
( Brand: Nikon ), ( Manufacturer Part Number: EPLAN-10/.25 ), ( Serial Number: 012607 )
The EPLAN-10 0.25 PH1 DL Nikon Plan 10x/0.25 Oil Immersion Microscope Objective is a high-performance optic designed for precise and detailed observations in a wide range of microscopy applications. This objective, part of Nikon's Plan series, is renowned for its exceptional optical quality and excellent correction of spherical and chromatic aberrations.
The EPLAN-10 0.25 objective offers a magnification of 10x, providing a useful balance between magnification and field of view. With a numerical aperture of 0.25, it allows for the collection of a substantial amount of light, enhancing the resolution and contrast of your sample images. This objective is ideal for studying fine details in a variety of specimens, from cellular structures to small organisms.
The objective is designed for oil immersion, which helps to dramatically increase the resolving power of the microscope by reducing the wavelength of light and eliminating the air-medium interface, thus minimizing spherical aberrations. This oil immersion design makes the EPLAN-10 0.25 particularly suitable for applications requiring high-resolution imaging, such as in cell biology, cytology, and materials science.
The PH1 DL (Plan Fluor DIC) designation indicates that this objective is optimized for use with Nomarski DIC (Differential Interference Contrast) systems, enabling the observation of samples with enhanced contrast and improved three-dimensional structure visualization. This makes it an excellent choice for applications in which sample morphology and orientation are crucial, such as in the study of cell divisions, tissue architecture, and crystalline structures.
In conclusion, the EPLAN-10 0.25 PH1 DL Nikon Plan 10x/0.25 Oil Immersion Microscope Objective is a versatile and high-performance optic, suitable for a wide range of microscopy applications. Its exceptional optical quality, combined with its oil immersion design and optimization for DIC systems, makes it an indispensable tool for researchers and professionals seeking precise, detailed, and contrast-rich observations of their samples.
1. High Magnification: With a magnification of 10x, this objective allows for a detailed view of your sample, making it suitable for various microscopy applications.
2. Low Aberration: The Nikon Plan fluorite element and super-integrated lens system reduce spherical aberration, ensuring high-resolution images.
3. Wide Field of View: The 0.25 numerical aperture provides a relatively large field of view compared to higher numerical aperture objectives, making it easier to find and focus on your sample.
4. DIC Capability: The EPLAN-10 0.25 is compatible with DIC (Differential Interference Contrast) for improved contrast and better visualization of sample structures.
Cons:1. High Cost: As a professional-grade objective, it comes with a higher price tag compared to lower-end options.
2. Requires Specific Conditions: The quality of the image produced depends on the quality of the lighting, sample preparation, and microscope setup, which may require additional investments.
3. Not Suitable for All Applications: Due to its lower numerical aperture, it may not be the best choice for applications that require high resolution or the observation of very small structures.
Conclusion:The EPLAN-10 0.25 (Nikon Plan 10x/0.25 PH1 DL) microscope objective offers a good balance between magnification, field of view, and high-resolution imaging. Its compatibility with DIC and wide application range make it a versatile choice for various microscopy tasks. However, its high cost and suitability for specific applications should be considered before making a purchase.
Recommendation:If you're looking for a high-quality, versatile microscope objective for general use in a research or professional setting, the EPLAN-10 0.25 could be a good investment. Ensure that your microscope setup and budget can support its requirements to make the most of its capabilities. If you're on a tighter budget or require higher resolution for specific applications, you may want to consider other options with different magnifications and numerical apertures.