Order Entry
Slovenia
ContactUsLinkComponent
Microplate reader, multi-mode, SpectraMax® Paradigm®
Microplate reader, multi-mode, SpectraMax® Paradigm®
  MLDVPARADIGM
undefined
Microplate reader, multi-mode, SpectraMax® Paradigm®
  MLDVPARADIGM

 

  • Light source:
    High powered light source
  • Wavelength selection:
    1,0 nm increments
  • Description:
    SpectraMax® Paradigm®, microplate reader, multi-mode
  • Environmentally Preferable:
  • Model:
    SpectraMax® Paradigm®
  • Temperature uniformity:
    ±0,75 °C
  • Wavelength accuracy:
    ±1 nm
  • Wavelength bandwidth:
    4,0 nm
  • Plate format:
    6- to 1536-well
  • Photometric linearity:
    0,0 - 2,0 OD
  • Photometric accuracy:
    0,010 OD ±2%
  • Photometric range:
    0,000 - 3,5 OD
  • Shaking:
    Linear, orbital
  • Software:
    SoftMax® Pro
  • Wavelength range:
    230 - 1000 nm
  • Weight:
    45 kg
  • W×D×H:
    390×630×450 mm
  • Incubation range:
    4 °C above ambient to 45 °C
  • Pk:
    1

 

 

The SpectraMax® Paradigm® reader can perform absorbance, fluorescence, time-resolved fluorescence (including HTRF), fluorescence polarisation, AlphaScreen®, AlphaLISA®, and luminescence measurements. Detection cartridge modularity allows users to configure the system to meet current needs, while providing the flexibility to address future applications.

  • Flexible design allows for single or dual excitation and emission, to address existing needs and future expansion
  • User upgradable in <2 minutes
  • High speed detection
  • Excellent sensitivity and performance
  • SpectraDrop™ plate protocols enabling microvolume applications measurement are included
  • Patented LED intensity adjustment

Other features include an array of detection cartridge capabilities, automatic Z-height optimisation (both top- and bottom-read configurations), fluorescence measurements no longer require users to adjust the gain, up to 1536-well format, temperature control, monochromator-based absorbance, filter-based fluorescence, and TUNE Cartridge available for unmatched sensitivity in wavelength tunable detection.