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The Future of real-time genetic analysis starts here..
 

The Rotor-Gene 6000 is unlike any other real-time system. It uses a unique centrifugal rotary format designed specifically for the demanding requirements of real-time thermo-optical analyses.

What sets the Rotor-Gene design apart is its amazing well-to-well optical and thermal uniformity—critical factors in real-time analysis. Its design also enables a fast data acquisition rate, a feature now proving to be essential for advanced applications such as HRM (high-resolution melt).

In short, the Rotor-Gene 6000 is the most versatile real-time analyzer available:

It supports the broadest range of applications, including quantification, HRM (high-resolution melt), end-point, association/disassociation (i.e. melting/annealing) kinetics, and nucleic acid concentration measurement.

 
Included software supports the most real-time data analysis methods.

It has the greatest optical range, with 6 channels spanning UV to infra-red wavelengths.

It uses the widest range of interchangeable reaction tube formats.

With the Rotor-Gene 6000 you can embrace or invent the future of real-time analysis and unlock new research possibilities.

We welcome side-by-side comparison with any other system, so don’t hesitate to contact us or our representatives to arrange a demonstration.

Rotor Gene

The Rotor-Gene is the only real-time analyzer to employ a centrifugal rotary design. There are many benefits to the rotary format including better performance, versatility, robustness and easier maintenance.

Thermal Uniformity
left) that spins continuously at 400 rpm in a chamber of moving air. Thus there is no temperature variation between tubes due to positional effects such as the recognized “edge effect” observed in block-based designs.

Importantly, reactions also remain iso-thermal during programmed temperature transition steps. So there is also no equilibration time differences between wells—in other words every tube changes temperature at the same rate. This negates another well-to-well variable normally affecting real-time reaction kinetics. In short, the Rotor-Gene has the best thermal characteristics yet developed.


   
 
 
 
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