Used NIKON Axiovert S 100 #293769070 for sale
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ID: 293769070
Inverted microscope
Micromanipulator
EPPENDORF Microinjector
5246 Transjector
AxioCam microscope camera
Pixels: 1388 x 1040
Pixel size: 6.45 µm
X-Cite 120 Fluorescence
Manuals
Objective lens:
10x, NA 0.25, A-Plan, Ph1, 44 10 31
20x, NA 0.3, Achrostigmat, Ph1, 44 01 47
32x, NA 0.4, Achrostigmat, Ph1, ∞ / 0.5-1.5
40x, NA 0.6, Korr, LD Achro plan, Ph2, ∞ / 0-2
Filter cubes:
Blue channel: Ex 360/40
Green channel: Ex 470/20; Em 505-530
Red channel: Ex 545/30; Em 620/60
Far red channel: Ex 620/60; Em 690/50
CFP Channel: Ex 436/20; Em 480/40
YFP Channel: Ex 500/20; Em 535/50.
NIKON Axiovert S 100 is a sophisticated inverted microscope designed for advanced scientific research and industrial applications. This cutting-edge microscopy equipment combines high-performance optics, precision mechanics, and innovative imaging technology to deliver exceptional results in biological and materials science research. At the core of Axiovert S 100 microscope is a top-of-the-line optical system that provides outstanding image quality and resolution. The microscope features a range of objectives, including brightfield, phase contrast, and fluorescence options, allowing researchers to observe specimens with unrivaled clarity and detail. The specialized Apochromatic lenses minimize chromatic aberrations and ensure accurate color representation across the visible spectrum, making NIKON Axiovert S 100 an ideal choice for multi-channel fluorescence imaging. To enhance imaging capabilities further, Axiovert S 100 is equipped with a motorized focus drive and Z-drive for precise sample positioning and focusing. This automation allows users to easily capture images at different focal planes and depths, enabling 3D reconstruction of specimens and time-lapse imaging for dynamic biological processes. The microscope also features a range of contrast enhancement techniques, such as DIC (differential interference contrast) and phase contrast, to reveal fine structural details in unstained samples. In addition to its advanced optics, NIKON Axiovert S 100 microscope is equipped with a high-performance camera unit for capturing high-resolution images and videos. The camera offers fast readout speeds, low noise performance, and high dynamic range, ensuring accurate and detailed image acquisition in a variety of imaging conditions. The microscope's software interface provides intuitive control over camera settings, image acquisition, and analysis tools, giving researchers the flexibility to customize imaging parameters to suit their specific experimental requirements. Axiovert S 100 microscope is also designed for multi-modal imaging, allowing users to seamlessly switch between different imaging modalities for comprehensive specimen analysis. The microscope's fluorescence module enables high-sensitivity imaging of fluorescent samples, with customizable filter sets and light sources for optimal excitation and emission. Researchers can perform spectral imaging and fluorescence lifetime imaging experiments with NIKON Axiovert S 100, providing valuable insights into molecular interactions and cellular processes. Furthermore, Axiovert S 100 microscope features a modular design that allows for easy integration of accessories and additional imaging modalities. This versatility enables researchers to expand the capabilities of the microscope as their research needs evolve, making NIKON Axiovert S 100 a future-proof investment for advanced imaging applications. The microscope is compatible with a wide range of imaging techniques, including confocal microscopy, super-resolution imaging, and live-cell imaging, making it a versatile tool for a diverse range of research fields. In conclusion, Axiovert S 100 microscope is a state-of-the-art imaging machine that offers unmatched performance, versatility, and ease of use for advanced scientific research and industrial applications. With its superior optics, advanced imaging technology, and modular design, NIKON Axiovert S 100 provides researchers with the tools they need to explore the intricacies of biological and materials science with unparalleled precision and clarity.
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