
( Brand: Carl Zeiss ), ( Model: PLAN ), ( Unit Type: Unit ), ( Manufacturer Part Number: 441470-9900 )
The Carl Zeiss 441470-9900 Plan-Apochromat 63x/1.0 Microscope Objective is a high-performance lens designed for use in research-grade microscopes. This objective delivers exceptional image quality with its advanced optical design, which includes Plan apochromatic elements that correct for chromatic and spherical aberrations.
The objective features a magnification of 63x and a numerical aperture of 1.0, making it an excellent choice for examining fine details and observing subtle structures. The 1.0 numerical aperture allows for maximum light transmission, resulting in bright and clear images.
The Plan-Apochromat 63x/1.0 objective is constructed from high-quality materials, including CaF2 elements, which provide excellent transmission and reduce distortion. The lens also features a robust and durable housing, which is resistant to temperature and humidity changes, ensuring reliable performance in various laboratory conditions.
One unique feature of this objective is its Widefield Fluorescence Illumination (WFI) compatibility, which allows for even illumination across the entire field of view, reducing the need for complex illumination systems and improving efficiency in fluorescence microscopy applications.
This objective also features a threaded barrel for easy attachment of additional accessories, such as filters and adapters, expanding its versatility for various microscopy techniques. Its compact size and precise mechanical engineering ensure that it can be used in a variety of microscope systems with ease.
Overall, the Carl Zeiss 441470-9900 Plan-Apochromat 63x/1.0 Microscope Objective is a high-performance lens that delivers outstanding image quality and versatility, making it an essential tool for researchers and microscopists seeking to examine fine details and observe subtle structures in their samples.
The Carl Zeiss Plan-Apochromat 63x/1.0 microscope objective is a high-performance lens designed for use in research-grade microscopes. This objective provides superior optical quality with a high numerical aperture (NA) of 1.0, enabling excellent resolution and brightness. Here are some pros and cons of investing in this microscope objective:
Pros:1. Superior Optical Quality: This objective delivers high-resolution images with excellent contrast and brightness, making it ideal for detailed observations and research applications.
2. High Numerical Aperture: The high NA of 1.0 allows for maximum light collection, resulting in brighter and clearer images.
3. Wide Field of View: The 63x magnification provides a relatively large field of view compared to other high-magnification objectives, making it easier to locate and observe specimens.
4. Versatile: The Plan-Apochromat objective is suitable for use with various sample types, including living cells, tissues, and fixed specimens.
Cons:1. Cost: This objective is a premium product and comes with a high price tag. It may be an investment beyond the budget of some researchers or institutions.
2. Size and Weight: The objective is larger and heavier than standard objectives, which could impact the overall weight and balance of the microscope.
3. Requires Careful Handling: Due to its high cost and delicate design, this objective requires careful handling to avoid damage.
In conclusion, the Carl Zeiss Plan-Apochromat 63x/1.0 microscope objective offers superior optical quality, a wide field of view, and versatility, making it an excellent choice for research applications where high-resolution images are essential. However, its high cost, size, and weight may be a deterrent for some users.
Based on the pros and cons, we would recommend this objective for researchers and institutions that require high-resolution images and are willing to invest in a premium microscope objective. For those with limited budgets, standard objectives may be a more practical choice.
The W Plan Apochromat 63x/1.0 VIS-IR is in excellent condition with perfect lenses, threads, and a very nice original case.