Used ANDOR TECHNOLOGY Zyla 5.5 CL10 Water Cooled sCMOS #9290272 for sale
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ANDOR TECHNOLOGY Zyla 5.5 CL10 Water Cooled sCMOS (scientific CMOS) is an advanced microscope designed for use in high-end research and academic settings. The Zyla 5.5 CL10 features a 5.5 megapixel precision scientific grade CMOS sensor, capable of providing the highest resolution imaging performance. This CMOS sensor has a global electronic shuttering equipment, enabling simultaneous imaging at multiple exposures while maintaining precise exposure control and excellent image quality. The Zyla 5.5 CL10 has a pixel size of 6.5μm and is capable of operating in both monochrome and colour modes, offering flexibility depending on the imaging requirements of the researcher. The Zyla also features a hardware binning system which allows for intensified imaging in higher performance applications. In addition to the 5.5 megapixel CMOS sensor, the Zyla also features a Water Cooled sCMOS design. This design allows for the rapid cooling of the sensor to temperatures as low as -25C, helping to reduce noise and improve unit performance. The Zyla machine also gains further stability and protection from heat through ANDOR TECHNOLOGY integrated fan-cooling solution, which circulates cool air directly over the CMOS sensor, preventing it from overheating and degrading performance. In terms of optical capabilities, the Zyla 5.5 CL10 comes equipped with a range of lens options. This includes a selection of c-mount lenses, perfect for applications such as microscopy and metrology, along with high quality f-mount lenses for improved image clarity and greater low light performance. The Zyla 5.5 CL10 Water Cooled sCMOS is ideal for a range of users, from biologists and materials scientists to industrial researchers and medical professionals. This superior imaging tool delivers exceptional performance and reliability in both academia and industry. This makes it perfect for a range of applications, from imaging cells and proteins through to inspecting micro-constructs and nanostructures.
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