Used OLYMPUS BX51RF #9363799 for sale

Manufacturer
OLYMPUS
Model
BX51RF
ID: 9363799
Metallurgical microscope For brightfield, darkfield and DIC 1.3 MP Digital camera Infinity 1 - 1C 1.3MP CMOS Digital camera (USB2) With 5 MP Digital camera Camera coupler C-Mount Options: 1X For BX / AX / MX / SZX.
OLYMPUS BX51RF is a digital, inverted, laboratory-grade microscope designed specifically for research and education. It combines an excellent optical system with advanced ergonomic features and digital imaging capabilities. This makes it a powerful combination for studying specimens at the cellular, molecular, and even subcellular levels. BX51RF utilizes two paired objectives (4x and 10x) to provide a maximum magnification of 400x. The microscope's advanced optical system ensures an accurate representation of the specimen, delivering images with sharp contrast and excellent color rendition. OLYMPUS BX51RF is also designed with an ergonomic, adjustable configuration. The tube length, eye pieces, and objectives are all adjustable, allowing for comfortable viewing and consistent performance. The microscope features a unique 'dual-field' observation design that allows for the simultaneous viewing of two different areas of the microscope field at the same time. This can be used to detect the slightest movement or color variation in the specimen. BX51RF is also equipped with a 0.5X/0.2X Barlow lens that allows for greater magnification and deeper penetration of the specimen. OLYMPUS BX51RF's digital imaging capabilities allow users to capture digital images for further analysis. The microscope includes an HDMI output and USB port that can interface directly with a PC for image capture and analysis. Additionally, the microscope comes with software specifically designed for image acquisition and processing. The software also enables the user to capture, store and print images for further review or documentation. Overall, BX51RF combines an ergonomic design, advanced optics, and digital imaging capabilities for the study of specimens at the microscopic level. This combined with its affordability, makes it a powerful choice for research and educational applications.
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