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Olympus microscope UPLXAPO4X objective lens

NegotiableUpdate on 07/07
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Overview

The Olympus microscope UPLXAPO4X objective lens has a high numerical aperture (NA), wide homogeneous image flatness, and an extended range of chromatic aberration compensation from 400 nm to 1000 nm. These features enable you to obtain high-resolution bright images for various applications, from bright field/fluorescence microscopy to confocal/super-resolution microscopy.

Product Details

High resolution imaging function

Olympus microscope UPLXAPO4X objective lensHas excellent high-resolution imaging capabilities. In biological research, the observation of cells and tissues can clearly present the morphological structure of cells, such as the nucleus, organelles, and other subtle features. In the field of materials science, it can be used to observe the microstructure of materials, such as the grain size and distribution of metal materials. This is because the objective lens adopts * optical design and high-quality optical materials to reduce aberrations, thereby ensuring high-resolution imaging effect. Its numerical aperture has been carefully designed and optimized to collect more light, making the image clearer, sharper, and more detailed.

Wide field of view observation function

This object mirror has a significant advantage in observing with a wide field of view. In life science experiments, for observing large areas of cell culture dishes, more cell populations can be observed at once, and the overall distribution and growth status information of cells can be quickly obtained, greatly improving observation efficiency. In botanical research, it can be used to observe the overall tissue structure of plant leaves and understand the arrangement and distribution of leaf cells. This is due to its larger field of view diameter design, which can cover a larger observation area compared to ordinary objectives, providing users with a wider field of view, allowing researchers to observe more target information without frequently moving the sample.

High contrast imaging function

Olympus microscope UPLXAPO4X objective lensCapable of achieving high contrast imaging. In pathological diagnosis, the observation of pathological sections can clearly distinguish between diseased tissue and normal tissue, helping doctors to diagnose diseases more accurately. In microbiology research, the boundary between microorganisms and their surrounding environment can be clearly observed, which facilitates the analysis of the morphology and growth of microorganisms. This is because the objective lens adopts special optical coatings and contrast enhancement technology, which can effectively enhance the contrast of the image, highlight key features in the sample, make the differences between different structures more obvious, and thus easier to observe and analyze.

Long working distance function

This objective lens has the characteristic of long working distance. In industrial testing, for some samples with uneven surfaces, such as mechanical parts, a long working distance can avoid collisions between the objective lens and the sample surface, while allowing clear observation of defects and damage on the sample surface. In the micro manipulation experiment, sufficient space was provided for the operating tools to facilitate cell injection, puncture and other operations. This is achieved through reasonable optical design and structural optimization, allowing the objective lens to have a longer working distance while ensuring high-resolution imaging, meeting the needs of some special observation and operation scenarios.

Multi application compatibility function

OlympusLovers quarrel 4 xObjective lenses have good compatibility with multiple applications. It can be matched with various Olympus microscope systems, whether it is an upright microscope or an inverted microscope, to achieve seamless integration, providing users with more choices and convenience. In different research fields and experimental needs, users can choose the appropriate microscope system to use with the objective lens according to their actual situation. In addition, it is compatible with various imaging technologies such as fluorescence imaging and phase contrast imaging, expanding its application range in different imaging methods and suitable for observing and studying more types of samples.