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Our CCD camera section offers high-end cameras for demanding scientific applications. Front and back illuminated CCD sensors with optimized anti-reflection coatings convert more than 90% of the incoming light into a detectable signal. The UltraVac vacuum enclosure of the sensor ensures deep thermoelectric cooling to -100 °C. Read noise is minimized by high quality AD converters with slow scanning read out rates. Classic CCD cameras require a mechanical shutter to avoid image smearing during the read out process.

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For ultra-sensitive imaging applications, Andor Technology offers the EMCCD cameras iXon Ultra 888 (1024 x 1024 x 13 µm pixels) and iXon Ultra 897 (512 x 512 x 16 µm pixels) with USB interface. The EMCCD sensor is placed in a sealed vacuum chamber so that temperatures down to -100 °C are achieved with thermo-electrical cooling.

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The Neo sCMOS camera is an advancement of the well-known CMOS technology for scientific applications. Due to its vacuum enclosure the sensor can be cooled to -40 °C opening up possibilities for demanding applications in physics and biology. As the Neo sCMOS camera has an extremely low noise and high sensitivity, it can often yield a better image than EMCCD cameras even in low light conditions. Beside the typical use in imaging, the Neo sCMOS camera is also suitable for spectroscopy, especially for multi-track and imaging spectroscopy.

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The Zyla sCMOS cameras are an advancement of the well-known CMOS technology for scientific applications. Due to their special characteristics, they are suitable for many demanding measurement problems in physics and biology. As the Zyla sCMOS cameras have an extremely low noise and high sensitivity, they can often yield a better image than EMCCD cameras even in low light conditions. Beside the typical use in imaging, the Zyla sCMOS cameras are also suitable for spectroscopy, especially for multi-track and imaging spectroscopy.

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