Used APC APT-33150RT #9313744 for sale
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APC APT-33150RT is an automated, computer-controlled exposure equipment suitable for a variety of imaging platforms and applications. This system provides precise control of exposure parameters including duration, light intensity, wavelength, and filter selection. It features a pass-through design to maximize throughput, allowing for re-exposure to multiple samples or plates. APT-33150RT operates through three main components: a base platform, a shutter and filter assembly, and a collimator assembly. The base platform consists of an open frame structure with four adjustable feet and an integrated optics unit. The platform includes a three-viewer prism machine with built-in alignment features, allowing for the orientation of the sample to the viewing window. The platform is designed to accommodate a variety of sample types and sizes, as well as fit within standard imaging platforms. The shutter and filter assembly is driven by a stepper motor, providing precise control of the light duration and wavelength. The tool includes three filter wheels, which contain various optical filters to narrow the wavelength range of the light source. These filters are interchangeable, allowing for the selection and combination of different wavelengths for a particular experiment. The collimator assembly is made up of two components: an aperture and housing. The collimator surrounds the light source and allows it to be focused on to the sample. The assembly includes a f-stop knob, for manually selecting the aperture size, and a lens barrel, which can be swapped out for different lenses. This allows for control over the amount of light intensity received by the sample. APC APT-33150RT exposure asset is a reliable and accurate platform for imaging applications. Its modular design allows for cost-effective integration into existing imaging systems. The adjustable base platform, shutter and filter assembly, and collimator assembly, provide precise control over exposure parameters and an integrated optics model for alignment of samples.
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