MF52-N is composed of LED epi-fluorescence system and inverted biological microscope.It adopts excellent infinite optical path, long working distance plan achromatic objectives and wide field eyepiece.The compact and stable high rigid body satisfied the anti vibration requirements of microscope operation. Modular design provides safely and quickly lighting adjustment and switch of fluorescent filter groups. The microscope is used for microscope observation of cell tissue and transparent liquid tissue, as well as fluorescence observation in the fields of bio-pharmaceutical, medical detection, disease prevention, etc.
Spesifikasi: Applications: laboratory, biological, medical, for the pharmaceutical industry Ergonomics: inverted Quality of the objectives: plan achromatic Observation technique: fluorescence, phase contrast Configuration: compact Light source: LED Magnification: 4 unit, 10 unit, 20 unit, 40 unit Phase contrast ring plate: 10X, 20X and 40X in one unit Focus system: Coaxial coarse/fine focus, with tension adjustable and up stop, minimum division of fine focusing is 2μm. Transmitted illumination system: 9W white LED lamp with brightness adjustable Push-pull type condenser, working distance 55mm Green filter Camera adapter: Internal set 0.75X C-mount Light baffle: 110mmx70mm, orange color plastic light baffle Tool: Allen driver Dust cover
ZEISS Xradia CrystalCT® computed tomography platform uniquely augments this powerful imaging technique with the ability to reveal crystallographic grain microstructures, transforming the way polycrystalline materials (such as metals, additive manufacturing, ceramics, pharmaceuticals and others) can be studied, leading to newer and deeper insights for your materials research.
ZEISS Xradia Context® micro-computed tomography (microCT) is an easy-to-use system for analysis of all types of samples. A high-array detector enables high resolution of fine details even with relatively large imaging volumes. The system features a large field of view, rapid sample mounting and alignment, streamlined acquisition workflow and fast exposure and data reconstruction times.
In XRM, contrast depends on the material being imaged and the X-ray energy used. The Xradia Ultra family comprises of Xradia 800 Ultra, operating at 8 keV photon energy, and Xradia 810 Ultra, operating at 5.4 keV. In general, lower energy X-rays are absorbed more strongly and therefore will provide you with higher contrast for most materials. Thus, as long as transmission remains sufficient, you will experience resulting image quality and/or throughput that are greatly improved with Xradia 810 Ultra.