Synergy H1 Microplate Reader

Flexibility, simplicity, and robust performance.

BioTek’s Synergy™ H1 Multi-Mode Microplate Reader with patented Hybrid Technology™ provides more application versatility than other multi-mode readers on the market. Monochromator-based detection is used for maximum flexibility, ease-of-use and spectral scanning applications while the filter-based detection system offers excellent sensitivity.


Features:

 
  • The monochromator system uses a quadruple grating architecture with a red-shifted detector. The result is a flexible optical system with a wavelength range from 250 to 700 nm in 1 nm increments, covering a broad range of applications.
  • The filter system uses dichroic mirrors for best sensitivity. This design provides the highest level of performance for demanding applications such as TR-FRET or fluorescence polarization.
  • Gas Controller modules are available for control and monitoring of CO2 and O2, or CO2 only. These, along with incubation to 45°C and programmable shaking, provide the ideal environment for live-cell assays.
  • UV-Vis absorbance with a wavelength range of 200- 999 nm in 1 nm increments, luminescence detection are included detection modes.
  • A dual reagent injection system is available to automate inject/read assays such as ion channel or flash luminescence assays (e.g. luciferase or ATP assays).
  • Compatible with Take3™ Micro-Volume Plate: Up to forty-eight 2 µL samples can be measured, for fast and accurate direct DNA, RNA and protein quantification.
  • Gen5™ software provides advanced reader control, data analysis, graphing, easy exporting and reporting features. Users can easily pre-program the entire sequence (from the detection step to the data analysis and reporting step) using one integrated software tool.

Advantages of BioTek's Hybrid Technology

 

The choice is yours

 

Filter-based

 

Monochromator-based

 

Hybrid Technology

       
Spectral Scanning  
       
Flexible Wavelength Selection  
       
Take3™ 2µL Sample Volume  
       
Highest Sensitivity  
       
Fastest Read Speed  
       
Filtered Luminescence  
       
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