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SHIMADZU UV-1650PC
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UV-1650PC

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UV-1650PC Hardware Specifications

Wavelength range 190.0 to 1100.0nm
Spectral bandwidth 2nm
Wavelength display Readable to 0.1nm
Wavelength setting 0.1nm increments (1nm increments for wavelength slewing)
Wavelength accuracy ¡¾0.5nm (Automatic wavelength correction)
Wavelength reproducibility ¡¾0.1nm
Wavelength slew rate About 6000nm/min.
Wavelength scanning speed About 3200nm/min. to about 160nm/min.
Data bunching interval Automatic selection of 2.0, 1.0, 0.5, 0.2, 0.1nm
Lamp interchange wavelength 295.0~364.0nm (340.8nm)
Stray light Less than 0.05% (at 220.0nm and 340.0nm)
Photometric system Double-beam optics
Photometric range Absorbance : -0.5~3.999Abs.

Transmittance: 0.0~300%

Photometric accuracy ¡¾0.004Abs. at 1.0Abs. (Tested with NIST 930D filter)

¡¾0.002Abs. at 0.5Abs.

Photometric reproducibility ¡¾0.002Abs. at 1.0Abs.

¡¾0.002Abs. at 0.5Abs.

Baseline stability Less than ¡¾0.001 Abs./hour
Baseline flatness ¡¾0.002Abs.
Baseline correction Automatic with computer memory, in two stages of coarse and fine
Light source 50W halogen lamp (2,000 hrs life) and deuterium lamp
Monochromator Aberration corrected concave blazed holographic grating
Detector Silicon photodiode
Sample compartment Inner dimensions: W110.0 X D230.0 X H105.0mm (partly 105mm deep)

Distance between light beams: 100.0nm

Installation: Fixed with 2 screws

Beam size: 10 X 1mm

Interface ports

RS-232C port f

Power requirements 100, 120, 220, 240VAC, 50/60 Hz, 160VA.
Ambient requirements Temperature: 15~35¡ÆC

Humidity: 45~80%

Dimensions and weight W550 X D470 X H200mm, 18kg

UV-1650PC Software Specifications

Photometric mode
  1. Measurement at a user-selected fixed wavelength.
    The optional CPS-240A Cell Positioner or Multicell Holder permits automatic successive measurement of up to six sample cells.
  2. Quantitation using the K-factor method
  3. Photometric mode: Choice of %T and Abs.
Spectrum Mode
  1. Photometric mode: Choice of %T, Abs, and E
    Scanning range: 190.0 to 1100.0nm
    Scanning speed: Very fast, Fast, Medium, Slow, and Very Slow
    Ordinate range: Abs: -3.99 ~ +3.99
    %T and E: -399 +399
    Number of repeated scans: Up to 99 times
  2. Spectrum processing Detection of peaks and valleys, up to 20 each
    Expansion and compression
    Data readout at cursor-specified point
    Storage/recall of data (Up to 6 in the main memory, and up to 27 in the data pack)
  3. Export of spectral data: Via RS-232C port
Quantitation Mode
  1. Measurement method: Choice of 1 wavelength, 2 wavelength, 3 wavelength, 1st ~ 4th derivative methods.
  2. Quantitation method: Automatic concentration calculation by K-factor, single-point calibration curve, or multipoint calibration curve method (1st ~ 3rd order regression curves).
  3. Operational parameters.
    Number of repetitive measurements: 1 ~ 9, to obtain mean value for quantitation
    Number of order for derivative: 1st ~ 4th
    Number of standards for multipoint calibration curve: 2 ~ 10
    Number of order of calibration curve: 1st ~ 3rd
    Choice of zero or non-zero intercept
  4. Storage/recall of data
    Automatic data printout
Kinetics Mode
  1. Measurement time: 1~ 6500 sec. or 1 ~ 6500 min.
  2. Cell holder: Optional CPS-240A Cell Positioner or Multicell Holder
  3. Storage/recall of time-course data
  4. Reaction rate calculation and recalculation
  5. Export of time-course data via RS-232C port
Multicomponent Quantitation
  1. Up to 8 components can be simultaneously quantitated.
  2. A mixture may be used as standard, as well as pure compounds of the components.
  3. Data of standards can be stored, as well as the wavelengths.
  4. Quantitation on recalled data is possible.
Processing of Spectra and Time-Course Curves
  1. Arithmetic calculation between curves
  2. Arithmetic calculation between a curve and a constant.
  3. Derivative (1st, 2nd, 3rd , 4th, and smoothing).
  4. Integration (area calculation).
  5. Peak pick.
  6. Point pick.
  7. Display of data curve.
  8. Presentation of values at cursor-specified point.


 
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