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250 Microns Coating Diameter Quartz Optical Fiber With Core-To-Clad Ratio 1 1.05/1 1.1 And Attenuation Factor 1064nm≤5dB/Km
The Quartz Optical Fiber is a cutting-edge product designed to meet the demands of various applications requiring high-quality optical transmission. Crafted from premium-grade Quartz material, this UV-Vis-NIR Silica Fiber offers exceptional performance and durability.
One of the standout features of this optical fiber is its impressive Attenuation Factor@1064nm, which is kept at a maximum of ≤5dB/km. This ensures minimal signal loss and efficient light transmission over long distances, making it ideal for critical applications where signal integrity is paramount.
Moreover, the Quartz Optical Fiber boasts a precise Core-to-clad Ratio of either 1:1.05 or 1:1.1, depending on the specific variant selected. This optimized ratio contributes to enhanced light-guiding capabilities and reduced signal dispersion, resulting in reliable and consistent optical performance.
As a Single Mode Fiber Type, this silica fiber is engineered to carry a single mode of light, enabling high-bandwidth communication and laser-focused transmission. This makes it a perfect choice for applications requiring precise and uninterrupted data transfer, such as Low-Fluorescence Silica Sensing Fiber solutions.
Furthermore, the Quartz Optical Fiber features a Coating Diameter of 250 Microns, providing robust protection to the core fiber and ensuring long-lasting performance in challenging environments. This coating enhances the fiber's durability and resistance to external factors, making it suitable for a wide range of industrial and research applications.
Whether used for data transmission, sensing applications, or laser cutting operations at 1064nm wavelengths, this Silica Fiber for Laser Cutting excels in delivering exceptional performance and reliability. Its advanced design and superior material quality make it a valuable asset in various industries where precision and consistency are key priorities.
Winners PSF-125 Quartz Optical Fiber is a cutting-edge product that is ideal for a wide range of applications due to its exceptional characteristics and top-notch quality. This low-loss silica energy fiber is crafted from medical-grade pure silica, ensuring high performance and durability in various scenarios.
One of the key application occasions for the Winners PSF-125 Quartz Optical Fiber is in the field of laser technology. The fiber's high numerical aperture of 0.22±0.02, along with its cladding diameter of 125 microns, makes it perfect for laser welding torches. The fiber's robust construction and precise core-to-clad ratio of 1:1.05/1:1.1 ensure optimal energy transmission and efficiency in laser welding operations.
Furthermore, the Winners PSF-125 Quartz Optical Fiber is well-suited for medical applications where precision and reliability are paramount. Its medical-grade pure silica material guarantees safe and effective use in medical devices and procedures. The fiber's coating diameter of 250 microns provides added protection and longevity, making it an excellent choice for medical equipment that requires high-performance fibers.
Manufactured in China, the Winners PSF-125 Quartz Optical Fiber meets the highest quality standards, making it a preferred choice for professionals in various industries. Whether used in laser technology, medical equipment, or other specialized applications, this fiber delivers superior performance and reliability.
The Quartz Optical Fiber product offers comprehensive Product Technical Support and Services to ensure the smooth operation and maintenance of the optical fiber system. Our team of experienced technical support professionals is dedicated to assisting customers with any product-related inquiries, troubleshooting issues, and providing guidance on product usage.
Our services include but are not limited to:
Customers can rely on our knowledgeable support team to address their technical needs promptly and efficiently, helping to maximize the performance and longevity of their Quartz Optical Fiber product.