Description
Introducing Ultrasol® Solarization-Stable Fibers, a cutting-edge solution for high-performance optical fiber needs. These fibers are specifically engineered to maintain exceptional transmission capabilities in the challenging 190–250 nm range, making them ideal for applications that demand superior UV-VIS performance. With a high OH content, these fibers are designed to resist solarization, ensuring long-lasting reliability even under prolonged exposure to ultraviolet light.
Our solarization-stable fibers are constructed using premium fused silica glass cores and claddings, paired with a choice of single acrylate or polyimide coatings. This robust construction not only enhances durability but also optimizes the fiber's optical properties, allowing for consistent and dependable performance. The fibers are available in a range of core and cladding diameters, providing flexibility for various applications and configurations.
For those requiring even more versatility, our fibers can be configured into fiber bundles, starting with a single-fiber core as small as 30 μm. This option is ideal for specialized applications where precise control and high transmission efficiency are critical. Additionally, optional coatings such as Nylon® or Tefzel® are available to further customize the fibers to meet specific environmental or operational requirements.
Whether you are working in research, industrial, or specialized fields, our Ultrasol® solarization-stable fibers deliver unparalleled performance and reliability. Experience the difference with fibers designed to withstand the most demanding conditions, ensuring that your optical systems remain efficient and effective over time.
FiberTech Ultrasol Fibers - 84808016F
Specifications
| Core Diameter: | 500 um |
|---|---|
| Wavelength Range: | 190 – 250 nm |
| Fiber Core Material: | Silica |
| Fiber Length: | Custom |
| Fiber Type: | Solar Stable |
Features
- High-Quality Core/Jacket Construction: Available in core diameters ranging from 100 µm to 600 µm, with corresponding cladding diameters from 110 µm to 660 µm, ensuring optimal performance for various applications.
- UV-VIS Step-Index Multimode Fibers: Designed for superior performance in the UV-VIS spectrum, offering excellent transmission in the 190–250 nm range.
- Solarization-Stable Fibers: Specially developed fibers with high OH content to maintain integrity under UV exposure, preventing progressive absorption and failure below 240 nm.
- Coating Options: Choose between single acrylate, polyimide, Nylon®, or Tefzel® coatings, each with precise diameter specifications to suit specific needs.
- Durable and Reliable: Fused silica glass core and cladding ensure high durability and reliability, even in demanding environments.
- Customizable Solutions: Additional specifications, including CCDR, are available to meet unique application requirements.
- Fiber Bundles Available: Solarization-stable fibers can be configured as fiber bundles with single-fiber cores starting from 30 µm, providing versatile solutions for complex applications.
- Wide Range of Applications: Ideal for use with deuterium lamps and other UV light sources, ensuring consistent performance over time.
- Comprehensive Product Range: Order numbers and fiber codes provided for easy selection and ordering of the right fiber for your needs.
Applications
- UV Spectroscopy: Delivers stable deep-UV transmission for precision analysis
- Analytical Instrumentation: Enhances performance in UV-based measurement systems
- UV Illumination Systems: Provides durable and efficient light delivery
- Scientific Research: Suitable for long-term UV exposure and experimental setups
- Industrial UV Processing: Ideal for UV curing, lithography, and other UV-based manufacturing processes
Frequently Asked Questions
What is the difference between these fibers and UV-VIS fibers?
What is the wavelength range for which these fibers are suitable?
Are there any other coating options available?
What is the coating material used for these fibers?
What is the core diameter of the fiber bundles?
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