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Catalog No. CYT18110835
Part No. 18110835
Supplier Cytiva
Monitor UV-900
Net Price
Special offer
Availability

4 weeks

PROPERTIES
  • Material
    Polyetheretherketone (PEEK)\nPolytetrafluoroethylene (PTFE)\nTitanium alloy (Ti alloy)\nGlass
  • Operating pressure max.
    2 MPa
  • Operating Temperature
    4°C-40°C
  • Weight
    8.5
  • Height
    200 mm
  • Wetted Part
    No
  • Guidance
    Flow cell has to be ordered separately.\n\nTubing connections: UNF 10-32 fingerthights for capillary tubing with 1/16\
  • Relative humidity
    20%-95% (non condensing)
  • Width
    260
  • Depth
    370 mm
  • Voltage
    100-120/220-240 VAC
  • Protection class
    IP 20
  • pH Stability Long Term
    1-13
  • pH Stability Short Term
    1–14
DESCRIPTION
Monitor UV-900 is a multi-wavelength UV-Vis monitor that uses advanced fiber optic technology to monitor with high sensitivity at up to three wavelengths simultaneously in the wavelength range 190 to 700 nm. Novel flow cell design and fiber-optic technology result in high sensitivity and high signal-to-noise ratio with minimal band broadening. Three detection channels allow simultaneous measurement of differently absorbing compounds and purity checking. Xenon flash lamp provides high sensitivity, continuous spectrum light, and long lamp lifetime. Simple to use either as part of ÄKTAdesign systems, see ÄKTA design - One Platform from Basic Research to Production, or as a standalone detector. Monitor UV-900 is not only an integral component of ÄKTAdesign chromatography systems, but is also an excellent standalone multi-wavelength detector. The application of fiber technology to the design of the flow cell means that focused light is continually reflected back into the flow path. The cell features a long path length while retaining a small volume and a design that prevents formation of lens-shaped interfaces between eluant components of different refractive indexes. Fiber optics allow the flow cell to be placed close to the column outlet. These innovations increase signal-to-noise ratio, while decreasing band broadening, noise, and thermal drift. The result is a very sensitive, stable, and reliable UV/visible detector.
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