
( Brand: Newport Oriel ), ( Model: 41329 ), ( Part Type: Len ), ( Country/region Of Manufacture: United States )
The Newport Oriel Fused Silica PLX Lens (Model 41329) is a high-quality optical component designed for precision applications in various industries. This lens, with a diameter of 25.4mm, offers a focal length of 33mm, making it an ideal choice for a wide range of imaging and optical systems.
The Newport Oriel PLX lens is crafted from fused silica, a material renowned for its exceptional optical properties. Fused silica is known for its low thermal expansion coefficient, high thermal shock resistance, and excellent transmission in the ultraviolet, visible, and near-infrared regions of the spectrum. This makes it an excellent material for applications where temperature stability and high-energy light transmission are critical.
The 41329 Newport Oriel PLX lens exhibits excellent surface quality, with an SQ (Surface Quality) value that ensures minimal aberrations and distortions. Its precision-engineered design and high-quality materials make it suitable for use in demanding applications, such as spectroscopy, fluorescence microscopy, and laser systems.
This lens features a C-mount thread, which is a common standard in the optics industry. This allows for easy integration with a wide range of cameras and other optical components. The lens is also designed for durability, with a rugged construction that can withstand the rigors of regular use in a laboratory or industrial setting.
In summary, the Newport Oriel Fused Silica PLX Lens (Model 41329) is a high-quality, precision-engineered optical component, ideally suited for demanding applications in various fields. Its fused silica construction, excellent surface quality, and C-mount thread make it a versatile and reliable choice for a wide range of imaging and optical systems.
1. High Quality: This lens is made of fused silica, which is known for its superior optical properties, such as a lower thermal expansion coefficient and higher transmission in the UV region compared to glass. This makes the lens less prone to thermal shock and more suitable for applications requiring high-quality imaging in the UV-VIS-NIR spectral range.
2. Wide Field of View: With a 33mm focal length, this lens offers a relatively wide field of view, making it suitable for various imaging applications.
3. Good Light Gathering: The lens has a 25.4mm diameter, which allows more light to pass through, improving the signal-to-noise ratio in low-light conditions.
Cons:1. Cost: Fused silica lenses are generally more expensive than lenses made of traditional glasses due to the complex manufacturing process. This might make the 41329 Newport Oriel lens a more expensive option for some users.
2. Limited Availability: Due to the specialized nature of fused silica lenses, they might not be as readily available as standard glass lenses from various manufacturers.
3. Potential Fragility: Although fused silica is a strong material, it might be more fragile than glass in certain situations, requiring extra care during handling and transportation.
Conclusion:The 41329 Newport Oriel Fused Silica PL-XC Lens offers several advantages, such as high optical quality, wide field of view, and good light gathering, making it an excellent choice for applications requiring high-quality imaging in the UV-VIS-NIR spectral range. However, its cost, limited availability, and potential fragility might be considerations for some users.
Recommendation:If budget and availability are not major concerns, the 41329 Newport Oriel Fused Silica PL-XC Lens is an excellent choice due to its superior optical properties and wide field of view. If the cost is a significant factor, users may consider lenses made of traditional glasses as a more cost-effective alternative, although they may not offer the same level of optical performance as the fused silica lens. It is always essential to evaluate the specific requirements of the application and compare available options before making a final decision.
Newport Oriel fused silica plcx lens 25.