-40%

Waters 486 Tunable Absorbance Detector / 30 DAY GUARANTEE

$ 277.99

Availability: 100 in stock
  • Restocking Fee: No
  • All returns accepted: Returns Accepted
  • Condition: Used
  • Refund will be given as: Money Back
  • Brand: Waters
  • Item must be returned within: 30 Days
  • Return shipping will be paid by: Buyer
  • MPN: 486

    Description

    This Waters 486 Tunable Absorbance Detector is in great condition
    and is guaranteed to be fully functional with a 30 day money back return policy (buyer handling return shipping)
    .
    This unit came from a local lab that had surplus lightly used equipment.
    We urge customers to view all photos as they show overall condition, included accessories, and functionality.
    Please feel free to contact us with any questions.
    The Waters 486 tunable absorbance detector is a single-Channel tunable ultraviolet/visible (UV/VIS) detector designed for high performance liquid chromatography (HPLC) applications. The waters 486 can operate as a stand-alone unit (with a chart recorder) or with other Waters system modules, such as the Waters 860 Networking Computer System, or the Water 745/745B or 746 integrators.  The 486 provides a usable light intensity over the wavelength range of 190-600 nanometers (nm), Although its primary use is in the ultraviolet wavelength range between 190 and 380 nanometers. The maximum sensitivity of the instrument is 0.001 absorbance units full scale (AUFS).
    This system features:
    Easy to use operator interface
    Self-calibration to ensure wavelength accuracy
    Battery backup to retain parameter settings when the detector is powered down or during power interruptions
    A deuterium arc lamp
    The patented Taper-Cell flow design switch reduces refractive index interference with the absorbance signal
    Optional cells: Non-metallic, Semi-prep, Microbore, High pressure (A cell optimized for operation in LC/MS)
    Lamp shut-off to lengthen usable lamp life
    User selectable chart mark on IV integrator output (standard on 10mV)
    Wavelength scanning for determination of optimal wavelength
    Diagnostic routines to verify proper functioning
    A modular design for easy servicing