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Flurescense Microplate Readers
FlexStation® II 96/384 Microplate Reader
 
Product Description:
Obtain real-time kinetic data milliseconds before and after fluid transfer between microplates. FlexStation II is ideal for measuring intracellular calcium, membrane potential or oxidative burst assays.
This reader is monochromator based flurescense microplate spectrophotometer with top- and bottom-reading capability. Excitation scanning from 250–850 nm and emission scanning from 360–850 nm (in 1 nm increments) ensure that the most sensitive assay conditions are used.
The FlexStation II scanning fluorometer has the ability to screen multiple compounds, increase throughput and maximize flexibility in developing functional cellular assays and provide consistent and reproducible kinetic data due to its total integration of optics, fluidics and temperature control in a 96- or 384-well format.
Software has ability to design custom assay protocols or customize existing protocol to create meaningful reports, graphs, and multi-plate summaries, including data trend analysis.
 
Gemini EM Microplate Spectrofluorometer
 
Product Description:
The Gemini EM with dual monochromators allows researchers to try new and novel dyes. The wavelength range (excitation and emission) and scanning range are from 250 – 850 nm in 1 nm increments.
The reader includes endpoint, kinetic, excitation or emission spectral scanning and well-scanning modes. Top/bottom-reading optical design allows for fast, highly-sensitive measurements required by most fluorescence-based assays.
Also includes microplate mixing and temperature control.
Software has ability to design custom assay protocols or customize existing protocol to create meaningful reports, graphs, and multi-plate summaries, including data trend analysis.

 
Gemini XPS Microplate Spectrofluorometer
 
Product Description:
The right pair of excitation and emissionwavelengths is always available because the dual monochromators allow the selection of any wavelength in 1 nm increments. Excitation scanning from 250–850 nm and emission scanning from 360–850 nm (in 1 nm increments) ensure that the most sensitive assay conditions are used.
The reader includes endpoint, kinetic, excitation or emission spectral scanning and well-scanning modes. The optical design allows for fast, highly-sensitive measurements required by most fluorescence-based assays.
Also includes microplate mixing and temperature control.
Software has ability to design custom assay protocols or customize existing protocol to create meaningful reports, graphs, and multi-plate summaries, including data trend analysis.