample handling
  • High throughput optics guarantees excellent signal-to-noise for high sensitivity
  • Virtually absolute wavelength resettability allows selection of optimum wavelength and use of electronic standards
  • Exceptional ruggedness and reliability

Optical performance The Agilent 8453 offers the advantages of a diode array plus significant improvements in optical performance:

  • 190 – 1100 nm wavelength range
  • 1 nm slit width • < 0.03 % stray light Good Laboratory Practice The Agilent 8453 supports compliance with GLP regulations:
  • Serial and firmware revision number held in firmware
  • Own clock for time and date stamps of the spectra
  • Extensive self-test procedures that check the electronics and key optical characteristics to ensure consistent performance between validation
  • Built-in electronic logbooks, which contain the results of self-tests, notes in instrument maintenance, events and errors

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